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Approaches to assess biocover performance on landfills

机译:评估垃圾掩埋场生物覆盖性能的方法

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Methane emissions from active or closed landfills can be reduced by means of methane oxidation enhanced in properly designed landfill covers, known as "biocovers". Biocovers usually consist of a coarse gas distribution layer to balance gas fluxes placed beneath an appropriate substrate layer. The application of such covers implies use of measurement methods and evaluation approaches, both during the planning stage and throughout the operation of biocovers in order to demonstrate their efficiency. Principally, various techniques, commonly used to monitor landfill surface emissions, can be applied to control biocovers. However, particularly when using engineered materials such as compost substrates, biocovers often feature several altered, specific properties when compared to conventional covers, e.g., respect to gas permeability, physical parameters including water retention capacity and texture, and methane oxidation activity. Therefore, existing measuring methods should be carefully evaluated or even modified prior to application on biocovers. This paper discusses possible strategies to be applied in monitoring biocover functionality. On the basis of experiences derived from investigations and large-scale field trials with compost biocovers in Austria, an assessment approach has been developed. A conceptual draft for monitoring biocover performance and recommendations for practical application are presented.
机译:通过在设计合理的垃圾掩埋场(称为“生物覆盖物”)中增强甲烷氧化,可以减少活跃或封闭垃圾掩埋场的甲烷排放。生物覆盖物通常由粗糙的气体分布层组成,以平衡放置在适当基材层下方的气体通量。这种覆盖物的应用意味着在计划阶段和整个生物覆盖物操作期间都使用测量方法和评估方法,以证明其效率。原则上,可以将通常用于监视垃圾掩埋场表面排放的各种技术应用于控制生物覆盖物。然而,特别是当使用工程材料如堆肥基质时,与常规覆盖物相比,生物覆盖物通常具有几种改变的特定性能,例如关于透气性,包括保水能力和质地的物理参数以及甲烷氧化活性。因此,在应用于生物覆盖物之前,应仔细评估甚至修改现有的测量方法。本文讨论了可能用于监视生物覆盖功能的策略。根据对奥地利堆肥生物覆盖物进行调查和大规模田间试验获得的经验,开发了一种评估方法。提出了监测生物覆盖物性能的概念草案和实际应用的建议。

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  • 来源
    《Waste Management》 |2009年第7期|2092-2104|共13页
  • 作者单位

    BOKU - University of Natural Resources and Applied Life Sciences Vienna, Institute of Waste Management, Muthgasse 107/3rd Floor, A-1190 Vienna, Austria;

    BOKU - University of Natural Resources and Applied Life Sciences Vienna, Institute of Waste Management, Muthgasse 107/3rd Floor, A-1190 Vienna, Austria;

    BOKU - University of Natural Resources and Applied Life Sciences Vienna, Institute of Waste Management, Muthgasse 107/3rd Floor, A-1190 Vienna, Austria;

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