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Voltage jump during polarization of a PEM fuel cell operated at low relative humidities

机译:在低相对湿度下运行的PEM燃料电池极化期间的电压跳变

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摘要

A PEM fuel cell with a Nafion 211 membrane-based membrane electrode assembly (MEA) was tested with an H_2/air stoichiometry of 2/4 at 25%, 50%, 75%, and 100% relative humidities. A voltage jump on the polarization curve was observed when the cell was operated at a lower humidity. This phenomenon may be explained by the water back-diffusion from the cathode into the membrane resulting in both a non-uniform water distribution in the membrane and a liquid-equilibrated interface between the membrane and the anode catalyst layer. Experimental results obtained by AC impedance spectroscopy measuring the MEA resistance (membrane+catalyst ionomer layers) at different current densities as well as collected polarization data at high feed-gas flow rates (or at low backpressures) and high temperatures all confirmed the validity of the proposed water back-diffusion hypothesis.
机译:在25%,50%,75%和100%相对湿度下,以2/4的H_2 /空气化学计量比测试了具有Nafion 211膜基膜电极组件(MEA)的PEM燃料电池。当电池在较低湿度下运行时,观察到极化曲线上的电压跳变。这种现象可以通过水从阴极向膜的反扩散来解释,这导致膜中的水分布不均匀以及膜与阳极催化剂层之间的液体平衡界面。通过交流阻抗谱测量在不同电流密度下的MEA电阻(膜+催化剂离聚物层)以及在高进料气流速(或低背压)和高温下收集的极化数据所获得的实验结果均证实了该方法的有效性。提出水反扩散假说。

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