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Voltage Oscillations in a Polymer Electrolyte Membrane Fuel Cell with Pd‐Pt/C and Pd/C Anodes

机译:具有Pd-Pt / C和Pd / C阳极的聚合物电解质膜燃料电池中的电压振荡

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摘要

Polymer electrolyte membrane fuel cells (PEMFC) fed with H2 contaminated with CO may exhibit oscillatory behavior when operated galvanostatically. The self‐organization of the anodic overpotential is interesting because it can be accompanied by an increase in the average performance. Herein we report experimental studies of voltage oscillations that emerge in a PEMFC equipped with a Pd/C or PdPt/C anode and fed with H2 contaminated with CO (100 ppm). We used on‐line mass spectrometry to investigate how the mass fragments associated with CO2 and CO (m/z 44 and 28, respectively) varied with the voltage oscillations. Overall, we observed that oscillations in the anodic overpotential are in phase with that of the CO and CO2 signals. This fact is consistent with an autonomous adsorption–oxidation cyclic process. For both anodes, it has been observed that, in general, an increase in current density implies an increase in oscillatory frequency. By using CO stripping, we also discuss how the onset of CO oxidation is related to the maximum overpotential reached during a cycle, whereas the minimum overpotential can be associated with the catalytic activity of the electrode for H2 oxidation.
机译:当受恒电流操作时,喂入被CO污染的H2的聚合物电解质膜燃料电池(PEMFC)可能会出现振荡行为。阳极超电势的自组织很有趣,因为它可以伴随平均性能的提高。本文中,我们报道了在配备有Pd / C或PdPt / C阳极并注入了被CO(100ppm)污染的H2的PEMFC中出现的电压振荡的实验研究。我们使用在线质谱法研究了与CO2和CO相关的质量碎片(分别为m / z 44和28)随电压振荡的变化情况。总的来说,我们观察到阳极超电势的振荡与CO和CO2信号的振荡同相。这个事实与自主的吸附-氧化循环过程是一致的。对于两个阳极,已经观察到,通常来说,电流密度的增加意味着振荡频率的增加。通过使用CO汽提,我们还讨论了CO氧化的开始与循环中达到的最大超电势如何相关,而最小超电势可以与电极对H2氧化的催化活性相关。

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