利用垃圾填埋气就地发电的方法

Ivy Chen
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摘要

美国消耗大量电力。因此,人们越来越担心未来可能无法随时获得能源。煤炭、石油和天然气等传统能源的枯竭加剧了这种担忧。垃圾填埋场的城市固体废物是国家可以作为可再生能源利用的资源,因为垃圾填埋场产生的气体可以用来发电,而不是浪费和燃烧,以符合资源保护和回收法案的标准。利用往复式内燃机、微型涡轮机和熔融碳酸盐燃料电池的系统可以在发电的同时切实、清洁地减少垃圾填埋场的气体排放。然而,这些方法需要投入工作和初始投资。主要的经济目标是使能源生产最大化。经过经济分析,熔融碳酸盐燃料电池系统由于其通用性和低排放被确定为最有效的。该系统的成功实施可能导致系统的繁殖,垃圾填埋气的价值增加,以及产生垃圾填埋气的废物。这也可能导致城市废物系统的重组,以提高堆填气体的使用。关键词:城市固体废物,城市生活垃圾,垃圾填埋气,往复式内燃机,微型涡轮机,熔融碳酸盐燃料电池,mcfc,硅氧烷,排放,温室气体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods of On-Site Electricity Generation with Landfill Gas
The US consumes large quantities of electricity. As a result, there is a growing concern that energy may not be readily available in the future. This worry is compounded by the depletion of traditional sources such as coal, petroleum, and natural gas. Municipal solid waste in landfills is a resource the country may utilize as a renewable source of energy, as the gas produced from landfills can be used to power generators for electricity production, rather than wasted and flared to comply with Resource Conservation and Recovery Act standards. Systems that utilize reciprocating internal combustion engines, microturbines, and molten carbonate fuel cells can feasibly and cleanly reduce landfill gas emissions while producing electricity. However, these methods require input work and initial investments. The main economic goal is to maximize energy production. After economic analysis, the molten carbonate fuel cell system was determined to be the most efficient due to its versatility and low emissions. The successful implementation of the system may result in the propagation of the system, the increase in value of landfill gas, and the waste that produces landfill gas. This may also lead to restructuring of municipal waste system to enhance the usage of landfill gas. Keywords: municipal solid waste, MSW, landfill gas, reciprocating internal combustion engines, microturbines, molten carbonate fuel cells, MCFCs, siloxanes, emissions, greenhouse gases.
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