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首页> 外文期刊>Journal of Power Sources >The impact of mass transport and methanol crossover on the direct methanol fuel cell
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The impact of mass transport and methanol crossover on the direct methanol fuel cell

机译:传质和甲醇交换对直接甲醇燃料电池的影响

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摘要

The performance of a liquid feed direct methanol fuel cell based on a Nafion solid polymer electrolyte membrane is reported. The cell utilises a porous Pt--Ru-carbon supported catalyst anode. The effect of cell temperature, air cathode pressure, methanol mile flow rate and methanol concentration on the power performance of a small--scale (9 cm~2 area) cell is described. Data reported is analysed in terms of semi-empirical models for the effect of methanol crossover by diffusion on cathode potential and thus cell voltage. Mass transfer characteristics of the anode reaction are interpreted in terms of the influence of carbon dioxide gas evolution and methanol diffusion in the carbon cloth diffusion layer. Preliminary evaluation of reaction orders and anode polarisation agree with a previous suggested mechanism for methanol oxidation involving a rate limiting step of surface reaction between adsorbed CO and OH species.
机译:报道了基于Nafion固体聚合物电解质膜的液体进料直接甲醇燃料电池的性能。该电池利用了多孔的Pt-Ru碳负载的催化剂阳极。描述了电池温度,空气阴极压力,甲醇英里流量和甲醇浓度对小型(9 cm〜2面积)电池功率性能的影响。根据半经验模型对报告的数据进行了分析,以了解甲醇扩散通过扩散对阴极电势和电池电压的影响。阳极反应的传质特性是根据二氧化碳气体逸出和甲醇在碳布扩散层中扩散的影响来解释的。对反应顺序和阳极极化的初步评估与先前建议的甲醇氧化机理一致,该机理涉及吸附的CO和OH物种之间的表面反应速率限制步骤。

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