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Biotic systems to mitigate landfill methane emissions

机译:减少垃圾填埋甲烷排放的生物系统

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Landfill gases produced during biological degradation of buried organic wastes include methane, which when released to the atmosphere, can contribute to global climate change. Increasing use of gas collection systems has reduced the risk of escaping methane emissions entering the atmosphere, but gas capture is not 100% efficient, and further, there are still many instances when gas collection systems are not used. Biotic methane mitigation systems exploit the propensity of some naturally occurring bacteria to oxidize methane. By providing optimum conditions for microbial habitation and efficiently routing landfill gases to where they are cultivated, a number of bio-based systems, such as interim or long-term biocovers, passively or actively vented biofilters, biowindows and daily-used biotarps, have been developed that can alone, or with gas collection, mitigate landfill methane emissions. This paper reviews the science that guides bio-based designs; summarizes experiences with the diverse natural or engineered substrates used in such systems; describes some of the studies and field trials being used to evaluate them; and discusses how they can be used for better landfill operation, capping, and aftercare.
机译:埋藏的有机废物在生物降解过程中产生的垃圾填埋气体包括甲烷,当甲烷释放到大气中时,会加剧全球气候变化。越来越多地使用气体收集系统降低了将甲烷排放逃逸到大气中的风险,但是气体收集效率不是100%,而且,在许多情况下,没有使用气体收集系统。减少生物甲烷的系统利用了一些天然细菌氧化甲烷的倾向。通过为微生物栖息地提供最佳条件并有效地将垃圾填埋气体运送到它们的种植地,已建立了许多基于生物的系统,例如临时或长期生物覆盖物,被动或主动通风的生物过滤器,生物窗口和日常使用的生物防水布可以单独使用或与气体收集一起开发的可减轻垃圾掩埋场甲烷排放的技术。本文回顾了指导生物基设计的科学。总结了此类系统中使用的各种自然或工程基材的经验;描述用于评估的一些研究和现场试验;并讨论了如何将其用于更好的垃圾填埋场操作,封盖和后续维护。

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