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Exergy analysis of an ethanol fuelled proton exchange membrane (PEM) fuel cell system for automobile applications

机译:汽车用乙醇燃料质子交换膜(PEM)燃料电池系统的火用分析

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An integrated ethanol fuelled proton exchange membrane fuel cell (PEMFC) power system was investigated following a second law exergy analysis. The system was assumed to have the typical design for automobile applications and was comprised of a vaporizer/mixer, a steam reformer, a CO-shift reactor, a CO-remover (PROX) reactor, a PEMFC and a burner. The exergy analysis was applied for different PEMFC power and voltage outputs assuming the ethanol steam reforming at about 600 K and the CO-shift reaction at about 400 K. A detailed parametric analysis of the plant is presented and operation guidelines are suggested for effective performance. In every case, the exergy analysis method is proved to allow an accurate allocation of the deficiencies of the subsystems of the plant and serves as a unique tool for essential technical improvements.
机译:根据第二定律分析,研究了集成乙醇燃料的质子交换膜燃料电池(PEMFC)动力系统。假设该系统具有汽车应用的典型设计,并且由蒸发器/混合器,蒸汽重整器,CO变换反应器,CO去除器(PROX)反应器,PEMFC和燃烧器组成。假设乙醇蒸汽重整在约600 K且CO变换反应在约400 K时,将本能分析应用于不同的PEMFC功率和电压输出。给出了该设备的详细参数分析,并提出了有效性能的操作指南。在每种情况下,都证明了火用分析方法可以准确分配工厂子系统的缺陷,并且可以作为进行必要技术改进的独特工具。

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