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Field Methane Oxidation Efficiency at Municipal Solid Waste Landfills Located in the North of China

机译:现场甲烷氧化效率,位于中国北部的市政固体废物垃圾填埋场

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Municipal solid waste (MSW) landfills are one of main sources of anthropogenic methane emissions in China, and methane has been predicted to be the most significant greenhouse gas after 2030. In landfills, oxidation can take place naturally with methane migrating through the landfill cover. The value of fraction of methane oxidation recommended by the US EPA is 10%, which, however, is being challenged with more and more field measurement data from the Europe and the US. The characteristic of MSW in China is extremely different from that in the US, probably resulting in distinct differences in both methane generation and oxidation. The objective of this study was to determine the fraction of methane oxidized at MSW landfills in China and its spatial and temporal variations. Stable isotope technique was applied to determine the fraction of methane oxidized. The results showed that the fraction of methane oxidized where MSW was covered by soil ranged from 6.3% to 100% in Northeast China and 31% to 100% in North China. Methane oxidation could hardly occur in the operating surface. Besides, soil cover always had a high methane oxidation efficiency in summer. The fractional oxidation of methane in summer was more than 2 times than that in winter. All over the year, with the sampling depth decreasing, the fraction of methane oxidation of soil cover increased.
机译:市政固体废物(MSW)垃圾填埋场是中国人为甲烷排放的主要来源之一,并预计甲烷将成为2030年后最重要的温室气体。在垃圾填埋场中,氧化可以通过垃圾填埋场覆盖自然地进行。美国EPA推荐的甲烷氧化分数的价值是10%,但是,来自欧洲和美国的越来越多的现场测量数据受到挑战。中国MSW的特征与美国的特点是极其不同,可能导致甲烷生成和氧化的不同差异。本研究的目的是确定在中国MSW垃圾填埋场氧化甲烷的一部分及其空间和时间变化。施用稳定的同位素技术以确定氧化的甲烷的级分。结果表明,土壤覆盖的甲烷的一部分氧化在东北地区的6.3%至100%,华北地区31%至100%。在工作表面中几乎不发生甲烷氧化。此外,夏季土壤盖始终均具有高甲烷氧化效率。夏季甲烷的分数氧化比冬季的2倍以上。全年全年,随着采样深度的降低,土壤覆盖的甲烷氧化分数增加。

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