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PROPER BIO-COVERS TO ENHANCE METHANE OXIDATION FINDINGS FROM A TWO YEAR FIELD TRIAL

机译:两年生物试验中适当的生物覆盖物可提高甲烷氧化结果

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摘要

Misdirected waste management strategies, especially landfill measures, can be blamed for contributing to the greenhouse effect. Landfills rank third in terms of sources of anthropogenic methane worldwide, due to methane which escapes gas collection on sanitary landfills and because of methane emissions from old, small or open dumps that do not have any gas extraction. One supplementary practical method may be to enhance the natural potential of microbial methane oxidation by creating proper landfill covers. Field trials have shown that bio-covers made of compost can achieve a high level of methane removal, up to 90―100 % of the gas produced or emitted. This paper describes the lessons learned from research on methane oxidation at two Austrian landfills, in particular with regard to the proper design of such bio-covers and the suitable quality of the compost. Furthermore, initial findings on water accumulation and leachate generation in these bio-covers are illustrated.
机译:误导性的废物管理策略,尤其是垃圾掩埋措施,可能会导致温室效应。垃圾填埋场在全球人为甲烷的来源方面排在第三位,这是由于甲烷无法从卫生垃圾填埋场收集气体,以及由于未提取任何气体的旧的,小型的或露天的垃圾场排放的甲烷。一种实用的补充方法可能是通过创建适当的垃圾掩埋场来提高微生物甲烷氧化的自然潜力。现场试验表明,由堆肥制成的生物覆盖物可实现很高的甲烷去除率,最多可产生或排放气体的90%至100%。本文介绍了从两个奥地利垃圾填埋场甲烷氧化研究中获得的经验教训,特别是关于这种生物覆盖物的正确设计和堆肥的适当质量方面的经验。此外,说明了在这些生物覆盖层中水蓄积和渗滤液生成的初步发现。

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