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Electrode parameters and operating conditions influencing the performance of anion exchange membrane fuel cells

机译:电极参数和影响阴离子交换膜燃料电池性能的操作条件

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摘要

A deeper understanding of porous electrode preparation and performance losses is necessary to advance the anion exchange membrane fuel cell (AEMFC) technology. This study has investigated the performance losses at 50 degrees C for varied: Tokuyama AS-4 ionomer content in the catalyst layer, Pt/C loading and catalyst layer thickness at the anode and cathode, relative humidity, and anode catalyst. The prepared gas diffusion electrodes in the interval of ionomer-to-Pt/C weight ratio of 0.4-0.8 or 29-44 wt% ionomer content show the highest performance. Varying the loading and catalyst layer thickness simultaneously shows that both the cathode and the anode influence the cell performance. The effects of the two electrodes are shown to vary with current density and this is assumed to be due to non-uniform current distribution throughout the electrodes. Further, lowering the relative humidity at the anode and cathode separately shows small performance losses for both electrodes that could be related to lowered ionomer conductivity. Continued studies are needed to optimize, and understand limitations of, each of the two electrodes to obtain improved cell performance. (c) 2018 Elsevier Ltd. All rights reserved.
机译:对多孔电极制备和性能损失更深入地理解,以推进阴离子交换膜燃料电池(AEMFC)技术。该研究在阳极和阴极处的催化剂层,Pt / C负荷和催化剂层厚度下,在50摄氏度下进行了50摄氏度的性能损失,在阳极和阴极,相对湿度和阳极催化剂处。制备的气体扩散电极在离聚物 - 至Pt / C重量比的间隔为0.4-0.8或29-44wt%离聚物含量显示出最高性能。同时改变装载和催化剂层厚度,表明阴极和阳极都影响电池性能。两个电极的效果被示出为随着电流密度而变化,并且假设由于整个电极的不均匀电流分布而导致。此外,降低阳极和阴极处的相对湿度分别显示出与降低离聚物导电性有关的两个电极的小的性能损失。需要持续的研究来优化和理解两个电极的局限性以获得改善的细胞性能。 (c)2018年elestvier有限公司保留所有权利。

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