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Integration of a Natural Gas Fuel Processor for Residential PEM Fuel Cell Based Micro Cogeneration Application

机译:基于民用PEM燃料电池的微型热电联产应用的天然气燃料处理器集成

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Fuel cell based cogeneration systems, which supply thermal energy and electricity simultaneously, are very promising for the near future commercial stationary applications, especially for residential power generation. The natural gas is the most suitable fuel for this application due to existing infrastructure and cost. The aim of this paper is to summarize the achievements of natural gas processor integration within "Fuel Cell based Micro Cogeneration System" project which is supported under TUBITAK Support Programme for Research Projects of Public Institutions. In this project 5 kW_(e) and 30 kW_(t) power are produced by fuel cell and catalytic combustion systems respectively. Sub systems such as fuel processing for hydrogen production, catalytic combustion, PEM fuel cell, power conditioning and control systems have been designed, manufactured and integrated for cogeneration application. Then a test program for the operation of the system has been performed. This paper presents the main experimental results on autothermal reforming of natural gas and gas clean-up systems concerning the requirements of PEM fuel cell system. It has been found that design parameters of the fuel processor were very important but operational parameters of the system were crucial for system performance.
机译:同时提供热能和电能的基于燃料电池的热电联产系统对于不久的将来的商业固定应用,特别是住宅发电,非常有前途。由于现有的基础设施和成本,天然气是最适合此应用的燃料。本文的目的是总结“基于燃料电池的微型热电联产系统”项目中天然气处理器集成的成就,该项目得到了公共机构研究项目TUBITAK支持计划的支持。在该项目中,燃料电池和催化燃烧系统分别产生5 kW_(e)和30 kW_(t)的功率。已经设计,制造和集成了用于热电联产应用的子系统,例如用于制氢的燃料处理,催化燃烧,PEM燃料电池,功率调节和控制系统。然后已经执行了用于系统操作的测试程序。本文介绍了有关PEM燃料电池系统要求的天然气自热重整和气体净化系统的主要实验结果。已经发现,燃料处理器的设计参数非常重要,但是系统的操作参数对于系统性能至关重要。

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