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The effectiveness of 'clay' liners as basal isolation of landfills: a case study

机译:“粘土”衬垫作为填埋场基础隔离的有效性:一个案例研究

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A sodium bentonite is being used in the basal-isolation of landfills installed on strongly fractured granitic rocks of N Portugal (NW Iberia). To evaluate the performance of this "clay" as the ultimate impermeable basal barrier, a detailed study was carried out of the granite fracture network; the Na-bentonite was tested to characterize its mechanical and geotechnical behavior; geophysical surveys were made to search for landfill leakage and the waters found around the landfill were geochemically characterized. Fractures in the granite are usually open and devoid of mineral infillings or clay materials and, thus, permeability of the granite is very high. Dispersal of contaminants can be further enhanced by the position of the landfill on a high steep-sided ridge. Geophysical and geochemical data show evidence for seepage and dispersion of pollutants, which means that the clay failed as an ultimate isolation barrier against seepage. This investigation shows that this can be due to fracturing of the clay under load and/or to its non-homogeneous saturation and extreme shrinking character upon drying, which are accompanied by the formation of extensive cracking. Observations and experimental results suggest that the use of synthetic "clays" in the safe building of landfill bottom liners needs further research, and extreme care should be taken in preventing that clay water content suffers large variations after saturation, as this process considerably degrades the mechanical behavior and sealing properties of the studied Na-bentonite.
机译:膨润土钠被用于在葡萄牙北部(西北部伊比利亚)强烈破裂的花岗岩上安装的垃圾填埋场的基础隔离。为了评估这种“粘土”作为最终不可渗透的基础屏障的性能,对花岗岩的裂缝网络进行了详细的研究。对钠膨润土进行了测试,以表征其力学和岩土性能;进行了地球物理调查以寻找填埋场渗漏,并对填埋场周围发现的水进行了地球化学表征。花岗岩中的裂缝通常是开放的,没有矿物填充物或粘土材料,因此,花岗岩的渗透性非常高。通过将垃圾填埋场放在高陡峭的山脊上,可以进一步增强污染物的扩散。地球物理和地球化学数据显示了污染物的渗漏和扩散证据,这意味着粘土未能作为阻止渗漏的最终隔离屏障。该研究表明,这可能是由于粘土在载荷作用下破裂和/或由于其干燥后非均质的饱和度和极度的收缩特性所致,同时还伴随着大范围的裂纹形成。观察和实验结果表明,在安全的垃圾填埋场底部衬里中使用合成“粘土”需要进一步研究,应格外小心,以防止饱和后粘土水含量发生较大变化,因为此过程会大大降低机械性能。钠膨润土的性能和密封性能。

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