Chiyoda Corporation

Japon

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Type PI
        Brevet 401
        Marque 29
Juridiction
        International 260
        États-Unis 124
        Canada 42
        Europe 4
Date
Nouveautés (dernières 4 semaines) 9
2026 septembre (MACJ) 4
2026 août 5
2026 juillet 1
2026 juin 3
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Classe IPC
C07B 61/00 - Autres procédés généraux 38
F25J 1/00 - Procédés ou appareils de liquéfaction ou de solidification des gaz ou des mélanges gazeux 27
B01D 53/50 - Oxydes de soufre 24
C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs 23
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption 18
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Classe NICE
37 - Services de construction; extraction minière; installation et réparation 23
42 - Services scientifiques, technologiques et industriels, recherche et conception 23
09 - Appareils et instruments scientifiques et électriques 15
35 - Publicité; Affaires commerciales 15
39 - Services de transport, emballage et entreposage; organisation de voyages 7
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Statut
En Instance 52
Enregistré / En vigueur 378
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1.

TUBULAR REACTOR

      
Numéro d'application SG2025050144
Numéro de publication 2026/187287
Statut Délivré - en vigueur
Date de dépôt 2025-03-04
Date de publication 2026-09-10
Propriétaire
  • NANYANG TECHNOLOGICAL UNIVERSITY (Singapour)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Xu, Rong
  • Lau, Wai Man
  • Nguyen, Dong Ho
  • Chong, Chi Cheng
  • Hodoshima, Shinya
  • Muto, Akihiro
  • Nakajima, Yusuke
  • Kashima, Genki
  • Matsuda, Yu

Abrégé

The object of the present invention is to provide a technology capable of improving the temperature uniformity in the reaction tube in a tubular reactor. The present invention provides a tubular reactor comprising a reaction tube, a three-dimensional catalyst, and a filler, wherein the three-dimensional catalyst comprises a three-dimensional structure and a metal-loaded catalyst attached to the three-dimensional structure, the metal-loaded catalyst is so configured that a metal is loaded on a support, the three-dimensional catalyst is placed in the reaction tube, and the filler is filled in a void of the three-dimensional catalyst.

Classes IPC  ?

  • B01J 8/02 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes

2.

COMPOSITE CATALYST AND METHOD FOR DEHYDROGENATING HYDROGENATED AROMATIC

      
Numéro d'application SG2025050142
Numéro de publication 2026/187285
Statut Délivré - en vigueur
Date de dépôt 2025-03-04
Date de publication 2026-09-10
Propriétaire
  • NANYANG TECHNOLOGICAL UNIVERSITY (Singapour)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Lim, Voon Huey
  • Chong, Chi Cheng
  • Xu, Rong
  • Hodoshima, Shinya
  • Imagawa, Kenichi
  • Muto, Akihiro

Abrégé

The object of the present invention is to provide a technology capable of extending the life of a catalyst. The present invention provides a composite catalyst comprising platinum, sulfur and magnesium loaded on an alumina support, wherein a mass ratio of the sulfur to the platinum is 0.1 to 1.5, a mass ratio of the magnesium to the sulfur is 0.020 to 0.065, and the platinum is selectively loaded on an outer surface layer of the alumina support.

Classes IPC  ?

  • B01J 27/02 - Soufre, sélénium ou tellureLeurs composés
  • B01J 35/53 - Sphères avec une structure de type cœur-coquille
  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs
  • C07C 5/367 - Formation d'un cycle aromatique à six chaînons à partir d'un cycle à six chaînons existant, p. ex. déshydrogénation de l'éthylcyclohexane en éthylbenzène
  • C07C 15/06 - Toluène
  • C07B 61/00 - Autres procédés généraux

3.

PLATINUM-LOADED ALUMINA CATALYST, DEHYDROGENATION CATALYST, AND METHOD FOR DEHYDROGENATING HYDROGENATED AROMATIC

      
Numéro d'application SG2025050143
Numéro de publication 2026/187286
Statut Délivré - en vigueur
Date de dépôt 2025-03-04
Date de publication 2026-09-10
Propriétaire
  • NANYANG TECHNOLOGICAL UNIVERSITY (Singapour)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Lim, Voon Huey
  • Xu, Rong
  • Hodoshima, Shinya
  • Imagawa, Kenichi

Abrégé

The object of the present invention is to provide a technology capable of improving catalyst performance and/or extending the life of a catalyst. The present invention provides a method for producing a platinum-loaded alumina catalyst comprising a platinum-loading step of loading platinum on an alumina support by adsorbing the platinum on the alumina support by electrostatic attraction, followed by calcination.

Classes IPC  ?

  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • B01J 23/42 - Platine
  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs
  • C07C 5/367 - Formation d'un cycle aromatique à six chaînons à partir d'un cycle à six chaînons existant, p. ex. déshydrogénation de l'éthylcyclohexane en éthylbenzène
  • C07C 15/06 - Toluène
  • C07B 61/00 - Autres procédés généraux

4.

OPERATION STATE ESTIMATION SYSTEM, TRAINING DEVICE, ESTIMATION DEVICE, STATE ESTIMATOR GENERATION METHOD, AND ESTIMATION METHOD

      
Numéro d'application 19652254
Statut En instance
Date de dépôt 2026-04-20
Date de la première publication 2026-09-03
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Irikura, Motoki
  • Furuichi, Kazuya
  • Ogiso, Ryoji
  • Kakuta, Nobuhiro

Abrégé

An operating condition estimation system includes: a learning apparatus that learns a condition estimator for estimating an operating condition of a fluid catalytic cracking apparatus from information that can be acquired while the fluid catalytic cracking apparatus is being operated, the fluid catalytic cracking apparatus including a reaction apparatus in which a catalyst is used and a regeneration apparatus for regenerating the catalyst; and an operating condition estimation apparatus that estimates the operating condition of the fluid catalytic cracking apparatus by using the condition estimator learned by the learning apparatus.

Classes IPC  ?

  • C10G 11/18 - Craquage catalytique, en l'absence d'hydrogène, des huiles d'hydrocarbures avec catalyseurs solides mobiles préchauffés selon la technique du "lit fluidisé"
  • G06F 16/22 - IndexationStructures de données à cet effetStructures de stockage
  • G06T 11/26 -

5.

DESIGN ASSISTANCE DEVICE, DESIGN ASSISTANCE PROGRAM AND DESIGN ASSISTANCE METHOD

      
Numéro d'application 19160098
Statut En instance
Date de dépôt 2024-04-08
Date de la première publication 2026-08-27
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawai, Eiji
  • Furuichi, Kazuya
  • Koyama, Takanori

Abrégé

A design of a system that produces a substance or energy using electric power. A design assistance device includes: a specification acquisition unit 21 configured to acquire specifications required for a final product produced in a plant that produces the final product from a material using electric power; a condition acquisition unit 22 configured to acquire conditions at a location of the plant that can affect suitability of a plurality of production routes for producing the final product from the material; and a production route selection unit 24 configured to select a recommended production route in the plant from the plurality of production routes, based on the specifications acquired by the specification acquisition unit 21 and the conditions acquired by the condition acquisition unit 22.

Classes IPC  ?

  • G06Q 10/0631 - Planification, affectation, distribution ou ordonnancement de ressources d’entreprises ou d’organisations
  • G06Q 50/04 - Fabrication

6.

HYDROGEN SUPPLY SYSTEM AND METHOD FOR OPERATING SAME

      
Numéro d'application 19160539
Statut En instance
Date de dépôt 2024-03-08
Date de la première publication 2026-08-20
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawakami, Madoka
  • Kawai, Hironori
  • Okada, Masataka
  • Nihira, Masayuki
  • Kohiyama, Terumi

Abrégé

[Problem] To provide a hydrogen generation system and a method for operating the same which enable a quick change in an amount of hydrogen gas to be supplied. [Solution] A hydrogen supply system (1) includes a vaporizer (3) for vaporizing a hydrogen carrier in liquid form; a dehydrogenation reactor (4) for generating hydrogen from the vaporized hydrogen carrier provided from the vaporizer through a dehydrogenation reaction; and a control device (30) for controlling a flow rate of the vaporized hydrogen carrier flowing through an outlet of the vaporizer. The control device may adjust an amount of heat for heating the hydrogen carrier to thereby regulate the flow rate of the vaporized hydrogen carrier flowing through the outlet of the vaporizer. The hydrogen supply system (1) further comprises: a main passage (L6) connected to an outlet of the dehydrogenation reactor and passing through a first vaporizer; a bypass passage (L7) connected to the main passage and bypassing the first vaporizer; and a first flow control valve (V6) provided in at least one of the main passage and the bypass passage.

Classes IPC  ?

  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs
  • C01B 3/50 - Séparation de l'hydrogène ou des gaz contenant de l'hydrogène à partir de mélanges gazeux, p. ex. purification

7.

WATER ELECTROLYSIS SYSTEM, METHOD FOR TAKING OUT ELECTROLYTIC CELL, AND ELECTROLYTIC CELL UNIT

      
Numéro d'application JP2026004985
Numéro de publication 2026/173012
Statut Délivré - en vigueur
Date de dépôt 2026-02-12
Date de publication 2026-08-20
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Asano, Yuya
  • Kawasaki, Tadahiro
  • Fujioka, Eri

Abrégé

Provided is a water electrolysis system enabling mounting of a plurality of electrolytic cells while suppressing deterioration in maintainability. The present invention provides a water electrolysis system comprising a water piping base, a product piping base, and an electrolytic cell unit. The electrolytic cell unit includes an electrolytic cell, a water piping part, a product piping part, and a support. The support is configured to unitize the electrolytic cell, the water piping part, and the product piping part. The water piping part is configured to be connected to the water piping base at a first connection part to constitute water piping through which water to be introduced into the electrolytic cell can circulate. The product piping part is configured to be connected to the product piping base at a second connection part to constitute product piping through which a fluid containing the product discharged from the electrolytic cell can circulate. The electrolytic cell unit is configured to be removable from the water electrolysis system.

Classes IPC  ?

  • C25B 15/00 - Conduite ou entretien des cellules
  • C25B 1/04 - Hydrogène ou oxygène par électrolyse de l'eau
  • C25B 9/00 - Cellules ou assemblages de cellulesÉléments de structure des cellulesAssemblages d'éléments de structure, p. ex. assemblages d'électrode-diaphragmeCaractéristiques des cellules relatives aux procédés
  • C25B 9/60 - Éléments de structure des cellules
  • C25B 9/70 - Assemblages comprenant plusieurs cellules

8.

HEAT FLUX ACQUISITION DEVICE, HEAT FLUX ACQUISITION SYSTEM, AND HEAT FLUX ACQUISITION METHOD OF FURNACE

      
Numéro d'application 19155476
Statut En instance
Date de dépôt 2023-02-20
Date de la première publication 2026-08-13
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Kazi, Ashfak Junichiro

Abrégé

[TASK] To easily acquire a local heat flux at a target point in a furnace. [TASK] To easily acquire a local heat flux at a target point in a furnace. [SOLUTION] The heat flux acquisition device 4 includes a processor configured to execute a process to acquire heat flux of a target object 12 in a furnace 2. The processor is configured to acquire a target point temperature measured by a temperature sensor 23 at a target point on an outer surface of the target object 12, acquire an ambient temperature corresponding to the target point, and calculate a local heat flux at the target point based on the target point temperature and the corresponding ambient temperature.

Classes IPC  ?

  • G01K 17/00 - Mesure d'une quantité de chaleur
  • F27D 21/00 - Aménagement des dispositifs de surveillanceAménagement des dispositifs de sécurité

9.

CATHODE ELECTRODE, COMPOSITE BODY OF CATHODE ELECTRODE AND BASE MATERIAL, ELECTROLYTIC REDUCTION DEVICE PROVIDED WITH CATHODE ELECTRODE, AND METHOD FOR PRODUCING COMPOSITE BODY OF CATHODE ELECTRODE AND BASE MATERIAL

      
Numéro d'application 19156494
Statut En instance
Date de dépôt 2024-02-15
Date de la première publication 2026-08-13
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Mitsuhashi, Yuri
  • Yamamoto, Takahiro
  • Mimura, Yu
  • Yamamoto, Kiyoshi
  • Sugiyama, Masakazu
  • Minegishi, Tsutomu
  • Takeda, Dai
  • Matsumoto, Jun

Abrégé

A cathode electrode which reduces selectivity of hydrogen and enables a catalytic reaction for producing olefinic hydrocarbons such as ethylene and alcohols such as ethanol through the carbon dioxide reduction reaction to be stably sustained with high efficiency over a long period. A cathode electrode which electrically reduces carbon dioxide, the cathode electrode includes copper, the copper is surface-modified with a cation exchange substance substituted with a metal ion.

Classes IPC  ?

  • C25B 11/089 - Alliages
  • C23C 14/16 - Matériau métallique, bore ou silicium sur des substrats métalliques, en bore ou en silicium
  • C23C 14/58 - Post-traitement
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 9/19 - Cellules comprenant des électrodes fixes de dimensions stablesAssemblages de leurs éléments de structure avec des diaphragmes
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/052 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques

10.

HYDROGEN PRODUCTION SYSTEM AND HYDROGEN PRODUCTION METHOD

      
Numéro d'application JP2025044258
Numéro de publication 2026/141112
Statut Délivré - en vigueur
Date de dépôt 2025-12-18
Date de publication 2026-07-02
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hirohata Osamu
  • Masuno Masaki
  • Hotta Ryutaro

Abrégé

[Problem] To produce hydrogen while avoiding the discharge of carbon dioxide by a simple constitution without depending on fossil fuels. [Solution] A hydrogen production system 1 comprises: a biogas generation device 2 that generates a biogas which contains first methane and carbon dioxide from biomass; a hydrogenation device 3 that generates second methane by hydrogenation of the carbon dioxide contained in the biogas, thereby generating a hydrogenated gas containing the first and second methane; a thermal decomposition device 5 that generates hydrogen and solid carbon by direct decomposition of the first and second methane; and a generated hydrogen supply line L3 that is connected to the hydrogenation device 3 and is for supplying some of the hydrogen generated by the thermal decomposition device 5 to the hydrogenation device 3. In a normal operation state, the hydrogenation device 3 generates the second methane using only the hydrogen supplied from the generated hydrogen supply line L3.

Classes IPC  ?

  • C01B 3/02 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène
  • C01B 3/24 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures
  • C12P 1/00 - Préparation de composés ou de compositions, non prévue dans les groupes , utilisant des micro-organismes ou des enzymesProcédés généraux de préparation de composés ou de compositions utilisant des micro-organismes ou des enzymes
  • C12P 5/02 - Préparation des hydrocarbures acycliques

11.

METHOD FOR REMOVING SALT, AND CARBON DIOXIDE ELECTROLYTIC REDUCTION APPARATUS

      
Numéro d'application JP2025043029
Numéro de publication 2026/134057
Statut Délivré - en vigueur
Date de dépôt 2025-12-10
Date de publication 2026-06-25
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Matsumoto Jun
  • Kiryu Asako
  • Takeda Dai
  • Ebe Hiroji
  • Sugiyama Masakazu
  • Minegishi Tsutomu

Abrégé

[Problem] To provide a method for removing salt, by which salt deposited on a cathode can be efficiently removed, and a carbon dioxide electrolytic reduction apparatus. [Solution] Provided is a method for removing salt deposited on the cathode of an electrolysis cell used for a carbon dioxide reduction reaction, wherein the cathode includes a catalyst and a cathode electrode provided with a first layer composed of a material including a conductive substance (A), the first layer has a void part, one surface of the first layer is arranged so as to be in contact with carbon dioxide in the cathode, and a gas-liquid mixed phase fluid including a carrier gas and a cleaning liquid capable of dissolving salt is supplied to the cathode.

Classes IPC  ?

  • C25B 15/00 - Conduite ou entretien des cellules
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 9/00 - Cellules ou assemblages de cellulesÉléments de structure des cellulesAssemblages d'éléments de structure, p. ex. assemblages d'électrode-diaphragmeCaractéristiques des cellules relatives aux procédés
  • C25B 9/23 - Cellules comprenant des électrodes fixes de dimensions stablesAssemblages de leurs éléments de structure avec des diaphragmes comprenant des membranes échangeuses d'ions dans ou sur lesquelles est incrusté du matériau pour électrode
  • C25B 11/032 - Électrodes à diffusion de gaz
  • C25B 11/052 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques
  • C25B 11/056 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau du substrat ou du support constitué d'une matière textile ou non tissée
  • C25B 11/065 - Carbone

12.

ZEOLITE COMPOSITE CATALYST AND METHOD FOR HYDROCRACKING CYCLIC COMPOUND HAVING FIVE-MEMBERED RING STRUCTURE USING SAME

      
Numéro d'application 19126498
Statut En instance
Date de dépôt 2023-11-08
Date de la première publication 2026-06-25
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hodoshima, Shinya
  • Imagawa, Kenichi
  • Motomiya, Azusa

Abrégé

[Problem] To selectively hydrocrack a cyclic compound having a five-membered ring structure included in an aromatic compound used as a hydrogen carrier. [Problem] To selectively hydrocrack a cyclic compound having a five-membered ring structure included in an aromatic compound used as a hydrogen carrier. [Solution] A zeolite composite catalyst used for hydrocracking a cyclic compound having a five-membered ring structure, the five-membered ring structure being included in an aromatic compound used as a hydrogen carrier, wherein the zeolite composite catalyst comprises aluminum or gallium, and wherein the zeolite composite catalyst comprises a zeolite with an MFI structure, and silica as a binder.

Classes IPC  ?

  • C10G 47/20 - Supports en alumino-silicates cristallins le catalyseur contenant d'autres métaux ou leurs composés
  • B01J 21/08 - Silice
  • B01J 29/40 - Zéolites aluminosilicates cristallinesLeurs composés isomorphes du type pentasil, p. ex. types ZSM-5, ZSM-8 ou ZSM-11
  • B01J 29/46 - Métaux du groupe du fer ou cuivre
  • C07C 5/333 - Procédés catalytiques
  • C10G 25/03 - Raffinage des huiles d'hydrocarbures, en l'absence d'hydrogène, au moyen d'absorbants ou d'adsorbants solides avec échangeur d'ions avec des alumino-silicates cristallins, p. ex. avec des tamis moléculaires

13.

METHOD FOR RECOVERING CARBON DIOXIDE AND CARBON DIOXIDE RECOVERING SYSTEM

      
Numéro de document 03310950
Statut En instance
Date de dépôt 2024-11-14
Date de disponibilité au public 2026-06-21
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hosono, Yasuo
  • Hirai, Toshihide
  • Natsuyama, Kazuto
  • Kotani, Yui

Abrégé

Le problème décrit par la présente invention est de fournir un procédé pouvant séparer et récupérer du dioxyde de carbone à partir d'une grande quantité de gaz d'échappement de combustion de manière à économiser de l'espace et à économiser de l'énergie. La solution selon l'invention porte sur un procédé de récupération de dioxyde de carbone comprenant : une étape d'absorption dans laquelle un gaz d'échappement de combustion comprenant du dioxyde de carbone est passé à travers un dispositif de séparation de type à écoulement radial pourvu d'un matériau absorbant de telle sorte que le matériau absorbant absorbe le dioxyde de carbone ; et une étape de libération dans laquelle de la vapeur est passée à travers le dispositif de séparation pour libérer le dioxyde de carbone du matériau absorbant.

Classes IPC  ?

  • B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
  • B01D 53/62 - Oxydes de carbone
  • C01B 32/50 - Anhydride carbonique

14.

METHOD FOR CREATING MACHINE LEARNING MODEL FOR ESTIMATING STATE OF FLUID IN TANK, AND METHOD FOR ESTIMATING STATE OF FLUID IN TANK USING MACHINE LEARNING MODEL

      
Numéro d'application 19118095
Statut En instance
Date de dépôt 2023-10-18
Date de la première publication 2026-05-07
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yasui, Takehito
  • Ito, Yuzuru
  • Kitamoto, Junko
  • Sugiyama, Satoshi

Abrégé

[Problem] To provide a method for creating a machine learning model that allows for a quick and accurate estimation of a state of a fluid in a tank. [Problem] To provide a method for creating a machine learning model that allows for a quick and accurate estimation of a state of a fluid in a tank. [Solution] The method for creating a machine learning model for estimating a state of a fluid in a tank, wherein the fluid contains a plurality of substances, the method comprising: creating a plurality of parameter sets, each set comprising tank information including at least a shape and size of the tank, operating conditions of the tank, and substance information including at least an amount, and one or more physical properties of each of the plurality of substances, wherein the plurality of parameter sets are created by varying the parameters of the operating conditions and the substance information; performing a numerical fluid dynamics analysis based on the plurality of parameter sets to provide a plurality of calculation results based on fluid information including distributions of physical quantities related to the fluid and/or an amount of each of the plurality of substances; and creating the machine learning model by a machine learning operation which involves training the machine learning model with teaching data including the plurality of parameter sets and the corresponding plurality of calculation results.

Classes IPC  ?

15.

SUPPORT METHOD, SUPPORT DEVICE, SUPPORT PROGRAM, AND METHOD FOR CONSTRUCTING DEVELOPMENT SUPPORT SYSTEM

      
Numéro d'application 19489670
Statut En instance
Date de dépôt 2023-07-31
Date de la première publication 2026-04-30
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yamaguchi, Yoshihiro
  • Mizutani, Takato
  • Nomura, Yoshinari
  • Furuichi, Kazuya

Abrégé

A method for supporting development of a model related to operation of a plant facility is executed by a processor and includes: acquiring facility identification information of the plant facility or process identification information of a process executed in the plant facility; acquiring target output information of the model; and outputting a processing element list including a processing element that is to constitute a development process of the model, based on the facility identification information or the process identification information and the target output information.

Classes IPC  ?

  • G06F 30/20 - Optimisation, vérification ou simulation de l’objet conçu

16.

