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Mitigation of methane emission from an old unlined landfill in Klintholm, Denmark using a passive biocover system

机译:使用被动式生物覆盖系统减轻丹麦克林索尔姆一个未加衬砌的垃圾填埋场的甲烷排放

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Methane generated at landfills contributes to global warming and can be mitigated by biocover systems relying on microbial methane oxidation. As part of a closure plan for an old unlined landfill without any gas management measures, an innovative biocover system was established. The system was designed based on a conceptual model of the gas emission patterns established through an initial baseline study. The study included construction of gas collection trenches along the slopes of the landfill where the majority of the methane emissions occurred. Local compost materials were tested as to their usefulness as bioactive methane oxidizing material and a suitable compost mixture was selected. Whole site methane emission quantifications based on combined tracer release and downwind measurements in combination with several local experimental activities (gas composition within biocover layers, flux chamber based emission measurements and logging of compost temperatures) proved that the biocover system had an average mitigation efficiency of approximately 80%. The study showed that the system also had a high efficiency during winter periods with temperatures below freezing. An economic analysis indicated that the mitigation costs of the biocover system were competitive to other existing greenhouse gas mitigation options.
机译:垃圾填埋场产生的甲烷会导致全球变暖,而依靠微生物甲烷氧化的生物覆盖系统可以减轻甲烷的排放。作为没有任何气体管理措施的旧的未衬砌垃圾填埋场关闭计划的一部分,建立了创新的生物覆盖系统。该系统的设计基于通过初步基线研究建立的气体排放模式的概念模型。该研究包括沿着大部分甲烷排放发生的垃圾填埋场的斜坡建造集气沟。测试了本地堆肥材料作为生物活性甲烷氧化材料的有用性,并选择了合适的堆肥混合物。基于示踪剂释放和顺风测量结合几个局部实验活动(生物覆盖层内的气体组成,基于通量室的排放测量和堆肥温度记录)的全场所甲烷排放量化证明,生物覆盖系统的平均缓解效率约为80%。研究表明,该系统在冬季温度低于冰点的情况下也具有很高的效率。一项经济分析表明,生物覆盖系统的减排成本与其他现有的温室气体减排方案相比具有竞争力。

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