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Final Cover Performance in the Australian Environment -The A-ACAP Field trials

机译:澳大利亚环境中的最终覆盖性能-A-ACAP现场试验

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Containment of waste or other contaminated materials has been based on entombing the material and preventing infiltrating rainfall from draining into the waste. The A-ACAP field trials were conducted in 5 Australian states with climatic regimes from tropical to almost semi-arid and investigated the water balance in compacted clay barriers approved for each site and phytocaps using large non-weighing lysimeters. These trials showed that the compacted clay barriers still allow drainage (0 - 233 mm/yr) and within a short period of time show evidence of desiccation cracking. Although the clay may swell upon wetting, the reduced permeability remains. Drainage is more difficult to predict from these caps using readily available water balance models, due to the presence of these preferential pathways, as the majority of models assume moisture moves through the soil mass. The A-ACAP also showed that phytocaps can perform equivalently (0 - 255 mm/yr) and potentially outperform compacted clay barrier caps, particularly when predictability, sustainability and recovery from damage are taken into account. The keys to designing these systems are understanding the performance of the natural system, matching the seasonality of rainfall with plant growth and rapidly establishing vegetation on the capping system.
机译:废物或其他受污染材料的围堵是基于将材料包埋并防止渗入的雨水排入废物。在澳大利亚的5个州进行了A-ACAP田间试验,气候条件从热带到几乎半干旱,并使用大型非称重测渗仪研究了批准用于每个站点和植物冠的压实粘土屏障中的水平衡。这些试验表明,压实的粘土屏障仍然允许排水(0-233毫米/年),并且在很短的时间内显示出干燥裂纹的迹象。尽管粘土在润湿时可能溶胀,但仍保留了降低的渗透性。由于这些优先途径的存在,使用现成的水平衡模型很难从这些上限预测排水量,因为大多数模型都假设水分在土壤中流动。 A-ACAP还显示,植物盖的性能相当(0-255毫米/年),并可能胜于压实的粘土屏障盖,特别是在考虑到可预测性,可持续性和从破坏中恢复的情况下。设计这些系统的关键是了解自然系统的性能,使降雨的季节性与植物生长相匹配,并在封顶系统上快速建立植被。

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