Elysis Limited Partnership

Canada

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Juridiction
        États-Unis 28
        International 13
        Canada 11
Date
Nouveautés (dernières 4 semaines) 2
2026 août (MACJ) 2
2026 (AACJ) 2
2025 6
2024 4
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Classe IPC
C25C 3/12 - Anodes 27
C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes 19
C25C 7/06 - Conduite ou entretien 19
C25C 7/02 - ÉlectrodesLeurs connexions 14
C25C 3/20 - Commande ou régulation automatique des cellules 11
Voir plus
Statut
En Instance 17
Enregistré / En vigueur 35
Résultats pour  brevets

1.

SYSTEM AND METHOD FOR COLLECTING AND PRE-TREATING PROCESS GASES GENERATED BY AN ELECTROLYSIS CELL

      
Numéro d'application 19434769
Statut En instance
Date de dépôt 2025-12-29
Date de la première publication 2026-08-06
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Meyer, Michael
  • Glisan, Roy A.

Abrégé

Apparatus and method for collecting and pretreating process gases produced in an electrolytic cell during aluminum production are disclosed. The apparatus comprises a collecting unit configured to draw off primary process gases from the electrolytic cell, for instance by drawing-off primary process gases from orifices purposely made over the electrolytic bath; and a pre-treating unit fluidly connected to the collecting unit and configured to receive a fluid bed of fluorinated alumina for pre-treating the primary process gases. The collecting and pre-treating units are within or immediately aside the electrolytic cell, in the potroom. The apparatus can be combine with a gas treatment center (GTC) located outside the potroom. Among other advantages, the technology allows collecting primary process gases directly at electrolytic bath level, separating primary process gases and hoodspace process gases to pretreat the primary process gases with alumina before the GTC, and using fluid bed reactors without filter bags.

Classes IPC  ?

  • C25C 3/22 - Collecte des gaz émis
  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/14 - Dispositifs pour l'alimentation ou pour briser la croûte

2.

ANODE ASSEMBLY WITH END SUPPORT PINS AND A METHOD FOR MANUFACTURING THE SAME

      
Numéro d'application CA2026050170
Numéro de publication 2026/162002
Statut Délivré - en vigueur
Date de dépôt 2026-02-03
Date de publication 2026-08-06
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s) Prince, David

Abrégé

Disclosed is an anode assembly comprising a pin structure providing mechanical support. The pin structure is integrated into extremities of the refractory package where cracks are likely to form, thereby providing a support at the extremities against breakage and/or disengagement of the end parts of the anode assembly. Preferably, the pin structure comprises an elongated stainless-steel core shielded by a protective layer, such as a layer of copper (Cu) or other material resistant to corrosion from bath vapor or hydrogen fluoride (HF). While the stainless-steel core provides support and strength, the protective layer protects the stainless-steel core against corrosion which is common in hot bath vapor and HF environment. Preferably, the anode and supporting pins are built the same way to ease manufacturing and increase protection against corrosion. Preferably, the anode assembly comprises inert or oxygen evolving anodes for an ecofriendly production of metals, such as aluminum.

Classes IPC  ?

  • C25C 3/12 - Anodes
  • C25C 3/10 - Cadres ou structures de support extérieurs à la cellule
  • C25C 3/16 - Dispositifs d'alimentation en courant électrique, p. ex. barres omnibus

3.

METHODS AND APPARATUSES FOR INSTALLING AND SUPPORTING VERTICAL ELECTRODES IN AN ELECTROLYTIC CELL

      
Numéro d'application CA2025050601
Numéro de publication 2025/222303
Statut Délivré - en vigueur
Date de dépôt 2025-04-25
Date de publication 2025-10-30
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Bardet, Benoit
  • Verdu, Patrice
  • Cossard, Boris
  • Marmottant, Ariane
  • Laurent, Véronique
  • Mackey, Allen George
  • Deyoung, David Henry
  • Mosser, Benjamin

Abrégé

Methods for supporting, aligning, moving and fixing vertical electrodes on an electrolytic cell's bottom block are disclosed. The cell has anodes and cathodes vertically aligned in alternating rows. The method allows mechanically and simultaneously positioning and supporting the electrodes in the cell, by first inserting a bottom end of each electrode within a slot or mortise of a supporting element comprising a first fixing material, such as a glue, before letting it to cure for fixing each electrode to the supporting element. The cell is preferably used for the electrolytic production of a metal, such as aluminum or aluminium, more preferably using inert / oxygen-evolving anodes, for a production of aluminum friendly for the environment. Different fixing materials configured for fixing the vertical electrodes on the support or directly on the cell's bottom, are also described.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes

4.

MODULAR FEED KIT ASSEMBLY FOR ELECTROLYTIC CELL

      
Numéro d'application CA2025050339
Numéro de publication 2025/189287
Statut Délivré - en vigueur
Date de dépôt 2025-03-11
Date de publication 2025-09-18
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Bardet, Benoit
  • Saulnier, Franck
  • Dosnon, Rachel
  • Mackey, Allen George
  • Glisan, Roy A.
  • Prince, David

Abrégé

It is disclosed a modular feed kit assembly and methods for delivering alumina powder to an electrolytic bath of an electrolytic cell. The feed kit assembly comprises a cleaning module vertically positioned over and aligned with a point of entry of the cell, and having a moving cleaning element configured to controllably move and extend downwardly trough and beyond the point of entry into the electrolytic bath; and a delivery module, for delivering alumina to the electrolytic bath through the point of entry by gravity, inclined with respect to the vertical cleaning module. The cleaning element allows cleaning the point of entry for feeding the bath with alumina from the delivery module, while clearing deposits of solid material on molten electrolyte surface of the bath, also known as bridging, that could prevent alumina powder from entering the electrolytic bath, and reducing corrosive gas entering the delivery module.

Classes IPC  ?

  • C25C 3/14 - Dispositifs pour l'alimentation ou pour briser la croûte

5.

ELECTROLYTIC CELLS CONTAINING FUSED CAST REFRACTORIES AND LINING COMPONENTS

      
Numéro d'application CA2025050193
Numéro de publication 2025/171488
Statut Délivré - en vigueur
Date de dépôt 2025-02-14
Date de publication 2025-08-21
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Dynys, Joseph Michael
  • Deyoung, David Henry
  • Dastolfo Jr., Leroy Edward
  • Dimilia, Robert Anthony
  • Mackey, Allen George

Abrégé

233 having alpha and beta alumina, wherein a beta alumina concentration is of about 40 to 60%, and about 5 to 45% of other oxides. The refractory blocks, object of the disclosed invention, are substantially free of cracks. Advantageously, the fused cast refractory blocks are impervious to the molten electrolyte bath and metals, are resistant to dissolution into said molten bath electrolyte and metals; and have a high electrical resistivity. A method for manufacturing the fused cast refractory blocks is also disclosed. The invention preferably concerns electrolytic cells working with inert or oxygen-evolving anodes for an Eco-friendly production of aluminum.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/06 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus de l'aluminium
  • C25C 3/24 - Affinage

6.

METHOD FOR OPERATING AN ELECTROLYTIC CELL

      
Numéro d'application 18981772
Statut En instance
Date de dépôt 2024-12-16
Date de la première publication 2025-04-10
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Petitjean, Bruno
  • Noizet, Alain
  • Bardet, Benoit

Abrégé

A method for conveying an anode assembly outside of an electrolyte cell is described. The method allows starting up the electrolytic cell while maintaining the production of non-ferrous metal, such as aluminum or aluminium. A thermal insulation allows maintaining the anode temperature homogeneity and preventing thermal shocks when introducing the inert anodes into the hot electrolytic bath. The method allows accurate positioning of anode assemblies over the electrolysis cell before achieving mechanical and electrical connections of the anode assembly or the cell pre-heater to the electrolysis cell.

