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Fuel cell technology for domestic built environment applications: state of-the-art review

机译:用于家用建筑环境应用的燃料电池技术:最新进展

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摘要

Fuel cells produce heat when generating electricity, thus they are of particular interest for combined heat and power (CHP) and combined cooling heat and power (CCHP) applications, also known as tri-generation systems. CHP and tri-generation systems offer high energy conversion efficiency and hence the potential to reduce fuel costs and CO2 emissions. This article serves to provide a state-of-the-art review of fuel cell technology operating in the domestic built environment in CHP and tri-generation system applications. The review aims to carry out an assessment of the following topics: (1) the operational advantages fuel cells offer in CHP and tri-generation system configurations, specifically, compared to conventional combustion-based technologies such as Stirling engines, (2) how decarbonisation, running cost and energy security in the domestic built environment may be addressed through the use of fuel cell technology, and (3) what has been done to date and what needs to be done in the future. The article commences with a review of fuel cell technology, then moves on to examine fuel cell CHP systems operating in the domestic built environment, and finally explores fuel cell tri-generation systems in domestic built environment applications. The article concludes with an assessment of the present development of, and future challenges for, domestic fuel cells operating in CHP and tri-generation systems. As fuel cells are an emergent technology the article draws on a breadth of literature, data and experience, mostly from the United Kingdom, Germany, Japan, America and Australia.ududFuel cells are a technology of the future here today, providing a change in the way heat and power are supplied to end users. Fuel cells operating in CHP and tri-generation systems in domestic built environment applications could finally provide the means by which energy generation can transfer from centralised to decentralised locales in a sustainable and effective manner.
机译:燃料电池在发电时会产生热量,因此对于热电联产(CHP)和冷却热电联产(CCHP)应用(特别是三联发电系统)特别感兴趣。热电联产和三代发电系统具有很高的能量转换效率,因此有降低燃料成本和减少二氧化碳排放的潜力。本文旨在对在热电联产和三代系统应用中的家用建筑环境中运行的燃料电池技术进行最新的综述。该审查旨在对以下主题进行评估:(1)特别是与传统的基于燃烧的技术(例如斯特林发动机)相比,燃料电池在热电联产和三代系统配置中提供的操作优势; ,可以通过使用燃料电池技术来解决家庭建筑环境中的运行成本和能源安全问题,以及(3)迄今为止已经完成的工作以及将来需要完成的工作。本文首先回顾了燃料电池技术,然后继续研究了在家用建筑环境中运行的燃料电池CHP系统,最后探讨了在家用建筑环境中应用的燃料电池三代系统。本文最后评估了在热电联产和三代系统中运行的家用燃料电池的当前发展以及未来的挑战。由于燃料电池是一种新兴技术,因此本文借鉴了广泛的文献,数据和经验,其中大部分来自英国,德国,日本,美国和澳大利亚。 ud ud燃料电池是当今这里的未来技术,它提供了一种改变向最终用户提供热量和电力的方式。在家用建筑环境应用中的热电联产和三联产系统中运行的燃料电池最终可以提供一种方式,使能源产生能够以可持续和有效的方式从集中式场所转移到分散式场所。

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