Assessment of Polyethylene Geomembrane Properties after Accelerated Thermal Ageing

A. Hamma, Addessalam Bezza, S. Bouhelal
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Abstract

Application temperatures and exposure environments are among the causes of premature antioxidant loss in polymer geomembranes. Therefore, over the long term, polymer degradation takes place which is reflected in geomembrane properties. In this work, accelerated thermal ageing of polyethylene geomembrane was carried out in a climatic chamber at 70℃ with 21% oxygen. The evolution of tensile properties, puncture resistance, and shore D hardness with exposure time was assessed. Changes in chemical and crystalline structure and melt flow index were made. According to the findings, geomembrane surface oxidation takes place in the polyethylene matrix after 9 months of exposure. This fact is confirmed by evaluating carbonyl, vinyl, and hydroxyl indexes. Uniaxial tensile properties, puncture resistance, and shore D hardness indicated slight changes after one year of exposure. While the crystallinity index, determined by XRD measurement, has shown an increase with exposure. Further, melt flow index measurements confirmed the absence of chain scission during the early exposure periods. However, for longer periods, chain scission reactions occurred and MI values increased moderately after five months of accelerated aging. All results indicated no significant bulk degradation while maintaining a certain mechanical resistance with applications under a temperature of 70℃. This temperature value is relevant in a waste storage center, but the studied geomembrane is not recommended for this case.
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加速热老化后聚乙烯土工膜的性能评价
应用温度和暴露环境是聚合物土工膜过早抗氧化损失的原因之一。因此,从长期来看,聚合物降解发生,这反映在土工膜的性能上。在此工作中,在70℃和21%氧气的气候室中对聚乙烯土工膜进行了加速热老化。评估了拉伸性能、抗穿刺性能和邵氏硬度随暴露时间的变化。化学、晶体结构和熔体流动指数发生了变化。根据研究结果,土工膜表面氧化发生在聚乙烯基质暴露9个月后。这一事实通过评价羰基、乙烯基和羟基指数得到证实。单轴拉伸性能、抗穿刺性能和邵氏硬度在暴露一年后略有变化。而结晶度指数,通过x射线衍射测定,显示出随着曝光的增加。此外,熔体流动指数测量证实了在早期暴露期间没有链断裂。然而,在较长的时间内,加速老化5个月后,发生了链断裂反应,MI值适度增加。所有结果表明,在70℃的温度下,材料没有明显的体积退化,同时保持一定的机械阻力。该温度值与废物储存中心有关,但所研究的土工膜不适合这种情况。
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