Classes IPC  ?

  • C25C 3/12 - Anodes
  • C25C 3/10 - Cadres ou structures de support extérieurs à la cellule
  • C25C 3/18 - Électrolytes
  • C25C 3/34 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus des métaux non prévus dans les groupes
  • C25C 7/02 - ÉlectrodesLeurs connexions
  • C25C 7/06 - Conduite ou entretien

7.

MEASURING TEMPERATURE OF AN ELECTROLYTIC BATH

      
Numéro d'application 18899037
Statut En instance
Date de dépôt 2024-09-27
Date de la première publication 2025-01-16
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Prince, David
  • Chaudhary, Rajneesh
  • Findley, Nick

Abrégé

It is disclosed an apparatus and method for determining a temperature of the bath of an electrolytic cell during electrolytic production of a metal. The apparatus comprising an electrode body and a conductor pin at least partially inserted thereinto for providing electrical connection; and a probe inserted into the conductor pin, for providing one or more probe readings and being operable when positioned at least partially below a bath-vapor interface upon immersion in the electrolytic bath. The temperature of the bath is determined based on at least one of the one or more probe readings. The probe is protected from corrosion by the conductor pin during metal production. The electrolytic 10 cell may comprise more than one apparatus for measuring temperature in order to evaluate a temperature profile in the bath. Preferably, the one or more anodes are inert or oxygen evolving anodes, and the metal to be produced is aluminum.

Classes IPC  ?

  • G01K 1/10 - Dispositifs de protection, p. ex. étuis pour prévenir les dommages d'origine chimique
  • C25C 1/02 - Production, récupération ou affinage électrolytique des métaux par électrolyse de solutions des métaux légers
  • C25C 7/06 - Conduite ou entretien

8.

ADVANCED ALUMINUM ELECTROLYSIS CELL

      
Numéro d'application 18806778
Statut En instance
Date de dépôt 2024-08-16
Date de la première publication 2025-01-09
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Liu, Xinghua
  • Mosser, Benjamin D.

Abrégé

The application is directed to products and methods related to an aluminum electrolysis cell with a non-carbonaceous substrate with a directing feature. The directing feature can be configured to direct a wettable material in a predetermined direction. The non-carbonaceous substrate can be at least partially covered with solid aluminum metal. The wettable material can be aluminum metal.

Classes IPC  ?

9.

AN ELECTRODE BODY OF AN ELECTRODE FOR THE ELECTROLYTIC PRODUCTION OF A METAL

      
Numéro d'application 18685554
Statut En instance
Date de dépôt 2022-09-06
Date de la première publication 2024-10-24
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Shanta, Charles
  • Prince, David
  • Mickelson, Larry

Abrégé

It is disclosed an electrode body for the electrolytic production of a metal comprising a first portion for operatively connecting the electrode body to an electrolytic cell: a second portion, opposite the first portion; and a middle portion extending between the first and second portions. The body has a continuous external surface forming a round transition between the second and middle portions. The external surface of the middle portion comprises two opposite outer flat surfaces for facing surfaces of adjacent electrodes when the electrode is plunged into an electrolytic bath of the electrolytic cell comprising said adjacent electrodes. Preferably, the electrode is an anode and the anode body has a bore shape with a continuous external surface of the body wall. Preferably, the electrode body is made from a metal alloy, a ceramic or cermet material to form an inert or oxygen-evolving anode used for an eco-friendly production of aluminum.

Classes IPC  ?

10.

PIN ASSEMBLY OF AN ELECTRODE AND METHOD OF MANUFACTURING THE SAME

      
Numéro d'application 18370646
Statut En instance
Date de dépôt 2023-09-20
Date de la première publication 2024-01-11
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Prince, David
  • Steiner, William
  • Mickelson, Larry
  • Yockey, Steve

Abrégé

Disclosed are a pin assembly for providing current to an electrode, e.g. an inert or oxygen evolving anode, and its manufacturing method. The pin assembly is configured to be inserted into an electrode body of an electrode for providing an electric current to the electrode body. The pin assembly comprises a structural support member configured to mechanically support the electrode body, and a protective conductive member configured to embed the structural support member. The protective conductive member comprises at least one metal or alloy thereof adapted for conducting the electric current while protecting the structural support member against corrosion during a given period of time of use of the electrode. The pin assembly enables convenient electrical connection of the electrodes, combines electrical and thermal performance for optimizing cell efficiency, provides structural and corrosion durability for extending pin assembly life, and utilizes robust joining processes for high reliability.

Classes IPC  ?

  • C25C 3/16 - Dispositifs d'alimentation en courant électrique, p. ex. barres omnibus
  • C25C 3/12 - Anodes
  • C25C 7/02 - ÉlectrodesLeurs connexions

11.

REMOVING IMPURITIES FROM AN ELECTROLYTE

      
Numéro d'application 18038358
Statut En instance
Date de dépôt 2021-11-23
Date de la première publication 2024-01-04
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Liu, Xinghua
  • Mickelson, Larry
  • Mackey, Allen George
  • Fors, John

Abrégé

It is disclosed a purifier assembly and method for removing impurities from an electrolytic bath before using the same with an electrolytic cell for making a metal, such as aluminum or aluminium. The assembly comprises a purification tank, located upstream the cell, for containing the bath; and at least one row, preferably at least two rows, of alternating vertically oriented cathodes and anodes configured to be operatively connected to a power supply for providing an electric current to the anodes and cathodes. The rows of vertically oriented cathodes and anodes are configured in size to be inserted into the tank. The purifier assembly is configured to maintain an anode-to-cathode distance (ACD) between the cathodes and anodes. The purifier is particularly adapted for removing sulfur, phosphorus, iron, and/or gallium from cryolite for the eco-friendly production of aluminum with a cell using oxygen-evolving or inert anodes, which preferably requires a purer bath.

Classes IPC  ?

  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules
  • C25C 7/02 - ÉlectrodesLeurs connexions
  • C25C 7/06 - Conduite ou entretien
  • C25C 3/18 - Électrolytes

12.

CONTROLLING ELECTRODE CURRENT DENSITY OF AN ELECTROLYTIC CELL

      
Numéro d'application 18038804
Statut En instance
Date de dépôt 2021-11-25
Date de la première publication 2024-01-04
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Mickelson, Larry
  • Ruan, Yimin

Abrégé

Apparatuses and methods for controlling electrode current density of an electrolytic cell during the electrolytic production of a metal, such as aluminum or aluminium, are disclosed. The cell has anodes and cathode plates vertically aligned and arranged in alternating rows. Each electrode defines a connecting region for connecting the electrode to the cell, a middle region, and an ACO (Anode-Cathode Overlap) region extending from the middle region for overlapping adjacent electrodes(s). The ratio of the ACO region's surface area to the middle region's surface area is superior to one. Alternatively, an average cross-sectional ACO region to the middle and connecting regions, is superior than one, preferably superior than 2. The present technology allows maximizing current density in the ACO region. Increasing these ratios has less impact on the environment by reducing heat generation and energy consumption, making the metal production eco-friendly, in particular when used with inert or oxygen-evolving electrodes.

Classes IPC  ?

  • C25C 7/02 - ÉlectrodesLeurs connexions
  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules

13.

