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Résultats pour
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1.
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ACTIVE SYSTEM FOR GAS SEPARATION
| Numéro d'application |
PT2020050002 |
| Numéro de publication |
2020/153859 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2020-01-20 |
| Date de publication |
2020-07-30 |
| Propriétaire |
OMNIDEA, LDA. (Portugal)
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| Inventeur(s) |
Pardal, Tiago
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Abrégé
The present invention consists of a system that enhances and allows for the isolation and prevention of contamination, by diffusion, of two distinct gases separated by a membrane. The present invention is of particular use in aerostats. The present invention is characterized by the establishment of a capture volume (3) of the gases diffused by the introduction of a component (for example, a screen of porous material), and allows extraction of the gas that results from mixture of the interior gas (1) (typically lighter than air) and the exterior gas (5) (typically air) by a sub-pressure subsystem (6). The gas that results from mixture due to diffusion is removed by said sub-pressure subsystem (6) (for example, a vacuum pump), and can then be separated into the initial gases which are returned to the original sources. The capture volume (3) must be filled with a material that allows for extraction of the gas mixture without the membranes that separate the interior gas (2) from the exterior gas (4) collapsing or adhering to one another.
Classes IPC ?
- B01D 53/22 - 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 diffusion
- B64B 1/40 - Ballons
- B64B 1/58 - Disposition ou structure des ballonnetsRemplissage
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2.
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ELECTROCHEMICAL REDUCTION OF CARBON DIOXIDE IN AQUEOUS IONIC LIQUID CONTAINING ELECTROLYTES
| Numéro d'application |
PT2016000002 |
| Numéro de publication |
2016/178590 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2016-05-06 |
| Date de publication |
2016-11-10 |
| Propriétaire |
OMNIDEA, LDA. (Portugal)
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| Inventeur(s) |
- Da Costa Duarte Pardal, Tiago
- Staack Reis-Machado, Ana Maria
- Pereira Messias, Sofia Alexandra
- Bucho Nunes De Sousa, Margarida
- Rei Fernandes, Tomás Cláudio
- Da Costa Franco Afonso, Joana
- De Magalhães Nunes-Da-Ponte, Manuel Luís
- Petrovski, Zeljko
- Da Silva Nunes Gomes, Daniela
- Ferrão De Paiva Martins, Rodrigo
- Rangel Archila, Carmen Mireya
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Abrégé
The present invention relates to a catalytic system that is able to produce different chemical products by direct electrochemical reduction of carbon dioxide by controlling easily tunable parameters, such as applied current/potential, pressure, temperature, electrolyte composition and nature of the cathode at temperatures from room temperature up to 100°C, and pressures from atmospheric pressure up to 100 bar. These chemical products are alcohols with one to ten carbon atoms, ketones up to four carbon atoms and syngas. The catalytic system comprises a catalytic cathode coupled to a hydrophilic ionic liquid-based electrolyte containing water and dissolved C02. Preferably the invention envisages the use of carbon dioxide captured from industrial emissions and the use of electricity from renewable resources.
Classes IPC ?
- C25B 3/04 - Production électrolytique de composés organiques par réduction
- C25B 1/00 - Production électrolytique de composés inorganiques ou de non-métaux
- C25B 1/04 - Hydrogène ou oxygène par électrolyse de l'eau
- C25B 11/04 - ÉlectrodesLeur fabrication non prévue ailleurs caractérisées par le matériau
- H01M 8/06 - Combinaison d’éléments à combustible avec des moyens de production de réactifs ou pour le traitement de résidus
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3.
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PROPULSION SYSTEM
| Numéro d'application |
PT2012000027 |
| Numéro de publication |
2013/048271 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2012-07-05 |
| Date de publication |
2013-04-04 |
| Propriétaire |
Omnidea Lda. (Portugal)
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| Inventeur(s) |
Costa Duarte Pardal, Tiago
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Abrégé
The present invention in the field of mechanical engineering consists of an improved chemical propulsion system in which at least one of the reactants is stored in the liquid phase (10). The invention includes a conventional reaction chamber (1) and nozzle (2) and re¬ uses waste heat from the refrigeration of said reaction chamber and nozzle, transferred to, for example piping (5) containing reactant that is adjacent to them, in order to vaporize and pressurize said reactant (s) (11) in the reservoirs (3, 12). The reactant (s) are then fed, in gaseous phase to the reaction chamber (1), with their flow controlled by valves (4). The liquid and gaseous phases in each reservoir may be physically separated by a separation element (13). This invention presents a simpler constructive solution for chemical propulsion systems, and is applicable especially to liquid or hybrid rocket motors.
