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Effect of MEA conditioning on PEMFC performance and EIS response under steady state condition

机译:MEA条件对稳态条件下PEMFC性能和EIS响应的影响

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In this work, effect of three different commonly used on-line membrane-electrode assembly (MEA) conditioning procedures on the final MEA performance and electrochemical impedance spectroscopy (EIS) response was studied under different operation conditions. The conditioning methods were: constant voltage, constant current and US fuel cell council (USFCC) protocol.Obtained results under steady state condition indicated that the performance and EIS response of all three identical MEAs were different even in the wide range of operational conditions.Results also showed that MEA conditioning by constant low current density is not an effective procedure compared to constant voltage and USFCC activation protocols in order to reach to the maximum performance of MEA even after long time conditioning and under different operation conditions. It has high solution, charge and mass transfer resistances.Given that the initial structure of three MEAs was identical, it could be concluded that the MEA activation procedure had an irreversible effect on the MEA interfacial properties which could not be corrected even at high pressure and high relative humidity of gases.
机译:在这项工作中,研究了三种不同的常用在线膜电极组件(MEA)调节程序对不同操作条件下最终MEA性能和电化学阻抗谱(EIS)响应的影响。调节方法为:恒定电压,恒定电流和美国燃料电池理事会(USFCC)协议。在稳态条件下获得的结果表明,即使在广泛的工作条件下,这三个相同MEA的性能和EIS响应也不同。还显示了与恒定电压和USFCC激活协议相比,通过恒定的低电流密度进行MEA调节不是一种有效的方法,即使在长时间的调节和在不同的操作条件下,也要达到MEA的最大性能。鉴于三种MEA的初始结构相同,因此可以得出结论认为MEA活化过程对MEA的界面性能具有不可逆的影响,即使在高压和高压下也无法校正。气体的相对湿度高。

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