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Performance of a direct methanol fuel cell operated at atmospheric pressure

机译:在常压下运行的直接甲醇燃料电池的性能

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As a fundamental study of the electrode performance of a direct methanol fuel cell (DMFC), DMFCs with different loadings of anode catalyst were prepared and operated with liquid methanol under various conditions at atmospheric pressure. The DMFC employed Nafion 112 as a solid polymer electrolyte and Pt-Ru/C and Pt/C catalysts for the anode and cathode, respectively. The effects of the Pt-Ru loading for anode and, using the cell with an optimum Pt-Ru loading, the temperature and feed rates of the oxidant gas on the cell performance were investigated. The cell performance was analyzed based on the measurement of the current-voltage characteristics and electrode impedance. The performance increased with the increasing Pt-Ru loading up to a certain amount. Over this value, the current density at a low cell voltage decreased with its increase resulting in the reduction of the power density. An unstable and temporal decline in the performance was observed near the vaporization temperature of the feeding liquid and at low feed rate of oxidant gas. It was considered that the mass transfer of the materials related to the electrode reaction was limiting at these conditions. The relatively large power density of 0.12 W/cm~2 was obtained with the optimum Pt-Ru loadings at 363 K under atmospheric pressure.
机译:作为对直接甲醇燃料电池(DMFC)的电极性能的基础研究,制备了具有不同阳极催化剂负载量的DMFC,并在不同压力下与液态甲醇一起在各种条件下运行。 DMFC使用Nafion 112作为固体聚合物电解质,并分别将Pt-Ru / C和Pt / C催化剂用作阳极和阴极。研究了阳极上Pt-Ru负载量的影响以及使用具有最佳Pt-Ru负载量的电池对氧化剂气体的温度和进料速率对电池性能的影响。基于电流-电压特性和电极阻抗的测量来分析电池性能。随着Pt-Ru负载量增加到一定程度,性能得以提高。超过该值,低电池电压下的电流密度随其增加而降低,从而导致功率密度降低。在进料液体的汽化温度附近和氧化剂气体的低进料速率下,观察到性能的暂时性下降。认为在这些条件下与电极反应有关的材料的传质受到限制。在大气压下以363 K的最佳Pt-Ru负载可获得相对较大的功率密度0.12 W / cm〜2。

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