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Investigation into the effects of trace coal syn gas species on the performance of solid oxide fuel cell anodes.

机译:研究痕量煤合成气种类对固体氧化物燃料电池阳极性能的影响。

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摘要

Coal is the United States' most widely used fossil fuel for the production of electric power. Coal's availability and cost dictates that it will be used for many years to come in the United States for power production. As a result of the environmental impact of burning coal for power production more efficient and environmentally benign power production processes using coal are sought. Solid oxide fuel cells (SOFCs) combined with gasification technologies represent a potential methodology to produce electric power using coal in a much more efficient and cleaner manner. It has been shown in the past that trace species contained in coal, such as sulfur, severely degrade the performance of solid oxide fuel cells rendering them useless. Coal derived syngas cleanup technologies have been developed that efficiently remove sulfur to levels that do not cause any performance losses in solid oxide fuel cells. The ability of these systems to clean other trace species contained in syngas is not known nor is the effect of these trace species on the performance of solid oxide fuel cells. This works presents the thermodynamic and diffusion transport simulations that were combined with experimental testing to evaluate the effects of the trace species on the performance of solid oxide fuel cells. The results show that some trace species contained in coal will interact with the SOFC anode. In addition to the transport and thermodynamic simulations that were completed experimental tests were completed investigating the effect of HCl and AsH3 on the performance of SOFCs.
机译:煤炭是美国生产电力最广泛使用的化石燃料。煤炭的可得性和成本决定了它将在美国用于电力生产多年。由于燃烧煤用于电力生产的环境影响,寻求使用煤的更有效和对环境无害的电力生产过程。固体氧化物燃料电池(SOFC)与气化技术的结合代表了一种潜在的方法,可以更有效,更清洁地使用煤炭来发电。过去已经表明,煤中所含的微量物质(例如硫)会严重降低固体氧化物燃料电池的性能,从而使其无用。已经开发出煤衍生的合成气净化技术,该技术可以有效地将硫去除到不会在固体氧化物燃料电池中造成任何性能损失的水平。这些系统清洁合成气中所含其他痕量物质的能力未知,这些痕量物质对固体氧化物燃料电池性能的影响也未知。这项工作提出了热力学和扩散传输模拟,结合了实验测试以评估痕量物质对固体氧化物燃料电池性能的影响。结果表明,煤中所含的一些微量物质将与SOFC阳极相互作用。除了完成传输和热力学模拟外,还完成了试验性试验,以调查HCl和AsH3对SOFCs性能的影响。

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