DETECTING THERMITE REACTIONS IN AN ELECTROLYTIC CELL

      
Numéro d'application 18029805
Statut En instance
Date de dépôt 2021-10-27
Date de la première publication 2023-11-23
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Findley, Nicholas

Abrégé

A method for detecting a thermite reaction in an electrolytic cell comprising an anode assembly of one or more metal-oxide-containing anodes is disclosed. Each anode assembly is powered by a current provided through a distinct anode rod for each anode assembly. The method comprises: measuring a voltage drop using a pair of voltage probes located on the anode rod, the voltage drop corresponding to a current flow in the anode assembly; processing the voltage drop by computing at least one of the voltage drop derivative, the voltage drop variance, and the derivative of the voltage drop variance; and detecting a thermite reaction based on the results of the signal processing, before mitigating and/or suppressing the thermite reaction by adjusting the operational parameters of the electrolytic cell. This method is particularly advantageous as it reduces the number of voltage drops necessary for detecting a thermite reaction by a factor of 10.

Classes IPC  ?

  • C25C 3/20 - Commande ou régulation automatique des cellules
  • C25C 3/12 - Anodes
  • C25C 3/16 - Dispositifs d'alimentation en courant électrique, p. ex. barres omnibus

14.

MEASURING TEMPERATURE OF AN ELECTROLYTIC BATH

      
Numéro de document 03245117
Statut En instance
Date de dépôt 2023-04-05
Date de disponibilité au public 2023-10-12
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Prince, David
  • Chaudhary, Rajneesh
  • Findley, Nick

Abrégé

It is disclosed an apparatus and method for determining a temperature of the bath of an electrolytic cell during electrolytic production of a metal. The apparatus comprising an electrode body and a conductor pin at least partially inserted thereinto for providing electrical connection; and a probe inserted into the conductor pin, for providing one or more probe readings and being operable when positioned at least partially below a bath- vapor interface upon immersion in the electrolytic bath. The temperature of the bath is determined based on at least one of the one or more probe readings. The probe is protected from corrosion by the conductor pin during metal production. The electrolytic cell may comprise more than one apparatus for measuring temperature in order to evaluate a temperature profile in the bath. Preferably, the one or more anodes are inert or oxygen evolving anodes, and the metal to be produced is aluminum.

Classes IPC  ?

  • C25C 3/20 - Commande ou régulation automatique des cellules
  • C25C 7/06 - Conduite ou entretien
  • G01K 1/10 - Dispositifs de protection, p. ex. étuis pour prévenir les dommages d'origine chimique
  • G01K 7/02 - Mesure de la température basée sur l'utilisation d'éléments électriques ou magnétiques directement sensibles à la chaleur utilisant des éléments thermo-électriques, p. ex. des thermocouples

15.

MEASURING TEMPERATURE OF AN ELECTROLYTIC BATH

      
Numéro d'application CA2023050460
Numéro de publication 2023/193099
Statut Délivré - en vigueur
Date de dépôt 2023-04-05
Date de publication 2023-10-12
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Prince, David
  • Chaudhary, Rajneesh
  • Findley, Nick

Abrégé

It is disclosed an apparatus and method for determining a temperature of the bath of an electrolytic cell during electrolytic production of a metal. The apparatus comprising an electrode body and a conductor pin at least partially inserted thereinto for providing electrical connection; and a probe inserted into the conductor pin, for providing one or more probe readings and being operable when positioned at least partially below a bath- vapor interface upon immersion in the electrolytic bath. The temperature of the bath is determined based on at least one of the one or more probe readings. The probe is protected from corrosion by the conductor pin during metal production. The electrolytic cell may comprise more than one apparatus for measuring temperature in order to evaluate a temperature profile in the bath. Preferably, the one or more anodes are inert or oxygen evolving anodes, and the metal to be produced is aluminum.

Classes IPC  ?

  • G01K 1/10 - Dispositifs de protection, p. ex. étuis pour prévenir les dommages d'origine chimique
  • C25C 3/20 - Commande ou régulation automatique des cellules
  • C25C 7/06 - Conduite ou entretien
  • G01K 7/02 - Mesure de la température basée sur l'utilisation d'éléments électriques ou magnétiques directement sensibles à la chaleur utilisant des éléments thermo-électriques, p. ex. des thermocouples

16.

System and process for starting up an electrolytic cell

      
Numéro d'application 17922127
Numéro de brevet 12698567
Statut Délivré - en vigueur
Date de dépôt 2021-04-30
Date de la première publication 2023-06-08
Date d'octroi 2026-08-04
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Bardet, Benoit
  • Becasse, Sebastien
  • D'Astolfo, Leroy
  • Fors, John
  • Noizet, Alain
  • Petitjean, Bruno

Abrégé

It is disclosed a system and process for starting up an electrolytic cell. The system and process are particularly adapted for preheating an electrolytic cell or pot having cathodes before installing preheated anodes in the cell, for the production of a metal (e.g. aluminum). The system comprises one or more electrical heaters installed in the cell in place of the anode assemblies and can be used with a dry bath or a liquid melted bath (e.g. cryolite). The cell is preferably preheated by as many cell preheaters as there are anode assemblies. The cell preheater is preferably powered by current available in the pot's busbar. The invention is environmentally friendly as being preferably adapted for preheating a cell working with inert or oxygen-evolving anodes. Furthermore, the starting up process allows optimizing/reducing the time necessary for starting up the electrolytic cell, while securing the materials located inside the cell.

Classes IPC  ?

17.

ADVANCED ALUMINUM ELECTROLYSIS CELL

      
Numéro de document 03248228
Statut En instance
Date de dépôt 2022-11-07
Date de disponibilité au public 2023-05-11
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Liu, Xinghua
  • Mosser, Benjamin D.

Classes IPC  ?

18.

AN ELECTRODE BODY OF AN ELECTRODE FOR THE ELECTROLYTIC PRODUCTION OF A METAL

      
Numéro de document 03216073
Statut En instance
Date de dépôt 2022-09-06
Date de disponibilité au public 2023-03-16
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Shanta, Charles
  • Prince, David
  • Mickelson, Larry

Abrégé

It is disclosed an electrode body for the electrolytic production of a metal comprising a first portion for operatively connecting the electrode body to an electrolytic cell; a second portion, opposite the first portion; and a middle portion extending between the first and second portions. The body has a continuous external surface forming a round transition between the second and middle portions. The external surface of the middle portion comprises two opposite outer flat surfaces for facing surfaces of adjacent electrodes when the electrode is plunged into an electrolytic bath of the electrolytic cell comprising said adjacent electrodes. Preferably, the electrode is an anode and the anode body has a bore shape with a continuous external surface of the body wall. Preferably, the electrode body is made from a metal alloy, a ceramic or cermet material to form an inert or oxygen-evolving anode used for an eco-friendly production of aluminum.

Classes IPC  ?

19.

AN ELECTRODE BODY OF AN ELECTRODE FOR THE ELECTROLYTIC PRODUCTION OF A METAL

      
Numéro d'application CA2022051333
Numéro de publication 2023/035063
Statut Délivré - en vigueur
Date de dépôt 2022-09-06
Date de publication 2023-03-16
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Shanta, Charles
  • Prince, David
  • Mickelson, Larry

Abrégé

It is disclosed an electrode body for the electrolytic production of a metal comprising a first portion for operatively connecting the electrode body to an electrolytic cell; a second portion, opposite the first portion; and a middle portion extending between the first and second portions. The body has a continuous external surface forming a round transition between the second and middle portions. The external surface of the middle portion comprises two opposite outer flat surfaces for facing surfaces of adjacent electrodes when the electrode is plunged into an electrolytic bath of the electrolytic cell comprising said adjacent electrodes. Preferably, the electrode is an anode and the anode body has a bore shape with a continuous external surface of the body wall. Preferably, the electrode body is made from a metal alloy, a ceramic or cermet material to form an inert or oxygen-evolving anode used for an eco-friendly production of aluminum.

Classes IPC  ?

20.

