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Degradation of an HDPE geomembrane without HALS in chlorinated water

机译:不含HALS的HDPE土工膜在氯化水中的降解

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The degradation of a 1.5 mm high-density polyethylene geomembrane without hindered amine light stabilizers (HALS) immersed in four chlorinated water solutions is examined over a 3-year period at five temperatures (25, 40, 65, 75, and 85 degrees C). To simulate field conditions in potable water reservoirs in which high successive chlorine doses are introduced into the system, the field mass loading of the chlorine was simulated in the laboratory instead of the more typical constant average chlorine concentration. The solutions had a boosted free chlorine content selected to maintain the same ratio of the mass of free chlorine in the water to the surface area of the geomembrane in the immersion jars, as experienced in field applications, for four nominal free chlorine concentrations (content of 0.5, 1.0, 2.5, and 5.0 ppm). The depletion of antioxidants and decrease in stress crack resistance (SCR) for a geomembrane immersed in a solution with 0.5 ppm free chlorine was much faster than in deionised and tap waters or synthetic municipal solid waste leachate. At this concentration, the geomembrane reached complete brittleness after 6 months of incubation at 85 degrees C. Arrhenius modelling is used to predict the length of the antioxidant depletion stage and the time to brittleness (reaching SCR = 50 h) in chlorinated water.
机译:在3年的时间内,在五个温度(25、40、65、75和85摄氏度)下检查了1.5毫米高密度聚乙烯土工膜的降解情况,该膜没有浸入四种氯化水溶液中的受阻胺光稳定剂(HALS)。 。为了模拟将连续高剂量氯引入系统的饮用水水库的田间条件,在实验室中模拟了氯的现场质量负荷,而不是更典型的恒定平均氯浓度。如在野外应用中所经历的那样,对于四个标称游离氯浓度(溶液的含量,溶液中的游离氯含量都有所提高,以使水中游离氯质量与浸入罐中土工膜表面积的比率保持相同)。 0.5、1.0、2.5和5.0 ppm)。对于浸入具有0.5 ppm游离氯的溶液中的土工膜而言,抗氧化剂的耗竭和抗应力开裂性(SCR)的降低比去离子水和自来水或合成市政固体垃圾渗滤液中的要快得多。在此浓度下,土膜在85摄氏度的温度下孵育6个月后达到完全脆性。使用Arrhenius模型预测抗氧化剂消耗阶段的时间和在氯化水中脆性的时间(达到SCR = 50 h)。

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