Classes IPC ?
- F02K 9/64 - Chambres de combustion ou de poussée comportant des aménagements pour le refroidissement
- F02K 9/68 - Chambres de décomposition
- F02K 9/72 - Moteurs-fusées, c.-à-d. ensembles fonctionnels portant à la fois le combustible et son oxydantLeur commande utilisant des propergols liquides et solides, c.-à-d. ensembles fonctionnels de moteurs-fusées hybrides
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4.
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SUBMERGED PLATFORM
| Numéro d'application |
PT2012000026 |
| Numéro de publication |
2013/006072 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2012-07-05 |
| Date de publication |
2013-01-10 |
| Propriétaire |
Omnidea Lda. (Portugal)
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| Inventeur(s) |
Costa Duarte Pardal, Tiago
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Abrégé
The present invention is an improvement to waterborne platforms that are used to anchor aerial and airborne systems deployed over water. The system basically consists of a fully submerged main body (1), which is immersed in a body of water and anchored through one or more cables (3) to the bed (8) of said body of water. The platform includes one or more tubes (5) connected to it through watertight articulated joints (6) at one end, and with the other end above the free surface (7) of the water. The tube houses one or more structural elements (9) which connect to the airborne platform located above the water's surface. The submerged platform represents a better way to house and protect any necessary ground equipment related to the airborne system anchored, safer from waves and other undesirable phenomena occurring on the free surface of the water.
Classes IPC ?
- B63B 22/04 - Dispositifs d'ancrage
- B64C 39/02 - Aéronefs non prévus ailleurs caractérisés par un emploi spécial
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5.
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AIRBORNE PLATFORM
| Numéro de document |
02829782 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2012-03-15 |
| Date de disponibilité au public |
2012-09-20 |
| Date d'octroi |
2019-09-17 |
| Propriétaire |
OMNIDEA LDA. (Portugal)
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| Inventeur(s) |
- Costa Duarte Pardal, Tiago
- Marques Dos Santos Silva, Pedro Miguel
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Abrégé
The invention pertains to aeronautical engineering and consists of an airborne platform that can be built to large sizes without requiring a rigid structure of comparable dimensions and which uses both buoyancy and the aerodynamic Magnus effect for lift. The aerodynamic lift is generated in lifting bodies (1), which also contain buoyant gas. The" lifting bodies (1) are stacked in a column, at the bottom of which there is a structural anchoring module (2) which also contains buoyant gas. ^The lifting bodies (1) and anchoring modules (2) are connected by slender structural elements which, when taken together as a whole form a non-rigid assembly. The platform may be tethered or configured as an aircraft, for which purpose other features may be added, such as a propulsion system (11), a crew gondola (6), cables to (7) and from (8) a swivel (12) and a payload (10) connected to said cables.
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6.
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AIRBORNE PLATFORM
| Numéro d'application |
PT2012000007 |
| Numéro de publication |
2012/125052 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2012-03-15 |
| Date de publication |
2012-09-20 |
| Propriétaire |
OMNIDEA LDA. (Portugal)
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| Inventeur(s) |
- Costa Duarte Pardal, Tiago
- Marques Dos Santos Silva, Pedro Miguel
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Abrégé
The invention pertains to aeronautical engineering and consists of an airborne platform that can be built to large sizes without requiring a rigid structure of comparable dimensions and which uses both buoyancy and the aerodynamic Magnus effect for lift. The aerodynamic lift is generated in lifting bodies (1), which also contain buoyant gas. The" lifting bodies (1) are stacked in a column, at the bottom of which there is a structural anchoring module (2) which also contains buoyant gas. ^The lifting bodies (1) and anchoring modules (2) are connected by slender structural elements which, when taken together as a whole form a non-rigid assembly. The platform may be tethered or configured as an aircraft, for which purpose other features may be added, such as a propulsion system (11), a crew gondola (6), cables to (7) and from (8) a swivel (12) and a payload (10) connected to said cables.