MAGNETIC SEPARATION DEVICE, MAGNETIC SEPARATION METHOD, AND LIQUID SEPARATION SYSTEM

      
Numéro d'application JP2025023116
Numéro de publication 2026/078947
Statut Délivré - en vigueur
Date de dépôt 2025-06-26
Date de publication 2026-04-16
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • NATIONAL UNIVERSITY CORPORATION TOKYO UNIVERSITY OF AGRICULTURE AND TECHNOLOGY (Japon)
Inventeur(s)
  • Matsumoto, Osamu
  • Yoshida, Sho
  • Okubo, Hiroyuki
  • Taguchi, Tomoyuki
  • Okada, Yohei
  • Yamashita, Shohei

Abrégé

Provided are a magnetic separation device, magnetic separation method and liquid separation system with which it is possible to suitably perform liquid-liquid separation on a magnetic fluid and a non-magnetic fluid. The present invention provides a magnetic separation device comprising a liquid separation tank and a magnetic field generation unit. The liquid separation tank is configured to accommodate a liquid containing a magnetic fluid and a non-magnetic fluid. The magnetic field generation unit is configured to apply a magnetic field to the liquid, thereby attracting the magnetic fluid in the liquid and separating the magnetic fluid from the non-magnetic fluid.

Classes IPC  ?

  • B01D 17/06 - Séparation de liquides les uns des autres par l'électricité
  • B01D 17/12 - Dispositifs auxiliaires spécialement adaptés pour être utilisés avec les appareils pour séparer des liquides, p. ex. circuits de commande

17.

OPERATION SUPPORT DEVICE, OPERATION SUPPORT PROGRAM, AND OPERATION SUPPORT METHOD

      
Numéro d'application JP2025032501
Numéro de publication 2026/063393
Statut Délivré - en vigueur
Date de dépôt 2025-09-16
Date de publication 2026-03-26
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawai Eiji
  • Yoshioka Toshio

Abrégé

An operation support device 100 comprises: a supply source information acquiring unit that acquires a current value or a forecast value of a supply amount at a supply source that supplies a plant with a raw material or energy to be used in the plant; a plant information acquiring unit that acquires a current value or a forecast value of a usage amount of the raw material or energy at the plant; an adjustment parameter determining unit that determines a supply amount adjustment parameter for adjusting the supply amount or a usage amount adjustment parameter for adjusting the usage amount in accordance with variations in the supply amount and the usage amount on the basis of the current value or the forecast value of the supply amount, the current value or the forecast value of the usage amount, a time interval at which the supply amount can be adjusted at the supply source, and a time interval at which the usage amount can be adjusted at the plant; and an output unit that outputs the determined supply amount adjustment parameter or usage amount adjustment parameter.

Classes IPC  ?

18.

HYDRODESULFURIZATION CATALYST AND METHOD FOR PRODUCING PEPTIDE COMPOUND

      
Numéro d'application JP2025032754
Numéro de publication 2026/063449
Statut Délivré - en vigueur
Date de dépôt 2025-09-17
Date de publication 2026-03-26
Propriétaire
  • TOKUSHIMA UNIVERSITY (Japon)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Otaka, Akira
  • Denda, Masaya
  • Ohira, Mika
  • Ueda, Yasuhiro
  • Kiryu, Asako
  • Takeda, Dai

Abrégé

Provided is a hydrodesulfurization catalyst with which hydrodesulfurization of a sulfur atom bonded to an aromatic ring contained in a peptide compound can be selectively accelerated. The hydrodesulfurization catalyst is for accelerating the hydrodesulfurization of a sulfur atom bonded to an aromatic ring contained in a sulfur-containing peptide compound. The hydrodesulfurization catalyst comprises a support and a substance supported thereon, wherein the support is made of an inorganic oxide, the supported substance is either a metal including a transition metal element or an oxide thereof, and the support has an average pore diameter of 30 nm or smaller and a pore volume of 0.50 ml/g or greater.

Classes IPC  ?

  • B01J 23/44 - Palladium
  • B01J 35/60 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général caractérisés par leurs propriétés de surface ou leur porosité
  • B01J 35/63 - Volume des pores
  • B01J 35/64 - Diamètre des pores
  • C07B 61/00 - Autres procédés généraux
  • C07K 1/00 - Procédés généraux de préparation de peptides

19.

METAL CATALYST AND METHOD FOR HYDROGENOLYSIS OF CYCLIC COMPOUND USING SAME

      
Numéro d'application 19109264
Statut En instance
Date de dépôt 2023-09-04
Date de la première publication 2026-03-19
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • NATIONAL UNIVERSITY CORPORATION YOKOHAMA NATIONAL UNIVERSITY (Japon)
Inventeur(s)
  • Kubota, Yoshihiro
  • Inagaki, Satoshi
  • Orui, Yuki
  • Maekama, Yuki
  • Imagawa, Kenichi
  • Hodoshima, Shinya

Abrégé

[Problem] To perform selective hydrogenolysis of a cyclic compound that has a five-membered ring structure and that is included in a saturated cyclic compound used as a hydrogen carrier. [Problem] To perform selective hydrogenolysis of a cyclic compound that has a five-membered ring structure and that is included in a saturated cyclic compound used as a hydrogen carrier. [Solution] A metal catalyst used in hydrogenolysis of a cyclic compound that has a five-membered ring structure and that is included in a saturated cyclic compound used as a hydrogen carrier, comprises: a silica-based carrier as a catalyst carrier, and iridium or rhodium as a metal supported on the catalyst carrier.

Classes IPC  ?

  • B01J 23/46 - Ruthénium, rhodium, osmium ou iridium
  • B01J 21/08 - Silice
  • B01J 29/06 - Zéolites aluminosilicates cristallinesLeurs composés isomorphes
  • C07C 5/02 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant le même nombre d'atomes de carbone par hydrogénation

20.

REDUCTION CATALYST

      
Numéro d'application JP2025031260
Numéro de publication 2026/058792
Statut Délivré - en vigueur
Date de dépôt 2025-09-04
Date de publication 2026-03-19
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kado Shigeru
  • Watanabe Toshiyuki
  • Kiryu Asako
  • Maeda Kyogo

Abrégé

[Problem] To provide a reduction catalyst of which the catalytic activity is hardly reduced even in the presence of a poisonous substance. [Solution] This reduction catalyst comprises: a carrier containing at least one among titania, alumina, silica, ceria, zirconia, magnesia, and activated carbon; and at least one metal which is selected from among elements belonging to groups 8, 9, and 10 in the periodic table and is supported on the carrier.

Classes IPC  ?

  • B01J 23/44 - Palladium
  • B01J 23/42 - Platine
  • B01J 23/46 - Ruthénium, rhodium, osmium ou iridium
  • B01J 23/63 - Métaux du groupe du platine avec des terres rares ou des actinides
  • B01J 35/45 - Nanoparticules
  • B01J 37/16 - Réduction
  • C07B 61/00 - Autres procédés généraux
  • C07C 15/06 - Toluène
  • C07C 27/04 - Procédés impliquant la production simultanée de plusieurs classes de composés contenant de l'oxygène par réduction de composés oxygénés
  • C07C 39/04 - Phénol
  • C07C 209/36 - Préparation de composés contenant des groupes amino liés à un squelette carboné par réduction de liaisons azote-oxygène ou azote-azote par réduction de groupes nitro par réduction de groupes nitro liés à des atomes de carbone de cycles aromatiques à six chaînons
  • C07C 211/59 - Composés contenant des groupes amino liés à un squelette carboné ayant des groupes amino liés à des atomes de carbone de cycles aromatiques à six chaînons du squelette carboné ayant des groupes amino liés à des atomes de carbone de cycles aromatiques à six chaînons faisant partie de systèmes cycliques condensés du squelette carboné le squelette carboné étant substitué de plus par des atomes d'halogène ou par des groupes nitro ou nitroso

21.

PLANTOS

      
Numéro de série 99700868
Statut En instance
Date de dépôt 2026-03-13
Propriétaire Chiyoda Corporation (Japon)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 35 - Publicité; Affaires commerciales
  • 37 - Services de construction; extraction minière; installation et réparation
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception

Produits et services

Downloadable and recorded computer software for business administration, industrial plant engineering and management, testing quality standards, and data analysis; computer programs; recorded electronic data files featuring big data and data logs for business administration, industrial plant engineering and management, testing quality standards, and data analysis; downloadable still and animated image files featuring industrial plants, equipment, engineering, software, construction, AI, and science technology; downloadable electronic publications, namely, manuals in the fields of engineering, software, construction, AI, and science technology; pre-recorded CD-ROMs and DVDs featuring the aforementioned software, image files, and manuals Business data analysis and consultancy; business management analysis and business consultancy; business management; providing information concerning commercial sales; business administration; procurement services for others, namely, purchasing apparatus and equipment for industrial plants; marketing services; promoting the goods and services of others; import and export agencies; data processing services, namely, data input, electronic data collection, and information processing; systematization of data in computer databases; computerized file management; office functions, namely, searching files and filing documents; data processing consultancy; clerical, secretarial, and accountancy services; assistance in operating office machines; advisory, consultancy, and providing information relating to all the aforesaid services Building construction, repair, and maintenance services; building inspection in the course of building construction, repair, and maintenance; construction, installation, repair, and maintenance of industrial plants, facilities, apparatus, and equipment, including such services provided via remote monitoring systems; inspection of industrial plants, facilities, apparatus, and equipment prior to repair or maintenance; advisory, consultancy, and providing information relating to all the aforesaid services; construction project management services in the field of industrial plants, namely, management of and providing information relating to the progress and work status of the construction, installation, inspection, repair, and maintenance of industrial plants, facilities, apparatus, and equipment Design, programming, and maintenance of software, and providing online non-downloadable software for business administration, industrial plant engineering and management, testing quality standards, and data analysis; programming, and maintenance of software, and providing online non-downloadable software; engineering; design of industrial plants, equipment, and machines; technical testing and analysis of industrial plants and equipment; testing and evaluation of goods and services of others to determine conformity with quality standards; energy auditing and research; consulting in the field of energy measurement to improve energy efficiency; computer technology services, namely, electronic data analysis, storage, and conversion; remote monitoring of computer systems; providing technical information in the fields of engineering, software, construction, AI, and science technology; rental of computers and server memory space; advisory and consultancy relating to the aforesaid services

22.

PLANTOS

      
Numéro de série 99700882
Statut En instance
Date de dépôt 2026-03-13
Propriétaire Chiyoda Corporation (Japon)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 35 - Publicité; Affaires commerciales
  • 37 - Services de construction; extraction minière; installation et réparation
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception

Produits et services

Downloadable and recorded computer software for business administration, industrial plant engineering and management, testing quality standards, and data analysis; computer programs; recorded electronic data files featuring big data and data logs for business administration, industrial plant engineering and management, testing quality standards, and data analysis; downloadable still and animated image files featuring industrial plants, equipment, engineering, software, construction, AI, and science technology; downloadable electronic publications, namely, manuals in the fields of engineering, software, construction, AI, and science technology; pre-recorded CD-ROMs and DVDs featuring the aforementioned software, image files, and manuals Business data analysis and consultancy; business management analysis and business consultancy; business management; providing information concerning commercial sales; business administration; procurement services for others, namely, purchasing apparatus and equipment for industrial plants; marketing services; promoting the goods and services of others; import and export agencies; data processing services, namely, data input, electronic data collection, and information processing; systematization of data in computer databases; computerized file management; office functions, namely, searching files and filing documents; data processing consultancy; clerical, secretarial, and accountancy services; assistance in operating office machines; advisory, consultancy, and providing information relating to all the aforesaid services Building construction, repair, and maintenance services; building inspection in the course of building construction, repair, and maintenance; construction, installation, repair, and maintenance of industrial plants, facilities, apparatus, and equipment, including such services provided via remote monitoring systems; inspection of industrial plants, facilities, apparatus, and equipment prior to repair or maintenance; advisory, consultancy, and providing information relating to all the aforesaid services; construction project management services in the field of industrial plants, namely, management of and providing information relating to the progress and work status of the construction, installation, inspection, repair, and maintenance of industrial plants, facilities, apparatus, and equipment Design, programming, and maintenance of software, and providing online non-downloadable software for business administration, industrial plant engineering and management, testing quality standards, and data analysis; programming, and maintenance of software, and providing online non-downloadable software; engineering; design of industrial plants, equipment, and machines; technical testing and analysis of industrial plants and equipment; testing and evaluation of goods and services of others to determine conformity with quality standards; energy auditing and research; consulting in the field of energy measurement to improve energy efficiency; computer technology services, namely, electronic data analysis, storage, and conversion; remote monitoring of computer systems; providing technical information in the fields of engineering, software, construction, AI, and science technology; rental of computers and server memory space; advisory and consultancy relating to the aforesaid services

23.

CATALYST FOR AMMONIA SYNTHESIS AND METHOD FOR PRODUCING SAME

      
Numéro d'application JP2025031460
Numéro de publication 2026/054055
Statut Délivré - en vigueur
Date de dépôt 2025-09-05
Date de publication 2026-03-12
Propriétaire
  • NATIONAL UNIVERSITY CORPORATION TOKAI NATIONAL HIGHER EDUCATION AND RESEARCH SYSTEM (Japon)
  • NATIONAL INSTITUTE OF TECHNOLOGY (Japon)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Nagaoka, Katsutoshi
  • Sato, Katsutoshi
  • Naito, Takahiro
  • Asahi, Ryoji
  • Varadwaj, Pradeep Risikrishna
  • Inazu, Koji
  • Yagi, Fuyuki
  • Urasaki, Kohei

Abrégé

Provided is a technique for enhancing ammonia synthesis activity. The present invention provides a catalyst for ammonia synthesis, which contains metal particles and a promoter disposed close to the metal particles, wherein the proportion of Co in metal atoms contained in the metal particles is 50 atomic % or more, and the promoter contains one or more elements selected from the group consisting of rare earth elements, Zr, Hf, Ti, V, Ru, Rh, Ca, Sr, Fe and Mn.

Classes IPC  ?

  • B01J 23/83 - Catalyseurs contenant des métaux, oxydes ou hydroxydes métalliques non prévus dans le groupe du cuivre ou des métaux du groupe du fer en combinaison avec des métaux, oxydes ou hydroxydes prévus dans les groupes avec des terres rares ou des actinides
  • B01J 23/78 - Catalyseurs contenant des métaux, oxydes ou hydroxydes métalliques non prévus dans le groupe du cuivre ou des métaux du groupe du fer en combinaison avec des métaux, oxydes ou hydroxydes prévus dans les groupes avec des métaux alcalins ou alcalino-terreux ou du béryllium
  • B01J 37/04 - Mélange
  • B01J 37/08 - Traitement thermique
  • B01J 37/16 - Réduction
  • C01C 1/04 - Préparation d'ammoniac par synthèse

24.

CATHODE ELECTRODE, COMPOSITE OF CATHODE ELECTRODE AND BASE MATERIAL, ELECTROLYTIC REDUCTION DEVICE PROVIDED WITH CATHODE ELECTRODE, AND METHOD FOR PRODUCING COMPOSITE OF CATHODE ELECTRODE AND BASE MATERIAL

      
Numéro de document 03291616
Statut En instance
Date de dépôt 2024-05-30
Date de disponibilité au public 2026-03-01
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Mitsuhashi, Yuri
  • Yamamoto, Takahiro
  • Mimura, Yu
  • Yamamoto, Kiyoshi
  • Sugiyama, Masakazu
  • Minegishi, Tsutomu
  • Takeda, Dai
  • Matsumoto, Jun

Abrégé

Provided is a cathode electrode with which it is possible to prevent an improvement in hydrogen selectivity even if a catalyst layer is immersed in an electrolyte, and with which a catalytic reaction that produces, by a reduction reaction of carbon dioxide, an olefin-based hydrocarbon such as ethylene or an alcohol such as an ethanol can stably maintain high efficiency over a long period of time. This cathode electrode electrically reduces carbon dioxide, the cathode electrode including a first layer positioned on a surface layer of the cathode electrode and having a first thickness, and a second layer adjacent to the first layer in the thickness direction and having a second thickness. The first layer includes copper, the first layer is surface-modified with a cation exchange material substituted with metal ions, and the second layer is a mixed layer of copper and carbon.

Classes IPC  ?

  • B01J 23/72 - Cuivre
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • B01J 37/12 - Oxydation
  • B01J 37/16 - Réduction
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/07 - Composés contenant au moins un atome d’oxygène
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 9/19 - Cellules comprenant des électrodes fixes de dimensions stablesAssemblages de leurs éléments de structure avec des diaphragmes
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/053 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques caractérisées par des revêtements électro-catalytiques multicouches
  • C25B 11/065 - Carbone
  • C25B 11/077 - Oxyde de métal non noble
  • C25B 11/089 - Alliages
  • C25B 11/091 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’au moins un élément catalytique et d’au moins un composé catalytiqueÉlectrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé de plusieurs éléments catalytiques ou composés catalytiques

25.

DEHYDROGENATION-HYDROGENATION SYSTEM

      
Numéro d'application JP2025028788
Numéro de publication 2026/042719
Statut Délivré - en vigueur
Date de dépôt 2025-08-15
Date de publication 2026-02-26
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawai, Hironori
  • Nakajima, Yusuke
  • Nakagawa, Tomoyuki
  • Imagawa, Kenichi
  • Hayashi, Chiaki

Abrégé

Provided is a dehydrogenation-hydrogenation system capable of suitably controlling reaction temperatures of a dehydrogenation reaction and a hydrogenation reaction while achieving a compact configuration. According to the present invention, provided is a dehydrogenation-hydrogenation system for selectively performing a dehydrogenation reaction of a hydrogenated aromatic compound and a hydrogenation reaction of an aromatic compound, the system comprising a reactor and a raw material supply unit, wherein the reactor is filled with a catalyst that can be used for both the dehydrogenation reaction and the hydrogenation reaction, and the raw material supply unit is configured to selectively supply a raw material for the dehydrogenation reaction and a raw material for the hydrogenation reaction to the reactor. The dehydrogenation-hydrogenation system is configured to be capable of performing different temperature controls on the reactor during the dehydrogenation reaction and during the hydrogenation reaction.

Classes IPC  ?

  • C07C 5/10 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant le même nombre d'atomes de carbone par hydrogénation de cycles aromatiques à six chaînons
  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs
  • C07B 61/00 - Autres procédés généraux
  • C10G 45/44 - Hydrogénation des hydrocarbures aromatiques
  • C25B 1/04 - Hydrogène ou oxygène par électrolyse de l'eau

26.

DEHYDROGENATION SYSTEM

      
Numéro d'application JP2025028525
Numéro de publication 2026/038554
Statut Délivré - en vigueur
Date de dépôt 2025-08-12
Date de publication 2026-02-19
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawai, Hironori
  • Okada, Masataka
  • Hayashi, Chiaki
  • Kashima, Genki
  • Takemura, Masamori

Abrégé

Provided is a dehydrogenation system which can be suitably achieved even in a facility in which a multitubular heat exchange type reactor is not installed. The present invention provides a dehydrogenation system for generating hydrogen from a hydrogenated aromatic compound. The dehydrogenation system has adiabatic reactors in a plurality of stages, each of the adiabatic reactors in the plurality of stages being filled with a dehydrogenation catalyst and configured so as to generate hydrogen from a hydrogenated aromatic compound by a dehydrogenation reaction, and the inlet temperature of the hydrogenated aromatic compound in each stage of the adiabatic reactors in the plurality of stages being 500°C or less.

Classes IPC  ?

  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs

27.

DEHYDROGENATION SYSTEM AND HYDROGEN STORAGE/TRANSPORT SYSTEM

      
Numéro d'application JP2025028146
Numéro de publication 2026/034596
Statut Délivré - en vigueur
Date de dépôt 2025-08-07
Date de publication 2026-02-12
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawai, Hironori
  • Okada, Masataka
  • Hayashi, Chiaki
  • Nakajima, Yusuke
  • Ara, Tomohiro

Abrégé

Provided are a dehydrogenation system and a hydrogen storage/transport system capable of suitably removing heavy components as impurities. The present invention provides a dehydrogenation system for a hydrogenated aromatic compound, the dehydrogenation system comprising a dehydrogenation reaction unit, a first separation unit, and a second separation unit. The dehydrogenation reaction unit is configured to generate a mixed product containing hydrogen, an aromatic compound, and heavy components from a hydrogenated aromatic compound through a dehydrogenation reaction. The first separation unit is configured to separate the heavy components and a portion of the aromatic compound from the mixed product of the dehydrogenation reaction unit as a liquid phase product through gas-liquid separation. The second separation unit is configured to separate a gas phase product of the first separation unit into hydrogen and an aromatic compound through gas-liquid separation.

Classes IPC  ?

  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs

28.

HYDROGENATION CATALYST, AND FLOW-TYPE ORGANIC SYNTHESIS SYSTEM AND METHOD FOR PRODUCING HYDROGENATED ORGANIC COMPOUND USING SAME

      
Numéro d'application 18997231
Statut En instance
Date de dépôt 2023-07-12
Date de la première publication 2026-02-05
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kado, Shigeru
  • Watanabe, Toshiyuki
  • Kiryu, Asako
  • Maeda, Kyogo

Abrégé

A hydrogenation catalyst is used in hydrogenation of an aromatic halonitro compound. The hydrogenation catalyst includes a carrier including at least one of titania and alumina and palladium supported on the carrier. The palladium has an average particle diameter of 9.7 nm or less.

Classes IPC  ?

  • B01J 23/44 - Palladium
  • B01J 21/06 - Silicium, titane, zirconium ou hafniumLeurs oxydes ou hydroxydes
  • B01J 35/30 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général caractérisés par leurs propriétés physiques
  • B01J 35/45 - Nanoparticules
  • B01J 35/64 - Diamètre des pores
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • B01J 37/08 - Traitement thermique
  • C07C 201/12 - Préparation de composés nitrés par des réactions ne créant pas de groupes nitro

29.

LIQUEFACTION SYSTEM AND LIQUEFACTION METHOD

      
Numéro d'application JP2025025549
Numéro de publication 2026/023532
Statut Délivré - en vigueur
Date de dépôt 2025-07-17
Date de publication 2026-01-29
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Watanabe, Naoki
  • Shimizu, Yasunori
  • Yamauchi, Natsuru
  • Shiozaki, Tetsu

Abrégé

The present invention provides a liquefaction system and a liquefaction method that make it possible to suppress energy consumption and that are less likely to cause facility trouble. According to the present invention, provided is a liquefaction system comprising a compression unit, a decompression unit, and a circulation unit, wherein: the compression unit is configured to use a plurality of stages of compressors to gradually increase the pressure of carbon dioxide to a target pressure for liquefaction of carbon dioxide; the decompression unit is configured to use a plurality of stages of expansion parts to gradually reduce the pressure of the carbon dioxide which has been liquefied by the compression unit to a target pressure; and the circulation unit is configured to circulate, to the compression unit via a plurality of paths which are independent of each other, flash gas that is generated at each stage of the plurality of stages of expansion parts.

