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PERFORMANCE OF PEM FUEL CELLS AT SUB-FREEZING TEMPERATURES

机译:亚冷冻温度下PEM燃料电池的性能

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摘要

The ability of the polymer electrolyte fuel cell to start up at sub-freezing temperatures, also called cold start, is paramount for its transportation application. The ability to cold start is governed by whether the fuel cell is able to overcome 0 ℃ before the produced ice terminates the electrochemical reaction. Therefore, fundamental understanding of the fuel cell performance at sub-freezing temperatures is highly needed to improve its cold start characteristics. In this work, we investigated the fuel cell sub-freezing operation through experimental investigation. PEFCs using various membranes and catalyst layer configurations were constructed. In particular, various catalyst layer thickness, ionomer-catalyst ratios, RHs, and membrane thicknesses were considered, and their influence on fuel cell cold start performance was investigated. The voltage, current, high-frequency resistance, and the coulombs passed before failure were recorded and presented to reveal the fuel cell cold start operation. Further, a simplified analysis of cold start was performed based on an electrode model. The cell voltage evolution and solid water build up were predicted and compared with the experimental data.
机译:聚合物电解质燃料电池在低于冰点的温度下启动的能力(也称为冷启动)对于其运输应用至关重要。冷启动的能力取决于燃料电池在产生的冰终止电化学反应之前是否能够克服0℃。因此,非常需要对燃料电池在低于冰点的温度下的性能有基本的了解,以改善其冷启动特性。在这项工作中,我们通过实验研究了燃料电池的亚冷冻操作。构造了使用各种膜和催化剂层构造的PEFC。特别地,考虑了各种催化剂层厚度,离聚物-催化剂比率,RH和膜厚度,并且研究了它们对燃料电池冷启动性能的影响。记录并显示故障之前通过的电压,电流,高频电阻和库仑,以显示燃料电池冷启动操作。此外,基于电极模型进行了冷启动的简化分析。预测了电池电压的变化和固体水的积累,并与实验数据进行了比较。

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