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Effect of carbon dioxide on the contamination of low temperature and high temperature PEM (polymer electrolyte membrane) fuel cells. Influence of temperature, relative humidity and analysis of regeneration processes

机译:二氧化碳对低温和高温PEM(聚合物电解质膜)燃料电池污染的影响。温度,相对湿度的影响以及再生过程的分析

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An experimental investigation of the performance and contamination of low and high temperature PEMFCs (polymer electrolyte membrane fuel cells) operating with different concentrations of CO2 at the anode inlet is presented. 50 cm(2) MEAs are used in the investigation: Nafion membranes with catalyst Pt loading 0.5 mg cm(-2) for both anode and cathode for the low temperature cell, and Celtec P1000 PBI MEAs with catalyst loading 0.75 mg cm(-2) in anode and 1 mg cm(-2) in cathode for the high temperature cell. An analysis of the relative humidity influence in the contamination process for low temperature polymer electrolyte membrane fuel cells and the temperature effect for both low and high temperature operation range are also investigated in this work. The results show that the performance loss is larger than expected if only a dilution effect were considered, so that a real contamination process occurs in the cell when CO2 is fed to the anode, due to the RWGS (reverse water gas shift) reaction. This contamination effect is analysed and quantified by comparing the polarization curves of the contaminated cell with the ones corresponding to the cell operating with pure hydrogen, following the method described in section 2. The overpotentials for different current densities, CO2 concentrations, relative humidity, and cell temperatures are presented and discussed for both types of fuel cells. Two different regeneration processes (anode feeding with pure H-2 and with air) are also presented and discussed. The analysis of the effectiveness of each regeneration strategy also supports that CO produced via the RWGS reaction is adsorbed onto the catalyst. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了在阳极入口处以不同浓度的CO2运行的低温和高温PEMFC(聚合物电解质膜燃料电池)的性能和污染的实验研究。在研究中使用了50 cm(2)MEAs:用于低温电池阳极和阴极的催化剂Pt负载为0.5 mg cm(-2)的Nafion膜,以及催化剂负载为0.75 mg cm(-2)的Celtec P1000 PBI MEAs )在阳极中,高温电池的阴极中为1 mg cm(-2)。在这项工作中,还对低温聚合物电解质膜燃料电池污染过程中的相对湿度影响以及低温和高温工作范围内的温度影响进行了分析。结果表明,如果仅考虑稀释效应,性能损失将比预期的要大,因此,由于RWGS(逆水煤气变换)反应,当将CO2送入阳极时,电池中会发生真正的污染过程。按照第2节中所述的方法,通过将受污染电池的极化曲线与与使用纯氢运行的电池相对应的极化曲线进行比较,可以分析和量化这种污染。不同电流密度,CO2浓度,相对湿度和介绍和讨论了两种燃料电池的电池温度。还介绍和讨论了两种不同的再生过程(用纯H-2和空气进料的阳极)。对每种再生策略有效性的分析还支持通过RWGS反应产生的CO被吸附到催化剂上。 (C)2015 Elsevier Ltd.保留所有权利。

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