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Performance and durability evaluation of dry reforming in solid oxide fuel cells

机译:固体氧化物燃料电池干重整的性能和耐久性评估

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The performance and durability of a single solid oxide fuel cell (SOFC) operating at 1023 K under differing reforming conditions and fed by CH4, CO2, and H2O were investigated. For dry reforming, the CO2/CH4 ratio was set to 2.7 to avoid coking in the catalyst and anode support; steam reforming was performed at H2O/CH4 = 2.5. The current-voltage characteristics of external dry reforming showed lower voltages for low fuel utilization, especially at high current densities, than those observed in steam reforming. The voltages under external dry and steam reforming were 0.880 V and 0.896 V, respectively. However, at fuel utilization values approaching 90%, the voltage under dry reforming was higher than that measured under steam reforming. External dry reforming had short term durability behavior comparable to that of external steam reforming, but the results from internal dry reforming suggested that this condition needs sensitively control regulation relative to the other characterized conditions in order not to cause coking. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了在1023 K下在不同的重整条件下并由CH4,CO2和H2O进料的单个固体氧化物燃料电池(SOFC)的性能和耐久性。对于干重整,将CO2 / CH4比率设置为2.7,以避免催化剂和阳极载体结焦。在H 2 O / CH 4 = 2.5下进行蒸汽重整。与蒸汽重整相比,外部干重整的电流-电压特性显示出较低的电压,以降低燃料利用率,尤其是在高电流密度下。在外部干燥和蒸汽重整下的电压分别为0.880 V和0.896V。但是,在燃料利用率接近90%时,干重整下的电压高于蒸汽重整下的电压。外部干重整具有与外部蒸汽重整相当的短期耐久性,但是内部干重整的结果表明,该条件需要相对于其他特征条件敏感地控制调节,以免引起结焦。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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