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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Study of a molten carbonate fuel cell combined heat, hydrogen and power system: Energy analysis
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Study of a molten carbonate fuel cell combined heat, hydrogen and power system: Energy analysis

机译:结合热,氢和动力系统的熔融碳酸盐燃料电池的研究:能量分析

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Countries around the world are trying to use alternative fuels and renewable energy to reduce the energy consumption and greenhouse gas emissions. Biogas contains methane is considered a potential source of clean renewable energy. This paper discusses the design of a combined heat, hydrogen and power system, which generated by methane with use of Fuelcell, for the campus of Missouri University of Science and Technology located in Rolla, Missouri, USA. An energy flow and resource availability study was performed to identify sustainable type and source of feedstock needed to run the Fuelcell at its maximum capacity. FuelCell Energy's DFC1500 unit (a molten carbonate Fuelcell) was selected as the Fuelcell for the tri-generation (heat, hydrogen and electric power) system. This tri-generation system provides electric power to the campus, thermal energy for heating the anaerobic digester, and hydrogen for transportation, backup power and other applications on the campus. In conclusion, the combined heat, hydrogen and power system reduces fossil fuel usage, and greenhouse gas emissions at the university campus.
机译:世界各国都在尝试使用替代燃料和可再生能源,以减少能源消耗和温室气体排放。沼气中含有甲烷被认为是清洁可再生能源的潜在来源。本文讨论了位于美国密苏里州罗拉的密苏里科技大学校园由甲烷利用燃料电池产生的热,氢和动力组合系统的设计。进行了能量流和资源可利用性研究,以确定以最大容量运行燃料电池所需的可持续原材料类型和来源。选择FuelCell Energy的DFC1500单元(熔融碳酸盐燃料电池)作为三代(热,氢和电)系统的燃料电池。这种三代系统为校园提供电力,为厌氧消化池供热的热能,以及为校园内的运输,备用电源和其他应用提供氢气。总之,热,氢和电力系统相结合,可减少化石燃料的使用,并减少大学校园的温室气体排放。

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