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Tracer method to measure landfill gas emissions from leachate collection systems

机译:示踪法测量渗滤液收集系统的垃圾填埋气排放

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摘要

This paper describes a method developed for quantification of gas emissions from the leachate collection system at landfills and present emission data measured at two Danish landfills with no landfill gas collection systems in place: Fakse landfill and AV Milj?. Landfill top covers are often designed to prevent infiltration of water and thus are made from low permeable materials. At such sites a large part of the gas will often emit through other pathways such as the leachate collection system. These point releases of gaseous constituents from these locations cannot be measured using traditional flux chambers, which are often used to measure gas emissions from landfills. Comparing tracer measurements of methane (CH_4) emissions from leachate systems at Fakse landfill and AV Milj? to measurements of total CH_4 emissions, it was found that approximately 47% (351 kg CH_4 d~(-1)) and 27% (211 kg CH_4 d~(-1)), respectively, of the CH_4 emitting from the sites occurred from the leachate collection systems. Emission rates observed from individual leachate collection wells at the two landfills ranged from 0.1 to 76 kg CH_4 d~(-1). A strong influence on emission rates caused by rise and fall in atmospheric pressure was observed when continuously measuring emission from a leachate well over a week. Emission of CH_4 was one to two orders of magnitude higher during periods of decreasing pressure compared to periods of increasing pressure.
机译:本文介绍了一种用于量化垃圾填埋场渗滤液收集系统气体排放量的方法,并介绍了在没有采用垃圾收集气系统的两个丹麦垃圾填埋场测量的排放数据:Fakse垃圾填埋场和AV Milj?。垃圾掩埋顶盖通常设计为防止水渗透,因此由低渗透性材料制成。在这样的场所,大部分气体通常会通过其他途径(例如渗滤液收集系统)排放。这些位置的气体成分的这些点释放无法使用传统的助焊剂室进行测量,传统的助熔剂室通常用于测量垃圾填埋场的气体排放量。比较Fakse垃圾填埋场和AV Milj渗滤液系统甲烷(CH_4)排放的示踪测量?在测量CH_4的总排放量时,发现分别发生了约47%(351 kg CH_4 d〜(-1))和27%(211 kg CH_4 d〜(-1))。来自渗滤液收集系统。从两个垃圾填埋场的单个渗滤液收集井观察到的排放速率为0.1至76 kg CH_4 d〜(-1)。当连续一周测量渗滤液井的排放量时,观察到了由大气压力的上升和下降引起的对排放率的强烈影响。与压力升高时期相比,压力降低时期CH_4的排放高出一到两个数量级。

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  • 来源
    《Waste Management》 |2010年第11期|p.2146-2152|共7页
  • 作者单位

    Department of Environmental Engineering, Technical University of Denmark, Miljovej - Building 113,2800 Kongens Lyngby, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Miljovej - Building 113,2800 Kongens Lyngby, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Miljovej - Building 113,2800 Kongens Lyngby, Denmark;

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