Systems and methods for preventing thermite reactions in electrolytic cells

      
Numéro d'application 15988115
Numéro de brevet 12006581
Statut Délivré - en vigueur
Date de dépôt 2018-05-24
Date de la première publication 2022-10-06
Date d'octroi 2024-06-11
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Jr., Leroy E.
  • Steiner, William J.
  • Moreland, Eric C.
  • Kozarek, Robert L.
  • Ruan, Yimin

Abrégé

A method of monitoring an electrolytic cell including detecting information indicative of a thermite reaction, comparing the information indicative of a thermite reaction to a threshold, generating a thermite response signal according to the comparison, and reacting to the thermite response signal by adjusting the operation of the electrolytic cell.

Classes IPC  ?

  • C25C 3/20 - Commande ou régulation automatique des cellules
  • C25C 7/06 - Conduite ou entretien

21.

PIN ASSEMBLY OF AN ELECTRODE AND METHOD OF MANUFACTURING THE SAME

      
Numéro de document 03212794
Statut En instance
Date de dépôt 2022-03-23
Date de disponibilité au public 2022-09-29
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Prince, David
  • Steiner, William
  • Mickelson, Larry
  • Yockey, Steve

Abrégé

Disclosed are a pin assembly for providing current to an electrode, e.g. an inert or oxygen evolving anode, and its manufacturing method. The pin assembly is configured to be inserted into an electrode body of an electrode for providing an electric current to the electrode body. The pin assembly comprises a structural support member configured to mechanically support the electrode body, and a protective conductive member configured to embed the structural support member. The protective conductive member comprises at least one metal or alloy thereof adapted for conducting the electric current while protecting the structural support member against corrosion during a given period of time of use of the electrode. The pin assembly enables convenient electrical connection of the electrodes, combines electrical and thermal performance for optimizing cell efficiency, provides structural and corrosion durability for extending pin assembly life, and utilizes robust joining processes for high reliability.

Classes IPC  ?

22.

PIN ASSEMBLY OF AN ELECTRODE AND METHOD OF MANUFACTURING THE SAME

      
Numéro d'application CA2022050435
Numéro de publication 2022/198321
Statut Délivré - en vigueur
Date de dépôt 2022-03-23
Date de publication 2022-09-29
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Prince, David
  • Steiner, William
  • Mickelson, Larry
  • Yockey, Steve

Abrégé

Disclosed are a pin assembly for providing current to an electrode, e.g. an inert or oxygen evolving anode, and its manufacturing method. The pin assembly is configured to be inserted into an electrode body of an electrode for providing an electric current to the electrode body. The pin assembly comprises a structural support member configured to mechanically support the electrode body, and a protective conductive member configured to embed the structural support member. The protective conductive member comprises at least one metal or alloy thereof adapted for conducting the electric current while protecting the structural support member against corrosion during a given period of time of use of the electrode. The pin assembly enables convenient electrical connection of the electrodes, combines electrical and thermal performance for optimizing cell efficiency, provides structural and corrosion durability for extending pin assembly life, and utilizes robust joining processes for high reliability.

Classes IPC  ?

23.

Apparatus and method for operating an electrolytic cell

      
Numéro d'application 17680063
Numéro de brevet 12203187
Statut Délivré - en vigueur
Date de dépôt 2022-02-24
Date de la première publication 2022-09-01
Date d'octroi 2025-01-21
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Petitjean, Bruno
  • Noizet, Alain
  • Bardet, Benoit

Abrégé

An apparatus, also named transfer box or TB, for conveying an anode assembly outside of an electrolyte cell is described. An apparatus, also named cell preheater lifting beam or CPLB, for conveying an anode assembly or a cell pre-heater outside of an electrolyte cell is also disclosed. TB and CPLB are conjointly used for starting up the electrolytic cell or for replacing a spent anode assembly while maintaining the production of non-ferrous metal, such as aluminum or aluminium. The thermal insulation of the TB allows maintaining the anode temperature homogeneity and preventing thermal shocks when introducing the inert anodes into the hot electrolytic bath. TN and CPLB allow accurate positioning of anode assemblies or cell-preheaters over the electrolysis cell before achieving mechanical and electrical connections of the anode assembly or the cell pre-heater to the electrolysis cell. Several related methods for the operation of an electrolytic cell are also disclosed.

Classes IPC  ?

  • C25C 3/00 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus
  • C25C 3/10 - Cadres ou structures de support extérieurs à la cellule
  • C25C 3/12 - Anodes
  • C25C 3/18 - Électrolytes
  • C25C 3/34 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus des métaux non prévus dans les groupes
  • C25C 7/02 - ÉlectrodesLeurs connexions
  • C25C 7/06 - Conduite ou entretien

24.

Apparatus and method for operating an electrolytic cell

      
Numéro d'application 17680536
Numéro de brevet 12173419
Statut Délivré - en vigueur
Date de dépôt 2022-02-25
Date de la première publication 2022-09-01
Date d'octroi 2024-12-24
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Petitjean, Bruno
  • Noizet, Alain
  • Bardet, Benoit

Abrégé

An apparatus, also named transfer box or TB, for conveying an anode assembly outside of an electrolyte cell is described. An apparatus, also named cell preheater lifting beam or CPLB, for conveying an anode assembly or a cell pre-heater outside of an electrolyte cell is also disclosed. TB and CPLB are conjointly used for starting up the electrolytic cell or for replacing a spent anode assembly while maintaining the production of non-ferrous metal, such as aluminum or aluminium. The thermal insulation of the TB allows maintaining the anode temperature homogeneity and preventing thermal shocks when introducing the inert anodes into the hot electrolytic bath. TN and CPLB allow accurate positioning of anode assemblies or cell-preheaters over the electrolysis cell before achieving mechanical and electrical connections of the anode assembly or the cell pre-heater to the electrolysis cell. Several related methods for the operation of an electrolytic cell are also disclosed.

Classes IPC  ?

  • C25C 3/10 - Cadres ou structures de support extérieurs à la cellule
  • C25C 3/12 - Anodes
  • C25C 3/18 - Électrolytes
  • C25C 3/34 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus des métaux non prévus dans les groupes
  • C25C 7/02 - ÉlectrodesLeurs connexions
  • C25C 7/06 - Conduite ou entretien

25.

System and method for collecting and pre-treating process gases generated by an electrolysis cell

      
Numéro d'application 17440086
Numéro de brevet 12509788
Statut Délivré - en vigueur
Date de dépôt 2020-03-19
Date de la première publication 2022-06-16
Date d'octroi 2025-12-30
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Meyer, Michel
  • Glisan, Roy A.

Abrégé

Apparatus and method for collecting and pretreating process gases produced in an electrolytic cell during aluminum production are disclosed. The apparatus comprises a collecting unit configured to draw off primary process gases from the electrolytic cell, for instance by drawing-off primary process gases from orifices purposely made over the electrolytic bath; and a pre-treating unit fluidly connected to the collecting unit and configured to receive a fluid bed of fluorinated alumina for pre-treating the primary process gases. The collecting and pre-treating units are within or immediately aside the electrolytic cell, in the potroom. The apparatus can be combine with a gas treatment center (GTC) located outside the potroom. Among other advantages, the technology allows collecting primary process gases directly at electrolytic bath level, separating primary process gases and hoodspace process gases to pretreat the primary process gases with alumina before the GTC, and using fluid bed reactors without filter bags.

Classes IPC  ?

  • C25C 3/22 - Collecte des gaz émis
  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/14 - Dispositifs pour l'alimentation ou pour briser la croûte

26.

