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An approach to high-density polyethylene (HDPE) geomembrane selection for challenging design requirements

机译:具有挑战设计要求的高密度聚乙烯(HDPE)土工膜选择的方法

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摘要

An approach for selecting a high-density polyethylene (HDPE) geomembrane (GMB) for a long design life is described and illustrated for five 2 mm thick textured GMBs when immersed in a simulated municipal solid waste leachate (L3) and two simulated leachates representative of low-level radioactive waste leachates (L7 and L9) for 9-16 months at a range of temperatures. Although made from the same nominal resin, substantial differences are reported in both the initial properties and the rate of antioxidant depletion for the five GMBs. At an expected operating liner temperature of 10 degrees C and immersed in L3, the projected time to antioxidant depletion for the five GMBs ranges from 125 to over 2000 years. The antioxidant depletion in leachates L7 and L9 were similar or slower than in leachate L3. There was no evidence of traditional thermal-oxidative degradation reported over the 9-16 months of monitoring; however, there was a significant reduction in stress crack resistance due to physical ageing ranging between 30% and 70% of the initial value. Two GMBs are considered highly likely to have service life well in excess of the required design life of 550 years. It is suggested that the proposed approach could be adopted for selecting GMBs for other projects that require a long design life.
机译:介绍了一种选择高密度聚乙烯(HDPE)土工膜(GMB)以延长设计寿命的方法,并举例说明了五种2mm厚的纹理GMB在模拟城市固体废物渗滤液(L3)和两种代表低放射性废物渗滤液(L7和L9)的模拟渗滤液中浸泡9-16个月的情况。尽管由相同的标称树脂制成,但据报道,这五种转基因植物的初始性质和抗氧化剂消耗率都存在显著差异。在预期运行温度为10摄氏度且浸入L3的情况下,五种转基因生物的抗氧化物消耗预计时间从125年到2000年不等。L7和L9渗滤液中的抗氧化物消耗与L3渗滤液中的相似或较慢。在9-16个月的监测期间,没有报告传统热氧化降解的证据;然而,由于在初始值的30%到70%之间的物理老化,抗应力裂纹能力显著降低。两个GMB的使用寿命极有可能远远超过550年的设计寿命。建议在其他需要较长设计寿命的项目中选择GMB时,可采用建议的方法。

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