Classes IPC  ?

  • F25J 1/00 - Procédés ou appareils de liquéfaction ou de solidification des gaz ou des mélanges gazeux
  • B01D 53/26 - Séchage des gaz ou vapeurs
  • F25J 3/08 - Séparation des impuretés gazeuses des gaz ou des mélanges gazeux

30.

CATHODE ELECTRODE, COMPOSITE OF CATHODE ELECTRODE AND SUBSTRATE, ELECTROLYTIC REDUCTION APPARATUS HAVING CATHODE ELECTRODE, AND METHOD OF MANUFACTURING COMPOSITE OF CATHODE ELECTRODE AND SUBSTRATE

      
Numéro de document 03263242
Statut En instance
Date de dépôt 2023-07-24
Date de disponibilité au public 2026-01-19
Propriétaire
  • FURUKAWA ELECTRIC CO., LTD. (Japon)
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Yamamoto, Takahiro
  • Yamamoto, Kiyoshi
  • Mimura, Yu
  • Sugiyama, Masakazu
  • Minegishi, Tsutomu
  • Yamaguchi, Shingi
  • Matsumoto, Jun
  • Takeda, Dai

Abrégé

Provided are: a cathode electrode that can stably sustain a catalytic reaction producing an olefinic hydrocarbon such as ethylene and an alcohol such as ethanol by a reduction reaction of carbon dioxide over a long term with high efficiency; and a composite of a cathode electrode and a substrate. A cathode electrode that electrically reduces carbon dioxide, including: copper; and at least one additive element selected from the group consisting of aluminum, boron, gallium, zinc, titanium, and silicon, wherein the copper contains: zerovalent copper; and monovalent copper and/or divalent copper.

Classes IPC  ?

  • B01J 23/72 - Cuivre
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/07 - Composés contenant au moins un atome d’oxygène
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/053 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques caractérisées par des revêtements électro-catalytiques multicouches
  • C25B 11/061 - Métal ou alliage
  • C25B 11/065 - Carbone
  • C25B 11/077 - Oxyde de métal non noble
  • C25B 11/091 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’au moins un élément catalytique et d’au moins un composé catalytiqueÉlectrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé de plusieurs éléments catalytiques ou composés catalytiques

31.

HYDROGEN SUPPLY SYSTEM AND METHOD FOR OPERATING SAME

      
Numéro de document 03285301
Statut En instance
Date de dépôt 2024-03-08
Date de disponibilité au public 2026-01-19
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawakami, Madoka
  • Kawai, Hironori
  • Okada, Masataka
  • Nihira, Masayuki
  • Kohiyama, Terumi

Abrégé

Provided are a hydrogen generation system which enables a quick change in an amount of hydrogen gas to be supplied. A hydrogen supply system includes a vaporizer for vaporizing a liquid hydrogen carrier; a dehydrogenation reactor for generating hydrogen from the vaporized hydrogen carrier through a dehydrogenation reaction; and a control device for controlling a flow rate of the vaporized hydrogen carrier at an outlet of the vaporizer. The control device may adjust an amount of heat for heating the hydrogen carrier to regulate the flow rate of the vaporized hydrogen carrier. The hydrogen supply system further comprises: a main passage connected to an outlet of the dehydrogenation reactor and passing through a first vaporizer; a bypass passage connected to the main passage and bypassing the first vaporizer; and a first flow control valve provided in the main passage and/or the bypass passage.

Classes IPC  ?

  • B01J 4/00 - Dispositifs d'alimentationDispositifs de commande d'alimentation ou d'évacuation
  • B01J 7/00 - Appareillage pour la production de gaz
  • C01B 3/00 - HydrogèneMélanges gazeux contenant de l'hydrogèneSéparation de l'hydrogène à partir de mélanges en contenantPurification de l'hydrogène
  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs
  • F02M 21/02 - Appareils pour alimenter les moteurs en combustibles non liquides, p. ex. en combustibles gazeux stockés sous forme liquide en combustibles gazeux
  • F17C 9/04 - Récupération de l'énergie thermique

32.

TRAINED MODEL, CALCULATION DEVICE, CALCULATION METHOD, CALCULATION PROGRAM, AND NON-TRANSITORY STORAGE MEDIUM

      
Numéro d'application JP2025024222
Numéro de publication 2026/014385
Statut Délivré - en vigueur
Date de dépôt 2025-07-04
Date de publication 2026-01-15
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Irikura, Motoki
  • Kanda, Munekazu
  • Sato, Hideki
  • Tabata, Kazuyoshi
  • Ishigami, Takahiro
  • Miyake, Shuto

Abrégé

Provided are a trained model, a calculation device, a calculation method, a calculation program, and a non-transitory storage medium that enable accurate calculation of culture-related concentrations using a biochemical reaction model. The trained model is trained using culture conditions serving as explanatory variables for when cells are cultured in a culture vessel, and a parameter of a physical model serving as the response variable that is used when a relevant concentration relevant to the culture conditions is calculated. The calculation device is provided with a culture condition input unit, a parameter acquisition unit, and a first concentration calculation unit. The culture condition input unit inputs a first culture condition as an explanatory variable to the trained model. When the first culture conditions are inputted to the trained model, the parameter acquisition unit acquires a first parameter outputted as the response variable from the trained model. The first concentration calculation unit calculates a first relevant concentration relevant to the first culture condition on the basis of the acquired first parameter and the physical model.

Classes IPC  ?

  • G16B 40/20 - Analyse de données supervisée
  • C12M 1/34 - Mesure ou test par des moyens de mesure ou de détection des conditions du milieu, p. ex. par des compteurs de colonies

33.

LIQUID SEPARATION SYSTEM

      
Numéro d'application JP2025024225
Numéro de publication 2026/014386
Statut Délivré - en vigueur
Date de dépôt 2025-07-04
Date de publication 2026-01-15
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • NATIONAL UNIVERSITY CORPORATION TOKYO UNIVERSITY OF AGRICULTURE AND TECHNOLOGY (Japon)
Inventeur(s)
  • Matsumoto, Osamu
  • Yoshida, Sho
  • Okubo, Hiroyuki
  • Taguchi, Tomoyuki
  • Okada, Yohei
  • Yamashita, Shohei

Abrégé

The present invention provides a liquid separation system which is capable of quickly and efficiently performing a liquid separation operation. According to the present invention, there is provided a liquid separation system which comprises a storage part, a magnetism application part, and a separation part. The storage part is configured so as to store a first solvent which is a non-polar solvent and a second solvent which is a polar solvent. The magnetism application part is configured so as to impart magnetism to one of the first solvent and the second solvent by supplying magnetic nanoparticles that can be dispersed in one of the first solvent and the second solvent, thereby forming the one of the solvents into a magnetic fluid. The separation part is configured so as to separate the first solvent and the second solvent in the storage part by means of a magnetic force. The magnetic nanoparticles are modified with a surface modifier which is composed of a compound having a phosphonic acid group, an isocyanate group, a carboxy group, an alcohol group, a thiol group, or an amino group.

Classes IPC  ?

  • B01D 17/02 - Séparation de liquides non miscibles

34.

Information processing device, data structure, information processing program, and information processing method

      
Numéro d'application 18997853
Numéro de brevet 12517920
Statut Délivré - en vigueur
Date de dépôt 2022-08-05
Date de la première publication 2026-01-06
Date d'octroi 2026-01-06
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Sato, Hideki
  • Ikawa, Shizuka
  • Irikura, Motoki

Abrégé

An information processing device, comprising: a first acquisition unit 127; a second acquisition unit 128; and an extraction unit 129, wherein the first acquisition unit 127 acquires a first data set including at least a first process data related to a first process and first system data related to a system where the first process is performed, the second acquisition unit 128 acquires a second data set including at least a second process data related to a second process and second system data related to a system where the second process is performed, and the extraction unit 129 extracts at least one of a pair of the first process data and the second process data whose contents are the same as or similar to each other and a pair of the first system data and the second system data whose contents are the same as or similar to each other from the first data set and the second data set, and stores at least one of the pairs extracted in a storage unit in a manner where their correspondence relationship is identifiable.

Classes IPC  ?

  • G06F 16/25 - Systèmes d’intégration ou d’interfaçage impliquant les systèmes de gestion de bases de données
  • G06F 16/28 - Bases de données caractérisées par leurs modèles, p. ex. des modèles relationnels ou objet

35.

PROGRESS PREDICTION METHOD, PROGRESS PREDICTION DEVICE, AND PROGRESS PREDICTION PROGRAM FOR PROJECT

      
Numéro d'application 19126562
Statut En instance
Date de dépôt 2022-12-09
Date de la première publication 2026-01-01
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Furuichi, Kazuya
  • Oki, Eisuke
  • Yasui, Takehito

Abrégé

[TASK] To make it possible to predict, at an intermediate point of a step in an ongoing project, a progress including subsequent due dates with simple processing. [TASK] To make it possible to predict, at an intermediate point of a step in an ongoing project, a progress including subsequent due dates with simple processing. [SOLUTION] A progress prediction method for a project including at least one step includes: acquiring data of a progress plan including a progress level of the step and an execution timing corresponding thereto; acquiring data of progress performance including a progress level of a completed part of the progress plan and an execution timing corresponding thereto; calculating, based on the data of the progress performance, a performance period from a reference time point of the step to a predetermined time point at which a predetermined progress level was achieved; calculating, based on the data of the progress plan, a plan period from the reference time point of the step to a time point at which a progress level same as the predetermined progress level is achieved; calculating, based on the performance period and the plan period, a progress evaluation index regarding progress of the step; and predicting, based on the progress evaluation index, data of the progress performance after the predetermined time point.

Classes IPC  ?

  • G06Q 10/0637 - Gestion ou analyse stratégiques, p. ex. définition d’un objectif ou d’une cible pour une organisationPlanification des actions en fonction des objectifsAnalyse ou évaluation de l’efficacité des objectifs
  • G06Q 10/0631 - Planification, affectation, distribution ou ordonnancement de ressources d’entreprises ou d’organisations
  • G06Q 10/0639 - Analyse des performances des employésAnalyse des performances des opérations d’une entreprise ou d’une organisation

36.

CATHODE ELECTRODE, COMPOSITE BODY OF CATHODE ELECTRODE AND BASE MATERIAL, ELECTROLYTIC REDUCTION DEVICE PROVIDED WITH CATHODE ELECTRODE, AND METHOD FOR PRODUCING COMPOSITE BODY OF CATHODE ELECTRODE AND BASE MATERIAL

      
Numéro de document 03282926
Statut En instance
Date de dépôt 2024-02-15
Date de disponibilité au public 2025-11-29
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Mitsuhashi, Yuri
  • Yamamoto, Takahiro
  • Mimura, Yu
  • Yamamoto, Kiyoshi
  • Sugiyama, Masakazu
  • Minegishi, Tsutomu
  • Takeda, Dai
  • Matsumoto, Jun

Classes IPC  ?

  • B01J 31/10 - Résines échangeuses d'ions sulfonées
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • B01J 37/12 - Oxydation
  • C07C 1/02 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone
  • C07C 11/04 - Éthylène
  • C23C 20/08 - Revêtement avec des matériaux inorganiques autres que des matériaux métalliques avec des composés, des mélanges ou des solutions solides, p. ex. borures, carbures, nitrures
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/07 - Composés contenant au moins un atome d’oxygène
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/052 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques
  • C25B 11/055 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau du substrat ou du support
  • C25B 11/061 - Métal ou alliage
  • C25B 11/065 - Carbone
  • C25B 11/073 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique

37.

PROGRAM, INFORMATION PROCESSING DEVICE AND METHOD

      
Numéro d'application 19269154
Statut En instance
Date de dépôt 2025-07-15
Date de la première publication 2025-11-06
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Sato, Hideki
  • Kawai, Eiji

Abrégé

An information processing device including a processor that acquires an operating parameter regarding a reaction device that performs a predetermined chemical reaction and information regarding a substance used in the chemical reaction in the reaction device, the information processing device determines a parameter of a first reaction state predicted as the reaction state of the substance when the chemical reaction is performed with the operating parameter in the reaction device, the information processing device learns a prediction model that outputs a parameter of a second reaction state that is a reaction state of the substance in response to inputting information regarding the substance and the operating parameter by using the acquired information regarding the substance, the acquired operating parameter and the parameter of the first reaction state as learning data, and the information processing device stores the learned prediction model in a storage unit.

Classes IPC  ?

  • G16C 20/10 - Analyse ou conception des réactions, des synthèses ou des procédés chimiques
  • G06F 30/27 - Optimisation, vérification ou simulation de l’objet conçu utilisant l’apprentissage automatique, p. ex. l’intelligence artificielle, les réseaux neuronaux, les machines à support de vecteur [MSV] ou l’apprentissage d’un modèle
  • G16C 20/70 - Apprentissage automatique, exploration de données ou chimiométrie

38.

CALCULATION MODEL GENERATION METHOD, CALCULATION METHOD, CALCULATION MODEL, CALCULATION MODEL GENERATION PROGRAM, AND CALCULATION MODEL GENERATION DEVICE

      
Numéro d'application JP2025014101
Numéro de publication 2025/229841
Statut Délivré - en vigueur
Date de dépôt 2025-04-08
Date de publication 2025-11-06
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Irikura, Motoki
  • Ishigami, Takahiro
  • Tabata, Kazuyoshi

Abrégé

Provided are a calculation model generation method, a calculation method, a calculation model, a calculation model generation program, and a calculation model generation device with which it is possible to accurately obtain a mass transfer capacity coefficient (kLa), a temperature, a dissolved oxygen concentration or a dissolved carbon dioxide concentration, a turbidity, a substrate concentration, or a product concentration. In the calculation model generation method, an operation condition of a first container, a physical property of a content accommodated in the first container, and a shape of the first container are acquired as first input parameters. A first calculation value serving as a value of a first indicator (a mass transfer capacity coefficient (kLa), a temperature, a dissolved oxygen concentration or a dissolved carbon dioxide concentration, a turbidity, a substrate concentration, or a product concentration) calculated without using a calculation model is acquired on the basis of a mass concentration measured at a plurality of points in the first container when the first container is operated under the operation condition. A calculation model is generated on the basis of a generation condition including at least one of a first condition relating to mass transfer between gas-liquid phases in the first container, a second condition relating to the size of air bubbles, a third condition relating to coalescence and/or division of air bubbles, a fourth condition relating to a force received by air bubbles, and a fifth condition relating to fluid motion including a gas-liquid phase. A value of the first indicator at a plurality of points in the first container is calculated as a second calculation value by inputting the first input parameters to the calculation model, and the generation condition is updated so that a difference between the first calculation value and the second calculation value is less than a threshold value, thereby generating an updated calculation model.

Classes IPC  ?

  • G01N 13/04 - Recherche des effets osmotiques
  • C12M 1/00 - Appareillage pour l'enzymologie ou la microbiologie
  • G16Z 99/00 - Matière non prévue dans les autres groupes principaux de la présente sous-classe

39.

DRAWING GENERATION METHOD AND DRAWING GENERATION PROGRAM FOR STRUCTURE MEMBER, NOISE REMOVAL METHOD AND NOISE REMOVAL PROGRAM FOR POINT GROUP DATA, AND BOLT POSITION ACQUISITION METHOD AND BOLT POSITION ACQUISITION PROGRAM

      
Numéro d'application JP2025014978
Numéro de publication 2025/220700
Statut Délivré - en vigueur
Date de dépôt 2025-04-16
Date de publication 2025-10-23
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Mitarai Yasuhiro
  • Jo Junghee
  • Shin Yongwoo
  • Inagaki Hironobu
  • Mitsuhashi Kazuki

Abrégé

[Problem] To accurately generate a drawing of a structural member including a plurality of bolt holes corresponding to a plurality of bolts mounted on a foundation. [Solution] An information processing system 100 including one or more information processing devices 3 and 103 is configured to acquire point group data generated by measuring a plurality of bolts 10 mounted on a foundation 11, acquire a three-dimensional model for positioning for the outer shape of each bolt, determine the position of the three-dimensional model for positioning by fitting processing of the three-dimensional model for positioning for the point group data of each bolt, and generate drawing data of the structure member having the plurality of bolt holes formed therein, on the basis of the position of the three-dimensional model for positioning.

Classes IPC  ?

  • G06F 30/13 - Conception architecturale, p. ex. conception architecturale assistée par ordinateur [CAAO] relative à la conception de bâtiments, de ponts, de paysages, d’usines ou de routes
  • E02D 27/00 - Fondations servant d'infrastructures
  • G06F 30/10 - CAO géométrique
  • G06F 30/12 - CAO géométrique caractérisée par des moyens d’entrée spécialement adaptés à la CAO, p. ex. interfaces utilisateur graphiques [UIG] spécialement adaptées à la CAO

40.

Method for producing ethylene oxide

      
Numéro d'application 18022767
Numéro de brevet 12540125
Statut Délivré - en vigueur
Date de dépôt 2020-09-01
Date de la première publication 2025-10-16
Date d'octroi 2026-02-03
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Shimura, Mitsunori
  • Takeda, Dai
  • Matsumoto, Jun

Abrégé

A method for producing ethylene oxide includes an ethylene oxide generation step 1 in which a first mixture containing ethylene oxide is obtained by causing ethylene and oxygen to react in presence of a diluent gas; a gas-liquid separation step 2 in which the first mixture is gas-liquid separated into a second mixture containing ethylene, oxygen, and carbon dioxide and a third mixture containing ethylene oxide and water; a carbon dioxide separation step 3 in which carbon dioxide is separated from the second mixture; and an electrolytic reduction step 4 in which the carbon dioxide is electrolytically reduced to obtain a fourth mixture containing ethylene, methane, and carbon dioxide and to obtain oxygen. In the carbon dioxide separation step, carbon dioxide is separated from the fourth mixture. In the ethylene oxide generation step, the second mixture and the fourth mixture, from which carbon dioxide has been removed, and the oxygen obtained in the electrolytic reduction step are used as raw material and a diluent gas.

Classes IPC  ?

  • C07D 301/10 - Synthèse du cycle de l'oxirane par oxydation de composés non saturés, ou de mélanges de composés non saturés et de composés saturés par l'air ou l'oxygène moléculaire en phase gazeuse avec des catalyseurs contenant de l'argent ou de l'or

41.

Production system

      
Numéro d'application 18997888
Numéro de brevet 12449794
Statut Délivré - en vigueur
Date de dépôt 2022-08-05
Date de la première publication 2025-08-21
Date d'octroi 2025-10-21
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Sato, Hideki

Abrégé

A production system includes a first device, a second device, a first sensor, a second sensor and a control device. The control device controls the first device based on a first condition list including a plurality of control parameters of the first device, and controls the second device based on a second condition list including a plurality of control parameters of the second device. The control device acquires a first processed product information, acquires a modified value of the second condition list based on a second model that outputs a modified value of the second condition list in response to the first processed product information, acquires the second condition list modified based on the second condition list and the modified value of the second condition list, and controls the second device based on the modified second condition list.

Classes IPC  ?

  • G05B 19/418 - Commande totale d'usine, c.-à-d. commande centralisée de plusieurs machines, p. ex. commande numérique directe ou distribuée [DNC], systèmes d'ateliers flexibles [FMS], systèmes de fabrication intégrés [IMS], productique [CIM]

42.

Assistance method, assistance device, and assistance program

      
Numéro d'application 18997580
Numéro de brevet 12468295
Statut Délivré - en vigueur
Date de dépôt 2022-08-05
Date de la première publication 2025-08-14
Date d'octroi 2025-11-11
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Sato, Hideki
  • Ikawa, Shizuka
  • Irikura, Motoki

Abrégé

An assistance method comprising steps of: acquiring information related to a process or a reduced system when the process to be performed in a plant is performed in the reduced system with a smaller scale than the plant; and generating at least a part of a model for predicting a process to be performed in the plant, or an intermediate system with a scale between the plant and the reduced system, based on a relationship between systems when the process is performed in a plurality of systems of different scales, from the information.

Classes IPC  ?

  • G05B 19/418 - Commande totale d'usine, c.-à-d. commande centralisée de plusieurs machines, p. ex. commande numérique directe ou distribuée [DNC], systèmes d'ateliers flexibles [FMS], systèmes de fabrication intégrés [IMS], productique [CIM]
  • G06F 30/20 - Optimisation, vérification ou simulation de l’objet conçu

43.

SERVICE PROVISION SYSTEM AND SERVICE PROVISION METHOD

      
Numéro d'application JP2024002926
Numéro de publication 2025/163768
Statut Délivré - en vigueur
Date de dépôt 2024-01-30
Date de publication 2025-08-07
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Yoneyama, Toru

Abrégé

This service provision system provides equipment management support services to customer users. The service provision system: assigns, to a first customer user, a first management group 100 to which the first customer user can access; assigns, to a second customer user, a second management group 110 to which the second customer user can access; associates a first application 101 generated in response to an instruction from the first customer user with the first management group 100; associates a second application 111 generated in response to an instruction from the second customer user with the second management group 110; stores, in a first storage unit 102 associated with the first management group 100, first data relating to construction, operation, or maintenance of first management equipment managed by the first customer user; and stores, in a second storage unit 112 associated with the second management group 110, second data relating to construction, operation, or maintenance of second management equipment managed by the second customer user.

Classes IPC  ?

44.

SUPPORT METHOD, SUPPORT DEVICE, AND SUPPORT PROGRAM

      
Numéro d'application JP2025000926
Numéro de publication 2025/158965
Statut Délivré - en vigueur
Date de dépôt 2025-01-15
Date de publication 2025-07-31
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Furuichi Kazuya
  • Yamaguchi Yoshihiro

Abrégé

Provided is a method for supporting implementation of a model related to operation of plant equipment. The method is executed by a processor, and includes: acquiring equipment identification information of plant equipment or process identification information of a process executed in the plant equipment; acquiring parameter identification information of a parameter acquired in operation of the plant equipment; acquiring time-series data of the parameter; selecting a model recommended to be implemented from among a plurality of models related to operation of the plant equipment on the basis of the equipment identification information or the process identification information, the parameter identification information, and the time-series data of the parameter; and outputting information of the selected model.

Classes IPC  ?

