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Laboratory investigation of GCL performance for covering arsenic contaminated mine wastes

机译:实验室实验室研究GCL覆盖砷污染的矿山废物的性能

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The performance of three geosynthetic clay liners (GCLs) above arsenic-bearing gold mine tailings is examined based on a series of laboratory column experiments conducted over a two year period. The GCLs examined had either untreated or polymer-enhanced sodium bentonite and had different carrier geotextiles (a woven geotextile, a scrim-reinforced nonwoven geotextile, and a woven geotextile laminated with a polypropylene film). After 24 months, the hydraulic conductivity (k) of GCL with untreated sodium bentonite increased by almost an order of magnitude from 3 × 10 ~(-11)m/s to 2 × 10~(-10) m/s with the swell index decreasing from 26 mL/2 g to 7-11 mL/2 g and the exchangeable sodium percentage (ESP) decreasing from 65% to 12-21%. Samples of this GCL exhumed after 9 months of moisture uptake and cation exchange and then subjected to 15 extreme wet-dry cycles experienced an increase in k up to 6 × 10~(-10) m/s. The GCL with polymer-enhanced bentonite maintained k less than 5 × 10~(-11) m/s after 24 months (virgin k = 1 × 10~(-11)m/s) and experienced less cation exchange (ESP decreased from 78% to 39-42%) than the GCL with untreated bentonite. For this GCL, 15 extreme wet -dry cycles gave k<9×10~(-11)m/s provided that the soil stress was 15 kPa or higher (≥1.0m of cover soil above the GCL). The GCL with polymer-enhanced bentonite and carrier geotextile laminated with a polypropylene geofilm demonstrated the best performance with k<7 × 10~(-12)m/s even with exposure to the extreme wet-dry cycling. In all cases, the GCL prevented arsenic migration into the overlying cover soil over the two year period examined.
机译:根据为期两年的一系列实验室色谱柱实验,研究了含砷金矿尾矿上方三个土工合成粘土衬里(GCL)的性能。所检查的GCL含有未经处理的或聚合物增强的钠膨润土,并具有不同的载体土工布(编织的土工布,稀松布增强的非编织的土工布和层压有聚丙烯薄膜的编织的土工布)。 24个月后,膨润土未经处理的GCL的水力传导率(k)从3×10〜(-11)m / s上升到2×10〜(-10)m / s几乎增加了一个数量级。指数从26 mL / 2 g降低到7-11 mL / 2 g,可交换钠百分比(ESP)从65%降低到12-21%。在吸收水分和阳离子交换9个月后,该GCL样品被挖出,然后经过15个极端的干湿循环,k值增加到6×10〜(-10)m / s。聚合物增强膨润土的GCL在24个月后保持k小于5×10〜(-11)m / s(原始k = 1×10〜(-11)m / s),并且阳离子交换较少(ESP从比未经膨润土处理的GCL高出78%至39-42%)。对于该GCL,如果土壤压力为15 kPa或更高(GCL上方覆盖土壤≥1.0m),则15个极端干湿循环的k <9×10〜(-11)m / s。即使暴露于极端的干湿循环,由聚合物增强的膨润土和载体土工布与聚丙烯土工膜层压而成的GCL在k <7×10〜(-12)m / s的情况下仍表现出最佳性能。在所有情况下,GCL均在两年的时间内阻止了砷迁移到上覆地表土壤中。

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