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Micro-tubular flame-assisted fuel cell stacks

机译:微管火焰辅助燃料电池堆

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Similar to the original direct flame fuel cell the flame-assisted fuel cell, which has a solid oxide fuel cell (SOFC) operating in combustion exhaust, can potentially simplify the fuel cell system and has applications in micro-Combined Heat and Power. Development and testing of a 9 micro-tubular flame-assisted fuel cell stack is demonstrated in this work. Two different systems are investigated having 1) fixed fuel flow rate and varying air flow rate and 2) fixed total flow rate of air and fuel for the micro-Combined Heat and Power burners. The micro-tubular flame-assisted fuel cell stack achieves a significant performance of 237 mW cm(-2) in model methane combustion exhaust at 0.5 V and 790 degrees C with a lanthanum strontium manganite based cathode. Electrochemical impedance spectroscopy reveals that the fuel cell ohmic losses are unaltered by variations in the exhaust species concentrations while the polarization losses increase with decreasing first-stage combustion fuel-air equivalence ratio. Variations in the combustion exhaust temperature effects both the ohmic and polarization losses. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:与原始的直接火焰燃料电池相似,火焰辅助燃料电池具有在燃烧废气中运行的固体氧化物燃料电池(SOFC),可以潜在地简化燃料电池系统并在微热电联产中得到应用。这项工作演示了9个微管火焰辅助燃料电池堆的开发和测试。对两个不同的系统进行了研究,它们具有1)固定的燃料流量和变化的空气流量,以及2)固定的微型热电联供燃烧器的空气和燃料总流量。微管火焰辅助燃料电池堆在基于镧锶锰锰酸盐的阴极上在0.5 V和790摄氏度的甲烷燃烧模型废气中实现了237 mW cm(-2)的显着性能。电化学阻抗谱显示,燃料电池的欧姆损耗不会因废气种类浓度的变化而改变,而极化损耗会随着一级燃烧燃料-空气当量比的降低而增加。燃烧废气温度的变化会影响欧姆损耗和极化损耗。 (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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