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Hydraulic Conductivity of Geosynthetic Clay Liners Permeated with Acid Mine Drainage

机译:酸性矿山排水渗透的土工合成粘土衬砌的水力传导率

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摘要

We investigated the potential use of two geosynthetic clay liners (GCLs) as basal liners for acid mine drainage (AMD) from a coal gangue impoundment. One contained natural sodium bentonite (GCL-N), while the other contained sodium-activated bentonite (GCL-S). Chemical compatibility and the effects of effective stress and type of bentonite were evaluated. The test results showed that permeation with a synthesized AMD caused the hydraulic conductivity of the GCL-N and GCL-S to increase by 33 and 104 times, respectively, at an effective stress of 10 kPa. Under an effective stress of 50 kPa, the hydraulic conductivity of the GCL-N and GCL-S permeated with AMD was 1.1 and 6.6 times higher, respectively, than the values based on permeation with distilled water. However, when the effective stress was increased to 200 kPa, the AMD had no negative effect on hydraulic performance. The difference in hydraulic conductivity because of the type of bentonite was only observed at effective stresses of 10 and 50 kPa, with the GCL-N consistently having less hydraulic conductivity than the GCL-S. Thus, the detrimental effects of AMD permeation and low quality bentonite can be countered by applying high effective stress to the GCLs. Both GCLs types may be suitable as effective basal liners for coal gangue impoundments where relatively high stress can be applied.
机译:我们调查了两种土工合成粘土衬里(GCL)作为从煤石蓄水池中酸性矿山排水(AMD)的基础衬里的潜在用途。一种包含天然钠膨润土(GCL-N),而另一种包含钠活化膨润土(GCL-S)。评价了化学相容性以及有效应力和膨润土类型的影响。测试结果表明,在10 kPa的有效应力下,合成AMD的渗透导致GCL-N和GCL-S的水力传导率分别增加33倍和104倍。在50 kPa的有效应力下,渗透到AMD的GCL-N和GCL-S的水力传导率分别比基于蒸馏水渗透的值高1.1倍和6.6倍。但是,当有效应力增加到200 kPa时,AMD对水力性能没有负面影响。仅在10和50 kPa的有效应力下才观察到由于膨润土类型引起的水力传导率差异,而GCL-N的水力传导率始终低于GCL-S。因此,可以通过向GCL施加高有效应力来抵消AMD渗透和劣质膨润土的不利影响。两种GCL类型都可能适合用作煤石蓄水池的有效基础衬层,可以施加较高的应力。

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