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Chronoamperometric Investigations of the Electrode-Electrolyte Interface of a Commercial High Temperature PEMFuel Cell

机译:商业高温PEMFuel电池的电极-电解质界面的计时安培研究

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摘要

This paper presents investigations into the chronoamperometric experiments performed on polybenzimidazole/phosphoric acid based high temperature polymer electrolyte membrane fuel cells. Electrolyte loadings in the membrane electrode assembly are varied to realise three different degrees of flooding of the electrode. Steady state as well as dynamic measurements at three different temperatures (160, 120 and 80℃) is made via chronoamperometry on these cells. The transient current behaviour resulting from a voltage step change from open circuit voltage (~1 V) to low voltages (0.1 V) are recorded and analysed. Analysis using the Cottrell plot depicts the underlying mass transport processes in the three different electrodes, catalyst utilisation as well as a better description of the three phase boundary reaction zone. An extension of the Cottrell equation is deduced to describe a regular commercial fuel cell behaviour.
机译:本文介绍了对基于聚苯并咪唑/磷酸的高温聚合物电解质膜燃料电池的计时安培实验的研究。改变膜电极组件中的电解质负载以实现电极的三种不同程度的溢流。通过计时安培法在这些电池上进行三种不同温度(160、120和80℃)下的稳态和动态测量。记录并分析因电压阶跃从开路电压(〜1 V)变为低压(0.1 V)而产生的瞬态电流行为。使用Cottrell图进行的分析描述了在三个不同电极中的潜在传质过程,催化剂利用率以及对三相边界反应区的更好描述。推导了Cottrell方程的扩展,以描述常规的商业燃料电池行为。

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