首页> 外文期刊>International journal of hydrogen energy >Optimization of the electrodes humidification temperature and clamping pressure to achieve uniform current density in a commercial-sized proton exchange membrane fuel cell
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Optimization of the electrodes humidification temperature and clamping pressure to achieve uniform current density in a commercial-sized proton exchange membrane fuel cell

机译:优化电极加湿温度和夹持压力,以在商业规模的质子交换膜燃料电池中获得均匀的电流密度

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摘要

Understanding current density distributions (CDDs) in proton exchange membrane fuel cell (PEMFC) systems is critical in obtaining stable long-term system performances. This study elucidates the effects of the humidification temperature and clamping pressure on the CDD of a commercial-sized PEMFC, when the reactant gas is near saturation point. High-resolution CDDs of a single PEMFC were measured using a segmented current measuring board technique. The CDD results revealed that the humidification and current significantly affects the local current uniformity. When the cell voltage is higher than 0.65 V, the optimal humidification temperature must be higher than the cell operating temperature by 0-5 degrees C. This prevents membrane dehydration at the channel inlet region. When the cell voltage is lower than 0.65 V, the suggested humidification temperature must be lower than the cell operating temperature by 0-5 degrees C. This may reduce the possibility of flooding at the outlet regions of the flow channels. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:了解质子交换膜燃料电池(PEMFC)系统中的电流密度分布(CDD)对于获得稳定的长期系统性能至关重要。这项研究阐明了当反应气体接近饱和点时,加湿温度和夹紧压力对商用PEMFC CDD的影响。使用分段电流测量板技术测量单个PEMFC的高分辨率CDD。 CDD结果表明,加湿和电流会显着影响局部电流的均匀性。当电池电压高于0.65 V时,最佳加湿温度必须比电池工作温度高0-5摄氏度。这可以防止通道入口区域的膜脱水。当电池电压低于0.65 V时,建议的加湿温度必须比电池工作温度低0-5摄氏度。这可以减少流道出口区域溢流的可能性。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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