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Performance comparison between partial oxidation and methane steam reforming processes for solid oxide fuel cell (SOFC) micro combined heat and power (CHP) system

机译:固体氧化物燃料电池(SOFC)微型热电联产(CHP)系统的部分氧化和甲烷蒸汽重整工艺之间的性能比较

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摘要

The aim of this research work is to describe in qualitative and quantitative form the performance of a micro Combined Heat and Power system for residential application based on Solid Oxide Fuel Cell fueled by natural gas with two different types of pre-reforming systems, namely Steam Reforming and Partial Oxidation and recirculation of anode and cathode gas. The comparative analysis among the different configurations will lead us to conclude that maximum efficiency is achieved when cathode and anode gas recirculation are used along with steam methane reforming. Further Steam Methane Reforming process produces a higher electrical system efficiency compared to Partial oxidation reforming process. Efficiency is affected when running the system in part load mode mainly due to heat loss, additional natural gas supplied to the burner to satisfy the required heat demand inside the system, and ejector efficiency drop in the recirculation system. Due to high temperature of operation heat loss strongly affects the system efficiency especially at part load operation.
机译:这项研究工作的目的是定性和定量地描述基于天然气的固体氧化物燃料电池与两种不同类型的预重整系统(即蒸汽重整)的民用微型热电联产系统的性能。阳极和阴极气体的部分氧化和再循环。在不同配置之间的比较分析将使我们得出结论,当阴极和阳极气体再循环与蒸汽甲烷重整一起使用时,可实现最大效率。与部分氧化重整工艺相比,进一步的蒸汽甲烷重整工艺可产生更高的电气系统效率。在部分负载模式下运行系统时,效率会受到影响,这主要是由于热量损失,为满足系统内部所需的热量需求而提供给燃烧器的其他天然气,以及再循环系统中的喷射器效率下降。由于工作温度高,热量损失会严重影响系统效率,尤其是在部分负载下运行时。

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