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The effects of temperature on transport phenomena in phosphoric acid doped polybenzimidazole polymer electrolyte membrane fuel cell

机译:温度对掺磷酸的聚苯并咪唑聚合物电解质膜燃料电池输运现象的影响

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An energy analysis for the H3PO4 (phosphoric acid) doped PBI (polybenzimidazole) polymer electrolyte membrane fuel cell depending on the operating temperature is aimed in this study. In line with this aim, the relation of heat sources from electrochemical reaction, ionic and electronic current with the cell operating temperature is analyzed in detail for both anode catalyst layer and cathode catalyst layer. In addition, effect of the cell operating temperature on species and charge in the fuel cell is indicated. For this analysis, a single phase and two dimensional numerical model is developed with the help of COMSOL Multiphysics 4.2a software under the conditions of the different cell operating temperatures (from 120 to 180 degrees C stepping by 20 degrees C) and a constant acid doping level (6.75 RPU H3PO4/PBI). The results bring out that the irreversible and reversible entropic heat sources are more dominant than the joule heating source and the heat source by conduction at the cathode catalyst layer. The molar concentrations of all species through all layers are also presented. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目标是根据工作温度对H3PO4(磷酸)掺杂的PBI(聚苯并咪唑)聚合物电解质膜燃料电池进行能量分析。为了达到该目的,针对阳极催化剂层和阴极催化剂层,详细分析了来自电化学反应,离子电流和电子电流的热源与电池工作温度的关系。另外,指示了电池工作温度对燃料电池中的种类和电荷的影响。为了进行此分析,借助COMSOL Multiphysics 4.2a软件在不同的电池工作温度(从120到180摄氏度逐步升高20摄氏度)和恒定的酸掺杂条件下开发了单相和二维数值模型。级别(6.75 RPU H3PO4 / PBI)。结果表明,不可逆和可逆的熵热源比焦耳热源和通过在阴极催化剂层处传导的热源占主导地位。还列出了所有物质在所有层中的摩尔浓度。 (C)2016 Elsevier Ltd.保留所有权利。

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