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Analysis of Direct Methanol Fuel Cell (DMFC)-Performance via FTIR Spectroscopy of Cathode Exhaust

机译:阴极废气的FTIR光谱分析直接甲醇燃料电池(DMFC)的性能

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摘要

Water and methanol flux through Nafion and polyaryl-blend membranes prepared at ICVT were studied under DMFC operation. The water, methanol, and CO{sub}2 content in the cathode exhaust were measured by FTIR spectroscopy. Both the water and methanol flux turned out to be strongly dependent on the operating temperature and thus on membrane swelling. Apart from this, water flux through the membrane is primarily affected by the gas volume flux on the cathode side. A coupling between water flux and methanol flux was observed, which leads to the conclusion that methanol is transported both by diffusion and by convection caused by the superimposed water flux. Polyaryl-blend membranes showed a reduced diffusive methanol transport when compared to Nafion due to their different internal microstructure. The impact of methanol crossover on cathode losses at high current density needs further clarification with respect to the prevailing mechanism of methanol oxidation at the cathode.
机译:在DMFC操作下,研究了通过ICVT制备的Nafion和聚芳基共混物膜的水和甲醇通量。通过FTIR光谱法测量阴极废气中的水,甲醇和CO {sub} 2含量。事实证明,水和甲醇的通量都强烈依赖于操作温度,因此也依赖于膜溶胀。除此之外,通过膜的水通量主要受到阴极侧的气体体积通量的影响。观察到水通量与甲醇通量之间存在耦合,从而得出结论,甲醇通过扩散和叠加的水通量引起的对流传输。与Nafion相比,聚芳基混合膜显示出较低的扩散甲醇运输,这是因为它们的内部微观结构不同。关于在阴极上甲醇氧化的主要机理,在高电流密度下甲醇穿越对阴极损耗的影响需要进一步阐明。

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