CONTROLLING ELECTRODE CURRENT DENSITY OF AN ELECTROLYTIC CELL

      
Numéro de document 03197052
Statut En instance
Date de dépôt 2021-11-25
Date de disponibilité au public 2022-06-02
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Mickelson, Larry
  • Ruan, Yimin

Abrégé

Apparatuses and methods for controlling electrode current density of an electrolytic cell during the electrolytic production of a metal, such as aluminum or aluminium, are disclosed. The cell has anodes and cathode plates vertically aligned and arranged in alternating rows. Each electrode defines a connecting region for connecting the electrode to the cell, a middle region, and an ACO (Anode-Cathode Overlap) region extending from the middle region for overlapping adjacent electrodes(s). The ratio of the ACO region's surface area to the middle region's surface area is superior to one. Alternatively, an average cross-sectional ACO region to the middle and connecting regions, is superior than one, preferably superior than 2. The present technology allows maximizing current density in the ACO region. Increasing these ratios has less impact on the environment by reducing heat generation and energy consumption, making the metal production eco-friendly, in particular when used with inert or oxygen-evolving electrodes.

Classes IPC  ?

27.

CONTROLLING ELECTRODE CURRENT DENSITY OF AN ELECTROLYTIC CELL

      
Numéro d'application CA2021051689
Numéro de publication 2022/109742
Statut Délivré - en vigueur
Date de dépôt 2021-11-25
Date de publication 2022-06-02
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Mickelson, Larry
  • Ruan, Yimin

Abrégé

Apparatuses and methods for controlling electrode current density of an electrolytic cell during the electrolytic production of a metal, such as aluminum or aluminium, are disclosed. The cell has anodes and cathode plates vertically aligned and arranged in alternating rows. Each electrode defines a connecting region for connecting the electrode to the cell, a middle region, and an ACO (Anode-Cathode Overlap) region extending from the middle region for overlapping adjacent electrodes(s). The ratio of the ACO region's surface area to the middle region's surface area is superior to one. Alternatively, an average cross-sectional ACO region to the middle and connecting regions, is superior than one, preferably superior than 2. The present technology allows maximizing current density in the ACO region. Increasing these ratios has less impact on the environment by reducing heat generation and energy consumption, making the metal production eco-friendly, in particular when used with inert or oxygen-evolving electrodes.

Classes IPC  ?

28.

REMOVING IMPURITIES FROM AN ELECTROLYTE

      
Numéro de document 03197049
Statut En instance
Date de dépôt 2021-11-23
Date de disponibilité au public 2022-06-02
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Liu, Xinghua
  • Mickelson, Larry
  • Mackey, Allen George
  • Fors, John

Abrégé

It is disclosed a purifier assembly and method for removing impurities from an electrolytic bath before using the same with an electrolytic cell for making a metal, such as aluminum or aluminium. The assembly comprises a purification tank, located upstream the cell, for containing the bath; and at least one row, preferably at least two rows, of alternating vertically oriented cathodes and anodes configured to be operatively connected to a power supply for providing an electric current to the anodes and cathodes. The rows of vertically oriented cathodes and anodes are configured in size to be inserted into the tank. The purifier assembly is configured to maintain an anode-to-cathode distance (ACD) between the cathodes and anodes. The purifier is particularly adapted for removing sulfur, phosphorus, iron, and/or gallium from cryolite for the eco-friendly production of aluminum with a cell using oxygen-evolving or inert anodes, which preferably requires a purer bath.

Classes IPC  ?

29.

REMOVING IMPURITIES FROM AN ELECTROLYTE

      
Numéro d'application CA2021051665
Numéro de publication 2022/109725
Statut Délivré - en vigueur
Date de dépôt 2021-11-23
Date de publication 2022-06-02
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Liu, Xinghua
  • Mickelson, Larry
  • Mackey, Allen George
  • Fors, John

Abrégé

It is disclosed a purifier assembly and method for removing impurities from an electrolytic bath before using the same with an electrolytic cell for making a metal, such as aluminum or aluminium. The assembly comprises a purification tank, located upstream the cell, for containing the bath; and at least one row, preferably at least two rows, of alternating vertically oriented cathodes and anodes configured to be operatively connected to a power supply for providing an electric current to the anodes and cathodes. The rows of vertically oriented cathodes and anodes are configured in size to be inserted into the tank. The purifier assembly is configured to maintain an anode-to-cathode distance (ACD) between the cathodes and anodes. The purifier is particularly adapted for removing sulfur, phosphorus, iron, and/or gallium from cryolite for the eco-friendly production of aluminum with a cell using oxygen-evolving or inert anodes, which preferably requires a purer bath.

Classes IPC  ?

30.

DETECTING THERMITE REACTIONS IN AN ELECTROLYTIC CELL

      
Numéro d'application CA2021051512
Numéro de publication 2022/087732
Statut Délivré - en vigueur
Date de dépôt 2021-10-27
Date de publication 2022-05-05
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Findley, Nicholas

Abrégé

A method for detecting a thermite reaction in an electrolytic cell comprising an anode assembly of one or more metal-oxide-containing anodes is disclosed. Each anode assembly is powered by a current provided through a distinct anode rod for each anode assembly. The method comprises: measuring a voltage drop using a pair of voltage probes located on the anode rod, the voltage drop corresponding to a current flow in the anode assembly; processing the voltage drop by computing at least one of the voltage drop derivative, the voltage drop variance, and the derivative of the voltage drop variance; and detecting a thermite reaction based on the results of the signal processing, before mitigating and/or suppressing the thermite reaction by adjusting the operational parameters of the electrolytic cell. This method is particularly advantageous as it reduces the number of voltage drops necessary for detecting a thermite reaction by a factor of 10.

Classes IPC  ?

  • G01N 27/416 - Systèmes
  • C25C 3/12 - Anodes
  • C25C 3/16 - Dispositifs d'alimentation en courant électrique, p. ex. barres omnibus
  • C25C 3/20 - Commande ou régulation automatique des cellules

31.

DETECTING THERMITE REACTIONS IN AN ELECTROLYTIC CELL

      
Numéro de document 03193088
Statut En instance
Date de dépôt 2021-10-27
Date de disponibilité au public 2022-05-05
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy
  • Findley, Nicholas

Abrégé

A method for detecting a thermite reaction in an electrolytic cell comprising an anode assembly of one or more metal-oxide-containing anodes is disclosed. Each anode assembly is powered by a current provided through a distinct anode rod for each anode assembly. The method comprises: measuring a voltage drop using a pair of voltage probes located on the anode rod, the voltage drop corresponding to a current flow in the anode assembly; processing the voltage drop by computing at least one of the voltage drop derivative, the voltage drop variance, and the derivative of the voltage drop variance; and detecting a thermite reaction based on the results of the signal processing, before mitigating and/or suppressing the thermite reaction by adjusting the operational parameters of the electrolytic cell. This method is particularly advantageous as it reduces the number of voltage drops necessary for detecting a thermite reaction by a factor of 10.

Classes IPC  ?

  • C25C 3/12 - Anodes
  • C25C 3/16 - Dispositifs d'alimentation en courant électrique, p. ex. barres omnibus
  • C25C 3/20 - Commande ou régulation automatique des cellules
  • G01N 27/416 - Systèmes

32.

