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Membrane reformer PEM cogeneration systems for residential applications - Part B: techno-economic analysis and system layout

机译:住宅用膜重整器PEM热电联产系统-B部分:技术经济分析和系统布局

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This two-part paper investigates the performances and potential economic benefits of a membrane reformer (MREF)-based fuel cell cogeneration system, using polymer electrolyte membrane (PEM) fuel cells, applied to residential cogeneration. Part A of the work focuses on the thermodynamic analysis and simulation of the system at full and partial load conditions, discussing its performance by means of a sensitivity analysis carried out under different operating conditions. Part B presents the techno-economic analysis of the proposed system integrated into a real residential application, dealing with the energy savings and the economic balances, and proposes a preliminary design of the cogeneration unit.rnThe higher electric efficiency of the innovative MREF system proposed in this work allows a yearly cost savings about 50% higher than cost savings allowed by fuel cell cogeneration units based on conventional fuel processors. Moreover, CO_2 emissions savings, calculated for an average northern Italy single-family load, is about 1.6 t_(co2)/year.rnThe paper also presents a proposed system layout, discussing the preliminary design of all the required components and analyzing with particular care the issues related to the heat recovery loop and to the arrangement of the system key component: the membrane reforming reactor.
机译:这份由两部分组成的论文研究了基于膜重整器(MREF)的燃料电池热电联产系统的性能和潜在的经济效益,该系统使用聚合物电解质膜(PEM)燃料电池应用于住宅热电联产。这项工作的A部分着重于系统在满负荷和部分负荷条件下的热力学分析和仿真,并通过在不同操作条件下进行的灵敏度分析来讨论其性能。 B部分介绍了将拟议系统集成到实际住宅应用中的技术经济分析,涉及节能和经济平衡的问题,并提出了热电联产机组的初步设计。这项工作每年比基于传统燃料处理器的燃料电池热电联产装置节省的成本高出约50%。此外,按意大利北部单户家庭平均负荷计算,CO_2排放节省量约为1.6 t_(co2)/年。rn本文还提出了建议的系统布局,讨论了所有必需组件的初步设计,并特别谨慎地进行了分析。与热回收回路和系统关键部件的布置有关的问题:膜重整反应器。

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