Study of the Effect of ACL Anode Catalytic Layer Porosity on the Efficiency of a Direct Methanol Fuel Cell

Mihoub Medkour, N. Kaid, H. Ameur, Chutarat Tearnbucha, W. Sudsutad, G. Lorenzini, Hijaz Ahmad, Y. Menni
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Abstract

The current work investigates the efficiency of a Direct Methanol Fuel Cell (DMFC) by using COMSOL. The set-up model takes into consideration the electrochemical kinetics and chemical reactions. The anode catalyst layers are a main element in the PEM fuel cell; their porosity significantly affects the fuel cell efficiency. We focus on the impact of catalytic layers porosity on the battery efficiency. As claimed by the results, the porosity of catalytic layer greatly affects the performance of the battery. In addition, better output performance of µDMFC may be obtained when the catalytic layer porosity is chosen as εACL=0.009-0.1. The distributions of methanol, carbon dioxide, water, oxygen, polarization, and the current density are plotted to highlight the impact of porosity on the global performances.
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ACL阳极催化层孔隙率对直接甲醇燃料电池效率影响的研究
目前的工作是利用COMSOL研究直接甲醇燃料电池(DMFC)的效率。建立的模型考虑了电化学动力学和化学反应。阳极催化剂层是PEM燃料电池的主要组成部分;它们的孔隙度显著影响燃料电池的效率。重点研究了催化层孔隙率对电池效率的影响。结果表明,催化层的孔隙率对电池的性能影响很大。此外,选择催化层孔隙率εACL=0.009-0.1时,µDMFC的输出性能较好。绘制了甲醇、二氧化碳、水、氧、极化和电流密度的分布,以突出孔隙度对整体性能的影响。
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