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An experimental study on the effect of membrane thickness and PTFE (polytetrafluoroethylene) loading on methanol crossover in direct methanol fuel cell

机译:膜厚和PTFE(聚四氟乙烯)负载量对直接甲醇燃料电池甲醇穿越影响的实验研究

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摘要

Methanol crossover from anode to cathode is a process which adversely affects the performance of a DMFC (direct methanol fuel cell). Increasing the electrolyte membrane thickness and addition of a MPL (microporous layer) using PTFE (polytetrafluoroethylene) loading are two techniques used to reduce methanol crossover by increasing the mass transfer resistance. This paper reports experiments carried out to study the effect of membrane thickness and PTFE loading in anode MPL on methanol crossover in a 25 cm(2) DMFC. The rate of methanol crossover is indirectly measured by measuring the CO2 concentration at the cathode exit. The influence of PTFE content (0-20%) and membrane thickness (183 gm and 254 gm) on limiting current density, peak power density and cell efficiency are reported. The experimental results show that the methanol crossover current density is reduced by 24% using thicker membrane compared to MEA (membrane electrode assembly) with thin membrane. This leads to enhanced peak power density of 22 mW/cm(2) with cell efficiency of 10%. About 20% of methanol crossover current density is reduced by 10% PTFE loading in anode MPL, which helps in improving peak power density from 13 to 24 mW/cm(2) with cell efficiency of 8% compared to membrane as mass transfer resistance layer. (C) 2015 Elsevier Ltd. All rights reserved.
机译:甲醇从阳极穿越到阴极的过程会对DMFC(直接甲醇燃料电池)的性能产生不利影响。增加电解质膜厚度和使用PTFE(聚四氟乙烯)负载添加MPL(微孔层)是通过增加传质阻力来减少甲醇穿透的两种技术。本文报道了进行的实验,以研究25 cm(2)DMFC中阳极MPL中的膜厚度和PTFE负载对甲醇穿越的影响。通过测量阴极出口的CO2浓度间接测量甲醇的转化率。报告了PTFE含量(0-20%)和膜厚度(183 gm和254 gm)对极限电流密度,峰值功率密度和电池效率的影响。实验结果表明,与具有薄膜的MEA(膜电极组件)相比,使用较厚的膜可使甲醇的穿越电流密度降低24%。这导致电池效率为10%时提高了22 mW / cm(2)的峰值功率密度。阳极MPL中10%的PTFE负载可减少约20%的甲醇穿越电流密度,这有助于将峰值功率密度从13提升至24 mW / cm(2),与作为传质阻力层的膜相比,电池效率为8% 。 (C)2015 Elsevier Ltd.保留所有权利。

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