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Impact of Membrane Types and Catalyst Layers Composition on Performance of Polymer Electrolyte Membrane Fuel Cells

机译:膜类型和催化剂层组成对聚合物电解质膜燃料电池性能的影响

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摘要

Performance of a low temperature polymer electrolyte membrane fuel cell (PEMFC) is highly dependent on the kind of catalysts, catalyst supports, ionomer amount on the catalyst layers (CL), membrane types and operating conditions. In this work, we investigated the influence of membrane types and CL compositions on MEA performance. MEA performance increases under all practically relevant load conditions with reduction of the membrane thickness from 50 to 15 μm, however further decrease in membrane thickness from 15 to 10 μm leads to reduction in cell voltage at high current loads. A thick anode CL is found to be beneficial under wet operating conditions assuming more pore space is provided to accommodate liquid water, whereas under dry operating conditions, an intermediate thickness of the anode CL is beneficial. When studying the impact of catalyst layer thickness, too thin a catalyst layer again shows reduced performance due to increased ohmic resistance ruled out the performance of the MEAs which have identical Pt crystallite sizes on the cathode CLs i. e. the thinnest the cathode CL, the highest the voltage were achieved at a defined current load. Adaptation of the operating conditions is highly anticipated to achieve the highest MEA performance.
机译:低温聚合物电解质膜燃料电池(PEMFC)的性能高度取决于催化剂的种类,催化剂载体,催化剂层(CL)上的离聚物含量,膜类型和操作条件。在这项工作中,我们调查了膜类型和CL组成对MEA性能的影响。在所有实际相关的负载条件下,MEA性能都会提高,膜厚度从50μm减小至15μm,但是膜厚度从15μm进一步减小至10μm,会导致高电流负载下电池电压的降低。假定提供更多的孔隙空间以容纳液态水,则在潮湿的工作条件下发现厚的阳极CL是有益的,而在干燥的工作条件下,阳极CL的中间厚度是有益的。当研究催化剂层厚度的影响时,由于欧姆电阻增加,太薄的催化剂层再次显示出降低的性能,这排除了在阴极CL i上具有相同的Pt微晶尺寸的MEA的性能。 e。阴极CL越薄,在定义的电流负载下获得的电压越高。高度期望通过调整操作条件来获得最高的MEA性能。

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