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国家教育部博士点基金(20090002110074)

作品数:5 被引量:7H指数:2
相关作者:裴普成李鹏程何勇灵赵政曾夏更多>>
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Mechanisms of Accelerated Degradation in the Front Cells of PEMFC Stacks and Some Mitigation Strategies
2013年
The accelerated degradation in the front cells of a polymer electrolyte membrane fuel cell(PEMFC)stack seriously reduces the reliability and durability of the whole stack.Most researches only focus on the size and configuration of the gas intake manifold,which may lead to the maldistribution of flow and pressure.In order to find out the mechanisms of the accelerated degradation in the front cells,an extensive program of experimental and simulation work is initiated and the results are reported.It is found that after long-term lifetime tests the accelerated degradation in the front cells occurs in all three fuel cell stacks with different flow-fields under the U-type feed configuration.Compared with the rear cells of the stack,the voltage of the front cells is much lower at the same current densities and the membrane electrode assembly(MEA)has smaller active area,more catalyst particle agglomeration and higher ohmic impedance.For further investigation,a series of three dimensional isothermal numerical models are built to investigate the degradation mechanisms based on the experimental data.The simulation results reveal that the dry working condition of the membrane and the effect of high-speed gas scouring the MEA are the main causes of the accelerated degradation in the front cells of a PEM fuel cell stack under the U-type feed configuration.Several mitigation strategies that would mitigate these phenomena are presented:removing cells that have failed and replacing them with those of the same aging condition as the average of the stack;choosing a Z-type feed pattern instead of a U-type one;putting several air flow-field plates without MEA in the front of the stack;or exchanging the gas inlet and outlet alternately at a certain interval.This paper specifies the causes of the accelerated degradation in the front cells and provides the mitigation strategies.
LI PengchengPEI PuchengHE YonglingYUAN XingCHAO PengxiangWANG Xizhong
关键词:燃料电池堆细胞机制聚合物电解质膜燃料电池PEMFC膜电极组件
车用PEM燃料电池活化条件的优化被引量:5
2013年
活化对车用质子交换膜燃料电池性能有重要影响.通过设计燃料电池变流强制活化程序,对实验室设计制造的燃料电池单片进行了4次活化实验.活化实验一、实验二和实验三的结果显示,经过活化燃料电池的性能得到了提升,但是提高幅度不大;而且燃料电池在加载至0.5A/cm2以上时,电压下降较快.对氧气不加湿进行了活化实验四,结果表明电池的最大加载电流密度由1.06A/cm2提高至1.75A/cm2,电池的性能得到了明显的提升.
李鹏程裴普成何勇灵赵政
关键词:质子交换膜燃料电池车用活化
PEMFC氢泵活化法和恒电流充电解析法测量分析被引量:5
2015年
长时间停放会使质子交换膜燃料电池(PEMFC)的性能下降,氢泵法是一种有效的活化方法。该方法在燃料电池两侧分别通入增湿的氢气和氮气,外加电流充电促使膜电极恢复质子通过能力。利用恒电流充电解析法,在一个老化并长时间停放后的单体燃料电池上,研究了氢泵法活化燃料电池过程中催化剂有效面积、氢渗透电流、双电层电容和欧姆电阻的变化。结果表明,氢泵活化1 h,各种参数达到基本稳定,燃料电池的开路电压上升了14%,最大功率上升了121.2%,欧姆电阻下降6.8%;阴极侧的催化剂有效面积上升42.4%,双电层电容基本没有变化。恒电流充电解析法还可用于对燃料电池堆的多参数测量。
宋满存裴普成徐华池曾夏
关键词:极化曲线膜电极
Anti-flooding of polymer electrolyte membrane fuel cell with in-plate adverse-flow flow-field
2013年
The stoichiometric ratios and related regimes, which can promote anti-flooding of polymer electrolyte membrane fuel cell (PEMFC) with in-plate adverse-flow flow-field (IPAF), were investigated. Two flow combinations, which are the simple and complex adverse-flow between plates (ABP) that can be realized by IPAF, were employed. Constant stoichiometric ratios examination indicates that the complex ABP could improve anti-flooding of PEMFC better in the medium (greater than 200 mA/cm2 and less than 1 000 mA/cm2 ) and high (greater than 1 000 mA/cm2 ) current densities than the simple ABP. More stoichiometric ratios were introduced to find the cathode critical stoichiometry. Under the condition of cathode critical stoichiometry, the maximal local relative humidity of both electrodes of complex ABP is equal to 100% and below while the anti-flooding of the cathode of simple ABP is not satisfactory in the medium and high current densities. Further study shows that the mechanism of fuel cell, which is the interdependence between the electrodes effect, can make significant contribution to anti-flooding.
李鹏程裴普成何勇灵张红飞
关键词:聚合物电解质膜燃料电池化学计量比PEMFC
质子交换膜燃料电池动态过程缺气的诊断方法
2013年
针对燃料电池动态过程中缺气的诊断问题,研究了燃料电池的动态模型,提出了一种诊断车用质子交换膜(PEM)燃料电池在动态过程中局部是否缺气的新方法。该方法通过对燃料电池动态电路和气体压力分别建模,得到其变化规律,再通过对实验数据的拟合得到电压和气体压力两个时间常数。通过对比这两个时间常数,可判断燃料电池是否缺气。对燃料电池进行的诊断证实了该方法的有效性。
李鹏程裴普成何勇灵袁星
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