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LANDFILL GAS TO ENERGY POTENTIAL AT MSW LANDFILLS IN THE US SOUTHEAST: DALTON-WHITFIELD SWM AUTHORITY, A CASE HISTORY

机译:垃圾填埋气体在美国Southeast的MSW垃圾填埋场能源潜力:Dalton-Whitfield SWM权威,案例历史

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Municipal solid waste (MSW) landfills receive a variety of residential, commercial and industrial waste that contribute to the overall biodegradable content of the buried waste mass. This waste content is the source of landfill gas production that can either be a nuisance or threat to the public health and to the environment or can be a source of sustainable energy that can be extracted and utilized over the life of the landfill. The methane content of landfill gas (a typical LFG composition being about 50% to 55% methane and 40% to 45% carbon dioxide plus varying amounts of nitrogen, sulfides and trace hydrocarbons) provides the heat energy that may be used to power electrical generating stations or fuel boilers and furnaces.. The rate of production of landfill gas (LFG) in a MSW landfill and the quality and continuity of gas production generally depend upon the percentage of biodegradable volatiles in the waste and more specifically, upon the moisture content and age of the waste, the pH of the liquid or leachate that is produced and transported through the waste mass, the compaction density of the waste and the local climate. The value of the extracted LFG primarily lies in its methane content which can be used to power electrical generator stations, to provide a direct heating fuel for boilers, to be conveyed to local natural gas companies (after purification and compression), or to provide a hydrocarbon source for conversion to alternate fuels. In this paper, we look at the impact of these variables on LFG production and generation in southeastern MSW landfills and the potential for recovering and utilizing this LFG for beneficial purposes. This "beneficiation" of recovered LFG is a critical step in developing the methane content of the gas as a sustainable resource, its sustainability being that condition that socially benefits the community, physically enhances our atmosphere and the overall environment in which we live and economically benefits the landfill owner/operator and/or the LFG developer. Economic development of landfill-produced methane is demonstrated through a step-by-step analysis of the potential LFG production of a specific southeastern MSW landfill, the development of the methane gas potential of such a landfill and the rewards associated with such development.
机译:市固体废物(MSW)垃圾填埋场获得各种住宅,商业和工业废物,有助于埋藏废物群的整体可生物降解含量。这种废物含量是垃圾填埋气体生产的来源,可以是对公共卫生和环境的滋扰或威胁,或者可以是可持续能源的来源,可以在垃圾填埋场的使用寿命中提取和利用。填埋气体的甲烷含量(典型的LFG组合物为约50%至55%甲烷和40%至45%的二氧化碳加上不同量的氮,硫化物和痕量烃)提供了可用于发电的热能车站或燃料锅炉和熔炉。MSW垃圾填埋场的垃圾填埋气体(LFG)的生产速率通常取决于废物中可生物降解挥发物的百分比,更具体地说,含水量和含水量废物的年龄,通过废物质量产生和运输的液体或渗滤液的pH值,废物的压实密度和局部气候。提取的LFG的值主要位于其甲烷含量,该甲烷含量可用于发电机站,为锅炉提供直接加热燃料,以传送到局部天然气公司(净化和压缩),或提供a用于转换为交替燃料的烃源。在本文中,我们研究这些变量对东南MSW垃圾填埋场的LFG生产和一代的影响,以及恢复和利用这一LFG的可能性。恢复的LFG的“受益”是发展煤气作为可持续资源的甲烷含量的关键步骤,其可持续性是社会利益社区的条件,身体上增强了我们的大气和我们生活和经济益处的整体环境垃圾填埋业主/运营商和/或LFG开发人员。通过对特定东南MSW垃圾填埋场的潜在LFG生产的潜在LFG生产,开发这种垃圾填埋场的甲烷气体潜力以及与这种发展相关的奖励的逐步分析来证明了垃圾填埋场生产的甲烷。

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