Performance Degradation Tests of Phosphoric Acid Doped Polybenzimidazole Membrane Based High Temperature Polymer Electrolyte Membrane Fuel Cells

Fan Zhou, Samuel Simon Araya, I. Grigoras, S. J. Andreasen, S. Kær
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引用次数: 24

Abstract

Degradation tests of two phosphoric acid (PA) doped polybenzimidazole (PBI) membrane based high temperature polymer electrolyte membrane (HT-PEM) fuel cells were reported in this paper to investigate the effects of start/stop and the presence of methanol in the fuel to the performance degradation. Continuous tests with H2 and simulated reformate which was composed of H2, water steam and methanol as the fuel were performed on both single cells. 12-h-startup/12-h-shutdown dynamic tests were performed on the first single cell with pure dry H2 as the fuel and on the second single cell with simulated reformate as the fuel. Along with the tests electrochemical techniques such as polarization curves and electrochemical impedance spectroscopy (EIS) were employed to study the degradation mechanisms of the fuel cells. Both single cells showed an increase in the performance in the H2 continuous tests, because of a decrease in the oxygen reduction reaction (ORR) kinetic resistance probably due to the redistribution of PA between the membrane and electrodes. EIS measurement of first fuel cell during the start/stop test showed that the mass transfer resistance and ohmic resistance increased which can be attributed to the corrosion of carbon support in the catalyst layer and degradation of the PBI membrane. During the continuous test with simulated reformate as the fuel the ORR kinetic resistance and mass transfer resistance of both single cells increased. The performance of the second single cell experienced a slight decrease during the start/stop test with simulated reformate as the fuel. [DOI: 10.1115/1.4029081]
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磷酸掺杂聚苯并咪唑膜基高温聚合物电解质膜燃料电池性能退化试验
本文对两种磷酸(PA)掺杂聚苯并咪唑(PBI)膜基高温聚合物电解质膜(HT-PEM)燃料电池进行了降解试验,研究了启动/停止和燃料中甲醇的存在对性能降解的影响。在两个单体电池上以氢气和模拟重整油(由氢气、水蒸气和甲醇组成)为燃料进行连续试验。在以纯干H2为燃料的第一个单电池和以模拟重整油为燃料的第二个单电池上进行了12小时启动/12小时关闭的动态试验。在试验的同时,采用极化曲线、电化学阻抗谱等电化学技术对燃料电池的降解机理进行了研究。由于PA在膜和电极之间的重新分配,氧还原反应(ORR)的动力学阻力降低,两个单细胞在H2连续测试中都表现出性能的提高。在启动/停止试验过程中,第一节燃料电池的EIS测量结果表明,传质电阻和欧姆电阻增加,这可能是由于催化剂层碳载体的腐蚀和PBI膜的降解。在以模拟重整油为燃料的连续试验中,两个单体的ORR动力学阻力和传质阻力均有所增加。在以模拟重整油为燃料的启动/停止试验中,第二个单电池的性能略有下降。(DOI: 10.1115/1.4029081)
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期刊介绍: The Journal of Fuel Cell Science and Technology publishes peer-reviewed archival scholarly articles, Research Papers, Technical Briefs, and feature articles on all aspects of the science, engineering, and manufacturing of fuel cells of all types. Specific areas of importance include, but are not limited to: development of constituent materials, joining, bonding, connecting, interface/interphase regions, and seals, cell design, processing and manufacturing, multi-scale modeling, combined and coupled behavior, aging, durability and damage tolerance, reliability, availability, stack design, processing and manufacturing, system design and manufacturing, power electronics, optimization and control, fuel cell applications, and fuels and infrastructure.
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