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首页> 外文期刊>Journal of power sources >Experimental investigations of the anode flow field of a micro direct methanol fuel cell
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Experimental investigations of the anode flow field of a micro direct methanol fuel cell

机译:微型直接甲醇燃料电池阳极流场的实验研究

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摘要

The effect of the anode flow field design on the performance of an in-house fabricated micro direct methanol fuel cell (μDMFC) with an active area 1.0cm x 1.0cm was investigated experimentally. Single serpentine and parallel flow fields consisting of micro channels were tested. The experimental results indicated that the serpentine flow field exhibited significantly higher cell voltages than did the parallel flow field, particularly at high current densities. The study of the effect of channel depth of the serpentine flow field suggested that there exists an optimal channel depth for the same channel width and the same open ratio when the same methanol flow rate is supplied; either shallower or deeper channels will lead to a reduction in the cell performance. Finally, it was demonstrated that performance of the μDMFC with the reactants fed by an active means was insensitive to the cell orientations, which is different from conventional DMFCs with larger flow channels reported in the literature.
机译:实验研究了阳极流场设计对内部制造的活性面积为1.0cm x 1.0cm的微型直接甲醇燃料电池(μDMFC)性能的影响。测试了由微通道组成的单蛇形和平行流场。实验结果表明,蛇形流场比并联流场表现出明显更高的电池电压,特别是在高电流密度下。对蛇形流场通道深度影响的研究表明,当提供相同的甲醇流量时,对于相同的通道宽度和相同的开口率,存在最佳的通道深度。较浅或较深的通道都会导致电池性能下降。最后,证明了用主动装置进料的反应物对μDMFC的性能对细胞取向不敏感,这与文献中报道的具有较大流动通道的常规DMFC不同。

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