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Effect of anode flow field design in direct methanol fuel cells: preliminary studies

机译:阳极流场设计对直接甲醇燃料电池的影响:初步研究

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摘要

The direct methanol fuel cells are promising candidates for portable power sources due to their high energy density, however studies continue in order to give solutions for a number of drawbacks that affect cell performance and efficiency. Achieving good fuel cell performance requires that the flowing streams of fuel and oxidizer are evenly distributed over the entire surface of the catalyst layer and also an efficient removal of reaction products. This is achieved through the optimal design of the flow field, which primarily depend upon channel pattern as well as channel (and rib) shape and size. In this work the effect of anode flow field design on the performance of an own built DMFC is studied. Preliminary results are herein presented.
机译:直接甲醇燃料电池由于其高能量密度而成为便携式电源的有前途的候选者,但是仍在继续研究以提供解决影响电池性能和效率的许多缺点的解决方案。为了获得良好的燃料电池性能,需要使燃料和氧化剂的流动流均匀地分布在催化剂层的整个表面上,并且还需要有效地除去反应产物。这是通过对流场的最佳设计来实现的,流场的最佳设计主要取决于通道样式以及通道(和肋骨)的形状和大小。在这项工作中,研究了阳极流场设计对自己构建的DMFC性能的影响。本文提供初步结果。

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