  • G06N 20/00 - Apprentissage automatique
  • G05B 13/04 - Systèmes de commande adaptatifs, c.-à-d. systèmes se réglant eux-mêmes automatiquement pour obtenir un rendement optimal suivant un critère prédéterminé électriques impliquant l'usage de modèles ou de simulateurs
  • G05B 19/418 - Commande totale d'usine, c.-à-d. commande centralisée de plusieurs machines, p. ex. commande numérique directe ou distribuée [DNC], systèmes d'ateliers flexibles [FMS], systèmes de fabrication intégrés [IMS], productique [CIM]
  • G06F 8/36 - Réutilisation de logiciel

45.

FLUID STATE ESTIMATION SYSTEM

      
Numéro d'application 19081525
Statut En instance
Date de dépôt 2025-03-17
Date de la première publication 2025-07-17
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Furuichi, Kazuya
  • Irikura, Motoki
  • Kaji, Junichiro
  • Hori, Tatsuro
  • Kakuta, Nobuhiro
  • Nakayama, Ryo

Abrégé

A fluid state estimation system includes: a learning device that learns an estimation model for estimating a state of a fluid in at least any one of an inside of a component of a plant, an outside of the component of the plant and an inside of a building of the plant, an outside of the building of the plant and an inside of a site of the plant, and a periphery of an outside of the site of the plant; and an estimation device that estimates a state of a fluid using the estimation model learned by the learning device. The estimation model gets a value of an input variable, and outputs a value of fluid state information representing a state of a fluid.

Classes IPC  ?

  • G06F 30/28 - Optimisation, vérification ou simulation de l’objet conçu utilisant la dynamique des fluides, p. ex. les équations de Navier-Stokes ou la dynamique des fluides numérique [DFN]
  • G06F 30/27 - Optimisation, vérification ou simulation de l’objet conçu utilisant l’apprentissage automatique, p. ex. l’intelligence artificielle, les réseaux neuronaux, les machines à support de vecteur [MSV] ou l’apprentissage d’un modèle

46.

CATHODE ELECTRODE, AND COMPOSITE BODY OF CATHODE ELECTRODE AND BASE MATERIAL

      
Numéro de document 03247735
Statut En instance
Date de dépôt 2023-01-12
Date de disponibilité au public 2025-07-10
Propriétaire
  • The University of Tokyo (Japon)
  • Chiyoda Corporation (Japon)
Inventeur(s)
  • Yamamoto, Takahiro
  • Mimura, Yu
  • Yamamoto, Kiyoshi
  • Sugiyama, Masakazu
  • Minegishi, Tsutomu
  • Matsumoto, Jun
  • Takeda, Dai

Abrégé

The present invention provides a cathode electrode in which selectivity of hydrogen decreases and selectivity of a carbon dioxide reduction product increases in a catalytic reaction producing carbon monoxide, an olefinic hydrocarbon such as ethylene, and an alcohol such as ethanol by a reduction reaction of carbon dioxide. A cathode electrode that electrically reduces carbon dioxide, including: a first layer containing cuprous oxide, copper, and at least one additional metal element selected from the group consisting of silver, gold, zinc, cadmium, and tin; and a second layer formed on the first layer and containing a constituent element composed of at least one metal element selected from the group consisting of copper, silver, gold, zinc, cadmium, and tin.

Classes IPC  ?

  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/07 - Composés contenant au moins un atome d’oxygène
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/053 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques caractérisées par des revêtements électro-catalytiques multicouches
  • C25B 11/065 - Carbone
  • C25B 11/075 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’un seul élément catalytique ou composé catalytique
  • C25B 11/081 - Métal noble
  • C25B 11/091 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’au moins un élément catalytique et d’au moins un composé catalytiqueÉlectrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé de plusieurs éléments catalytiques ou composés catalytiques
  • C25B 11/093 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’au moins un élément catalytique et d’au moins un composé catalytiqueÉlectrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé de plusieurs éléments catalytiques ou composés catalytiques au moins un métal noble ou oxyde de métal noble et au moins un oxyde d’un métal non noble

47.

LEARNED MODEL, ESTIMATION DEVICE, AND ESTIMATION METHOD

      
Numéro d'application JP2024043221
Numéro de publication 2025/126978
Statut Délivré - en vigueur
Date de dépôt 2024-12-06
Date de publication 2025-06-19
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Irikura, Motoki
  • Ishigami, Takahiro
  • Tabata, Kazuyoshi

Abrégé

Provided are: a learned model, with which index data relating to the kinetics of contents in a container can be evaluated with high accuracy; an estimation device; and an estimation method. This learned model is trained using, as an explanatory variable, at least one of data relating to the shape of a stirrer provided in a container, data relating to the shape of a sparger provided in the container, data relating to the shape of the container, and data relating to the physical properties, the composition, the chemical properties, the biochemical properties or the concentration of contents accommodated in the container, and also using, as an objective variable, a mass transfer capacity coefficient (kLa), a stirring power (P/V), a respiratory rate, the concentration of bacterial bodies, the concentration of a product from the bacterial bodies and cells, or a titer.

Classes IPC  ?

  • C12M 1/00 - Appareillage pour l'enzymologie ou la microbiologie
  • C12M 1/06 - Appareillage pour l'enzymologie ou la microbiologie avec des moyens d'introduction de gaz avec agitateur, p. ex. avec agitateur à turbine
  • C12N 1/00 - Micro-organismes, p. ex. protozoairesCompositions les contenantProcédés de culture ou de conservation de micro-organismes, ou de compositions les contenantProcédés de préparation ou d'isolement d'une composition contenant un micro-organismeLeurs milieux de culture
  • C12N 5/00 - Cellules non différenciées humaines, animales ou végétales, p. ex. lignées cellulairesTissusLeur culture ou conservationMilieux de culture à cet effet

48.

HYDROGENATION CATALYST, AND FLOW-TYPE ORGANIC SYNTHESIS SYSTEM AND METHOD FOR PRODUCING HYDROGENATED ORGANIC COMPOUND USING SAME

      
Numéro de document 03262632
Statut En instance
Date de dépôt 2023-07-12
Date de disponibilité au public 2025-06-12
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kado, Shigeru
  • Watanabe, Toshiyuki
  • Kiryu, Asako
  • Maeda, Kyogo

Abrégé

[Problem] To inhibit a reduction in selectivity of a halogenated aromatic amine as a target product caused by proceeding of a halogen elimination reaction in hydrogenation of an aromatic halonitro compound. [Solution] A hydrogenation catalyst is used in hydrogenation of an aromatic halonitro compound. The hydrogenation catalyst includes a carrier including at least one of titania and alumina and palladium supported on the carrier. The palladium has an average particle diameter of 9.7 nm or less.

Classes IPC  ?

  • B01J 23/44 - Palladium
  • B01J 35/10 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général solides caractérisés par leurs propriétés de surface ou leur porosité
  • C07C 209/36 - Préparation de composés contenant des groupes amino liés à un squelette carboné par réduction de liaisons azote-oxygène ou azote-azote par réduction de groupes nitro par réduction de groupes nitro liés à des atomes de carbone de cycles aromatiques à six chaînons
  • C07C 211/52 - Composés contenant des groupes amino liés à un squelette carboné ayant des groupes amino liés à des atomes de carbone de cycles aromatiques à six chaînons du squelette carboné ayant des groupes amino liés à un seul cycle aromatique à six chaînons le squelette carboné étant substitué de plus par des atomes d'halogène ou par des groupes nitro ou nitroso

49.

GROWTH STATE ESTIMATION METHOD AND CULTIVATION DEVICE

      
Numéro d'application 18843470
Statut En instance
Date de dépôt 2023-03-07
Date de la première publication 2025-06-05
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Tamura, Satoru
  • Eida, Tsugio
  • Minami, Takeshi
  • Yamamoto, Takeshi
  • Awai, Eiji
  • Takeda, Dai

Abrégé

[Task] To provide a growth state estimation method and a cultivation device that can estimate a growth state of a plant in the future. [Task] To provide a growth state estimation method and a cultivation device that can estimate a growth state of a plant in the future. [Solution] A growth state estimation method includes: a first step of acquiring a first state quantity based on illuminance acquired by an illuminometer, the first state quantity corresponding to light energy absorbed by a plant from a start of setting thereof to a first time; a second step of estimating, as first mass, mass of the plant at the first time based on the first state quantity using a first model; a third step of estimating, as second mass, the mass of the plant at the first time based on an elapsed time from the start of setting to the first time using a second model; a fourth step of correcting a fitting parameter of the second model such that a difference between the second mass and the first mass is equal to or less than a prescribed first threshold and thereby creating a corrected second model; and a fifth step of estimating the mass of the plant at a second time after the first time using the corrected second model.

Classes IPC  ?

  • A01G 7/04 - Traitement électrique ou magnétique des végétaux pour favoriser leur croissance
  • A01G 9/26 - Dispositifs électriques

50.

CATHODE ELECTRODE, COMPOSITE OF CATHODE ELECTRODE AND SUBSTRATE, ELECTROLYTIC REDUCTION APPARATUS HAVING CATHODE ELECTRODE, AND METHOD OF MANUFACTURING COMPOSITE OF CATHODE ELECTRODE AND SUBSTRATE

      
Numéro d'application 19037809
Statut En instance
Date de dépôt 2025-01-27
Date de la première publication 2025-06-05
Propriétaire
  • FURUKAWA ELECTRIC CO., LTD. (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yamamoto, Takahiro
  • Yamamoto, Kiyoshi
  • Mimura, Yu
  • Sugiyama, Masakazu
  • Minegishi, Tsutomu
  • Yamaguchi, Shingi
  • Matsumoto, Jun
  • Takeda, Dai

Abrégé

An example cathode electrode that can stably sustain a catalytic reaction producing an olefinic hydrocarbon such as ethylene and an alcohol such as ethanol by a reduction reaction of carbon dioxide over a long term; and a composite of a cathode electrode and a substrate. An example cathode electrode that electrically reduces carbon dioxide, including: copper; and at least one additive element selected from the group consisting of aluminum, boron, gallium, zinc, titanium, and silicon, wherein the copper contains: zerovalent copper; and monovalent copper and/or divalent copper.

Classes IPC  ?

51.

METHOD FOR RECOVERING CARBON DIOXIDE AND CARBON DIOXIDE RECOVERING SYSTEM

      
Numéro d'application JP2024040485
Numéro de publication 2025/105435
Statut Délivré - en vigueur
Date de dépôt 2024-11-14
Date de publication 2025-05-22
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hosono Yasuo
  • Hirai Toshihide
  • Natsuyama Kazuto
  • Kotani Yui

Abrégé

[Problem] To provide a process capable of separating and recovering carbon dioxide from a large amount of combustion exhaust gas in a manner that is space-saving and energy-saving. [Solution] Provided is a method for recovering carbon dioxide comprising: an absorption step in which a combustion exhaust gas including carbon dioxide is passed through a radial flow-type separation device provided with an absorbent material so that the absorbent material absorbs the carbon dioxide; and a release step in which steam is passed through the separation device to release the carbon dioxide from the absorbent material.

Classes IPC  ?

  • B01D 53/62 - Oxydes de carbone
  • B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
  • C01B 32/50 - Anhydride carbonique

52.

CO2 RECOVERY SYSTEM

      
Numéro d'application JP2024034091
Numéro de publication 2025/070459
Statut Délivré - en vigueur
Date de dépôt 2024-09-25
Date de publication 2025-04-03
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hirohata, Osamu
  • Kotani, Yui
  • Natsuyama, Kazuto

Abrégé

2222222 in the compressed gas at an immobilization material.

Classes IPC  ?

  • B01D 53/053 - Adsorption à pression alternée avec un récipient tampon ou de stockage
  • B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
  • B01D 53/62 - Oxydes de carbone
  • B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
  • B01D 53/82 - Procédés en phase solide avec des réactifs à l'état stationnaire
  • C01B 32/50 - Anhydride carbonique

53.

AIR CONDITIONING SYSTEM AND AIR CONDITIONING METHOD

      
Numéro d'application 18858989
Statut En instance
Date de dépôt 2023-03-07
Date de la première publication 2025-03-27
Propriétaire
  • The University of Tokyo (Japon)
  • CHIYODA CORPORATION (Japon)
  • SHIMIZU CORPORATION (Japon)
Inventeur(s)
  • Ebe, Hiroji
  • Sugiyama, Masakazu
  • Matsumoto, Jun
  • Takeda, Dai
  • Oba, Ittetsu
  • Hashimoto, Shinya
  • Fuse, Yukinori
  • Sumikura, Mitsuhiro
  • Arai, Yoshito

Abrégé

An air conditioning system (1) includes a carbon dioxide separation device (20) configured to separate some or all of carbon dioxide from air that contains carbon dioxide, an electrolytic reduction device (30) configured to generate a hydrocarbon and oxygen using the separated carbon dioxide as a raw material, and an oxygen supply amount control device (40) configured to supply some or all of the oxygen generated by the electrolytic reduction device (30) to a space to be processed (10).

Classes IPC  ?

  • F24F 8/60 - Traitement, p. ex. purification, de l'air fourni aux locaux de résidence ou de travail des êtres humains autrement que par chauffage, refroidissement, humidification ou séchage en ajoutant de l'oxygène
  • C25B 1/02 - Hydrogène ou oxygène
  • C25B 3/01 - Produits
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 15/02 - Commande ou régulation des opérations
  • C25B 15/08 - Alimentation ou vidange des réactifs ou des électrolytesRégénération des électrolytes
  • F24F 8/10 - Traitement, p. ex. purification, de l'air fourni aux locaux de résidence ou de travail des êtres humains autrement que par chauffage, refroidissement, humidification ou séchage par séparation, p. ex. par filtrage

54.

VAPORIZATION SYSTEM

      
Numéro d'application JP2024031499
Numéro de publication 2025/053109
Statut Délivré - en vigueur
Date de dépôt 2024-09-02
Date de publication 2025-03-13
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yuzaki, Hikaru
  • Fujino, Tetsuya
  • Node, Otoya
  • Murakoshi, Ryo

Abrégé

Provided is a vaporization system capable of suppressing an increase in a high boiling point component contained in a liquid in a vaporizer. According to the present invention, provided is a vaporization system comprising: a vaporizer; a heater; and a mixer. The vaporization system is configured such that vapor generated by vaporizing a portion of a liquid in the vaporizer is heated by the heater and then supplied to the mixer. In the mixer, the vapor is mixed with the liquid removed from the vaporizer to generate a mixed vapor.

Classes IPC  ?

  • B01J 7/00 - Appareillage pour la production de gaz

55.

INTEGRATED SLURRY PHASE HYDROCRACKING PROCESS TO PRODUCE CHEMICALS

      
Numéro d'application 18462609
Statut En instance
Date de dépôt 2023-09-07
Date de la première publication 2025-03-13
Propriétaire
  • Saudi Aramco Technologies Company (Arabie saoudite)
  • Chiyoda Corporation (Japon)
Inventeur(s)
  • Koseoglu, Omer Refa
  • Punetha, Ashok
  • Fujii, Shigetaka
  • Morikami, Satoshi
  • Tadokoro, Shinichi

Abrégé

The present disclosure relates to methods for petrochemical production integrating a slurry phase hydrocracking process and an inline hydrotreating process. A slurry-phase hydrocracking feed comprising residue stream and/or a deasphalted residue stream is processed in a slurry-phase hydrocracking reaction zone to produce slurry-phase hydrocracking effluents. A first stream of slurry-phase hydrocracking effluents is discharged including unreacted hydrogen and which is under hydrogen partial pressure. The slurry-phase hydrocracking effluents are processed in an inline hydrotreating zone for hydrodesulfurization and/or hydrodenitrogenation to produce a hydrotreated effluent. Downstream FCC and petrochemicals production complex units are used to produce light olefins and aromatic products.

Classes IPC  ?

  • C10G 65/12 - Traitement des huiles d'hydrocarbures, uniquement par plusieurs procédés d'hydrotraitement uniquement par plusieurs étapes en série comprenant des étapes de craquage et d'autres étapes d'hydrotraitement
  • B01D 3/10 - Distillation sous vide
  • B01D 3/14 - Distillation fractionnée

56.

CARBON DIOXIDE RECOVERY SYSTEM

      
Numéro d'application 18580531
Statut En instance
Date de dépôt 2022-07-20
Date de la première publication 2025-03-13
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • OSAKA UNIVERSITY (Japon)
Inventeur(s)
  • Matsumoto, Jun
  • Takeda, Dai
  • Hashimoto, Shinya
  • Oba, Ittetsu
  • Nakanishi, Shuji
  • Kamiya, Kazuhide

Abrégé

The carbon dioxide recovery system (1) comprises an electrolytic reduction device (2) that generates a producer gas by reducing carbon dioxide, and a carbon dioxide separation device (3) that separates the carbon dioxide from the processed gas. The carbon dioxide separation device is provided with a first gas diffusion electrode (51), a second gas diffusion electrode (52), a liquid chamber (53) formed between the first gas diffusion electrode and the second gas diffusion electrode (52), and is configured to be supplied with an electrolytic liquid containing a compound that adsorbs and desorbs protons in an oxidation-reduction reaction, a first chamber (54) separated from the liquid chamber by the first gas diffusion electrode and configured to be supplied with the producer gas, and a second chamber (55) separated from the liquid chamber by the second gas diffusion electrode and through which the carbon dioxide separated from the producer gas flow. The electrolytic reduction device uses the carbon dioxide separated from the processed gas in the carbon dioxide separation device as a part of an input material thereof.

Classes IPC  ?

  • C25B 3/26 - Réduction du dioxyde de carbone
  • B01D 53/26 - Séchage des gaz ou vapeurs
  • B01D 53/32 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par effets électriques autres que ceux prévus au groupe
  • B01D 53/62 - Oxydes de carbone
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 9/19 - Cellules comprenant des électrodes fixes de dimensions stablesAssemblages de leurs éléments de structure avec des diaphragmes
  • C25B 11/032 - Électrodes à diffusion de gaz
  • C25B 13/02 - DiaphragmesÉléments d'espacement caractérisés par la configuration ou la forme
  • C25B 15/023 - Mesure, analyse ou test pendant la production électrolytique
  • C25B 15/08 - Alimentation ou vidange des réactifs ou des électrolytesRégénération des électrolytes

57.

INTEGRATED SLURRY PHASE HYDROCRACKING PROCESS TO PRODUCE CHEMICALS

      
Numéro d'application US2024044688
Numéro de publication 2025/054093
Statut Délivré - en vigueur
Date de dépôt 2024-08-30
Date de publication 2025-03-13
Propriétaire
  • SAUDI ARAMCO TECHNOLOGIES COMPANY (Arabie saoudite)
  • ARAMCO SERVICES COMPANY (USA)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Koseoglu, Omer Refa
  • Punetha, Ashok
  • Fujii, Shigetaka
  • Morikami, Satoshi
  • Tadokoro, Shinichi

Abrégé

The present disclosure relates to methods for petrochemical production integrating a slurry phase hydrocracking process and an inline hydrotreating process. A slurry-phase hydrocracking feed comprising residue stream and/or a deasphalted residue stream is processed in a slurry-phase hydrocracking reaction zone to produce slurry-phase hydrocracking effluents. A first stream of slurry-phase hydrocracking effluents is discharged including unreacted hydrogen and which is under hydrogen partial pressure. The slurry-phase hydrocracking effluents are processed in an inline hydrotreating zone for hydrodesulfurization and/or hydrodenitrogenation to produce a hydrotreated effluent. Downstream FCC and petrochemicals production complex units are used to produce light olefins and aromatic products.

Classes IPC  ?

  • C10G 11/18 - Craquage catalytique, en l'absence d'hydrogène, des huiles d'hydrocarbures avec catalyseurs solides mobiles préchauffés selon la technique du "lit fluidisé"
  • C10G 21/00 - Raffinage des huiles d'hydrocarbures, en l'absence d'hydrogène, par extraction au moyen de solvants sélectifs
  • C10G 45/02 - Raffinage des huiles d'hydrocarbures au moyen d'hydrogène ou de composés donneurs d'hydrogène pour éliminer des hétéro-atomes sans modifier le squelette de l'hydrocarbure mis en œuvre et sans craquage en hydrocarbures à point d'ébullition inférieurHydrofinissage
  • C10G 47/26 - Craquage des huiles d'hydrocarbures, en présence d'hydrogène ou de composés donneurs d'hydrogène, pour obtenir des fractions à point d'ébullition inférieur avec des particules solides en mouvement en suspension dans de l'huile, p. ex. sous forme de bouillie
  • C10G 69/04 - Traitement des huiles d'hydrocarbures par au moins un procédé d'hydrotraitement et au moins un autre procédé de conversion uniquement par plusieurs étapes en série comprenant au moins une étape de craquage catalytique en l'absence d'hydrogène
  • C10G 69/06 - Traitement des huiles d'hydrocarbures par au moins un procédé d'hydrotraitement et au moins un autre procédé de conversion uniquement par plusieurs étapes en série comprenant au moins une étape de craquage thermique en l'absence d'hydrogène

58.

METAL CATALYST AND METHOD FOR HYDROGENOLYSIS OF CYCLIC COMPOUND USING SAME

      
Numéro d'application JP2024030484
Numéro de publication 2025/047733
Statut Délivré - en vigueur
Date de dépôt 2024-08-27
Date de publication 2025-03-06
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • NATIONAL UNIVERSITY CORPORATION YOKOHAMA NATIONAL UNIVERSITY (Japon)
Inventeur(s)
  • Kubota Yoshihiro
  • Inagaki Satoshi
  • Maekawa Yuki
  • Wakatsuki Rikuto
  • Hodoshima Shinya
  • Imagawa Kenichi

Abrégé

[Problem] To perform selective hydrogenolysis of a cyclic compound that has a five-membered ring structure and is included in a saturated cyclic compound used as a hydrogen carrier. [Solution] This metal catalyst, which is used in the hydrogenolysis of a cyclic compound that has a five-membered ring structure and is included in a saturated cyclic compound used as a hydrogen carrier, includes a silica-based carrier serving as a catalyst carrier, and cobalt serving as a metal supported on the catalyst carrier.

Classes IPC  ?

