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Ageing Of Hdpe Geomembrane Exposed To Air, Water And Leachate At Different Temperatures

机译:在不同温度下暴露于空气,水和渗滤液中的Hdpe土工膜的老化

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The latest findings regarding the long-term performance and service life of HDPE geomembrane (GM) samples exposed to air, water and leachate are presented based on data from samples that have been ageing for 8-10 years. Some of the GM samples are in Stage II, some in Stage III and some have completed all three stages of the service life. The paper provides: (1) improved data on antioxidant depletion rates for GMs immersed in air, water and leachate; (2) estimates of antioxidant depletion time (Stage I) at typical liner temperatures in air, water and leachate and, based on this data, an estimate for a composite liner at typical liner temperatures; (3) data regarding the changes in the physical and mechanical properties of the GM samples with time; (4) a surface analysis of virgin and aged GMs; (5) an initial estimate of the induction time (Stage II) and polymer degradation time (Stage III) and service lives of GM in laboratory immersion tests; and (6) predictions of the service life of leachate immersed GM at typical landfill temperatures. Based on these predictions, it appears likely that the service life of the specific GM tested immersed in leachate is likely to exceed 700 years and will probably be of the order of 1000 years (or longer) at 20℃, more than 150 years and likely 225-375 years at 35℃ and more than 40 years and likely 50-90 years at 50℃. The service life in a liner configuration may be expected to be longer than predicted here for immersion in leachate.
机译:有关HDPE土工膜(GM)暴露于空气,水和渗滤液中的长期性能和使用寿命的最新发现,是基于已老化8-10年的样品的数据得出的。一些通用汽车样品处于第二阶段,一些处于第三阶段,一些已经完成了使用寿命的所有三个阶段。该论文提供:(1)浸泡在空气,水和渗滤液中的转基因生物的抗氧化剂消耗率的改进数据; (2)在空气,水和浸出液中典型衬里温度下的抗氧化剂消耗时间(阶段I)的估计,并基于此数据,在典型衬里温度下对复合衬里的估计; (3)有关转基因样品的物理机械性能随时间变化的数据; (4)对原始和老化的GMs进行表面分析; (5)在实验室浸没测试中对GM的诱导时间(阶段II)和聚合物降解时间(阶段III)以及使用寿命的初步估计; (6)在典型的垃圾填埋场温度下浸渗GM的使用寿命的预测。根据这些预测,浸入渗滤液中测试的特定GM的使用寿命很可能会超过700年,并且在20℃时可能会达到1000年(或更长时间),超过150年并且可能在35℃时为225-375年,在50℃时可能超过40-90年。衬里配置的使用寿命可能比此处预计的浸入渗滤液更长。

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