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Water-induced electrode poisoning and the mitigation strategy for high temperature polymer electrolyte membrane fuel cells

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摘要 Engineering failure of membrane electrode assembly caused by increasingly fuel poisoning in the high temperature polymer electrolyte membrane fuel cells fed with humidified reformate gases is firstly demonstrated herein this work. Based on the results of the in-situ environmental scanning electron microscope, electrochemical analyses, and limiting current method, a water-induced phosphoric acid invasion model is constructed in the porous electrode to elucidate the failure causations of the hindered hydrogen mass transport and the enhanced carbon monoxide poisoning. To optimize the phosphoric acid distribution under the inevitably humidified circumstance, a facile and effective strategy of constructing acid-proofed electrode is proposed and demonstrates outstanding stability with highly humidified reformate gases as anode fuel. This work discusses a potential defect that was rarely studied previously under practical working circumstance for high temperature polymer electrolyte membrane fuel cells, providing an alternative opinion of electrode design based on the fundamental aspects towards the engineering problems.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第6期569-575,I0016,共8页 能源化学(英文版)
基金 financially supported by the National Science Foundation of China, China (22179130, 91834301) the Foundation of the Key Laboratory of Chinese Academy of Sciences (CXJJ21S024) Dalian Institute of Chemical Physics, China (DICPI202023)。
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