  • B01J 23/75 - Cobalt
  • C01B 3/00 - HydrogèneMélanges gazeux contenant de l'hydrogèneSéparation de l'hydrogène à partir de mélanges en contenantPurification de l'hydrogène
  • C07B 61/00 - Autres procédés généraux
  • C07C 4/06 - Procédés catalytiques
  • C07C 9/02 - Hydrocarbures saturés acycliques de un à quatre atomes de carbone
  • C07C 9/14 - Hydrocarbures saturés acycliques de cinq à quinze atomes de carbone

59.

METHOD FOR PRODUCING PARAXYLENE

      
Numéro d'application 18722056
Statut En instance
Date de dépôt 2022-12-22
Date de la première publication 2025-02-27
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Hirohata, Osamu

Abrégé

The method comprises a mixing step of obtaining a raw material mixed gas by adding hydrogen to the synthesis gas; a reaction step of obtaining a mixed gas product containing paraxylene by introducing the raw material mixed gas into a reactor and bringing it into contact with a paraxylene synthesis catalyst under heating and pressurization; a separation step of separating the mixed gas product into a gas phase composed of non-condensable components, an oil phase containing paraxylene, and an aqueous phase containing water-soluble components by cooling the mixed gas product to condense high-boiling point components; and a purification step of purifying the oil phase to obtain paraxylene, wherein the mixing step adds hydrogen so that the obtained raw material mixed gas has a composition in which an R value defined by the following formula (1) falls within a range of 0.7 or more and 2.1 or less: The method comprises a mixing step of obtaining a raw material mixed gas by adding hydrogen to the synthesis gas; a reaction step of obtaining a mixed gas product containing paraxylene by introducing the raw material mixed gas into a reactor and bringing it into contact with a paraxylene synthesis catalyst under heating and pressurization; a separation step of separating the mixed gas product into a gas phase composed of non-condensable components, an oil phase containing paraxylene, and an aqueous phase containing water-soluble components by cooling the mixed gas product to condense high-boiling point components; and a purification step of purifying the oil phase to obtain paraxylene, wherein the mixing step adds hydrogen so that the obtained raw material mixed gas has a composition in which an R value defined by the following formula (1) falls within a range of 0.7 or more and 2.1 or less: R = N H ⁢ 2 - N CO ⁢ 2 N CO + N CO ⁢ 2 . ( 1 )

Classes IPC  ?

  • C07C 1/04 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir de monoxyde de carbone avec de l'hydrogène
  • C07C 7/09 - Purification, séparation ou stabilisation d'hydrocarburesEmploi d'additifs par condensation fractionnée

60.

SUPPORT METHOD, SUPPORT DEVICE, SUPPORT PROGRAM, AND METHOD FOR CONSTRUCTING DEVELOPMENT SUPPORT SYSTEM

      
Numéro d'application JP2023027981
Numéro de publication 2025/027756
Statut Délivré - en vigueur
Date de dépôt 2023-07-31
Date de publication 2025-02-06
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yamaguchi Yoshihiro
  • Mizutani Takato
  • Nomura Yoshinari
  • Furuichi Kazuya

Abrégé

According to the present invention, a development support method of a model pertaining to operations of a plant facility is executed by a processor and includes: acquiring facility identification information about the plant facility or process identification information about processes executed with the plant facility; acquiring target output information about the model; and outputting a processing element list that includes processing elements to configure development steps of the model, on the basis of the facility identification information or the process identification information and the target output information.

Classes IPC  ?

  • G06Q 50/04 - Fabrication
  • G06F 30/13 - Conception architecturale, p. ex. conception architecturale assistée par ordinateur [CAAO] relative à la conception de bâtiments, de ponts, de paysages, d’usines ou de routes
  • G06F 30/27 - Optimisation, vérification ou simulation de l’objet conçu utilisant l’apprentissage automatique, p. ex. l’intelligence artificielle, les réseaux neuronaux, les machines à support de vecteur [MSV] ou l’apprentissage d’un modèle

61.

LIQUID LIFTING SYSTEM AND LIQUID LIFTING MECHANISM

      
Numéro d'application JP2024025486
Numéro de publication 2025/018337
Statut Délivré - en vigueur
Date de dépôt 2024-07-16
Date de publication 2025-01-23
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yuzaki, Hikaru
  • Fujino, Tetsuya
  • Node, Otoya
  • Murakoshi, Ryo
  • Nakamura, Akio

Abrégé

Provided is a liquid lifting system with which it is possible to reduce the time required to open a tank. The present invention provides a liquid lifting system including a tank for storing a liquid, and first and second liquid lifting mechanisms configured to be capable of lifting the liquid to discharge the liquid from the tank, wherein: the first liquid lifting mechanism is configured to be capable of lifting the liquid by pushing the liquid up in association with the rotation of a rotating body to discharge the liquid from the tank; and the second liquid lifting mechanism includes a suction port, a liquid lifting unit, and a discharge port, and is configured to be capable of lifting the liquid by sucking up the liquid through the suction port in association with a pressure change within the liquid lifting unit, to discharge the liquid from the tank.

Classes IPC  ?

  • F17C 9/00 - Procédés ou appareils pour vider les gaz liquéfiés ou solidifiés contenus dans des récipients non sous pression
  • B65D 90/00 - Parties constitutives, détails ou accessoires des grands réceptacles

62.

WASTEWATER TREATMENT SYSTEM

      
Numéro d'application JP2024025487
Numéro de publication 2025/018338
Statut Délivré - en vigueur
Date de dépôt 2024-07-16
Date de publication 2025-01-23
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Yuzaki, Hikaru

Abrégé

Provided is a wastewater treatment system that makes it possible to treat, without increasing treatment capacity of a wastewater treatment facility, ammonia-containing wastewater discharged from an ammonia power generation facility. The present invention provides a wastewater treatment system comprising an ammonia power generation facility, a flue gas desulfurization facility, and a wastewater treatment facility, wherein: the ammonia power generation facility uses ammonia as fuel to generate power and is configured to discharge ammonia-containing wastewater which contains ammonia; the flue gas desulfurization facility is configured to be capable of removing a sulfur oxide contained in exhaust gas and utilizes the ammonia-containing wastewater as at least part of water which is used in operation of the flue gas desulfurization facility; and the wastewater treatment facility is configured to treat the wastewater from the flue gas desulfurization facility.

Classes IPC  ?

  • C02F 1/20 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par dégazage, c.-à-d. par libération des gaz dissous
  • B01D 53/50 - Oxydes de soufre
  • B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
  • C02F 1/76 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par oxydation au moyen d'halogènes ou de composés halogénés
  • C02F 3/00 - Traitement biologique de l'eau, des eaux résiduaires ou des eaux d'égout

63.

METHOD FOR REMOVING PLANT-DERIVED SOLUBLE PROTEIN FROM PLANT-DERIVED EXTRACT

      
Numéro d'application JP2024023476
Numéro de publication 2025/005226
Statut Délivré - en vigueur
Date de dépôt 2024-06-28
Date de publication 2025-01-02
Propriétaire
  • NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY (Japon)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Matsuo, Kouki
  • Matsushima, Akito
  • Nishida, Naoko

Abrégé

The present invention provides a method for removing a plant-derived soluble protein from a plant-derived extract, the method comprising the following steps: (1) a step for freezing and thawing a plant-derived extract to cause the insolubilization of a plant-derived soluble protein; and (2) a step for removing the insolubilized protein from the extract.

Classes IPC  ?

  • C07K 1/14 - ExtractionSéparationPurification
  • C12N 9/88 - Lyases (4.)
  • C12N 15/09 - Technologie d'ADN recombinant
  • C12P 21/00 - Préparation de peptides ou de protéines
  • C12P 21/02 - Préparation de peptides ou de protéines comportant une séquence connue de plusieurs amino-acides, p. ex. glutathion

64.

PROGRAM, INFORMATION PROCESSING DEVICE AND METHOD

      
Numéro d'application 18719517
Statut En instance
Date de dépôt 2022-08-05
Date de la première publication 2024-12-26
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Sato, Hideki
  • Kawai, Eiji

Abrégé

An information processing device including a processor that acquires an operating parameter regarding a reaction device that performs a predetermined chemical reaction and information regarding a substance used in the chemical reaction in the reaction device, the information processing device determines a parameter of a first reaction state predicted as the reaction state of the substance when the chemical reaction is performed with the operating parameter in the reaction device, the information processing device learns a prediction model that outputs a parameter of a second reaction state that is a reaction state of the substance in response to inputting information regarding the substance and the operating parameter by using the acquired information regarding the substance, the acquired operating parameter and the parameter of the first reaction state as learning data, and the information processing device stores the learned prediction model in a storage unit.

Classes IPC  ?

  • G16C 20/10 - Analyse ou conception des réactions, des synthèses ou des procédés chimiques
  • G06F 30/27 - Optimisation, vérification ou simulation de l’objet conçu utilisant l’apprentissage automatique, p. ex. l’intelligence artificielle, les réseaux neuronaux, les machines à support de vecteur [MSV] ou l’apprentissage d’un modèle
  • G16C 20/70 - Apprentissage automatique, exploration de données ou chimiométrie

65.

CULTIVATION DEVICE AND CULTIVATION METHOD

      
Numéro d'application JP2024022010
Numéro de publication 2024/262487
Statut Délivré - en vigueur
Date de dépôt 2024-06-18
Date de publication 2024-12-26
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Tanigawa Naoki
  • Nagase Mutsumu

Abrégé

[Problem] To prevent the invasion of the roots of a plant into a culture medium while appropriately supplying nutritious liquid, water, and oxygen to the roots of the plant. [Solution] A cultivation device 1 comprises: a cultivation container 3 which defines a space in which a plant 2 can grow and which is filled with a gas containing oxygen and carbon dioxide; a solid culture medium 11 which is placed in a lower part of the cultivation container 3; a water storage tank 51 which stores water to be supplied to the solid culture medium 11; a nutrient solution tank 71 which stores a nutrient solution to be supplied to the solid culture medium 11; and a mesh sheet 12 which is arranged so as to overlap an upper surface of the solid culture medium 11. The mesh sheet 12 has an average aperture size of 10 μm or less, and a planting part is provided on the mesh sheet 12.

Classes IPC  ?

  • A01G 31/00 - Culture hors-sol, p. ex. hydroponie

66.

CATHODE ELECTRODE, COMPOSITE OF CATHODE ELECTRODE AND BASE MATERIAL, ELECTROLYTIC REDUCTION DEVICE PROVIDED WITH CATHODE ELECTRODE, AND METHOD FOR PRODUCING COMPOSITE OF CATHODE ELECTRODE AND BASE MATERIAL

      
Numéro d'application JP2024019819
Numéro de publication 2024/248073
Statut Délivré - en vigueur
Date de dépôt 2024-05-30
Date de publication 2024-12-05
Propriétaire
  • FURUKAWA ELECTRIC CO., LTD. (Japon)
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Mitsuhashi Yuri
  • Yamamoto Takahiro
  • Mimura Yu
  • Yamamoto Kiyoshi
  • Sugiyama Masakazu
  • Minegishi Tsutomu
  • Takeda Dai
  • Matsumoto Jun

Abrégé

Provided is a cathode electrode with which it is possible to prevent an improvement in hydrogen selectivity even if a catalyst layer is immersed in an electrolyte, and with which a catalytic reaction that produces, by a reduction reaction of carbon dioxide, an olefin-based hydrocarbon such as ethylene or an alcohol such as an ethanol can stably maintain high efficiency over a long period of time. This cathode electrode electrically reduces carbon dioxide, the cathode electrode including a first layer positioned on a surface layer of the cathode electrode and having a first thickness, and a second layer adjacent to the first layer in the thickness direction and having a second thickness. The first layer includes copper, the first layer is surface-modified with a cation exchange material substituted with metal ions, and the second layer is a mixed layer of copper and carbon.

Classes IPC  ?

  • C25B 11/077 - Oxyde de métal non noble
  • B01J 23/72 - Cuivre
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • B01J 37/12 - Oxydation
  • B01J 37/16 - Réduction
  • C23C 28/00 - Revêtement pour obtenir au moins deux couches superposées, soit par des procédés non prévus dans un seul des groupes principaux , soit par des combinaisons de procédés prévus dans les sous-classes et
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/07 - Composés contenant au moins un atome d’oxygène
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 9/00 - Cellules ou assemblages de cellulesÉléments de structure des cellulesAssemblages d'éléments de structure, p. ex. assemblages d'électrode-diaphragmeCaractéristiques des cellules relatives aux procédés
  • C25B 9/19 - Cellules comprenant des électrodes fixes de dimensions stablesAssemblages de leurs éléments de structure avec des diaphragmes
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/053 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques caractérisées par des revêtements électro-catalytiques multicouches
  • C25B 11/065 - Carbone
  • C25B 11/089 - Alliages
  • C25B 11/091 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’au moins un élément catalytique et d’au moins un composé catalytiqueÉlectrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé de plusieurs éléments catalytiques ou composés catalytiques

67.

plantOS

      
Numéro d'application 1820603
Statut Enregistrée
Date de dépôt 2024-03-14
Date d'enregistrement 2024-03-14
Propriétaire Chiyoda Corporation (Japon)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 35 - Publicité; Affaires commerciales
  • 37 - Services de construction; extraction minière; installation et réparation
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception

Produits et services

Computer programs relating to business management and administration; computer programs for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; computer programs for utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; computer programs for testing, evaluation and certification relating to compatibility of quality or standards; computer programs for collecting, analyzing or storing big data, data log or electronic data; computer programs; recorded data relating to big data, data log or electronic data relating to business management and administration; recorded data relating to big data, data log or electronic data for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; recorded data relating to big data, data log or electronic data for utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; recorded data relating to big data, data log or electronic data for testing, evaluation and certification relating to compatibility of quality or standards; downloadable image files relating to industrial plants; downloadable image files relating to facilities, apparatus or equipment for industrial plants; downloadable image files; downloadable animated and still images; electronic publications; pre-recorded CD-ROMs, DVDs and other digital recording media; simulation software for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants. Marketing research relating to commercialization; research, analysis, diagnosis and consultancy relating to commercialization or new business; diagnosis and consultancy relating to factory business management; business consultancy relating to improvement of productivity; business consultancy relating to repair and improvement of production facilities; business analysis and consultancy provided through analysis of big data, data log or electronic data; other business analysis and consultancy; business management analysis or business consultancy; business management; marketing research or analysis; providing information concerning commercial sales; business administration and management; procurement services for others [purchasing goods and services for other businesses]; advisory and consultancy relating to procurement services for others [purchasing goods and services for other businesses]; marketing services provided through analysis of big data, data log or electronic data; other marketing services; administrative processing and organising of mail order services; promoting the goods and services of others; clerical services, secretarial services, accountancy services, operation of office equipment, data input; office functions, namely filing, in particular documents or magnetic tape; providing business assistance to others in the operation of data processing apparatus namely, computers, typewriters, telex machines and other similar office machines; computerized file management; data search in computer files for others; compilation and systemization of information into computer databases; import-export agencies; goods import-export agency services; assisting others in preparing and filing applications for inspection relating to compatibility of safety and environments with import-export goods; collection of big data, data log or electronic data; information processing using computers; electronic data processing using computers (excluding systemization and compilation of information into databases) and advisory, consultancy and providing information (including results) relating thereto. Construction services; inspection of buildings prior to maintenance; maintenance of buildings; construction of industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); other construction of industrial plants and advisory, consultancy and providing information relating thereto (including via telecommunication lines); installation of facilities, apparatus or equipment for industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); other installation of facilities, apparatus or equipment for industrial plants, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); inspection of industrial plants prior to repair or maintenance, provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); other inspection of industrial plants prior to repair or maintenance, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); repair or maintenance of industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); other repair or maintenance of industrial plants, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); inspection of facilities, apparatus or equipment for industrial plants prior to repair or maintenance, provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); other inspection of facilities, apparatus or equipment for industrial plants prior to repair or maintenance, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); repair or maintenance of facilities, apparatus or equipment for industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); other repair or maintenance of facilities, apparatus or equipment for industrial plants, and advisory, consultancy and providing information relating thereto (including via telecommunication lines); repair and maintenance of industrial plants via remote monitoring system and providing information relating to the monitoring results (including via telecommunication lines); repair and maintenance of facilities, apparatus or equipment for industrial plants via remote monitoring systems and providing information relating to the monitoring results (including via telecommunication lines); management of progress and work status of construction of industrial plants (including via telecommunication lines); providing information relating to progress and work status of construction of industrial plants (including via telecommunication lines); management of progress and work status of installation of facilities, apparatus or equipment for industrial plants (including via telecommunication lines); providing information relating to progress and work status of installation of facilities, apparatus or equipment for industrial plants (including via telecommunication lines); management of progress and work status of inspection of industrial plants prior to repair or maintenance (including via telecommunication lines); management of progress and work status of repair or maintenance of industrial plants (including via telecommunication lines); providing information relating to progress and work status of inspection of industrial plants prior to repair or maintenance (including via telecommunication lines); providing information relating to progress and work status of repair or maintenance of industrial plants (including via telecommunication lines); management of progress and work status of inspection of facilities, apparatus or equipment for industrial plants prior to repair or maintenance (including via telecommunication lines); management of progress and work status of repair or maintenance of facilities, apparatus or equipment for industrial plants (including via telecommunication lines); providing information relating to progress and work status of inspection of facilities, apparatus or equipment for industrial plants prior to repair or maintenance (including via telecommunication lines); providing information relating to progress and work status of repair or maintenance of facilities, apparatus or equipment for industrial plants (including via telecommunication lines). Design, programming or maintenance of computer programs relating to business management and administration; design, programming or maintenance of computer programs for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; design, programming or maintenance of computer programs for utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; design, programming or maintenance of computer programs for testing, evaluation and certification relating to compatibility of quality or standards; design, programming or maintenance of computer programs for collecting, analyzing or storing big data, data log or electronic data; design, programming or maintenance of computer programs and advisory, consultancy and providing information relating thereto; providing online non-downloadable computer programs relating to business management and administration; providing online non-downloadable computer programs for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; providing online non-downloadable computer programs for utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; providing online non-downloadable computer programs for testing, evaluation and certification relating to compatibility of quality or standards; providing online non-downloadable computer programs for collecting, analyzing or storing big data, data log or electronic data; providing online non-downloadable computer programs and advisory, consultancy and providing information relating thereto; rental of computers; analysis or storage of big data, data log or electronic data; providing information relating to scientific analysis or storage of big data, data log or electronic data; rental of memory space on servers; engineering of industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto; other engineering of industrial plants and advisory, consultancy and providing information relating thereto; design of industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto; other design of industrial plants and advisory, consultancy and providing information relating thereto; engineering of facilities, apparatus or equipment for industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto; other engineering of facilities, apparatus or equipment for industrial plants and advisory, consultancy and providing information relating thereto; design of facilities, apparatus or equipment for industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information relating thereto; other design of facilities, apparatus or equipment for industrial plants and advisory, consultancy and providing information relating thereto; measuring, testing, research, inspection, evaluation or analysis of industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information (including results) relating thereto; other measuring, testing, research, inspection, evaluation or analysis of industrial plants, and advisory, consultancy and providing information (including results) relating thereto; measuring, testing, research, inspection, evaluation or analysis of facilities, apparatus or equipment for industrial plants provided through analysis of big data, data log or electronic data, and advisory, consultancy and providing information (including results) relating thereto; other measuring, testing, research, inspection, evaluation or analysis of facilities, apparatus or equipment for industrial plants, and advisory, consultancy and providing information (including results) relating thereto; providing information relating to energy-saving; testing, research, inspection, evaluation or analysis relating to energy-saving; providing information relating to testing, research, inspection, evaluation or analysis of energy-saving or results thereof; advisory and consultancy in the field of energy-saving; providing information relating to advisory and consultancy in the field of energy-saving; testing, evaluation and certification relating to compatibility of quality or standards, and advisory, consultancy and providing information relating thereto; measuring of consumption of electricity, gas and other energies (including via telecommunication lines); providing information relating to results of measuring of consumption of electricity, gas and other energies (including via telecommunication lines); electronic data conversion using computers (excluding systemization and compilation of information into databases) and advisory, consultancy and providing information (including results) relating thereto; design of machines, apparatus, or instruments (including their parts) or facilities composed of such machines, apparatus, or instruments; architectural design; providing scientific and technological information; remote monitoring of computer systems (including via telecommunication lines); providing information relating to remote monitoring of computer systems and results thereof (including via telecommunication lines); rental of computer systems and advisory, consultancy and providing information relating thereto; industrial research and design services and advisory, consultancy and providing information relating thereto; technical and industrial research and development and advisory, consultancy and providing information relating thereto; industrial research, testing and analysis, and advisory, consultancy and providing information relating thereto.

68.

CATHODE ELECTRODE, AND COMPOSITE OF CATHODE ELECTRODE AND SUBSTRATE

      
Numéro d'application 18770479
Statut En instance
Date de dépôt 2024-07-11
Date de la première publication 2024-10-31
Propriétaire
  • THE UNIVERSITY OF TOKYO (Japon)
  • CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yamamoto, Takahiro
  • Mimura, Yu
  • Yamamoto, Kiyoshi
  • Sugiyama, Masakazu
  • Minegishi, Tsutomu
  • Matsumoto, Jun
  • Takeda, Dai

Abrégé

The present disclosure provides a cathode electrode in which selectivity of hydrogen decreases and selectivity of a carbon dioxide reduction product increases in a catalytic reaction producing carbon monoxide, an olefinic hydrocarbon such as ethylene, and an alcohol such as ethanol by a reduction reaction of carbon dioxide. A cathode electrode that electrically reduces carbon dioxide, including: a first layer containing cuprous oxide, copper, and at least one additional metal element selected from the group consisting of silver, gold, zinc, cadmium, and tin; and a second layer formed on the first layer and containing a constituent element composed of at least one metal element selected from the group consisting of copper, silver, gold, zinc, cadmium, and tin.

Classes IPC  ?

  • C25B 11/091 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’au moins un élément catalytique et d’au moins un composé catalytiqueÉlectrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé de plusieurs éléments catalytiques ou composés catalytiques
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 11/032 - Électrodes à diffusion de gaz
  • C25D 3/22 - Dépôt électrochimiqueBains utilisés à partir de solutions de zinc
  • C25D 3/38 - Dépôt électrochimiqueBains utilisés à partir de solutions de cuivre
  • C25D 5/48 - Post-traitement des surfaces revêtues de métaux par voie électrolytique
  • C25D 9/04 - Revêtement électrolytique autrement qu'avec des métaux avec des matières inorganiques

69.

