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Effect of high temperatures on antioxidant depletion from different HDPE geomembranes

机译:高温对不同HDPE土工膜抗氧化剂消耗的影响

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The effect of elevated temperatures, typically 95-115 ℃, on antioxidant depletion from a high-density polyethylene (HDPE) geomembrane (GMB) incubated in air, water and synthetic leachate is examined. It is shown that the antioxidant depletion in synthetic leachate at 95-115 ℃ is consistent with what would be expected from Arrhenius modeling based on data from lower temperatures (25-85 ℃). A similar finding is reached for incubation in air. However, when incubated in water the antioxidant depletion is more complicated. At temperatures above 100 ℃ a four-parameter exponential model was needed to fit oxidative induction time data that exhibited quite different early-time and later-time depletion rates. The early-time depletion rate decreases with an increase of the temperature while the later-time depletion rates follow the more typical pattern of increasing with increasing temperature. Three additional HDPE GMBs with different antioxidant packages are examined at elevated temperatures in air. The GMB with the lowest initial standard (Std) oxidative induction time (OIT) and without hindered amine light stabilizer (HALS) has the longest antioxidant depletion stage based on Std-OIT at these elevated temperatures. GMBs stabilized with HALS showed only a slight change in their high pressure OIT during the current study. It is shown also that degradation in physical properties can start at Std-OIT values above the residual OIT values.
机译:考察了高温(通常为95-115℃)对高密度聚乙烯(HDPE)土工膜(GMB)在空气,水和合成渗滤液中培养的抗氧化剂消耗的影响。结果表明,合成渗滤液中95-115℃的抗氧化剂消耗量与基于较低温度(25-85℃)的数据的Arrhenius模型所预期的一致。在空气中孵化也有类似的发现。但是,在水中孵育时,抗氧化剂的消耗更为复杂。在高于100℃的温度下,需要四参数指数模型来拟合氧化诱导时间数据,该数据显示出早期和晚期的消耗速率完全不同。早期消耗率随着温度的升高而降低,而后期消耗率遵循更典型的随温度升高的模式。在空气中升高的温度下,还要检查另外三个带有不同抗氧化剂包装的HDPE GMB。在这些升高的温度下,基于Std-OIT的具有最低初始标准(Std)氧化诱导时间(OIT)且没有受阻胺光稳定剂(HALS)的GMB具有最长的抗氧化剂耗尽阶段。在当前研究中,用HALS稳定的GMB在高压OIT中仅显示出轻微变化。还表明,物理性能的下降可以从高于残余OIT值的Std-OIT值开始。

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