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首页> 外文期刊>Journal of power sources >Rapid self-start of polymer electrolyte fuel cell stacks from subfreezing temperatures
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Rapid self-start of polymer electrolyte fuel cell stacks from subfreezing temperatures

机译:亚冰点温度下聚合物电解质燃料电池堆的快速自启动

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摘要

Polymer electrolyte fuel cell (PEFC) systems for light-duty vehicles must be able to start unassisted and rapidly from temperatures below - 20 deg C. Managing buildup of ice within the porous cathode catalyst and electrode structure is the key to self-starting a PEFC stack from subfreezing temperatures. The stack temperature must be raised above the melting point of ice before the ice completely covers the cathode catalyst and shuts down the electrochemical reaction. For rapid and robust self-start it is desirable to operate the stack near the short-circuit conditions. This mode of operation maximizes hydrogen utilization, favors production of waste heat that is absorbed by the stack, and delays complete loss of effective electrochemical surface area by causing a large fraction of the ice to form in the gas diffusion layer rather than in the cathode catalyst layer. Preheating the feed gases, using the power generated to electrically heat the stack, and operating pressures have only small effect on the ability to self-start or the startup time. In subfreezing weather, the stack shut-down protocol should include flowing ambient air through the hot cathode passages to vaporize liquid water remaining in the cathode catalyst. Self-start is faster and more robust if the bipolar plates are made from metal rather than graphite.
机译:轻型车辆的聚合物电解质燃料电池(PEFC)系统必须能够在低于-20摄氏度的温度下无辅助且迅速地启动。管理多孔阴极催化剂和电极结构中冰的积聚是自启动PEFC的关键从低于冰点的温度堆叠。在冰完全覆盖阴极催化剂并关闭电化学反应之前,必须将烟囱温度提高到冰的熔点以上。为了快速且鲁棒的自启动,期望在短路条件附近操作堆。这种操作模式最大程度地利用了氢气,有利于产生被烟囱吸收的废热,并通过在气体扩散层而不是在阴极催化剂中形成大量的冰,从而延迟了有效电化学表面积的完全损失。层。使用产生的电能对烟囱进行电加热来预热进料气,操作压力对自启动能力或启动时间影响很小。在亚冰冻天气中,烟囱关闭方案应包括使环境空气流经热阴极通道,以蒸发残留在阴极催化剂中的液态水。如果双极板由金属而不是石墨制成,则自启动更快,更坚固。

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