PLANTOS

      
Numéro de série 79411682
Statut En instance
Date de dépôt 2024-10-25
Propriétaire Chiyoda Corporation (Japon)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 35 - Publicité; Affaires commerciales
  • 37 - Services de construction; extraction minière; installation et réparation
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception

Produits et services

Downloadable software for planning, designing, procurement, construction, operation, management, maintenance and disposal of industrial plants; downloadable computer programs for utilizing the know-how accumulated from persons gathered through planning, designing, procurement, construction, operation, management, maintenance and disposal of industrial plants; downloadable computer programs for testing, evaluating, and certifications relating to compatibility of quality certification standards; downloadable computer programs for collecting, analyzing and storing big data, data logs and electronic data in the fields of industrial plants; recorded data files featuring big data, data log and electronic data for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants, namely, downloadable electronic data files; recorded data files featuring big data, data log and electronic data for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants, namely, downloadable electronic data files; recorded data files featuring big data, data log and electronic data for utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants, namely, downloadable electronic data files; recorded data files featuring big data, data log and electronic data for testing, evaluation and certification relating to compatibility of quality certification standards, namely, downloadable electronic data files; downloadable image files relating to industrial plants; downloadable image files relating to facilities, apparatus or equipment for industrial plants; downloadable image files relating to facilities, apparatus or equipment for industrial plants; downloadable image files containing images of industrial equipment; downloadable animated and still images in the fields of engineering, computer software, construction, AI technology, big data and science technology; downloadable electronic publications in the nature of pamphlets and manuals in the field of engineering, computer software, construction, AI technology, big data, and science technology; pre-recorded CD-ROMs and DVDs featuring downloadable computer software for planning; design, procurement, construction, operation, management, maintenance and disposal of industrial plants; pre-recorded CD-ROMs and DVDs featuring image files and publications in the nature of pamphlets and manuals in the field of engineering, computer software, construction, AI technology, big data, and science technology; prerecorded CD-ROMs and DVDs featuring downloadable computer software for utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; prerecorded CD-ROMs and DVDs featuring image files and publications in the nature of pamphlets and manuals in the field of engineering, computer software, construction, AI technology, big data, and science technology; pre-recorded CD-ROMs and DVDs featuring downloadable computer software for testing, evaluation and certification relating to compatibility of quality or standards; prerecorded CD-ROMs and DVDs featuring image files and publications in the nature of pamphlets and manuals in the field of engineering, computer software, construction, AI technology, big data, and science technology; pre-recorded CD-ROMs and DVDs featuring downloadable computer software for collecting, analyzing or storing big data, data log or electronic data; prerecorded CD-ROMs and DVDs featuring image files and publications in the nature of pamphlets and manuals in the field of engineering, computer software, construction, AI technology, big data, and science technology; downloadable computer simulation software for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants Marketing research in the field of product commercialization; business research, analysis, diagnosis, namely, business appraisals, and consultancy in the field of product commercialization and new business venture development; business diagnosis, namely, business management analysis and consultancy in the field of factory business management; business consultancy relating to improvement of productivity; business consultancy relating to repair and improvement of production facilities; business data analysis and consultancy provided through analysis of big data, data log and electronic data; business management analysis and consultancy; business management analysis and business consultancy; business management; marketing research and marketing analysis services; providing information concerning commercial sales; business administration and management; procurement services for others, namely, purchasing apparatus and equipment for industrial plants; advisory and consultancy relating to procurement services for others, namely, consultation related to purchasing apparatus and equipment for industrial plants for others; marketing research in the field of product commercialization; business research, analysis, diagnosis, namely, business appraisals, and consultancy in the field of product commercialization and new business venture development; business diagnosis, namely, business management analysis and consultancy in the field of factory business management; business consultancy relating to improvement of productivity; business consultancy relating to repair and improvement of production facilities; business data analysis and consultancy provided through analysis of big data, data log and electronic data; business management analysis and consultancy; business management analysis and business consultancy; business management; marketing research and marketing analysis services; providing information concerning commercial sales; business administration and management; procurement services for others, namely, purchasing apparatus and equipment for industrial plants; advisory and consultancy relating to procurement services for others, namely, consultation related to purchasing apparatus and equipment for industrial plants for others; marketing services provided through analysis of big data, data log and electronic data; marketing services; administrative processing and organizing of mail order services, namely, administrative processing of purchase orders and mail services, namely, receiving and processing international and domestic mail for infusion into established postal services; promoting the goods and services of others; clerical services; secretarial services; accountancy services; data input, namely, data processing services; office functions, namely, filing documents and magnetic tapes; providing business assistance to others in the operation of data processing apparatus, namely, computers, typewriters, telex machines and other similar office machines; computerized file management; office functions in the nature of searching for data in computer files for others; compilation and systematization of information into computer databases; import and export agencies; import and export agency services for goods; assisting others in preparing and filing applications for inspection relating to compatibility of safety and environments with import-export goods, namely, operational business assistance to enterprises; electronic data collection of big data, data log and electronic data; information processing using computers, namely, data processing services; electronic data processing using computers and advisory, consultancy and providing information in the field of data processing services Building construction services; inspection of buildings prior to maintenance in the course of building construction, building maintenance and building repair; maintenance of buildings; construction of industrial plants; advisory, consultancy and providing information relating to the construction of industrial plants; installation of industrial plant facilities, and industrial plant facility apparatus and equipment; advisory, consultancy and providing information relating to the installation of industrial plant facilities, and industrial plant facility apparatus and equipment; inspection of industrial plants prior to repair or maintenance, and advisory, consultancy and providing information relating thereto, namely, building inspection in the course of building construction, building maintenance and building repair; repair or maintenance of industrial plants and advisory, consultancy and providing information relating to the repair or maintenance of industrial plants; inspection of industrial plant facilities, apparatus or equipment prior to repair or maintenance, and advisory, consultancy and providing information relating thereto, namely, building inspection in the course of building construction, building maintenance and building repair; repair or maintenance of industrial plant facilities, apparatus or equipment, and advisory, consultancy and providing information relating to the repair or maintenance of industrial plant facilities, apparatus or equipment; repair and maintenance of industrial plants via remote monitoring systems and providing information relating to the monitoring results of the repair and maintenance of industrial plants; repair and maintenance of industrial plant facilities, apparatus or equipment via remote monitoring systems and providing information relating to the monitoring results of the repair and maintenance of industrial plant facilities, apparatus or equipment; management of progress and work status of construction of industrial plants, namely, construction project management services; providing information relating to progress and work status of construction of industrial plants, namely, construction project management services; management of progress and work status of installation of industrial plant facilities, apparatus or equipment for industrial plants, namely, construction project management services in the field of industrial plants; providing information relating to progress and work status of installation of facilities, apparatus or equipment for industrial plants, namely, industrial plant construction, maintenance and construction project management services in the field of industrial plants; management of progress and work status of inspection of industrial plants prior to repair or maintenance, namely, project management for construction, maintenance and repair of industrial plants; management of progress and work status of repair or maintenance of industrial plants, namely, construction project management services in the field of construction, maintenance and repair of industrial plants; providing information relating to construction progress and construction work status of inspection of industrial plants prior to repair or maintenance; providing information relating to construction progress and construction work status of repair or maintenance of industrial plants; construction management of progress and construction work status of inspection of facilities, apparatus or equipment for industrial plants prior to repair or maintenance; construction management of progress and work status of repair or maintenance of facilities, apparatus or equipment for industrial plants; providing information relating to construction progress and construction work status of inspection of facilities, apparatus or equipment for industrial plants prior to repair or maintenance; providing information relating to construction progress and construction work status of repair or maintenance of facilities, apparatus or equipment for industrial plants Computer program design, programming and maintenance relating to business management and administration; computer program design, programming and maintenance in the fields of planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; computer program design, programming and maintenance utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; computer program design, programming and maintenance for testing, evaluation and certification relating to compatibility of quality or standards; computer program design, programming and maintenance for collecting, analyzing or storing big data, data log or electronic data; computer program design, programming and maintenance and advisory, consultancy and providing information relating to computer program design, programming and maintenance; providing online non downloadable computer programs relating to business management and administration; providing online non-downloadable computer programs for planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; providing online non-downloadable computer programs for utilizing the know-how accumulated through planning, design, procurement, construction, operation, management, maintenance and disposal of industrial plants; providing online non downloadable computer programs for testing, evaluating, and certifications relating to compatibility of quality certification standards; providing online non-downloadable computer programs for collecting, analyzing and storing big data, data log and electronic data in the field of industrial plants; rental of computers; computer technology services in the nature of electronic storage of big data, data logs, and electronic data using computers; computer technology services in the nature of technical analysis of big data, data logs, and electronic data using computers; computer technology services in the nature of providing information relating to the results of electronic storage of big data, data logs, and electronic data using computers; computer technology services in the nature of providing information relating to the results of technical analysis of big data, data logs, and electronic data using computers; rental of server memory space; engineering of industrial plants and advisory, consultancy and providing information relating thereto; design of industrial plants and advisory, consultancy and providing information relating thereto; engineering of industrial plant facilities, apparatus or equipment and advisory, consultancy and providing information relating thereto; design of industrial plant facilities, apparatus or equipment and advisory, consultancy and providing information relating thereto; measurement evaluations, testing, technical research, inspection, evaluation and analysis of industrial plant facilities and advisory, consultancy and providing information relating thereto; measurement evaluations, testing, research, inspection, evaluation and analysis of facilities, apparatus and equipment for industrial plants, and advisory, consultancy and providing information relating thereto; providing information relating to energy saving, namely, research and development in the field of energy; testing, research, inspection, evaluation and analysis relating to energy-saving, namely, energy auditing; providing information relating to testing, research, inspection, evaluation and analysis of energy-saving and results thereof, namely, energy auditing; advisory and consultancy in the field of energy-saving, namely, consulting services in the fields of energy measurement to improve energy efficiency; providing information relating to advisory and consultancy in the field of energy-saving, namely, information relating to energy measurement to improve energy efficiency; testing, and evaluation of goods or services of others to determine conformity with certification standards relating to compatibility of quality or standards, and advisory, consultancy and providing information relating thereto; metering of power consumption of electricity, gas, heat, oil, coal and renewable energy by third parties for electric power providers, namely, electric meter reading services and utility meter reading services; providing information relating to results of measuring of consumption of electricity, gas and other energies, namely, providing information in the fields of energy measurement to improve energy efficiency; data conversion of electronic information using computers and advisory, consultancy and providing information relating thereto; design of machines, apparatus, or instruments or facilities composed of such machines, apparatus, or instruments; architectural design; providing scientific and technical scientific information in the field of engineering, computer software design, construction, AI technology, and big data; remote monitoring of computer systems by remote access to ensure proper functioning; providing information on remote monitoring of computer systems by remote access to ensure proper functioning and results thereof; rental of computer systems and advisory, consultancy and providing information relating thereto, namely, the rental of computer hardware and computer peripherals

70.

DESIGN ASSISTANCE DEVICE, DESIGN ASSISTANCE PROGRAM AND DESIGN ASSISTANCE METHOD

      
Numéro d'application JP2024014281
Numéro de publication 2024/214674
Statut Délivré - en vigueur
Date de dépôt 2024-04-08
Date de publication 2024-10-17
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawai, Eiji
  • Furuichi, Kazuya
  • Koyama, Takanori

Abrégé

The objective of the present invention is to appropriately support the design of a system that uses electric power to produce objects or energy. A design assistance device 10 comprises: a specification acquiring unit 21 that acquires a specification required for a final product produced in a plant that produces final products from raw materials using electric power; a condition acquiring unit 22 that acquires conditions that could affect quality at installation locations in the plant of a plurality of generation paths for producing the final product from the raw materials; and a production path selecting unit 24 that selects a production path recommended in the plant from among the plurality of production paths on the basis of the specification acquired by the specification acquiring unit 21 and the conditions acquired by the condition acquiring unit 22.

Classes IPC  ?

71.

AROMATIC COMPOUND MANUFACTURING METHOD

      
Numéro d'application 18580296
Statut En instance
Date de dépôt 2022-03-23
Date de la première publication 2024-10-10
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hirohata, Osamu
  • Watanabe, Yuria

Abrégé

An object is to reduce an overall cost including the construction cost of a plant and its raw material and energy costs, and also reduce carbon dioxide emissions. An aromatic compound manufacturing method is characterized in that the method comprises: a step A of manufacturing an aromatic compound mixture from a raw material mixture gas containing carbon dioxide or carbon monoxide or both of these and hydrogen; a step B of manufacturing an aromatic compound mixture by a cracked petroleum-derived BTX manufacturing process, a reformate-derived BTX manufacturing process, and a synthetic BTX manufacturing process using naphtha as a raw material; a step C of combining the aromatic compound mixture manufactured in the step A and the aromatic compound mixture manufactured in the step B; and a step D of separating a desired aromatic compound from the aromatic compound mixture combined in the step C and purifying the desired aromatic compound.

Classes IPC  ?

  • C07C 1/12 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir d'anhydride carbonique avec de l'hydrogène
  • C07C 1/04 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir de monoxyde de carbone avec de l'hydrogène
  • C07C 7/12 - Purification, séparation ou stabilisation d'hydrocarburesEmploi d'additifs par adsorption, c.-à-d. purification ou séparation d'hydrocarbures à l'aide de solides, p. ex. à l'aide d'échangeurs d'ions
  • C07C 7/144 - Purification, séparation ou stabilisation d'hydrocarburesEmploi d'additifs par emploi de membranes, p. ex. par perméation sélective

72.

PLANT OPERATION SUPPORT DEVICE, OPERATION SUPPORT PROGRAM, AND OPERATION SUPPORT METHOD

      
Numéro d'application JP2024011252
Numéro de publication 2024/203827
Statut Délivré - en vigueur
Date de dépôt 2024-03-22
Date de publication 2024-10-03
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawai, Eiji
  • Furuichi, Kazuya
  • Koyama, Takanori

Abrégé

The present invention appropriately supports the operation of a system that, using electricity, produces objects or energy. An operation support device (100) is provided with: an electricity information acquisition unit that acquires current information or predicted information regarding the electricity supplied to a plant that produces objects or energy by using electricity; a raw material information acquisition unit that acquires current information or predicted information regarding the raw materials supplied to the plant, said raw materials being for producing objects or energy; and an optimization unit that optimizes the operation of the plant on the basis of the current information or predicted information regarding the electricity supplied to the plant as acquired by the electricity information acquisition unit, the current information or predicted information regarding the raw materials supplied to the plant as acquired by the raw material information acquisition unit, and a plant prediction model for predicting the operation of the plant.

Classes IPC  ?

  • G06Q 50/06 - Fourniture d’énergie ou d’eau
  • G05B 23/02 - Test ou contrôle électrique
  • G06Q 10/04 - Prévision ou optimisation spécialement adaptées à des fins administratives ou de gestion, p. ex. programmation linéaire ou "problème d’optimisation des stocks"

73.

CATALYST FOR PRODUCING P-XYLENE, METHOD FOR PRODUCING CATALYST FOR PRODUCING P-XYLENE, AND METHOD FOR PRODUCING P-XYLENE

      
Numéro d'application JP2024011505
Numéro de publication 2024/203963
Statut Délivré - en vigueur
Date de dépôt 2024-03-22
Date de publication 2024-10-03
Propriétaire
  • NIPPON STEEL CORPORATION (Japon)
  • CHIYODA CORPORATION (Japon)
  • HIGHCHEM CO., LTD. (Japon)
Inventeur(s)
  • Miura, Ayaka
  • Nakao, Kenji
  • Tsubaki, Noritatsu
  • Hirohata, Osamu
  • Yoshimoto, Ryosuke
  • Yu, Lin

Abrégé

Provided are: a catalyst for producing p-xylene, the catalyst comprising a first catalyst containing a ternary composite oxide of chromium, zinc, and zirconium and a second catalyst containing H-ZSM-5 zeolite coated with an oxide containing amorphous silicon; a method for producing the same; and a method for producing p-xylene using the same.

Classes IPC  ?

  • B01J 29/48 - Zéolites aluminosilicates cristallinesLeurs composés isomorphes du type pentasil, p. ex. types ZSM-5, ZSM-8 ou ZSM-11 contenant de l'arsenic, de l'antimoine, du bismuth, du vanadium, du niobium, du tantale, du polonium, du chrome, du molybdène, du tungstène, du manganèse, du technétium ou du rhénium
  • B01J 35/51 - Sphères
  • B01J 37/04 - Mélange
  • B01J 37/08 - Traitement thermique
  • B01J 37/10 - Traitement thermique en présence d'eau, p. ex. de vapeur d'eau
  • C01B 39/38 - Type ZSM-5
  • C07B 61/00 - Autres procédés généraux
  • C07C 1/12 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir d'anhydride carbonique avec de l'hydrogène
  • C07C 15/08 - Xylènes

74.

PROGRAM, METHOD, AND SYSTEM

      
Numéro d'application JP2024010201
Numéro de publication 2024/195717
Statut Délivré - en vigueur
Date de dépôt 2024-03-15
Date de publication 2024-09-26
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Yoneyama, Toru

Abrégé

Provided are a program, a method, and a system with which it is possible to limit the data capacity of a virtual model of a plant. This program, which is to be executed by a system having a processor, causes the processor to execute: a step for storing information regarding a facility model that is a 3D model in a storage unit, for each of a plurality of facilities constituting a plant, the information regarding the facility model including a setting of a detail level which may be set in a step-wise manner so as to be different between the facilities, and the 3D model corresponding to the detail level; a step for receiving an input operation from a user for displaying the plurality of facilities on a screen; a step for rendering the facility model of each of the plurality of facilities arranged in a virtual space, in response to the input operation, on the basis of the setting of the detail level that is set for each of the facilities and may be different between the facilities; and a step for displaying the rendering result to the user.

Classes IPC  ?

75.

HYDROGEN SUPPLY SYSTEM AND METHOD FOR OPERATING SAME

      
Numéro d'application JP2024008962
Numéro de publication 2024/190642
Statut Délivré - en vigueur
Date de dépôt 2024-03-08
Date de publication 2024-09-19
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kawakami Madoka
  • Kawai Hironori
  • Okada Masataka
  • Nihira Masayuki
  • Kohiyama Terumi

Abrégé

[Problem] To provide: a hydrogen generation system in which the amount of a hydrogen gas to be supplied can be changed rapidly; and a method for operating the hydrogen generation system. [Solution] A hydrogen supply system 1 is provided with: a vaporizer 3 which vaporizes a liquid hydrogen carrier; a dehydrogenation reactor 4 which receives the supply of the hydrogen carrier that has been vaporized in the vaporizer and generates hydrogen through a dehydrogenation reaction of the hydrogen carrier; and a control device 30 which controls the flow rate of the gaseous hydrogen carrier flowing through an outlet port of the vaporizer. The control device may control the flow rate of the gaseous hydrogen carrier flowing through the outlet port of the vaporizer by controlling the quantity of heat for heating the hydrogen carrier. The hydrogen supply system 1 is further provided with: a main passage L6 which is connected to an outlet port of the dehydrogenation reactor and runs through a first vaporizer; a bypass passage L7 which is connected to the main passage and bypasses the first vaporizer; and a first flow rate control valve V6 which is provided in at least one of the main passage and the bypass passage.

Classes IPC  ?

  • C01B 3/00 - HydrogèneMélanges gazeux contenant de l'hydrogèneSéparation de l'hydrogène à partir de mélanges en contenantPurification de l'hydrogène
  • B01J 4/00 - Dispositifs d'alimentationDispositifs de commande d'alimentation ou d'évacuation
  • B01J 7/00 - Appareillage pour la production de gaz
  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs
  • F02M 21/02 - Appareils pour alimenter les moteurs en combustibles non liquides, p. ex. en combustibles gazeux stockés sous forme liquide en combustibles gazeux
  • F17C 9/04 - Récupération de l'énergie thermique

76.

HEAT FLUX ACQUISITION DEVICE, HEAT FLUX ACQUISITION SYSTEM, AND HEAT FLUX ACQUISITION METHOD FOR HEATING FURNACE

      
Numéro d'application JP2023005898
Numéro de publication 2024/176281
Statut Délivré - en vigueur
Date de dépôt 2023-02-20
Date de publication 2024-08-29
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Kaji Junichiro

Abrégé

[Problem] To easily obtain the local heat flux of an object in a heating furnace. [Solution] A heat flux acquisition device 4 comprises a processor that executes a process for acquiring the heat flux of an object 12 in a heating furnace 2. The processor acquires an object point temperature measured by a temperature sensor 23 for the object point on the outer surface of the object 12, acquires the environmental temperature corresponding to the object point, and calculates the local heat flux for the object point on the basis of the object point temperature and the corresponding environmental temperature.

Classes IPC  ?

77.

CATHODE ELECTRODE, COMPOSITE BODY OF CATHODE ELECTRODE AND BASE MATERIAL, ELECTROLYTIC REDUCTION DEVICE PROVIDED WITH CATHODE ELECTRODE, AND METHOD FOR PRODUCING COMPOSITE BODY OF CATHODE ELECTRODE AND BASE MATERIAL

      
Numéro d'application JP2024005169
Numéro de publication 2024/172102
Statut Délivré - en vigueur
Date de dépôt 2024-02-15
Date de publication 2024-08-22
Propriétaire
  • FURUKAWA ELECTRIC CO., LTD. (Japon)
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Mitsuhashi Yuri
  • Yamamoto Takahiro
  • Mimura Yu
  • Yamamoto Kiyoshi
  • Sugiyama Masakazu
  • Minegishi Tsutomu
  • Takeda Dai
  • Matsumoto Jun

Abrégé

The present invention provides a cathode electrode with which selectivity of hydrogen is decreased and a catalytic reaction for generating an olefinic hydrocarbon such as ethylene and an alcohol such as ethanol through a reduction reaction of carbon dioxide can be stably maintained for a long period of time with high efficiency. The present invention provides a cathode electrode which electrically reduces carbon dioxide, and contains copper, wherein the copper is surface-modified with a cation exchange substance that is substituted by a metal ion.

Classes IPC  ?

