首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Design and development of a self-supported polymer electrolyte fuel cell system with anodic dead-end operation
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Design and development of a self-supported polymer electrolyte fuel cell system with anodic dead-end operation

机译:阳极末端运行的自支撑聚合物电解质燃料电池系统的设计和开发

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摘要

Design and operational details for a self-supported polymer electrolyte fuel cell (PEFC) system with anodic dead-end fuel supply and internally humidified cathodic oxidant flow are described. During the PEFC operation, nitrogen and water back diffuse across the Nafion membrane from the cathode to the anode and accumulate in the anode flow channels affecting stack performance. The accumulated inert species are flushed from the stack by purging the fuel cell stack with a timer-activated purge valve to address the aforesaid problem. To minimize the system complexity, stack is designed in such a way that all the inert species accumulate in only one cell called the purge cell. A pulsed purge sequence comprises opening the valve for purge duration followed by purge-valve closing for the hold period and repeating the sequence in cycles. Since self-humidification is inadequate to keep the membrane wet, the anodic dead-end-operated PEFC stack with composite membrane comprising perflourosulphonic acid (Nafion) and silica is employed for keeping the membrane humidified even while operating the stack with dry hydrogen and internally humidified air.
机译:描述了具有阳极末端燃料供应和内部加湿的阴极氧化剂流的自支撑聚合物电解质燃料电池(PEFC)系统的设计和操作细节。在PEFC操作过程中,氮和水从阴极到阳极在整个Nafion膜上扩散,并积聚在阳极流道中,从而影响电池组性能。通过使用计时器启动的放气阀吹扫燃料电池堆,可从电池堆中清除积聚的惰性物质,以解决上述问题。为了最大程度地减少系统复杂性,应以使所有惰性物质仅聚集在一个称为吹扫池的池中的方式设计烟囱。脉冲吹扫序列包括在吹扫持续时间内打开阀门,然后在保持时间内关闭吹扫阀,并以周期重复该序列。由于自加湿不足以使膜保持湿润,因此即使使用干氢和内部加湿对电池组进行湿润处理,带有全氟磺酸(Nafion)和二氧化硅的复合膜的阳极无端操作PEFC电池组也可以使膜保持加湿状态空气。

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