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CO Desorption Kinetics at Concentrations and Temperatures Relevant to PEM Fuel Cells Operating with Reformate Gas and PtRu/C Anodes

机译:与重整气和PtRu / C阳极一起运行的PEM燃料电池的浓度和温度下的CO解吸动力学

摘要

The kinetics of the CO desorption process have been determined using isotopic exchange experiments at concentrations and temperatures relevant to PEM fuel cells operating with reformate gas and commercial carbon supported platinum-ruthenium alloy anodes. The CO desorption kinetics have been studied as a function of CO concentration, temperature and flow rate. Desorption rate constants have been determined experimentally for a wide range of concentrations (100-500ppm) and temperatures (25-150°C) and have been extrapolated to one order of magnitude lower CO concentration range between 10 and 100ppm, which is directly relevant to PEM fuel cells operating with reformate gas. The desorption rates measured for the 100-500ppm CO concentration range appear to be significantly larger than previously published CO oxidation data, suggesting that the CO desorption process plays a more significant role in determining the equilibrium CO coverage at the fuel cell anode than the electrochemical CO oxidation process. The proposed desorption rate values at the lower 10-100ppm CO concentration range and at relevant temperatures are believed to be of added value for the modelling of PEM fuel cells operating with reformate gas and PtRu/C anodes, since significantly different empirical values have been used up to now for the modelling of the CO desorption process. The variation of the apparent Arrhenius parameters as a function of CO concentration provides also some insight into the CO poisoning effect and the underlying adsorption/desorption processes.
机译:已经在与重整气和市售碳载铂-钌合金阳极一起运行的PEM燃料电池相关的浓度和温度下,使用同位素交换实验确定了CO解吸过程的动力学。已经研究了CO解吸动力学作为CO浓度,温度和流速的函数。解吸速率常数已在各种浓度(100-500ppm)和温度(25-150°C)范围内通过实验确定,并已推算出一个较低的CO浓度范围,即10-100ppm之间的一个数量级,这与使用重整气运行的PEM燃料电池。在100-500ppm CO浓度范围内测得的解吸速率似乎比以前发表的CO氧化数据大得多,这表明与化学CO相比,CO解吸过程在确定燃料电池阳极的平衡CO覆盖率方面起着更重要的作用。氧化过程。认为在较低的10-100ppm CO浓度范围和相关温度下建议的解吸速率值对于使用重整气和PtRu / C阳极运行的PEM燃料电池的建模具有附加价值,因为已使用了明显不同的经验值到目前为止,用于CO解吸过程的建模。表观Arrhenius参数随CO浓度的变化也提供了对CO中毒效应和潜在的吸附/解吸过程的了解。

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