SYSTEM AND PROCESS FOR STARTING UP AN ELECTROLYTIC CELL

      
Numéro de document 03173283
Statut Délivré - en vigueur
Date de dépôt 2021-04-30
Date de disponibilité au public 2021-11-25
Date d'octroi 2024-06-11
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Bardet, Benoit
  • Becasse, Sebastien
  • D'Astolfo, Leroy
  • Fors, John
  • Noizet, Alain
  • Petitjean, Bruno

Abrégé


It is disclosed a system and process for starting up an electrolytic cell. The
system and process are
particularly adapted for preheating an electrolytic cell or pot having
cathodes before installing
preheated anodes in the cell, for the production of a metal (e.g. aluminum).
The system comprises
one or more electrical heaters installed in the cell in place of the anode
assemblies and can be used
with a dry bath or a liquid melted bath (e.g. cryolite). The cell is
preferably preheated by as many
cell preheaters as there are anode assemblies. The cell preheater is
preferably powered by current
available in the pot's busbar. The invention is environmentally friendly as
being preferably adapted
for preheating a cell working with inert or oxygen-evolving anodes.
Furthermore, the starting up
process allows optimizing / reducing the time necessary for starting up the
electrolytic cell, while
securing the materials located inside the cell.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 7/06 - Conduite ou entretien

33.

SYSTEM AND PROCESS FOR STARTING UP AN ELECTROLYTIC CELL

      
Numéro d'application CA2021050609
Numéro de publication 2021/232147
Statut Délivré - en vigueur
Date de dépôt 2021-04-30
Date de publication 2021-11-25
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Bardet, Benoit
  • Becasse, Sebastien
  • D'Astolfo, Leroy
  • Fors, John
  • Noizet, Alain
  • Petitjean, Bruno

Abrégé

It is disclosed a system and process for starting up an electrolytic cell. The system and process are particularly adapted for preheating an electrolytic cell or pot having cathodes before installing preheated anodes in the cell, for the production of a metal (e.g. aluminum). The system comprises one or more electrical heaters installed in the cell in place of the anode assemblies and can be used with a dry bath or a liquid melted bath (e.g. cryolite). The cell is preferably preheated by as many cell preheaters as there are anode assemblies. The cell preheater is preferably powered by current available in the pot's busbar. The invention is environmentally friendly as being preferably adapted for preheating a cell working with inert or oxygen-evolving anodes. Furthermore, the starting up process allows optimizing / reducing the time necessary for starting up the electrolytic cell, while securing the materials located inside the cell.

Classes IPC  ?

  • C25C 7/06 - Conduite ou entretien
  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes

34.

Electrode configurations for electrolytic cells and related methods

      
Numéro d'application 17372248
Numéro de brevet 11585003
Statut Délivré - en vigueur
Date de dépôt 2021-07-09
Date de la première publication 2021-10-28
Date d'octroi 2023-02-21
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s) Liu, Xinghua

Abrégé

An electrolytic cell for producing aluminum metal is disclosed. The electrolytic cell comprises at least one anode module having a plurality of anodes and being supported above a corresponding at least one cathode module having a plurality of cathodes, the at least one anode module being supported by a positioning apparatus configured to move inside the cell for selectively positioning the plurality of anodes within the electrolytic cell relative to adjacent cathodes in order to adjust an anode-cathode distance (ACD) and/or an anode-cathode overlap (ACO). Preferably, the anodes are inert or oxygen-evolving electrodes for an eco-friendly or “green” production of a metal, such as aluminum (or aluminium).

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 7/06 - Conduite ou entretien
  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules
  • C25C 3/10 - Cadres ou structures de support extérieurs à la cellule
  • C25C 3/12 - Anodes

35.

APPARATUS AND METHOD FOR OPERATING AN ELECTROLYTIC CELL

      
Numéro d'application CA2020051173
Numéro de publication 2021/035356
Statut Délivré - en vigueur
Date de dépôt 2020-08-27
Date de publication 2021-03-04
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Petitjean, Bruno
  • Noizet, Alain
  • Bardet, Benoit

Abrégé

An apparatus, also named transfer box or TB, for conveying an anode assembly outside of an electrolyte cell is described. An apparatus, also named cell preheater lifting beam or CPLB, for conveying an anode assembly or a cell pre-heater outside of an electrolyte cell is also disclosed. TB and CPLB are conjointly used for starting up the electrolytic cell or for replacing a spent anode assembly while maintaining the production of non-ferrous metal, such as aluminum or aluminium. The thermal insulation of the TB allows maintaining the anode temperature homogeneity and preventing thermal shocks when introducing the inert anodes into the hot electrolytic bath. TN and CPLB allow accurate positioning of anode assemblies or cell-preheaters over the electrolysis cell before achieving mechanical and electrical connections of the anode assembly or the cell pre-heater to the electrolysis cell. Several related methods for the operation of an electrolytic cell are also disclosed.

Classes IPC  ?

36.

APPARATUS AND METHOD FOR OPERATING AN ELECTROLYTIC CELL

      
Numéro de document 03143359
Statut Délivré - en vigueur
Date de dépôt 2020-08-27
Date de disponibilité au public 2021-03-04
Date d'octroi 2023-12-19
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Petitjean, Bruno
  • Noizet, Alain
  • Bardet, Benoit

Abrégé

An apparatus, also named transfer box or TB, for conveying an anode assembly outside of an electrolyte cell is described. An apparatus, also named cell preheater lifting beam or CPLB, for conveying an anode assembly or a cell pre-heater outside of an electrolyte cell is also disclosed. TB and CPLB are conjointly used for starting up the electrolytic cell or for replacing a spent anode assembly while maintaining the production of non-ferrous metal, such as aluminum or aluminium. The thermal insulation of the TB allows maintaining the anode temperature homogeneity and preventing thermal shocks when introducing the inert anodes into the hot electrolytic bath. TN and CPLB allow accurate positioning of anode assemblies or cell-preheaters over the electrolysis cell before achieving mechanical and electrical connections of the anode assembly or the cell pre-heater to the electrolysis cell. Several related methods for the operation of an electrolytic cell are also disclosed.

Classes IPC  ?

37.

SYSTEM AND METHOD FOR COLLECTING AND PRE-TREATING PROCESS GASES GENERATED BY AN ELECTROLYSIS CELL

      
Numéro de document 03132212
Statut Délivré - en vigueur
Date de dépôt 2020-03-19
Date de disponibilité au public 2020-09-24
Date d'octroi 2023-11-07
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Meyer, Michel
  • Glisan, Roy A.

Abrégé

Apparatus and method for collecting and pretreating process gases produced in an electrolytic cell during aluminum production are disclosed. The apparatus comprises a collecting unit configured to draw off primary process gases from the electrolytic cell, for instance by drawing-off primary process gases from orifices purposely made over the electrolytic bath; and a pre-treating unit fluidly connected to the collecting unit and configured to receive a fluid bed of fluorinated alumina for pre-treating the primary process gases. The collecting and pre-treating units are within or immediately aside the electrolytic cell, in the potroom. The apparatus can be combine with a gas treatment center (GTC) located outside the potroom. Among other advantages, the technology allows collecting primary process gases directly at electrolytic bath level, separating primary process gases and hoodspace process gases to pretreat the primary process gases with alumina before the GTC, and using fluid bed reactors without filter bags.

Classes IPC  ?

38.

SYSTEM AND METHOD FOR COLLECTING AND PRE-TREATING PROCESS GASES GENERATED BY AN ELECTROLYSIS CELL

      
Numéro d'application CA2020050363
Numéro de publication 2020/186354
Statut Délivré - en vigueur
Date de dépôt 2020-03-19
Date de publication 2020-09-24
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Meyer, Michel
  • Glisan, Roy A.

Abrégé

Apparatus and method for collecting and pretreating process gases produced in an electrolytic cell during aluminum production are disclosed. The apparatus comprises a collecting unit configured to draw off primary process gases from the electrolytic cell, for instance by drawing-off primary process gases from orifices purposely made over the electrolytic bath; and a pre-treating unit fluidly connected to the collecting unit and configured to receive a fluid bed of fluorinated alumina for pre-treating the primary process gases. The collecting and pre-treating units are within or immediately aside the electrolytic cell, in the potroom. The apparatus can be combine with a gas treatment center (GTC) located outside the potroom. Among other advantages, the technology allows collecting primary process gases directly at electrolytic bath level, separating primary process gases and hoodspace process gases to pretreat the primary process gases with alumina before the GTC, and using fluid bed reactors without filter bags.

