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首页> 外文期刊>Journal of Applied Polymer Science >Photo-oxidation of polymers: Validation of oxygen uptake and relationship with extent of hydroperoxidation
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Photo-oxidation of polymers: Validation of oxygen uptake and relationship with extent of hydroperoxidation

机译:聚合物的光氧化:氧吸收的验证以及与氢过氧化程度的关系

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In this piece of work we focused our attention on the peroxidation step and alongside considered hydroperoxides as probes for the overall oxidative process. This technique of oxygen uptake actually monitors the amount of oxygen consumed during polymer degradation. Our present work aimed to investigate this technique to evaluate the oxygen uptake during in situ photoirradiation, under controlled atmosphere. Our experimental results clearly elucidate that the oxygen consumption data accounts for a very early stage of aging during the photo-oxidation of polymers and provides us with an accurate and sensitive diagnosis about the formation of hydroperoxides. A straight-line relationship was exhibited under our experimental conditions while observing a relation between oxygen pressure drop and hydroperoxide content in the polymer. This correlation was dependent upon the nature of polymer and of course on the aging conditions (temperature, irradiation, oxidative atmosphere). The impact of environmental atmosphere on aging was particularly kept in mind. To conclude, we emphasized that oxygen uptake is a promisingly powerful tool to identify the impact of the overall environmental parameters on the polymer photoaging. An important implication was on the understanding of atmospheric factors (including pollutants such as O-3, NOx, etc.), which is usually given minor importance, on the degradation of polymer upon outdoor weathering. (c) 2005 Wiley Periodicals, Inc. J Appl Polym Sci 99: 2238-2244, 2006
机译:在这项工作中,我们将注意力集中在过氧化步骤上,同时将氢过氧化物作为整个氧化过程的探针。这种吸氧技术实际上是监测聚合物降解过程中消耗的氧气量。我们目前的工作旨在研究该技术,以评估在受控气氛下原位光辐照过程中的氧气吸收。我们的实验结果清楚地表明,耗氧数据说明了聚合物光氧化过程中老化的非常早期阶段,并为我们提供了关于氢过氧化物形成的准确而敏感的诊断。在我们的实验条件下表现出直线关系,同时观察到氧压降与聚合物中氢过氧化物含量之间的关系。这种相关性取决于聚合物的性质,当然还取决于老化条件(温度,辐射,氧化气氛)。特别要注意环境气氛对老化的影响。总而言之,我们强调了吸氧是一种有前途的强大工具,可用来确定总体环境参数对聚合物光老化的影响。一个重要的含义是对大气因素(包括O-3,NOx等污染物)的理解,而这些因素通常在室外风化作用下对聚合物的降解方面作用不大。 (c)2005 Wiley Periodicals,Inc. J Appl Polym Sci 99:2238-2244,2006

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