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Corrosion behavior of two bipolar plate materials in simulated PEMFC environment by electrochemical noise technique

机译:电化学噪声技术在模拟PEMFC环境中两种双极板材料的腐蚀行为

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The corrosion behavior of 316L stainless steel (316L) and bulk amorphous Zr{sub}75Ti{sub}25 (AB) alloy was studied using electrochemical noise (EN) in simulated polymer electrolyte membrane fuel cell (PEMFC) conditions at 25 and 80℃. At open circuit potential, under H{sub}2 environment, AB exhibited a higher corrosion-resistance than 316L and the contrary was observed under O{sub}2 environment. At imposed cathodic potential, under H{sub}2 environment for PEMFC anodic simulation, the reduction mechanism of 316L at 80℃ gave the most important EN signals of all other conditions. At imposed anodic potential, under O{sub}2 environment for cathodic simulation, the passive state was observed for 316L while severe localized corrosion for AB was obvious at 80℃. It is concluded from the corrosion data of this work that in the anode environment of a PEMFC, the AB alloy could be a better candidate than 316L for bipolar plates. The contrary was observed in the simulated cathode environment.
机译:在模拟高分子电解质膜燃料电池(PEMFC)的25和80℃条件下,利用电化学噪声(EN)研究了316L不锈钢(316L)和大块非晶Zr {sub} 75Ti {sub} 25(AB)合金的腐蚀行为。在开路电势下,在H {sub} 2环境下,AB的耐蚀性比316L高,而在O {sub} 2环境下则观察到相反的耐蚀性。在施加阴极电势的条件下,在H {sub} 2环境下进行PEMFC阳极模拟,在80℃下316L的还原机理给出了所有其他条件下最重要的EN信号。在施加阳极电势的条件下,在O {sub} 2环境下进行阴极模拟,观察到316L处于钝态,而在80℃时AB出现严重的局部腐蚀。从这项工作的腐蚀数据可以得出结论,在PEMFC的阳极环境中,对于双极板,AB合金可能比316L更好。在模拟阴极环境中观察到相反的情况。

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