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Exhumation and performance of an Antarctic composite barrier system after 4 years exposure

机译:4年后南极复合屏障系统的挖掘和性能

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An Antarctic biopile using a composite liner (high-density polyethylene geomembrane (GMB) over a geosynthetic clay liner (GCL)) was constructed on a coarse granular subgrade to contain hydrocarbon-contaminated soil and leachate. The soil was remediated after 4 years and the biopile was decommissioned. The liner was exhumed to assess the properties and performance of the GMB and GCL. There was no significant change in the GMB index properties. Although cobbles and coarse gravel of the subgrade had left indentations in the GMB, implying tensile strains that could impact long-term performance, there were no holes. There was significant variability in the hydration of the GCL (from 10% to 220%) and in the underlying subgrade soil water content (from 5% to 30%). This reflects the complexity of the subgrade and groundwater flow in the Antarctic environment. The exhumed GCL specimens had low hydraulic conductivity (1 x 10(-11) to 7 x 10(-11) m/s) at 13 kPa. Soil samples from below the composite liner showed no detectable hydrocarbons and confirmed no migration through the barrier. It is concluded that the composite barrier contained the leachate and biopile soil over the 4 years in service in the extreme Antarctic conditions.
机译:在粗颗粒路基上建造了一个使用复合衬垫(高密度聚乙烯土工膜(GMB)覆盖土工合成粘土衬垫(GCL))的南极生物膜,以容纳碳氢化合物污染的土壤和渗滤液。4年后对土壤进行了修复,生物文件被停用。挖掘衬垫是为了评估GMB和GCL的性能和性能。GMB指数性质没有显著变化。尽管路基的鹅卵石和粗砾石在GMB中留下了凹痕,这意味着拉伸应变可能会影响长期性能,但没有孔洞。GCL的水化率(从10%到220%)和底层路基土壤含水量(从5%到30%)存在显著差异。这反映了南极环境中路基和地下水流动的复杂性。挖掘出的GCL样本在13 kPa时具有较低的导水率(1 x 10(-11)至7 x 10(-11)m/s)。复合衬垫下方的土壤样本未显示出可检测到的碳氢化合物,并确认没有通过屏障的迁移。得出结论,在极端南极条件下使用的4年中,复合屏障包含渗滤液和生物膜土壤。

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