  • C25B 11/073 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique
  • B01J 31/10 - Résines échangeuses d'ions sulfonées
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • B01J 37/12 - Oxydation
  • C07C 1/02 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone
  • C07C 11/04 - Éthylène
  • C23C 20/08 - Revêtement avec des matériaux inorganiques autres que des matériaux métalliques avec des composés, des mélanges ou des solutions solides, p. ex. borures, carbures, nitrures
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/07 - Composés contenant au moins un atome d’oxygène
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 9/00 - Cellules ou assemblages de cellulesÉléments de structure des cellulesAssemblages d'éléments de structure, p. ex. assemblages d'électrode-diaphragmeCaractéristiques des cellules relatives aux procédés
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/052 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques
  • C25B 11/055 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau du substrat ou du support
  • C25B 11/061 - Métal ou alliage
  • C25B 11/065 - Carbone

78.

Fluid state estimation system, learning device, learning program, estimation device, and estimation program

      
Numéro d'application 18533614
Numéro de brevet 12282720
Statut Délivré - en vigueur
Date de dépôt 2023-12-08
Date de la première publication 2024-08-15
Date d'octroi 2025-04-22
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Furuichi, Kazuya
  • Irikura, Motoki
  • Kaji, Junichiro
  • Hori, Tatsuro
  • Kakuta, Nobuhiro
  • Nakayama, Ryo

Abrégé

A fluid state estimation system includes: a learning device that learns an estimation model for estimating a state of a fluid in at least any one of an inside of a component of a plant, an outside of the component of the plant and an inside of a building of the plant, an outside of the building of the plant and an inside of a site of the plant, and a periphery of an outside of the site of the plant; and an estimation device that estimates a state of a fluid using the estimation model learned by the learning device. The estimation model gets a value of an input variable, and outputs a value of fluid state information representing a state of a fluid.

Classes IPC  ?

  • G06F 30/28 - Optimisation, vérification ou simulation de l’objet conçu utilisant la dynamique des fluides, p. ex. les équations de Navier-Stokes ou la dynamique des fluides numérique [DFN]
  • G06F 30/27 - Optimisation, vérification ou simulation de l’objet conçu utilisant l’apprentissage automatique, p. ex. l’intelligence artificielle, les réseaux neuronaux, les machines à support de vecteur [MSV] ou l’apprentissage d’un modèle

79.

Method for producing para-xylene

      
Numéro d'application 18556902
Numéro de brevet 12617739
Statut Délivré - en vigueur
Date de dépôt 2022-03-23
Date de la première publication 2024-07-04
Date d'octroi 2026-05-05
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hirohata, Osamu
  • Ito, Tadashi
  • Masagaki, Taichiro
  • Watanabe, Yuria

Abrégé

The method is for producing para-xylene using, as a main raw material, a mixed gas of carbon dioxide or carbon monoxide or both thereof and hydrogen. The method including: a reaction step of bringing a raw material mixed gas including the mixed gas into contact with a reaction catalyst under high temperature and high pressure to cause a reaction, to thereby obtain a product gas mixture containing para-xylene; a separation step of cooling the product gas mixture obtained in the reaction step to condense a high boiling point component, to thereby separate the product gas mixture into a water phase containing a water-soluble component, an oil phase containing a xylene mixture, and a gas phase containing an unreacted gas; and a circulation step of mixing at least part of the gas phase having been separated in the separation step into the raw material mixed gas.

Classes IPC  ?

  • C07C 1/12 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir d'anhydride carbonique avec de l'hydrogène
  • C07C 1/04 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir de monoxyde de carbone avec de l'hydrogène
  • C07C 7/00 - Purification, séparation ou stabilisation d'hydrocarburesEmploi d'additifs

80.

HYDROGENATION CATALYST, FLOW-TYPE ORGANIC SYNTHESIS SYSTEM USING THE SAME, AND MANUFACTURING METHOD OF HYDROGENATED ORGANIC COMPOUND

      
Numéro d'application 18555886
Statut En instance
Date de dépôt 2022-03-29
Date de la première publication 2024-07-04
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kado, Shigeru
  • Watanabe, Toshiyuki
  • Kiryu, Asako

Abrégé

[Task] The task is to improve, in the hydrogenation of an aromatic halonitro compound, the yield of halogenated aromatic amine as a target product without the need for a dehalogenation inhibitor while suppressing the production of a nitroso compound. [Task] The task is to improve, in the hydrogenation of an aromatic halonitro compound, the yield of halogenated aromatic amine as a target product without the need for a dehalogenation inhibitor while suppressing the production of a nitroso compound. [Solution] A hydrogenation catalyst for hydrogenation of an aromatic halonitro compound includes: a carrier containing at least one of silica, titania, and alumina; and at least one metal carried by the carrier and selected from group 10 elements in a periodic table.

Classes IPC  ?

  • B01J 23/44 - Palladium
  • B01J 21/06 - Silicium, titane, zirconium ou hafniumLeurs oxydes ou hydroxydes
  • B01J 35/64 - Diamètre des pores
  • B01J 35/70 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général caractérisés par leurs propriétés cristallines, p. ex. semi-cristallines
  • C07C 209/36 - Préparation de composés contenant des groupes amino liés à un squelette carboné par réduction de liaisons azote-oxygène ou azote-azote par réduction de groupes nitro par réduction de groupes nitro liés à des atomes de carbone de cycles aromatiques à six chaînons

81.

PROJECT PROGRESS PREDICTION METHOD, PROGRESS PREDICTION DEVICE, AND PROGRESS PREDICTION PROGRAM

      
Numéro d'application JP2022045443
Numéro de publication 2024/122049
Statut Délivré - en vigueur
Date de dépôt 2022-12-09
Date de publication 2024-06-13
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Furuichi Kazuya
  • Oki Eisuke
  • Yasui Takehito

Abrégé

[Problem] To make it possible to predict progress including subsequent deadlines at an intermediate point in a step of an ongoing project through a simple process. [Solution] A method for predicting the progress of a project including at least one step is configured to: acquire progress plan data including the progress level of the step and the corresponding execution time; acquire progress performance data including the progress level of the completed part of the progress plan and the corresponding execution time; calculate a performance period from a reference time of a step to a predetermined time when the predetermined progress level has been achieved, on the basis of the progress performance data; calculate a plan period from the reference time of the step to a time when the same progress level as the predetermined progress level has been achieved, on the basis of the progress plan data; calculate a progress evaluation index regarding the progress of a step on the basis of an actual period and the plan period; and predict the progress performance data after the predetermined time on the basis of the progress evaluation index.

Classes IPC  ?

  • G06Q 10/0639 - Analyse des performances des employésAnalyse des performances des opérations d’une entreprise ou d’une organisation

82.

Manufacturing method of butadiene

      
Numéro d'application 18548980
Numéro de brevet 12384735
Statut Délivré - en vigueur
Date de dépôt 2022-03-01
Date de la première publication 2024-05-16
Date d'octroi 2025-08-12
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • UBE CORPORATION (Japon)
Inventeur(s)
  • Shimura, Mitsunori
  • Takeda, Dai
  • Matsumoto, Jun
  • Yamada, Atsushi
  • Nagao, Yuki

Abrégé

A manufacturing method of butadiene includes an electrolytic reduction process that produces ethylene and oxygen from carbon dioxide and water as a raw material by electrolytic reduction, a butene producing process that produces butene by dimerizing the ethylene produced in the electrolytic reduction process, a mixing process that prepares a mixed gas by mixing the oxygen produced in the electrolytic reduction process, the butene produced in the butene producing process, and air, and a butadiene producing process that produces butadiene by heating the mixed gas and oxidatively dehydrogenating the butene, wherein carbon dioxide by-produced in the butadiene producing process is used as a portion of the raw material in the electrolytic reduction process.

Classes IPC  ?

  • C25B 3/26 - Réduction du dioxyde de carbone
  • C07C 2/08 - Procédés catalytiques
  • C07C 5/48 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant le même nombre d'atomes de carbone par déshydrogénation avec un accepteur d'hydrogène avec l'oxygène comme accepteur
  • C25B 1/04 - Hydrogène ou oxygène par électrolyse de l'eau
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 15/029 - Concentration
  • C25B 15/08 - Alimentation ou vidange des réactifs ou des électrolytesRégénération des électrolytes

83.

ZEOLITE COMPOSITE CATALYST, AND METHOD FOR PERFORMING HYDROGENOLYSIS OF CYCLIC COMPOUND HAVING FIVE-MEMBER RING STRUCTURE USING SAME

      
Numéro d'application JP2023040180
Numéro de publication 2024/101384
Statut Délivré - en vigueur
Date de dépôt 2023-11-08
Date de publication 2024-05-16
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hodoshima Shinya
  • Imagawa Kenichi
  • Motomiya Azusa

Abrégé

[Problem] To perform selective hydrogenolysis of a cyclic compound that has a five-member ring structure and is included in an aromatic compound used as a hydrogen carrier. [Solution] Provided is a zeolite composite catalyst to be used in hydrogenolysis of a cyclic compound that has a five-member ring structure and is included in an aromatic compound used as a hydrogen carrier, the zeolite composite catalyst containing aluminum or gallium, and also containing a zeolite having an MFI-type structure as a binder.

Classes IPC  ?

  • B01J 29/40 - Zéolites aluminosilicates cristallinesLeurs composés isomorphes du type pentasil, p. ex. types ZSM-5, ZSM-8 ou ZSM-11
  • B01J 29/87 - GallosilicatesAluminogallosilicatesGalloborosilicates
  • B01J 29/88 - FerrosilicatesFerroaluminosilicates
  • C07B 61/00 - Autres procédés généraux
  • C07C 5/02 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant le même nombre d'atomes de carbone par hydrogénation
  • C07C 9/14 - Hydrocarbures saturés acycliques de cinq à quinze atomes de carbone

84.

METHOD FOR CREATING MACHINE LEARNING MODEL FOR ESTIMATING STATE OF FLUID INSIDE TANK, AND METHOD FOR ESTIMATING STATE OF FLUID INSIDE TANK USING MACHINE LEARNING MODEL

      
Numéro d'application JP2023037667
Numéro de publication 2024/090302
Statut Délivré - en vigueur
Date de dépôt 2023-10-18
Date de publication 2024-05-02
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Yasui Takehito
  • Ito Yuzuru
  • Kitamoto Junko
  • Sugiyama Satoshi

Abrégé

[Problem] To provide a method for creating a machine learning model capable of quickly and accurately estimating a state of the inside of a tank. [Solution] This method for creating a machine learning model for estimating the state of a fluid inside a tank includes: a step for creating a plurality of parameter sets by varying operating conditions and substance information, the parameter sets containing tank information including at least the shape and the dimensions of the tank, tank operating conditions, and substance information including at least the amount and the properties of a plurality of substances contained in the fluid; a step for performing numerical fluid dynamics analysis on the basis of the plurality of parameter sets, and acquiring a plurality of results of computation with respect to fluid information which includes at least substance amounts and the distribution of physical amounts relating to the fluid inside the tank; and a step for creating a machine learning model by performing machine learning using, as teaching data, the plurality of computation results corresponding to the plurality of parameter sets.

Classes IPC  ?

  • C12M 1/34 - Mesure ou test par des moyens de mesure ou de détection des conditions du milieu, p. ex. par des compteurs de colonies
  • G06N 20/00 - Apprentissage automatique

85.

LIQUID FUEL PRODUCTION SYSTEM AND METHOD FOR PRODUCING LIQUID FUEL

      
Numéro d'application JP2023009787
Numéro de publication 2024/070011
Statut Délivré - en vigueur
Date de dépôt 2023-03-14
Date de publication 2024-04-04
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Shimura Mitsunori
  • Matsumoto Jun
  • Takeda Dai

Abrégé

[Problem] To provide a liquid fuel production system and a method for producing a liquid fuel that are capable of reducing the amount of hydrogen gas used. [Solution] The liquid fuel production system 1 has: an electrolytic reduction device 2 that obtains a mixed gas and oxygen gas by electrolytic reduction of carbon dioxide and water; a carbon dioxide separation device 3 that separates carbon dioxide from the mixed gas; a water separation device 4 that separates water from the mixed gas; a cryogenic separation device 5 that separates the mixed gas into ethylene, hydrogen, and residual off-gas; a first reaction device 6 that obtains a first mixture by oligomerization of the ethylene obtained by the cryogenic separation device; a first separation device 7 that separates light hydrocarbons from the first mixture; a second reaction device 8 that obtains a second mixture containing a liquid fuel by hydrocracking and hydroisomerizing the first mixture; and a second separation device 9 that separates the second mixture into at least liquid fuel, cracking gas, and heavy hydrocarbons.

Classes IPC  ?

  • C10G 69/12 - Traitement des huiles d'hydrocarbures par au moins un procédé d'hydrotraitement et au moins un autre procédé de conversion uniquement par plusieurs étapes en série comprenant au moins une étape de polymérisation ou d'alkylation
  • C10G 2/00 - Production de mélanges liquides d'hydrocarbures de composition non définie à partir d'oxydes de carbone
  • C10G 45/58 - Raffinage des huiles d'hydrocarbures au moyen d'hydrogène ou de composés donneurs d'hydrogène pour changer la structure du squelette de certains hydrocarbures sans craquer les autres hydrocarbures présents, p. ex. pour abaisser le point d'écoulementHydrocraquage sélectif des paraffines normales
  • C10G 47/00 - Craquage des huiles d'hydrocarbures, en présence d'hydrogène ou de composés donneurs d'hydrogène, pour obtenir des fractions à point d'ébullition inférieur
  • C10G 50/00 - Production de mélanges d'hydrocarbures liquides à partir d'hydrocarbures à nombre inférieur d'atomes de carbone, p. ex. par oligomérisation
  • C25B 1/04 - Hydrogène ou oxygène par électrolyse de l'eau
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 9/00 - Cellules ou assemblages de cellulesÉléments de structure des cellulesAssemblages d'éléments de structure, p. ex. assemblages d'électrode-diaphragmeCaractéristiques des cellules relatives aux procédés

86.

METAL CATALYST AND METHOD FOR HYDROGENOLYSIS OF CYCLIC COMPOUND USING SAME

      
Numéro d'application JP2023032244
Numéro de publication 2024/053607
Statut Délivré - en vigueur
Date de dépôt 2023-09-04
Date de publication 2024-03-14
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • NATIONAL UNIVERSITY CORPORATION YOKOHAMA NATIONAL UNIVERSITY (Japon)
Inventeur(s)
  • Kubota Yoshihiro
  • Inagaki Satoshi
  • Orui Yuki
  • Maekawa Yuki
  • Imagawa Kenichi
  • Hodoshima Shinya

Abrégé

[Problem] To perform selective hydrogenolysis of a cyclic compound having a five-membered ring structure and included in a saturated cyclic compound used as a hydrogen carrier. [Solution] This metal catalyst used in the hydrogenolysis of a cyclic compound having a five-membered ring structure and included in a saturated cyclic compound used as a hydrogen carrier, comprises: a silica-based carrier as a catalyst carrier; and iridium or rhodium as a metal supported on the catalyst carrier.

Classes IPC  ?

  • B01J 23/46 - Ruthénium, rhodium, osmium ou iridium
  • B01J 29/035 - Polymorphes de silice cristallins, p. ex. silicalites
  • C07B 61/00 - Autres procédés généraux
  • C07C 5/02 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant le même nombre d'atomes de carbone par hydrogénation
  • C07C 9/14 - Hydrocarbures saturés acycliques de cinq à quinze atomes de carbone

87.

PROTON CONDUCTOR AND MANUFACTURING METHOD THEREOF

      
Numéro d'application 18260842
Statut En instance
Date de dépôt 2021-08-12
Date de la première publication 2024-02-15
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • KYOTO UNIVERSITY (Japon)
Inventeur(s)
  • Okada, Yoshimi
  • Yasunishi, Takuo
  • Imagawa, Kenichi
  • Eguchi, Koichi
  • Matsui, Toshiaki
  • Muroyama, Hiroki
  • Ozeki, Takashi

Abrégé

[Task] Provided is a proton conductor and a manufacturing method thereof that are suitable for the use in a temperature range between 200° C. and 600° C. [Task] Provided is a proton conductor and a manufacturing method thereof that are suitable for the use in a temperature range between 200° C. and 600° C. [Solution] A proton conductor has electric conductivity of 0.01 S/cm or more at 300° C., wherein a portion of lithium ions of Li14−2xZn1+x(GeO4)4 is substituted with protons. The x is a number equal to or more than 0. 40% to 70% inclusive of movable lithium ions contained in Li14−2xZn1+x(GeO4)4 may be substituted with the protons. 50% to 60% inclusive of movable lithium ions contained in Li14−2xZn1+x as (GeO4)4 may be substituted with the protons. A manufacturing method of a proton conductor comprises a process of substituting a portion of lithium ions with protons by immersing Li14−2xZn1+x(GeO4)4 in a non-aqueous organic solvent containing acid.

Classes IPC  ?

  • H01M 8/1246 - Éléments à combustible avec électrolytes solides fonctionnant à haute température, p. ex. avec un électrolyte en ZrO2 stabilisé caractérisés par le procédé de fabrication ou par le matériau de l’électrolyte l'électrolyte étant constitué d’oxydes

88.

INFORMATION PROCESSING DEVICE, DATA STRUCTURE, INFORMATION PROCESSING PROGRAM, AND INFORMATION PROCESSING METHOD

      
Numéro d'application JP2022030072
Numéro de publication 2024/029064
Statut Délivré - en vigueur
Date de dépôt 2022-08-05
Date de publication 2024-02-08
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Sato Hideki
  • Ikawa Shizuka
  • Irikura Motoki

Abrégé

This information processing device comprises: a first data acquisition unit 127 that acquires a first data set including at least first process data relating to a first process and first system data relating to a system in which the first process is executed; a second data acquisition unit 128 that acquires a second data set including at least second process data relating to a second process and second system data relating to a system in which the second process is executed; and an extraction unit 129 that extracts, from the first data set and the second data set, either or both of a grouping of first process data and second process data having the same or similar content and a grouping of first system data and second system data having the same or similar content, and stores the correspondence relationship of the data in an identifiable manner in a storage unit.

Classes IPC  ?

  • G06F 30/10 - CAO géométrique
  • G06F 30/27 - Optimisation, vérification ou simulation de l’objet conçu utilisant l’apprentissage automatique, p. ex. l’intelligence artificielle, les réseaux neuronaux, les machines à support de vecteur [MSV] ou l’apprentissage d’un modèle

89.

ABNORMALITY DETECTION DEVICE, ABNORMALITY DETECTION PROGRAM, AND LEARNING DEVICE

      
Numéro d'application 18480689
Statut En instance
Date de dépôt 2023-10-04
Date de la première publication 2024-02-08
Propriétaire
  • CHIYODA CORPORATION (Japon)
  • GRIDINC (Japon)
Inventeur(s)
  • Mineta, Yuriya
  • Obata, Tomoyuki

Abrégé

An abnormality detection device includes: a process value acquirer that acquires, during operation of a plant including a plurality of devices, a process value of at least one monitoring target device among the plurality of devices; a command value acquirer that acquires a command value of a control operation amount for controlling the monitoring target device; and an abnormality detector that detects an abnormality of the monitoring target device on the basis of a relationship between a fluctuation range of a process value acquired by the process value acquirer and a fluctuation range of a command value acquired by the command value acquirer during a predetermined period.

Classes IPC  ?

90.

ASSISTANCE METHOD, ASSISTANCE DEVICE, AND ASSISTANCE PROGRAM

      
Numéro d'application JP2022030071
Numéro de publication 2024/029063
Statut Délivré - en vigueur
Date de dépôt 2022-08-05
Date de publication 2024-02-08
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Sato Hideki
  • Ikawa Shizuka
  • Irikura Motoki

Abrégé

This assistance method comprises: a step in which, when a process to be executed in a plant is executed in a reduced system that is smaller in scale than the plant, information relating to the process or the reduced system is acquired; and a step in which at least part of a model for predicting the process executed in the plant or in an intermediate system having an intermediate scale between the plant and the reduced system is generated from the information on the basis of a relationship between the systems when the process is executed in a plurality of systems differing in scale.

Classes IPC  ?

  • G06F 30/10 - CAO géométrique
  • G06F 30/27 - Optimisation, vérification ou simulation de l’objet conçu utilisant l’apprentissage automatique, p. ex. l’intelligence artificielle, les réseaux neuronaux, les machines à support de vecteur [MSV] ou l’apprentissage d’un modèle

91.

PRODUCTION SYSTEM

      
Numéro d'application JP2022030089
Numéro de publication 2024/029069
Statut Délivré - en vigueur
Date de dépôt 2022-08-05
Date de publication 2024-02-08
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s) Sato Hideki

Abrégé

[Problem] To control the state of a final product in a production system including a plurality of successive processes. [Solution] A control system 1 has: a first device 2; a second device 3; a first sensor 21; a second sensor 23; and a control device 30 that controls the first device on the basis of a first conditions list including a plurality of control parameters for the first device and controls the second device on the basis of a second conditions list including a plurality of control parameters for the second device. The control device acquires first processed object information on the basis of a first model whereby first processed object information relating to the properties of a first processed object is output with respect to starting material information and first device information, acquires correction values for the second conditions list on the basis of a second model whereby correction values for the second conditions list are output with respect to the first processed object information, acquires a corrected second conditions list on the basis of the second conditions list and the correction values for the second conditions list, and controls the second device on the basis of the corrected second conditions list.

Classes IPC  ?

92.

CATHODE ELECTRODE, COMPOSITE OF CATHODE ELECTRODE AND SUBSTRATE, ELECTROLYTIC REDUCTION DEVICE COMPRISING CATHODE ELECTRODE, AND METHOD FOR PRODUCING COMPOSITE OF CATHODE ELECTRODE AND SUBSTRATE

      
Numéro d'application JP2023026947
Numéro de publication 2024/024709
Statut Délivré - en vigueur
Date de dépôt 2023-07-24
Date de publication 2024-02-01
Propriétaire
  • FURUKAWA ELECTRIC CO., LTD. (Japon)
  • CHIYODA CORPORATION (Japon)
  • THE UNIVERSITY OF TOKYO (Japon)
Inventeur(s)
  • Yamamoto Takahiro
  • Yamamoto Kiyoshi
  • Mimura Yu
  • Sugiyama Masakazu
  • Minegishi Tsutomu
  • Yamaguchi Shingi
  • Matsumoto Jun
  • Takeda Dai

Abrégé

The present invention provides: a cathode electrode that makes it possible to maintain, stably and with high efficiency over a long period, a catalytic reaction that produces an alcohol such as ethanol or an olefin-based hydrocarbon such as ethylene via a reduction reaction of carbon dioxide; and a composite of a cathode electrode and a substrate. Provided is a cathode electrode that electrically reduces carbon dioxide, said cathode electrode comprising copper and at least one additional element selected from the group consisting of aluminum, boron, gallium, zinc, titanium, and silicon, wherein the copper includes zero-valent copper, monovalent copper, and/or divalent copper.

