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Improvement of permeability of waste sludge by mixing with slag or construction and demolition waste

机译:通过与矿渣或建筑废料混合来提高废泥的渗透性

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摘要

To determine the allowable ratio of waste sludge required to ensure an aerobic zone in the landfill, we investigated sludge permeability, which involved mixing sludge, the major landfill waste in Japan, at different mixing ratios with other wastes (slag and construction and demolition waste (C&D)). We measured parameters of sample permeability and analyzed parameters that exert a large influence on oxygen penetration depth with a simulation model accounting for both diffusion and convection driven by temperature gradients. We also determined the critical volumetric contents in which gas and/or water permeability change significantly when sludge is mixed with sand or gravel. From the results of the simulations, gas permeability of the layer, the difference between inside and outside temperatures and the oxygen consumption rate exert a large influence on the resulting oxygen penetration depth. The allowable ratio of sludge required to ensure an aerobic zone in the landfill was determined by considering the balance of the above three parameters. By keeping volumetric sludge content to below 25%, air convection and oxygen penetration depth of several meters were achieved in the modeling.
机译:为了确定确保垃圾填埋场中需氧区域所需的废污泥的允许比率,我们调查了污泥渗透率,其中涉及混合污泥(日本主要的垃圾填埋场废物)与其他废物(矿渣,建筑和拆除废物,光盘))。我们测量了样品渗透率的参数,并通过考虑温度梯度驱动的扩散和对流的模拟模型分析了对氧气渗透深度有很大影响的参数。我们还确定了当污泥与沙子或砾石混合时气体和/或水的渗透率显着变化的临界体积含量。根据模拟结果,该层的气体渗透性,内部和外部温度之间的差异以及氧气消耗率对最终的氧气渗透深度产生很大影响。通过考虑上述三个参数的平衡来确定确保垃圾填埋场好氧区所需的污泥的允许比率。通过将污泥的体积含量控制在25%以下,可在模型中实现空气对流和氧气渗透深度达几米。

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  • 来源
    《Waste Management》 |2009年第6期|1877-1884|共8页
  • 作者单位

    National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki 305-8506, Japan;

    National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki 305-8506, Japan;

    National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki 305-8506, Japan;

    National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki 305-8506, Japan;

    Center for Environmental Science in Saitama, 914 Kamitanadare, Kisai-machi, Saitama 347-0115, Japan;

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