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Balancing mass transport resistance and membrane resistance when tailoring microporous layer thickness for polymer electrolyte membrane fuel cells operating at high current densities

机译:为高电流密度工作的聚合物电解质膜燃料电池调整微孔层厚度时,平衡传质阻力和膜阻力

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Synchrotron X-ray radiography and electrochemical impedance spectroscopy (EIS) were concurrently used to quantify the effects of varying MPL thickness on PEMFC performance. Increasing the MPL thickness from 30 mu m to 50 mu m was found to lower the liquid water volume by 8% in the cathode substrate, which resulted in a 50% decrease in the oxygen mass transport resistance at a current density of 2.0 A/cm(2). Increasing the MPL thickness beyond 50 mu m at the same current density did not lead to any further substantial reductions of the liquid water volume in the cathode substrate (2%); however, the ohmic resistance increases significantly (16%). Among the four MPL thicknesses studied, the 50 mu m-thick MPL provides an optimized trade-off between the hydration of the membrane and the liquid water content in the fibrous substrate. A key observation of this work is the significant influence that high current density operation has on the heat and water management of polymer electrolyte membrane fuel cells. (C) 2015 Elsevier Ltd. All rights reserved.
机译:同时使用同步加速器X射线照相术和电化学阻抗谱(EIS)来量化MPL厚度变化对PEMFC性能的影响。发现将MPL厚度从30μm增加到50μm会使阴极基板中的液态水量降低8%,这导致在2.0 A / cm的电流密度下氧气的传质阻力降低了50% (2)。在相同的电流密度下将MPL厚度增加到50μm以上,并不会导致阴极基板中液态水体积的任何进一步大幅度减少(2%)。但是,欧姆电阻显着增加(16%)。在研究的四种MPL厚度中,厚度为50μm的MPL在膜的水合作用与纤维基质中的液态水含量之间提供了最佳的折衷方案。这项工作的关键观察是高电流密度操作对聚合物电解质膜燃料电池的热和水管理有重大影响。 (C)2015 Elsevier Ltd.保留所有权利。

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