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Fundamentals of electro- and thermochemistry in the anode of solid-oxide fuel cells with hydrocarbon and syngas fuels

机译:具有碳氢化合物和合成气燃料的固体氧化物燃料电池阳极中的电化学和热化学基础

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摘要

AbstractHigh fuel flexibility of solid-oxide fuel cells (SOFCs) affords the possibility to use relatively cheap, safe, and readily available hydrocarbon (e.g., CH₄) or coal syngas (i.e., CO-H₂ mixtures) fuels. Utilization of such fuels would greatly lower fuel cost and increase the feasibility of SOFC commercialization, especially for near-term adoption in anticipation of the long-awaited so-called “hydrogen economy”. Current SOFC technology has shown good performance with a wide range of hydrocarbon and syngas fuels, but there are still significant challenges for practical application. In this paper, the basic operating principles, state-of-the-art performance benchmarks, and SOFC-relevant materials are summarized. More in-depth reviews on those topics can be found in Kee and co-workers [Combust Sci and Tech 2008; 180:1207–44 and Proc Combust Inst 2005; 30:2379–404] and McIntosh and Gorte [Chem Rev 2004; 104:4845–65]. The focus of this review is on the fundamentals and development of detailed electro- and thermal (or simply, electrothermal) chemistry within the SOFC anode, including electrochemical oxidation mechanisms for H₂, CO, CH₄, and carbon, as well as the effects of carbon deposition and sulfur poisoning. The interdependence of heterogeneous chemistry, charge-transfer processes, and transport are discussed in the context of SOFC membrane-electrode assembly modeling.
机译:摘要固体氧化物燃料电池(SOFC)的高燃料柔韧性提供了使用相对便宜,安全且易于获得的碳氢化合物(例如CH 3)或煤合成气(即CO-H 2混合物)燃料的可能性。使用此类燃料将大大降低燃料成本并增加SOFC商业化的可行性,尤其是在期待已久的所谓“氢经济”的近期采用中。当前的SOFC技术已在多种烃和合成气燃料中显示出良好的性能,但在实际应用中仍然存在重大挑战。本文总结了基本的工作原理,最新的性能基准以及与SOFC相关的材料。在Kee及其同事中,可以找到关于这些主题的更深入的评论[Combust Sci and Tech 2008; 180:1207–44和Proc Combust Inst 2005; 30:2379–404]和McIntosh和Gorte [Chem Rev 2004; 104:4845–65]。这篇综述的重点是SOFC阳极内详细的电和热(或简单地,电热)化学的基础和发展,包括H 2,CO,CH 3和碳的电化学氧化机理,以及碳的影响沉积和硫中毒。在SOFC膜电极组装模型中讨论了异质化学,电荷转移过程和传输之间的相互依赖性。

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