Method for producing carrier for electrode catalyst, precursor of carrier for electrode catalyst, and carrier for electrode catalyst, comprising same
US-12057587-B2 · Aug 6, 2024 · US
US2024301571A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2024301571-A1 |
| Application number | US-202418582049-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 20, 2024 |
| Priority date | Mar 8, 2023 |
| Publication date | Sep 12, 2024 |
| Grant date | — |
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The electrochemical module is formed by stacking a plurality of membrane electrode assemblies having electrolyte membranes, anodes and cathodes. The plurality of membrane electrode assemblies are stacked so that a first region where the anodes face each other and a second region where the cathodes face each other appear alternately in the stacking direction. Further, at least one of the first region and the second region includes a common flow path shared by two adjacent membrane electrode assemblies.
Opening claim text (preview).
1 . An electrochemical module comprising: a plurality of membrane electrode assemblies stacked one another, the membrane electrode assemblies comprising electrolyte membranes, and anodes and cathodes sandwiching the electrolyte membranes, wherein the plurality of membrane electrode assemblies are stacked in a manner that a first region where the anodes face each other and a second region where the cathodes face each other appear alternately in a stacking direction, and at least one of the first region and the second region includes a common flow path shared by two adjacent membrane electrode assemblies. 2 . The electrochemical module according to claim 1 , wherein each of the first region and the second region is provided with the common flow path. 3 . The electrochemical module according to claim 2 , wherein the common flow path provided in either one of the first region and the second region is configured to allow a fluid having pressure that is increased by one pair of adjacent membrane electrode assemblies to flow therethrough. 4 . The electrochemical module according to claim 3 , further comprising: a spacer disposed in the common flow path through which the fluid having increased pressure flows, wherein the one pair of adjacent membrane electrode assemblies are separated by the spacer. 5 . The electrochemical module according to claim 4 , wherein the spacer is configured to electrically connect electrodes of the one pair of adjacent membrane electrode assemblies to each other. 6 . The electrochemical module according to claim 3 , further comprising: a support plate that is disposed in the common flow path provided in the other one of the first region and the second region and configured to allow a fluid having pressure lower than the fluid having increased pressure to flow, the support plate being configured to allow the fluid having lower pressure to be supplied to another pair of adjacent membrane electrode assemblies. 7 . The electrochemical module according to claim 6 , wherein the support plate has a coolant flow field through which a coolant flows to cool the another pair of adjacent membrane electrode assemblies. 8 . The electrochemical module according to claim 6 , wherein the support plate prevents electrical conduction between electrodes of the another pair of adjacent membrane electrode assemblies.
characterised by the configuration of channels, e.g. by the flow field of the reactant or coolant · CPC title
characterised by membrane-electrode assemblies [MEA] (H01M8/12 takes precedence) · CPC title
Pumps having electric drive · CPC title
having diaphragms · CPC title
Heating or cooling means · CPC title
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