FUEL BATTERY STACK

PROBLEM TO BE SOLVED: To provide a fuel battery stack that can suppress degradation of the performance of an end portion power generation cell as much as possible with a simple and economical configuration.SOLUTION: A fuel cell stack 10 includes a stack body 14 in which a plurality of power generati...

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Bibliographic Details
Main Authors NAGUMO KENJI, JINBA AKIRA, KIMURA YOSHITO
Format Patent
LanguageEnglish
Japanese
Published 30.03.2017
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Summary:PROBLEM TO BE SOLVED: To provide a fuel battery stack that can suppress degradation of the performance of an end portion power generation cell as much as possible with a simple and economical configuration.SOLUTION: A fuel cell stack 10 includes a stack body 14 in which a plurality of power generation cells 12 are stacked. A first end power generation cell 12 end.(c) disposed at one end in the stack direction of the stack body 14 has a cathode separator 34 at the outermost portion in the stack direction. A second end power generation cell 12 end.(a) disposed at the other end in the stack direction of the stack body 14 has an anode separator 30 at the outermost portion in the stack direction. The flow rate of oxidant gas flowing through the first end power generation cell 12 end.(c) is larger than the flow rate of oxidant gas flowing through the second end power generation cell 12 end.(a).SELECTED DRAWING: Figure 2 【課題】簡単且つ経済的な構成で、端部発電セルの性能低下を可及的に抑制することを可能にする。【解決手段】燃料電池スタック10は、複数の発電セル12が積層される積層体14を備える。積層体14の積層方向一端に配置される第1端部発電セル12end.(c)は、積層方向最外部にカソードセパレータ34を有する。積層体14の積層方向他端に配置される第2端部発電セル12end.(a)は、積層方向最外部にアノードセパレータ30を有する。第1端部発電セル12end.(c)を流通する酸化剤ガスの流量は、第2端部発電セル12end.(a)を流通する前記酸化剤ガスの流量よりも多い。【選択図】図2
Bibliography:Application Number: JP20150188387