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Design and analysis of a waste gasification energy system with solid oxide fuel cells and absorption chillers

机译:具有固体氧化物燃料电池和吸收式制冷机的废气气化能源系统的设计与分析

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Energy saving is an open point in most European countries where energy policies are oriented to reduce the use of fossil fuels, greenhouses emissions and energy independence, and to increase the use of renewable energies. In the last several years, new technologies have been developed and some of them received subsidies to increase installation and reduce cost. This article presents a new sustainable trigeneration system (power, heat and cool) based on a solid oxide fuel cell (SOFC) system integrated with an absorption chiller for special applications such as hotels, resorts, hospitals, etc. with a focus on plant design and performance. The proposal system is based on the idea of gasifying the municipal waste, producing syngas serving as fuel for the trigeneration system. Such advanced system when improved is thus self-sustainable without dependency on net grid, district heating and district cooling. Other advantage of such waste to energy system is waste management, less disposal to sanitary landfills, saving large municipal fields for other human activity and considerable less environmental impact. Although plant electrical efficiency of such system is not significant but fuel utilization factor along with free fuel, significant less pollutant emissions and self-sustainability are importance points of the proposed system. It is shown that the energy efficiency of such small tri-generation system is more than 83% with net power of 170 kW and district energy of about 250 kW.
机译:节能是大多数欧洲国家的一个开放点,在这些国家中,能源政策旨在减少化石燃料的使用,温室气体排放和能源的独立性,并增加可再生能源的使用。在过去的几年中,开发了新技术,其中一些获得了补贴,以增加安装和降低成本。本文介绍了一种新的可持续三代发电系统(电力,供热和制冷),该系统基于与吸收式制冷机集成的固体氧化物燃料电池(SOFC)系统,用于旅馆,度假村,医院等特殊应用,重点在于工厂设计和性能。该提案系统基于将城市垃圾气化,生产用作三代发电系统燃料的合成气的想法。因此,改进后的这种先进系统可以自我维持,而无需依赖电网,区域供热和区域制冷。这种废物转化为能源系统的其他优势是废物管理,减少了对卫生垃圾填埋场的处理,为其他人类活动节省了大片市政土地,并且对环境的影响也大大减少。尽管这种系统的电厂电气效率并不重要,但是燃料利用率和自由燃料,显着减少的污染物排放和自我可持续性是该系统的重点。结果表明,在170 kW的净功率和250 kW左右的区域能量的情况下,这种小型三代发电系统的能效超过83%。

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