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Influence of operating temperature on cell performance and endurance of high temperature proton exchange membrane fuel cells

机译:工作温度对高温质子交换膜燃料电池性能及耐久性的影响

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摘要

The relation between high temperature proton exchange membrane fuel cell (HT-PEMFC) operation temperature and cell durability was investigated in terms of the deterioration mechanism. Long-term durability tests were conducted at operational temperatures of 150,170, and 190 ℃ for a HT-PEMFC with phosphoric acid-doped polybenzimidazole electrolyte membranes. Higher cell temperatures were found to result in a higher cell voltage, but decrease cell life. The reduction in cell voltage of approximately 20 mV during the long-term tests was considered to be caused both by aggregation of the electrode catalyst particles in the early stage of power generation, in addition to the effects of crossover due to the depletion of phosphoric acid in the terminal stage, which occurs regardless of cell temperature. It is expected that enhanced long-term durability for practical applications can be achieved through effective management of phosphoric acid transfer.
机译:根据劣化机理,研究了高温质子交换膜燃料电池(HT-PEMFC)的工作温度与电池耐久性之间的关系。对于带有磷酸掺杂的聚苯并咪唑电解质膜的HT-PEMFC,在150,170和190℃的工作温度下进行了长期耐久性测试。发现较高的电池温度会导致较高的电池电压,但会降低电池寿命。在长期测试中,电池电压下降约20 mV被认为是由于发电早期阶段电极催化剂颗粒的聚集以及由磷酸消耗引起的交叉效应所致。在最终阶段,无论电池温度如何,都会发生这种情况。期望通过有效地管理磷酸转移,可以实现在实际应用中增强的长期耐久性。

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