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Study of water-flooding behaviour in cathode channel of a transparent proton-exchange membrane fuel cell

机译:透明质子交换膜燃料电池阴极通道注水行为的研究

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The distribution of water and water flooding inside the cathode gas channels has been successfully visualized by using a transparent proton-exchange membrane fuel cell. The effect of various stoichiometries of cathode gas concentration and humidification are evaluated in a systematic way. The output voltage is controlled in the mass-transfer region (0.4-0.6 V) and the cell temperature is fixed at 50 deg C. The cell performance increases with increasing stoichiometry of humidified oxygen until the stoichiometry reaches a critical value. On the other hand, the performance decreases with increasing stoichiometry of non-humidified oxygen. On replacing oxygen with humidified air, the cell performance and stoichiometry of the humidified air are in direct proportion due to the increasing mass-transfer rate.
机译:通过使用透明的质子交换膜燃料电池,已经成功地可视化了阴极气体通道内的水分布和注水情况。以系统的方式评估了各种化学计量比对阴极气体浓度和湿度的影响。在传质区域(0.4-0.6 V)中控制输出电压,并将电池温度固定在50摄氏度。电池性能随着湿氧化学计量的增加而增加,直到化学计量达到临界值为止。另一方面,性能随着未湿氧化学计量的增加而降低。在用加湿空气代替氧气时,由于传质速率的增加,加湿空气的电池性能和化学计量成正比。

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