Classes IPC  ?

39.

ANODE APPARATUS AND METHODS REGARDING THE SAME

      
Numéro d'application 16334134
Statut En instance
Date de dépôt 2017-09-19
Date de la première publication 2020-02-27
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s) Sworts, Lance

Abrégé

In some embodiments, an anode apparatus comprises: (a) an anode body comprising at least one outer sidewall, wherein the outer sidewall is configured to define a shape of the anode body, and to perimetrically surround a hole in the anode body, wherein the hole comprises an upper opening in a top surface of the anode body and wherein the hole axially extends into the anode body; (b) a pin comprising: a first end and a second end opposite the first end, wherein the second end extends downward into the upper end of the anode body and into the hole of the anode body; and (c) a sealing material configured to cover at least a portion of at least one of the following: (1) an inner sidewall of the anode body; (2) the top surface of the anode body; (3) the pin; and (4) the anode support.

Classes IPC  ?

  • C25C 3/12 - Anodes
  • C25C 7/02 - ÉlectrodesLeurs connexions
  • C25B 11/02 - ÉlectrodesLeur fabrication non prévue ailleurs caractérisées par la configuration ou la forme

40.

Electrode configurations for electrolytic cells and related methods

      
Numéro d'application 16571718
Numéro de brevet 11060199
Statut Délivré - en vigueur
Date de dépôt 2019-09-16
Date de la première publication 2020-01-09
Date d'octroi 2021-07-13
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s) Liu, Xinghua

Abrégé

In one embodiment, an electrolytic cell for the production of aluminum from alumina includes: at least one anode module having a plurality of anodes; at least one cathode module, opposing the anode module, wherein the at least one cathode module comprises a plurality of cathodes, wherein the plurality of anodes are suspended above the cathode module and extending downwards towards the cathode module, wherein the plurality of cathodes are positioned extending upwards towards the anode module, wherein each of the plurality of anodes and each of the plurality of cathodes are alternatingly positioned, wherein the plurality of anodes is selectively positionable in a horizontal direction relative to adjacent cathodes, wherein the anode module is selectively positionable in a vertical direction relative to the cathode module, and wherein a portion of each of the anode electrodes overlap a portion of adjacent cathodes.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 7/06 - Conduite ou entretien
  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules
  • C25C 3/10 - Cadres ou structures de support extérieurs à la cellule
  • C25C 3/12 - Anodes

41.

Advanced aluminum electrolysis cell

      
Numéro d'application 16316234
Numéro de brevet 11180862
Statut Délivré - en vigueur
Date de dépôt 2017-07-07
Date de la première publication 2019-06-06
Date d'octroi 2021-11-23
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s) Liu, Xinghua

Abrégé

In some embodiments, an electrolytic cell includes: an one anode module having a plurality of anodes; a one cathode module, opposing the anode module, and comprising a plurality of vertical cathodes, wherein each of the plurality of anodes and each of the plurality of vertical cathodes are vertically oriented and spaced one from another; a cell reservoir; and a cell bottom supporting the cathode module, wherein the cell bottom comprise an first upper surface, a second upper surface, and a channel, wherein the plurality of vertical cathodes extends upward from the upper surfaces, wherein at least one cathode block is located below the plurality of vertical cathodes, wherein the first upper surface and the second upper surface are configured to direct substantially all of the liquid aluminum produced in the electrolytic cell to the channel, and wherein the channel is configured to receive liquid aluminum from the upper surfaces.

Classes IPC  ?

  • C25C 3/06 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus de l'aluminium
  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/16 - Dispositifs d'alimentation en courant électrique, p. ex. barres omnibus

42.

ANODE APPARATUS AND METHODS REGARDING THE SAME

      
Numéro de document 03037199
Statut Délivré - en vigueur
Date de dépôt 2017-09-19
Date de disponibilité au public 2018-03-22
Date d'octroi 2022-01-04
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s) Sworts, Lance

Abrégé

In some embodiments, an anode apparatus comprises: (a) an anode body comprising at least one outer sidewall, wherein the outer sidewall is configured to define a shape of the anode body, and to perimetrically surround a hole in the anode body, wherein the hole comprises an upper opening in a top surface of the anode body and wherein the hole axially extends into the anode body; (b) a pin comprising: a first end and a second end opposite the first end, wherein the second end extends downward into the upper end of the anode body and into the hole of the anode body; and (c) a sealing material configured to cover at least a portion of at least one of the following: (1) an inner sidewall of the anode body; (2) the top surface of the anode body; (3) the pin; and (4) the anode support.

Classes IPC  ?

  • C25C 3/06 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus de l'aluminium
  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/12 - Anodes
  • C25C 3/16 - Dispositifs d'alimentation en courant électrique, p. ex. barres omnibus
  • C25C 7/02 - ÉlectrodesLeurs connexions

43.

Feeding systems and methods of using feeding systems

      
Numéro d'application 15475018
Numéro de brevet 10633752
Statut Délivré - en vigueur
Date de dépôt 2017-03-30
Date de la première publication 2017-10-05
Date d'octroi 2020-04-28
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Glisan, Roy A.
  • D'Astolfo, Leroy E.
  • Lucey, Derrick
  • Ripepi, Mark

Abrégé

In one embodiment, a feed system for distributing fluidized feed material, comprises: a distribution unit configured to fluidize feed material; and a control unit fluidly coupled to the distribution unit, wherein the control unit comprises: a chamber configured to hold the feed material provided from the distribution unit; and a feeder unit fluidly coupled to the chamber: and a second gas inlet configured to provide gas to the chamber; and a material discharge pipe fluidly coupled to the chamber and the second gas inlet.

Classes IPC  ?

  • C25C 3/14 - Dispositifs pour l'alimentation ou pour briser la croûte
  • B65G 53/18 - Systèmes de pression de gaz fonctionnant avec fluidification des matériaux à travers une paroi poreuse
  • B65G 53/22 - Systèmes de pression de gaz fonctionnant avec fluidification des matériaux à travers une paroi poreuse les systèmes comprenant un réservoir, p. ex. un caisson
  • B65G 53/66 - Utilisation de dispositifs indicateurs ou de commande, p. ex. pour commander la pression du gaz, pour régler le pourcentage matériaux-gaz, pour signaler ou éviter l'embouteillage des matériaux

44.

Electrode configurations for electrolytic cells and related methods

      
Numéro d'application 15469318
Numéro de brevet 10415147
Statut Délivré - en vigueur
Date de dépôt 2017-03-24
Date de la première publication 2017-09-28
Date d'octroi 2019-09-17
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s) Liu, Xinghua

Abrégé

In one embodiment, an electrolytic cell for the production of aluminum from alumina includes: at least one anode module having a plurality of anodes; at least one cathode module, opposing the anode module, wherein the at least one cathode module comprises a plurality of cathodes, wherein the plurality of anodes are suspended above the cathode module and extending downwards towards the cathode module, wherein the plurality of cathodes are positioned extending upwards towards the anode module, wherein each of the plurality of anodes and each of the plurality of cathodes are alternatingly positioned, wherein the plurality of anodes is selectively positionable in a horizontal direction relative to adjacent cathodes, wherein the anode module is selectively positionable in a vertical direction relative to the cathode module, and wherein a portion of each of the anode electrodes overlap a portion of adjacent cathodes.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/12 - Anodes
  • C25C 7/06 - Conduite ou entretien
  • C25C 3/10 - Cadres ou structures de support extérieurs à la cellule
  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules

45.

