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Effects of reformate on performance of PBI/H_3PO_4 proton exchange membrane fuel cell stack

机译:重整产物对PBI / H_3PO_4质子交换膜燃料电池堆性能的影响

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The present study aims to examine the effect of nitrogen and carbon monoxide concentrations as well as the working temperature and the stoichiometry number on the performance of a self-made five-cell high-temperature Proton-exchange membrane fuel cell stack (PEMFC). The concentration of hydrogen in a reformed gas can be varied, and it may contain poisonous substances such as carbon monoxide. Hence, the composition of the fuel gas could affect the performance of the PEMFC. The polarization curve and the electrochemical impedance spectrogram are utilized to examine the behaviors of PEMFC. The cell temperature of 160 degrees C is found as an optimal working temperature in this study for high-temperature PEMFC. Measured results show that the stoichiometry of the anode gas has a minimal effect on the PEMFC performance. A high percentage of nitrogen makes hydrogen dilute and leads to poor cell performance. When carbon dioxide exceeds 3%, the pt-catalyst was covered with the CO and the cell performance significantly decreased. Finally, a raise of the PEMFC temperature boosted the catalyst energy and improved the detachment of the carbon monoxide and eventually enhanced carbon monoxide tolerance. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究旨在检测氮气和一氧化碳浓度以及工作温度和化学计量数对自制成的五细胞高温质子 - 交换膜燃料电池堆(PEMFC)的影响的影响。可以改变重整气体中氢的浓度,并且可能含有有毒物质如一氧化碳。因此,燃料气体的组成可能影响PEMFC的性能。偏振曲线和电化学阻抗谱图用于检查PEMFC的行为。在该研究中发现160℃的细胞温度为高温PEMFC的最佳工作温度。测量结果表明,阳极气体的化学计量对PEMFC性能具有最小的影响。高百分比的氮使氢稀释并导致细胞性能差。当二氧化碳超过3%时,用CO覆盖Pt催化剂,细胞性能显着降低。最后,提高PEMFC温度促进了催化剂能量并改善了一氧化碳的分离,最终增强了一氧化碳耐受性。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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