Classes IPC ?
- B64B 1/02 - Dirigeables souples
- B64C 39/00 - Aéronefs non prévus ailleurs
- B64C 39/02 - Aéronefs non prévus ailleurs caractérisés par un emploi spécial
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7.
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PROCESS FOR THE SELECTIVE ELECTROCHEMICAL CONVERSION OF C02 INTO C2 HYDROCARBONS
| Numéro d'application |
PT2012000008 |
| Numéro de publication |
2012/125053 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2012-03-15 |
| Date de publication |
2012-09-20 |
| Propriétaire |
OMNIDEA LDA. (Portugal)
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| Inventeur(s) |
- Martins Ramos Gonçalves, Marta Catarina
- Costa Duarte Pardal, Tiago
- Dâmaso Condeço, José Augusto
- Badalo Branco, Joaquim Miguel
- Cláudio Fernandes, Tomás Rei
- Madeira Gomes Boavida, Anabela Beatriz
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Abrégé
A process for the selective electrochemical conversion of carbon dioxide into hydrocarbons, namely C2 hydrocarbons is presented. The process is carried out in an electrochemical cell where the cathode is a modified electrode with copper electrodeposits in order to improve the catalytic activity and selectivity of the system. The formation of a mixture of C2 hydrocarbons (C2H4 and C2H6) without methane is successfully obtained on specific higher surface area electrodeposits. Additionally, ethylene is selectively produced in detriment of ethane. The ex-situ copper electrodeposit leads to the steadiness of carbon dioxide reduction process, i.e., the stability of hydrocarbons production due to the weak deactivation of the cathode.
Classes IPC ?
- C25B 3/04 - Production électrolytique de composés organiques par réduction
- C25D 1/00 - Galvanoplastie
- C25D 7/00 - Dépôt électrochimique caractérisé par l'objet à revêtir
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8.
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PLASTIC DEFORMATION TECHNOLOGICAL PROCESS FOR PRODUCTION OF THIN WALL REVOLUTION SHELLS FROM TUBULAR BILLETS
| Numéro d'application |
PT2009000007 |
| Numéro de publication |
2009/096801 |
| Statut |
Délivré - en vigueur |
| Date de dépôt |
2009-01-30 |
| Date de publication |
2009-08-06 |
| Propriétaire |
OMNIDEA, LDA. (Portugal)
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| Inventeur(s) |
- Mendonça Alves, Luís Manuel
- Firme Martins, Paulo António
- Da Costa Duarte Pardal, Tiago
- Correira De Almeida, Paulo Jorge
- Pereira Dos Anjos Valverde, Nuno Miguel
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Abrégé
This invention refers to a process of plastic deformation for production of thin wall revolution shells from tubular billets. The process consists in end-forming a hollow circular section billet, which can be composed of a multi- layered assembly, by using sharp edge internal domed shaped molds (1) that are guided externally by a constraining sleeve (3).This mold-sleeve tool can be assembled in a press in order to generate the pressure forces necessary for the forming process. The plastic deformation can result in thin walled spheres or cylinders with domed ends. The resultant revolution shells have two opposite (polar) circular openings. Both the shell's length as the polar hole diameter is mainly determined by the billet's initial dimensions and mold (1) domed geometry. An innovative flexible inner mandrel may be introduced to considerably improve overall shell characteristics, allowing reduction of shell polar opening diameter, giving control of along-meridian thickness, solving typical thin wall forming problems such as buckling, wrinkling and ruptures and improve both outer and inner surface quality. This mandrel can be discarded and/or recycled after forming. This invention enables a low-cost and high-rate process for production of structural revolution shells capable of being used as high-pressure vessels.
Classes IPC ?
- B21D 51/24 - Fabrication d'objets creux caractérisés par l'usage de l'objet de réservoirs à haute-pression, p. ex. chaudières, bouteilles à gaz
- B21D 51/08 - Fabrication d'objets creux caractérisés par la structure des objets d'objets sphériques
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