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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Experimental Study of Effects of Operating Conditions on Water Transport Phenomena in the Cathode of Polymer Electrolyte Membrane Fuel Cell
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Experimental Study of Effects of Operating Conditions on Water Transport Phenomena in the Cathode of Polymer Electrolyte Membrane Fuel Cell

机译:操作条件对高分子电解质膜燃料电池阴极水输运现象影响的实验研究

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Water management in polymer electrolyte membrane fuel cells is important because fuel cell performance may be lower when flooding emerges. In addition, the proton conductivity and water transport coefficient in the membrane depend on the hydration of the membrane. In this study a water transport phenomenon in the cathode channels of a polymer electrolyte membrane fuel cell was investigated under various operating conditions. To obtain images of the water the transparent fuel cell had a polycarbonate window installed at the cathode end plate, and gold-coated stainless steel was used for the flow field and current collector of the cathode. The effects of operating conditions on water transport manipulated operating parameters such as cell temperature, cathode flow rate, and cathode backpressure. As the operating time elapsed, it was observed that water droplet formation, growth, coalescence, and removal occurred in the cathode channel. It concluded that a high cathode flow rate prevented flooding by removing water from the cathode flow channel. Also, the quantity of water droplets increased with a high cathode backpressure.
机译:聚合物电解质膜燃料电池中的水管理非常重要,因为当洪水泛滥时,燃料电池的性能可能会降低。另外,膜中的质子传导率和水传输系数取决于膜的水合作用。在这项研究中,研究了在各种操作条件下聚合物电解质膜燃料电池阴极通道中的水传输现象。为了获得水的图像,透明燃料电池在阴极端板上安装了一个聚碳酸酯窗,并且镀金不锈钢用于阴极的流场和集电器。操作条件对水传输的操作参数的影响,例如电解槽温度,阴极流速和阴极背压。随着运行时间的流逝,观察到在阴极通道中发生了水滴的形成,生长,聚结和去除。结论是,较高的阴极流速可通过从阴极流动通道中除去水来防止溢流。同样,水滴的数量随着阴极背压的升高而增加。

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