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首页> 外文期刊>Journal of power sources >Performance improvement of direct internal reforming solid oxide fuel cell fuelled by H2S-contaminated biogas with paper-structured catalyst technology
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Performance improvement of direct internal reforming solid oxide fuel cell fuelled by H2S-contaminated biogas with paper-structured catalyst technology

机译:纸结构催化剂技术提高了以H2S污染的沼气为燃料的直接内部重整固体氧化物燃料电池的性能

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摘要

Direct internal reforming (DIR) operation of a solid oxide fuel cell (SOFC) is a very attractive concept for downsizing and cost reduction of SOFC systems. This study aimed to develop stable operation of a DIR-SOFC fuelled by biogas. The current-voltage (I-V) curves of 2 x 2 cm(2) planar SOFCs (anode- and electrolyte-supported cells, ASC and ESC, respectively.) were measured at 800 degrees C in the direct feed of a simulated biogas mixture (CH4/CO2 = 1), and the flexible structured catalyst material (paper-structured catalyst (PSC)) was applied on the anode material for performance enhancement. By applying a hydrotalcite (HT)-dispersed PSC (HT-PSC), the sulfur tolerance of the SOFC in the DIR operation was remarkably improved. By the effect of the HT-PSC, for both ASC and ESC, a stable cell voltage higher than 800 mV was obtained over 200 h at 0.2 A cm(-2) in the direct feed of simulated biogas under 5 ppm H2S poisoning. (C) 2016 Elsevier B.V. All rights reserved.
机译:固态氧化物燃料电池(SOFC)的直接内部重整(DIR)操作对于缩小SOFC系统的尺寸和降低其成本是非常有吸引力的概念。这项研究旨在发展以沼气为燃料的DIR-SOFC的稳定运行。在直接进料模拟沼气混合物的情况下,在800摄氏度下测量了2 x 2 cm(2)平面SOFC(分别为阳极和电解质支持的电池,ASC和ESC)的电流-电压(IV)曲线。 CH4 / CO2 = 1),然后将柔性结构催化剂材料(纸结构催化剂(PSC))施加到负极材料上以提高性能。通过应用水滑石(HT)分散的PSC(HT-PSC),DIR操作中SOFC的耐硫性得到显着提高。受到HT-PSC的影响,对于ASC和ESC,在5 ppm H2S中毒下直接注入模拟沼气,在0.2 A cm(-2)下于200 h内获得了800 mV的稳定电池电压。 (C)2016 Elsevier B.V.保留所有权利。

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