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首页> 外文期刊>Waste Management >Mitigation of methane emissions in a pilot-scale biocover system at the AV Miljø Landfill, Denmark: 1. System design and gas distribution
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Mitigation of methane emissions in a pilot-scale biocover system at the AV Miljø Landfill, Denmark: 1. System design and gas distribution

机译:丹麦AVMiljø垃圾填埋场的中试规模生物覆盖系统中的甲烷排放减少:1.系统设计和气体分配

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摘要

Greenhouse gas mitigation at landfills by methane oxidation in engineered biocover systems is believed to be a cost effective technology, but so far a full quantitative evaluation of the efficiency of the technology in full scale has only been carried out in a few cases. A third generation semi-passive biocover system was constructed at the AV Miljo Landfill, Denmark. The biocover system was fed by landfill gas pumped out of three leachate collection wells. An innovative gas distribution system was used to overcome the commonly observed surface emission hot spot areas resulting from an uneven gas distribution to the active methane oxidation layer, leading to areas with methane overloading. Performed screening of methane and carbon dioxide surface concentrations, as well as flux measurement using a flux chamber at the surface of the biocover, showed homogenous distributions indicating an even gas distribution. This was supported by results from a tracer gas test where the compound HFC-134a was added to the gas inlet over an adequately long time period to obtain tracer gas stationarity in the whole biocover system. Studies of the tracer gas movement within the biocover system showed a very even gas distribution in gas probes installed in the gas distribution layer. Also the flux of tracer gas out of the biocover surface, as measured by flux chamber technique, showed a spatially even distribution. Installed probes logging the temperature and moisture content of the methane oxidation layer at different depths showed elevated temperatures in the layer with temperature differences to the ambient temperature in the range of 25-50°C at the deepest measuring point due to the microbial processes occurring in the layer. The moisture measurements showed that infiltrating precipitation was efficiently drained away from the methane oxidation layer.
机译:工程生物覆盖系统中通过甲烷氧化减少垃圾填埋场的温室气体被认为是一种具有成本效益的技术,但到目前为止,仅在少数情况下对技术的效率进行了全面的定量评估。在丹麦的AV Miljo垃圾填埋场建造了第三代半被动生物覆盖系统。从三个渗滤液收集井中抽出的垃圾填埋气为生物覆盖系统供气。使用一种创新的气体分配系统来克服通常观察到的表面排放热点区域,该区域是由于气体向活性甲烷氧化层的分布不均而导致的,从而导致甲烷超载。进行的甲烷和二氧化碳表面浓度的筛选,以及使用生物覆盖物表面的通量室进行的通量测量,显示出均匀的分布,表明气体分布均匀。示踪气体测试的结果支持了这一点,其中将化合物HFC-134a在足够长的时间段内添加到进气口中,以使示踪气体在整个生物覆盖系统中保持平稳。对示踪气体在生物覆盖系统内的运动的研究表明,气体分布层中安装的气体探针中的气体分布非常均匀。而且,通过通量室技术测量,示踪气体从生物覆盖物表面流出的通量显示出空间上均匀的分布。已安装的探头记录了甲烷氧化层在不同深度的温度和水分含量,结果表明该层温度升高,在最深的测量点由于环境中发生了微生物过程,与环境温度的温差在25-50°C范围内。层。水分测量表明,渗透的沉淀物被有效地从甲烷氧化层中排出。

著录项

  • 来源
    《Waste Management》 |2017年第5期|213-225|共13页
  • 作者单位

    Department of Environmental Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Methane oxidation; Greenhouse gas; Waste disposal; Engineered solutions;

    机译:甲烷氧化;温室气体;废物处理;工程解决方案;

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