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Solid oxide fuel cells for direct oxidation of liquid hydrocarbon fuels in automotive auxiliary power units: Sulfur tolerance and operation on gasoline

机译:用于直接氧化汽车辅助动力装置液态烃燃料的固体氧化物燃料电池:汽油硫的耐受性和操作

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To be practical, auxiliary power units (APUs) should operate on the same fuels that the internal combustion engine (ICE) uses for vehicle propulsion. Solid oxide fuel cells (SOFCs) have previously been shown to be able to convert the chemical energy of certain room-temperature- liquid hydrocarbon fuels (toluene and synthetic diesel fuel) to electricity by direct oxidation. Because such SOFCs operate without reformers, the systems based on these SOFCs are expected to be compact. To work with existing infrastructure fuels, the cells must be able to tolerate typical contaminants such as sulfur that are found in the everyday fuels. In this paper, we report on recent laboratory results that show direct oxidation SOFCs with ceria-copper anodes can provide at least 2 hours operation in the presence of 200 ppm sulfur in the fuel. Also, a laboratory cell has been run for 12 hours on regular unleaded gasoline.
机译:要实用,辅助动力单元(APU)应在内燃机(ICE)用于车辆推进的同一燃料上。先前已经显示了固体氧化物燃料电池(SOFC)能够通过直接氧化将某些室温烃燃料(甲苯和合成柴油燃料)的化学能转换为电力。因为这种SOFC在没有改革者的情况下运行,所以基于这些SOFC的系统预计将紧凑。为了使用现有的基础设施燃料,细胞必须能够耐受典型的污染物,例如日常燃料中的硫。在本文中,我们报告了最近的实验室结果,其显示含有二氧化铈 - 铜阳极的直接氧化SOFC可以在燃料中存在至少2小时的硫在200ppm硫的存在下进行。此外,实验室细胞在普通无铅汽油上运行12小时。

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