Insulation assembly for electrolysis cell

      
Numéro d'application 15416559
Numéro de brevet 10648094
Statut Délivré - en vigueur
Date de dépôt 2017-01-26
Date de la première publication 2017-07-27
Date d'octroi 2020-05-12
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy E.
  • Czekaj, Steven A.
  • Ruan, Yimin

Abrégé

An insulation assembly is provided, including: a body of an insulating material with a lower surface configured to contact a sidewall an electrolysis cell; an upper surface generally opposed to the lower surface; and a perimetrical sidewall extending between the upper surface and the lower surface to surround the remainder of the body, the perimetrical sidewall including: an inner portion configured to face an anode surface of the electrolysis cell and provide a gap between the body and the anode surface of the electrolysis cell; wherein the body is configured to extend from the sidewall towards the anode surface.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/06 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus de l'aluminium
  • C25C 3/24 - Affinage
  • C25C 3/18 - Électrolytes
  • C25C 3/12 - Anodes
  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules
  • C25C 3/00 - Production, récupération ou affinage électrolytique de métaux par électrolyse de bains fondus

46.

Systems and methods of protecting electrolysis cell sidewalls

      
Numéro d'application 14847668
Numéro de brevet 10151039
Statut Délivré - en vigueur
Date de dépôt 2015-09-08
Date de la première publication 2016-03-10
Date d'octroi 2018-12-11
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Liu, Xinghua
  • Ward, Jeff
  • Weirauch, Douglas A.
  • Phelps, Frankie E.
  • Dynys, Joseph M.
  • Kerkhoff, Jonell
  • Dimilia, Robert A.

Abrégé

A system is provided including an electrolysis cell configured to retain a molten electrolyte bath, the bath including at least one bath component, the electrolysis cell including: a bottom, and a sidewall consisting essentially of the at least one bath component; and a feed material including the least one bath component to the molten electrolyte bath such that the at least one bath component is within 30% of saturation, wherein, via the feed material, the sidewall is stable in the molten electrolyte bath.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/14 - Dispositifs pour l'alimentation ou pour briser la croûte
  • C25C 3/20 - Commande ou régulation automatique des cellules

47.

Systems and methods of protecting electrolysis cell sidewalls

      
Numéro d'application 14847926
Numéro de brevet 09957627
Statut Délivré - en vigueur
Date de dépôt 2015-09-08
Date de la première publication 2016-03-10
Date d'octroi 2018-05-01
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Liu, Xinghua
  • Dimilia, Robert A.
  • Dynys, Joseph M.
  • Martello, Jeffrey S.

Abrégé

Broadly, the present disclosure relates to sidewall features (e.g. inner sidewall or hot face) of an electrolysis cell, which protect the sidewall from the electrolytic bath while the cell is in operation (e.g. producing metal in the electrolytic cell).

Classes IPC  ?

  • C25C 3/20 - Commande ou régulation automatique des cellules
  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/14 - Dispositifs pour l'alimentation ou pour briser la croûte

48.

Anode apparatus

      
Numéro d'application 14834895
Numéro de brevet 09945041
Statut Délivré - en vigueur
Date de dépôt 2015-08-25
Date de la première publication 2016-03-10
Date d'octroi 2018-04-17
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Reed, Susan M.
  • Steiner, William
  • Artman, Glenn
  • Lasalle, Jerry

Abrégé

The present disclosure related to an inert anode which is electrically connected to the electrolytic cell, such that a conductor rod is connected to the inert anode in order to supply current from a current supply to the inert anode, where the inert anode directs current into the electrolytic bath to produce nonferrous metal (where current exits the cell via a cathode).

Classes IPC  ?

  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules
  • C25C 7/02 - ÉlectrodesLeurs connexions
  • C25C 3/12 - Anodes

49.

Systems and methods of protecting electrolysis cells

      
Numéro d'application 14206506
Numéro de brevet 09340887
Statut Délivré - en vigueur
Date de dépôt 2014-03-12
Date de la première publication 2014-09-18
Date d'octroi 2016-05-17
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Liu, Xinghua
  • Dimilia, Robert A.
  • Dynys, Joseph M.
  • Martello, Jeffrey S.

Abrégé

Broadly, the present disclosure relates to sidewall features (e.g. inner sidewall or hot face) of an electrolysis cell, which protect the sidewall from the electrolytic bath while the cell is in operation (e.g. producing metal in the electrolytic cell).

Classes IPC  ?

  • C25C 7/06 - Conduite ou entretien
  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 7/00 - Éléments structurels, ou leur assemblage, des cellulesEntretien ou conduite des cellules

50.

Systems and methods of protecting electrolysis cell sidewalls

      
Numéro d'application 14206300
Numéro de brevet 09771659
Statut Délivré - en vigueur
Date de dépôt 2014-03-12
Date de la première publication 2014-09-18
Date d'octroi 2017-09-26
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Liu, Xinghua
  • Weirauch, Jr., Douglas A.
  • Phelps, Frankie E.
  • Dynys, Joseph M.
  • Kerkhoff, Jonell
  • Dimilia, Robert A.

Abrégé

A system is provided including an electrolysis cell configured to retain a molten electrolyte bath, the bath including at least one bath component, the electrolysis cell including: a bottom, and a sidewall consisting essentially of the at least one bath component; and a feeder system, configured to provide a feed material including the least one bath component to the molten electrolyte bath such that the at least one bath component is within 2% of saturation, wherein, via the feed material, the sidewall is stable in the molten electrolyte bath.

Classes IPC  ?

  • C25C 3/08 - Construction des cellules, p. ex. fonds, parois, cathodes
  • C25C 3/14 - Dispositifs pour l'alimentation ou pour briser la croûte
  • C25C 3/20 - Commande ou régulation automatique des cellules

51.

Systems and methods for preventing thermite reactions in electrolytic cells

      
Numéro d'application 13987650
Numéro de brevet 09982355
Statut Délivré - en vigueur
Date de dépôt 2013-08-19
Date de la première publication 2014-02-20
Date d'octroi 2018-05-29
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • D'Astolfo, Leroy E.
  • Steiner, William J.
  • Moreland, Eric C.
  • Kozarek, Robert L.
  • Ruan, Yimin

Abrégé

A method of monitoring an electrolytic cell including detecting information indicative of a thermite reaction, comparing the information indicative of a thermite reaction to a threshold, generating a thermite response signal according to the comparison, and reacting to the thermite response signal by adjusting the operation of the electrolytic cell.

Classes IPC  ?

  • C25C 3/20 - Commande ou régulation automatique des cellules
  • C25C 7/06 - Conduite ou entretien

52.

Inert electrode assemblies and methods of manufacturing the same

      
Numéro d'application 11566080
Numéro de brevet 07799187
Statut Délivré - en vigueur
Date de dépôt 2006-12-01
Date de la première publication 2008-06-05
Date d'octroi 2010-09-21
Propriétaire ELYSIS LIMITED PARTNERSHIP (Canada)
Inventeur(s)
  • Dimilia, Robert
  • Phelps, Frankie
  • Sworts, Lance M.

Abrégé

A composite anode assembly is provided, the assembly including a permeation resistant portion and a porous conductive portion circumscribing at least the bottom of the permeation resistant portion. The composite anode assembly reduces corrosion and restricts thermal expansion stresses.

Classes IPC  ?

  • C25B 11/03 - ÉlectrodesLeur fabrication non prévue ailleurs caractérisées par la configuration ou la forme perforées ou foraminées
  • C25B 11/04 - ÉlectrodesLeur fabrication non prévue ailleurs caractérisées par le matériau