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Impact of operating conditions on the acetylene contamination in the cathode of proton exchange membrane fuel cells

机译:操作条件对质子交换膜燃料电池阴极乙炔污染的影响

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摘要

Realistically, proton exchange membrane fuel cells (PEMFCs) are operated under varying operating conditions that potentially impact the acetylene contamination reactions. In this paper, the effects of the cell operating conditions on the acetylene contamination in PEMFCs are investigated under different current densities and temperatures with different acetylene concentrations in the cathode. Electrochemical impedance spectroscopy is applied during the constant-current operation to analyze the impacts of the operating conditions on the acetylene electrochemical reactions. The experimental results indicate that higher acetylene concentrations, higher current densities and lower cell temperatures decrease the cell performance more. In particular, cathode poisoning becomes more severe at medium cell current densities. The cell cathode potentials at such current densities are not sufficient to completely oxidize the intermediate or sufficiently low to completely reduce the adsorbed acetylene. Based on these investigations, the possible condition-dependent limitations of the acetylene concentration and cell operating voltage are proposed for insight into the acetylene contamination mitigation stratagem. Regarding the barrier conditions, the acetylene reactions change abruptly, and adjusting the cell operation parameters to change the acetylene adsorbate and intermediate accumulation conditions to induce complete oxidation or reduction conditions may mitigate the severe acetylene contamination effects on PEMFCs.
机译:实际上,质子交换膜燃料电池(PEMFC)在变化的运行条件下运行,这可能会影响乙炔污染反应。在本文中,研究了在不同电流密度和温度下,阴极中不同乙炔浓度的情况下,电池工作条件对PEMFC中乙炔污染的影响。在恒流操作过程中应用电化学阻抗谱,以分析操作条件对乙炔电化学反应的影响。实验结果表明,较高的乙炔浓度,较高的电流密度和较低的电池温度会降低电池性能。特别地,在中等电池电流密度下阴极中毒变得更加严重。在这种电流密度下的电池阴极电势不足以完全氧化中间体,或不足以完全还原吸附的乙炔。基于这些研究,提出了乙炔浓度和电池工作电压可能与条件有关的限制,以了解减轻乙炔污染的策略。关于屏障条件,乙炔反应突然改变,并且调节电池操作参数以改变乙炔吸附物和中间积累条件以诱导完全氧化或还原条件可以减轻对PEMFC的严重乙炔污染影响。

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