Classes IPC  ?

  • C25B 11/091 - Électrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé d’au moins un élément catalytique et d’au moins un composé catalytiqueÉlectrodes comportant des électro-catalyseurs sur un substrat ou un support caractérisées par le matériau électro-catalytique formé de plusieurs éléments catalytiques ou composés catalytiques
  • B01J 23/72 - Cuivre
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • C22C 9/00 - Alliages à base de cuivre
  • C23C 28/00 - Revêtement pour obtenir au moins deux couches superposées, soit par des procédés non prévus dans un seul des groupes principaux , soit par des combinaisons de procédés prévus dans les sous-classes et
  • C25B 1/23 - Oxyde de carbone ou gaz de synthèse
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/07 - Composés contenant au moins un atome d’oxygène
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 11/031 - Électrodes poreuses
  • C25B 11/053 - Électrodes comportant un substrat et un ou plusieurs revêtements électro-catalytiques caractérisées par des revêtements électro-catalytiques multicouches
  • C25B 11/061 - Métal ou alliage
  • C25B 11/065 - Carbone
  • C25B 11/077 - Oxyde de métal non noble

93.

HYDROGENATION CATALYST, AND FLOW-TYPE ORGANIC SYNTHESIS SYSTEM AND METHOD FOR PRODUCING HYDROGENATED ORGANIC COMPOUND USING SAME

      
Numéro d'application JP2023025732
Numéro de publication 2024/018965
Statut Délivré - en vigueur
Date de dépôt 2023-07-12
Date de publication 2024-01-25
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Kado Shigeru
  • Watanabe Toshiyuki
  • Kiryu Asako
  • Maeda Kyogo

Abrégé

[Problem] To suppress any reduction in the selectivity of halogenated aromatic amines of a target product caused by a halogen separation reaction in hydrogenation of an aromatic halonitro compound. [Solution] A hydrogenation catalyst that is used in hydrogenating an aromatic halonitro compound, wherein the hydrogenation catalyst is configured to contain a carrier that contains at least one of titania and alumina, and palladium that is supported on the carrier, the average particle diameter of the palladium being 9.7 nm or less.

Classes IPC  ?

  • B01J 23/44 - Palladium
  • B01J 35/10 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général solides caractérisés par leurs propriétés de surface ou leur porosité
  • C07C 209/36 - Préparation de composés contenant des groupes amino liés à un squelette carboné par réduction de liaisons azote-oxygène ou azote-azote par réduction de groupes nitro par réduction de groupes nitro liés à des atomes de carbone de cycles aromatiques à six chaînons
  • C07C 211/52 - Composés contenant des groupes amino liés à un squelette carboné ayant des groupes amino liés à des atomes de carbone de cycles aromatiques à six chaînons du squelette carboné ayant des groupes amino liés à un seul cycle aromatique à six chaînons le squelette carboné étant substitué de plus par des atomes d'halogène ou par des groupes nitro ou nitroso
  • C07B 61/00 - Autres procédés généraux

94.

PEPTIDE PRODUCTION DEVICE AND PEPTIDE PRODUCTION METHOD

      
Numéro d'application JP2022027207
Numéro de publication 2024/013784
Statut Délivré - en vigueur
Date de dépôt 2022-07-11
Date de publication 2024-01-18
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Matsumoto Osamu
  • Okubo Hiroyuki
  • Arai Yasuhiro
  • Yoshida Sho

Abrégé

[Problem] To enable, even when the capacity of a reaction vessel is increased, implementation of multiple steps pertaining to solid state synthesis of a peptide using the same reaction vessel. [Solution] A peptide production device 1 is configured to comprise: a reaction vessel 3 used to elongate a peptide chain binding to a carrier; a stirring device 11 having one or more stirring blades 15, 16 for stirring contents of the reaction vessel 3; a filtering device 25 that allows foreign substances generated during peptide chain elongation to pass so that the foreign substances can be discharged from the reaction vessel 3 and that traps the carrier; a cleaning solvent introduction pipe P3 that is composed of a plurality of pipes connected to the reaction vessel 3 and that introduces, into the reaction vessel 3, a cleaning solvent for cleaning foreign substances; a drying substituent solvent introduction pipe P3 for introducing, into the reaction vessel 3, a drying substituent solvent for drying the carrier to which an elongated peptide chain has bound; an exhaust pipe P5a for vacuum exhausting gas inside the reaction vessel 3; and an inert gas introduction pipe P2 for introducing an inert gas into the reaction vessel 3.

Classes IPC  ?

  • C07K 1/06 - Procédés généraux de préparation de peptides utilisant des groupes protecteurs ou des agents d'activation

95.

SPERA

      
Numéro d'application 1771348
Statut Enregistrée
Date de dépôt 2023-07-10
Date d'enregistrement 2023-07-10
Propriétaire Chiyoda Corporation (Japon)
Classes de Nice  ?
  • 01 - Produits chimiques destinés à l'industrie, aux sciences ainsi qu'à l'agriculture
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 37 - Services de construction; extraction minière; installation et réparation
  • 39 - Services de transport, emballage et entreposage; organisation de voyages
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception
  • 45 - Services juridiques; services de sécurité; services personnels pour individus

Produits et services

Hydrogen; toluene; methylcyclohexane; other chemicals including aromatics, aliphatics, phenols, ethers, organic acids, alkalies, chemical preparations, oxides, catalysts. Hydrogen fuels, solid fuels, liquid fuels, gaseous fuels, other fuels, solid lubricants, industrial oil, non-mineral oils and greases for industrial purposes [not for fuel], waxes [raw material]. Fueling of hydrogen gas for vehicles, and advisory or information services relating thereto; inspection prior to maintenance and repair, repair or maintenance of vehicles in hydrogen stations, and advisory or information services relating thereto; installation of hydrogen station equipment and their parts, and advisory or information services relating thereto; installation of hydrogen gas supply units and their parts, and advisory or information services relating thereto; inspection prior to maintenance and repair, repair or maintenance of hydrogen station equipment and their parts, and advisory or information services relating thereto; inspection prior to maintenance and repair, repair or maintenance of hydrogen gas supply units and their parts, and advisory or information services relating thereto; remote monitoring of operation of hydrogen station equipment and providing information relating to monitoring results, including via communication networks, for the purpose of repair, maintenance and installation; remote monitoring of operation of hydrogen gas supply units and providing information relating to monitoring results, including via communication networks, for the purpose of repair, maintenance and installation, for the purpose of repair, maintenance and installation; fueling of gasoline for vehicles, and advisory or information services relating thereto; inspection prior to maintenance and repair, repair or maintenance of vehicles in gasoline stations, and advisory or information services relating thereto; installation of gasoline station equipment and their parts, and advisory or information services relating thereto; installation of gasoline supply units and their parts, and advisory or information services relating thereto; inspection prior to maintenance and repair, repair or maintenance of gasoline station equipment and their parts, and advisory or information services relating thereto; inspection prior to maintenance and repair, repair or maintenance of gasoline supply units and their parts, and advisory or information services relating thereto; remote monitoring of operation of gasoline station equipment and providing information relating to monitoring results, including via communication networks for the purpose of repair, maintenance and installation; remote monitoring of operation of gasoline supply units and providing information relating to monitoring results, including via communication networks for the purpose of repair, maintenance and installation. Hydrogen distribution and brokerage thereof; gaseous or liquid fuel distribution and brokerage thereof; distribution of energy including gas, electricity, water and heat, and brokerage thereof; transportation and storage of hydrogen, gas, water, fuel, chemicals or energy, and brokerage thereof; transportation and storage, and brokerage thereof; storage and bottling of hydrogen after chemical reaction with toluene, and brokerage thereof; storage and bottling of hydrogen produced by dehydrogenation of methylcyclohexane, and brokerage thereof; storage and bottling of hydrogen; storage and bottling of methylcyclohexane produced by hydrogenation of toluene, and brokerage thereof; storage and bottling of methylcyclohexane, and brokerage thereof; storage and bottling of chemicals or fuels produced through chemical reactions, and brokerage thereof; storage and bottling of chemicals or fuels, and brokerage thereof; transportation by rail, automobile, boat and airplane; packaging of goods; warehousing services; temporary storage of personal belongings; temporary storage of deliveries; rental of gasoline supplying equipment (not for repair and maintenance of automobiles); rental of hydrogen supplying equipment (not for repair and maintenance of automobiles); advisory, consultancy or information services in relation to all of the aforesaid. Technological consultancy relating to dehydrogenation technology, and information services relating thereto; technological consultancy in the field of chemistry, and information services relating thereto; technological consultancy in the field of transport of chemicals, and information services relating thereto; technological consultancy relating to transportation, and information services relating thereto; testing, research, investigation, evaluation or analysis relating to dehydrogenation technology, and advisory, consultancy or information (including result information) services relating thereto; testing, research, investigation, evaluation or analysis in the field of chemistry, and advisory, consultancy or information (including result information) services relating thereto; testing, research, investigation, evaluation or analysis in the field of transport of chemicals, and advisory, consultancy or information (including result information) services relating thereto; testing, research, investigation, evaluation or analysis relating to transportation, and advisory, consultancy or information (including result information) services relating thereto; engineering or design of hydrogen station equipment and their parts, and advisory or information services relating thereto; engineering or design of hydrogen gas supply units and their parts, and advisory or information services relating thereto; engineering or design of hydrogen stations, and advisory or information services relating thereto; engineering or design of gasoline station equipment and their parts, and advisory or information services relating thereto; engineering or design of gasoline supply units and their parts, and advisory or information services relating thereto; engineering or design of gasoline stations, and advisory or information services relating thereto; computer software design, computer programming, or maintenance of computer software, and advisory, consultancy or information services relating thereto; providing computer programs on data networks, and advisory, consultancy or information services relating thereto; rental of computers; analysis of technical data relating to big data, data log or electronic data; storage of big data, data log or electronic data; providing scientific and technological information relating to results of collection, analysis or storage of big data, data log or electronic data; providing information relating to energy saving; testing, research, investigation, evaluation or analysis relating to energy saving; providing information relating to testing, research, investigation, evaluation or analysis relating to energy saving and results thereof; advisory and consultancy relating to energy saving; providing information relating to advisory and consultancy relating to energy saving; measurement of usage of electricity, hydrogen gas and other energies, including via communication networks; providing information relating to measurement results of usage of electricity, hydrogen gas and other energies, including via communication networks; designing of machines, apparatus, instruments [including their parts] or systems composed of such machines, apparatus and instruments, and advisory, consultancy or information services relating thereto; architectural design, and advisory, consultancy or information services relating thereto; remote monitoring of computer systems, including via communication networks; providing information relating to remote monitoring of computer systems and monitoring results thereof, including via communication networks; rental of computer systems, and advisory, consultancy or information services relating thereto; rental of memory space on servers via websites, and advisory, consultancy or information services relating thereto. Granting of licenses to others for the use of intellectual property rights, and advisory, consultancy or information services relating thereto; granting of technology licenses to others, and advisory, consultancy or information services relating thereto; management of copyrights, and advisory, consultancy or information services relating thereto; agencies for copyright licensing, and advisory, consultancy or information services relating thereto; arranging of contracts for intellectual property rights, and advisory, consultancy or information services relating thereto; management of intellectual property rights, and advisory, consultancy or information services relating thereto; agencies for intellectual property licensing, and advisory, consultancy or information services relating thereto; providing information relating to online social networking services.

96.

COMPOSIT CATALYST, METHOD FOR PRODUCING COMPOSIT CATALYST, AND METHOD FOR PRODUCING LOWER OLEFINS

      
Numéro d'application 18460027
Statut En instance
Date de dépôt 2023-09-01
Date de la première publication 2023-12-21
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Hodoshima, Shinya
  • Motomiya, Azusa

Abrégé

Provided is a composite catalyst that contains a zeolite which is a crystalline aluminosilicate that contains gallium and iron and has a skeletal structure of an 8- to 12-membered ring; or a zeolite which is a crystalline aluminosilicate that contains iron but no gallium and has a skeletal structure of an 8- to 12-membered ring; silicon dioxide as a binder; and diphosphorus pentoxide.

Classes IPC  ?

  • B01J 29/46 - Métaux du groupe du fer ou cuivre
  • B01J 37/10 - Traitement thermique en présence d'eau, p. ex. de vapeur d'eau
  • B01J 37/30 - Échange d'ions
  • B01J 37/28 - Phosphoration
  • B01J 37/04 - Mélange
  • B01J 37/08 - Traitement thermique
  • B01J 37/00 - Procédés de préparation des catalyseurs, en généralProcédés d'activation des catalyseurs, en général
  • B01J 35/00 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général
  • B01J 35/10 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général solides caractérisés par leurs propriétés de surface ou leur porosité
  • C07C 4/06 - Procédés catalytiques

97.

HYDROGEN STATION AND HYDROGEN PRODUCING METHOD

      
Numéro d'application 18026720
Statut En instance
Date de dépôt 2021-04-16
Date de la première publication 2023-11-09
Propriétaire Chiyoda Corporation (Japon)
Inventeur(s)
  • Okada, Yoshimi
  • Imagawa, Kenichi
  • Mikuriya, Tomoyuki
  • Kawai, Hironori
  • Nakajima, Yusuke

Abrégé

[Task] To avoid use of direct fire and suppress CO2 emission when heating a heat medium used to input heat to dehydrogenation reaction of hydrogenated aromatics. [Task] To avoid use of direct fire and suppress CO2 emission when heating a heat medium used to input heat to dehydrogenation reaction of hydrogenated aromatics. [Solution] A hydrogen station 1 includes: a dehydrogenation reactor 23 that produces hydrogen by dehydrogenation reaction of a hydrogenated aromatic in presence of a dehydrogenation catalyst; a heat supply device 26 that supplies heat to the dehydrogenation reactor via a heat medium heated by using fuel; and a PSA device 33 that purifies a reaction product gas in the dehydrogenation reactor by using an adsorbent according to a pressure swing adsorption method, wherein the PSA device is supplied with a purge gas containing hydrogen used in regeneration of the adsorbent, the heat supply device includes a storage tank 27 storing the heat medium and a catalytic combustion tube 28 disposed in the storage tank to catalytically combust the fuel in presence of a combustion catalyst, and the catalytic combustion tube is supplied with the purge gas discharged from the PSA device as the fuel together with air.

Classes IPC  ?

  • B01J 8/06 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes dans des réacteurs tubulairesProcédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes les particules solides étant disposées dans des tubes
  • B01J 8/00 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés
  • C01B 3/26 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures avec des catalyseurs
  • B01J 35/10 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général solides caractérisés par leurs propriétés de surface ou leur porosité
  • B01J 35/00 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général
  • B01J 35/02 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général solides

98.

AIR CONDITIONING SYSTEM AND AIR CONDITIONING METHOD

      
Numéro d'application JP2023008547
Numéro de publication 2023/210169
Statut Délivré - en vigueur
Date de dépôt 2023-03-07
Date de publication 2023-11-02
Propriétaire
  • THE UNIVERSITY OF TOKYO (Japon)
  • CHIYODA CORPORATION (Japon)
  • SHIMIZU CORPORATION (Japon)
Inventeur(s)
  • Ebe Hiroji
  • Sugiyama Masakazu
  • Matsumoto Jun
  • Takeda Dai
  • Oba Ittetsu
  • Hashimoto Shinya
  • Fuse Yukinori
  • Sumikura Mitsuhiro
  • Arai Yoshito

Abrégé

An air conditioning system (1) comprises: a carbon dioxide separation device (20) which separates a part or all of carbon dioxide from air including carbon dioxide; an electrolytic reduction device (30) which generates carbon dioxide and oxygen by using the separated carbon dioxide as a starting material; and an oxygen supply amount control device (40) which supplies, to a processing target space (10), a part or all of the oxygen generated in the electrolytic reduction device (30).

Classes IPC  ?

  • F24F 8/10 - Traitement, p. ex. purification, de l'air fourni aux locaux de résidence ou de travail des êtres humains autrement que par chauffage, refroidissement, humidification ou séchage par séparation, p. ex. par filtrage
  • B01D 53/02 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par adsorption, p. ex. chromatographie préparatoire en phase gazeuse
  • C07C 29/10 - Préparation de composés comportant des groupes hydroxyle ou O-métal liés à un atome de carbone ne faisant pas partie d'un cycle aromatique à six chaînons par hydrolyse d'éthers, y compris d'éthers cycliques, p. ex. d'oxiranes
  • C07C 31/20 - Alcools dihydroxyliques
  • C25B 1/04 - Hydrogène ou oxygène par électrolyse de l'eau
  • C25B 3/03 - Hydrocarbures acycliques ou cycliques
  • C25B 3/26 - Réduction du dioxyde de carbone
  • C25B 9/00 - Cellules ou assemblages de cellulesÉléments de structure des cellulesAssemblages d'éléments de structure, p. ex. assemblages d'électrode-diaphragmeCaractéristiques des cellules relatives aux procédés
  • F24F 8/60 - Traitement, p. ex. purification, de l'air fourni aux locaux de résidence ou de travail des êtres humains autrement que par chauffage, refroidissement, humidification ou séchage en ajoutant de l'oxygène

99.

Electrochemical cell, power generation method using electrochemical cell, and manufacturing method of hydrogen gas using electrochemical cell

      
Numéro d'application 18245827
Numéro de brevet 12573653
Statut Délivré - en vigueur
Date de dépôt 2021-08-12
Date de la première publication 2023-10-26
Date d'octroi 2026-03-10
Propriétaire CHIYODA CORPORATION (Japon)
Inventeur(s)
  • Okada, Yoshimi
  • Yasunishi, Takuo
  • Imagawa, Kenichi
  • Kurosaki, Daisuke

Abrégé

4 where x is a number equal to or more than 0 is substituted with protons, the proton conductor having electric conductivity of 0.01 S/cm or more at 300° C., an anode 6 provided on one side of the proton conductor, a cathode 7 provided on another side of the proton conductor, a first separator 9 provided on an anode side of the proton conductor to define an anode chamber 8, and a second separator 12 provided on a cathode side of the proton conductor to define a cathode chamber 11.

Classes IPC  ?

  • H01M 8/10 - Éléments à combustible avec électrolytes solides
  • C25B 1/02 - Hydrogène ou oxygène
  • C25B 1/042 - Hydrogène ou oxygène par électrolyse de l'eau par électrolyse de la vapeur
  • C25B 9/05 - Cellules sous pression
  • C25B 13/07 - DiaphragmesÉléments d'espacement caractérisés par le matériau à base de matériaux inorganiques à base de céramiques
  • H01M 4/92 - Métaux du groupe du platine
  • H01M 8/0612 - Combinaison d’éléments à combustible avec des moyens de production de réactifs ou pour le traitement de résidus avec des moyens de production des réactifs gazeux à partir de matériaux contenant du carbone
  • H01M 8/0656 - Combinaison d’éléments à combustible avec des moyens de production de réactifs ou pour le traitement de résidus avec des moyens de production des réactifs gazeux par des moyens électrochimiques
  • H01M 8/1213 - Éléments à combustible avec électrolytes solides fonctionnant à haute température, p. ex. avec un électrolyte en ZrO2 stabilisé caractérisés par la combinaison électrode/électrolyte ou par le matériau de support
  • H01M 8/1231 - Éléments à combustible avec électrolytes solides fonctionnant à haute température, p. ex. avec un électrolyte en ZrO2 stabilisé avec les deux réactifs gazeux ou vaporisés
  • H01M 8/1246 - Éléments à combustible avec électrolytes solides fonctionnant à haute température, p. ex. avec un électrolyte en ZrO2 stabilisé caractérisés par le procédé de fabrication ou par le matériau de l’électrolyte l'électrolyte étant constitué d’oxydes
  • H01M 8/12 - Éléments à combustible avec électrolytes solides fonctionnant à haute température, p. ex. avec un électrolyte en ZrO2 stabilisé

100.

PLATINUM-LOADED ALUMINA CATALYST, METHOD OF PRODUCING SAME, AND METHOD OF DEHYDROGENATING HYDROGENATED AROMATIC USING THE CATALYST

      
Numéro d'application 18024924
Statut En instance
Date de dépôt 2021-04-16
Date de la première publication 2023-10-26
Propriétaire Chiyoda Corporation (Japon)
Inventeur(s)
  • Okada, Yoshimi
  • Imagawa, Kenichi
  • Nakata, Shinichi

Abrégé

To provide a platinum-loaded alumina catalyst with an improved catalyst life. To provide a platinum-loaded alumina catalyst with an improved catalyst life. A platinum-loaded alumina catalyst includes an alumina carrier, and platinum loaded on the alumina carrier, wherein the alumina carrier includes a γ-alumina carrier having a surface area of 200 m2/g or more, a pore volume of 0.50 m2/g or more, an average pore diameter in a range of 60 to 150 Å, with pores having a pore diameter in a range of ±30 Å from the average pore diameter occupying 60% or more of a total pore volume, platinum particles are loaded on γ-alumina carrier in a range of 0.1 to 1.5% by weight calculated as elemental platinum (Pt), and 70% or more of the platinum particles have a size of 8 to 15 Å by direct observation using a transmission electron microscope.

Classes IPC  ?

  • B01J 23/42 - Platine
  • B01J 23/04 - Métaux alcalins
  • B01J 27/02 - Soufre, sélénium ou tellureLeurs composés
  • B01J 35/10 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général solides caractérisés par leurs propriétés de surface ou leur porosité
  • B01J 35/00 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général
  • B01J 37/03 - PrécipitationCo-précipitation
  • B01J 37/02 - Imprégnation, revêtement ou précipitation
  • B01J 37/08 - Traitement thermique
  • B01J 37/18 - Réduction avec des gaz contenant de l'hydrogène libre
  • C07C 5/32 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant le même nombre d'atomes de carbone par déshydrogénation avec formation d'hydrogène libre
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