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首页> 外文期刊>Polymer Degradation and Stability >Physico-chemical aspects of polyethylene processing in an open mixer 2. Functional group formation on PE-LD processing
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Physico-chemical aspects of polyethylene processing in an open mixer 2. Functional group formation on PE-LD processing

机译:开式混合机中聚乙烯加工的物理化学方面2. PE-LD加工中形成官能团

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Processing of polyethylene in an open mixer is being re-examined. To complete the data already available in the literature, additional work has been performed with respect to the identification of the functional groups formed on oxidative degradation of polyethylene. To this avail, model hydroxyl and carbonyl compounds have been incorporated into low-density polyethylene (PE-LD) by melt blending. This procedure allowed confirmation of the formation of in-the-chain ketones and carboxylic acids, as expected. It also permitted exclusion of the presence of significant amounts of peracids and diacyl peroxides. The presence of peresters in the melt-processed samples is also rather unlikely. However, ester and γ-lactone groups are clearly identified, even if the corresponding concentrations are relatively small. There is no doubt about the presence of free and associated hydroperoxide groups already clearly identified in previous work. One of the most important tasks was clear identification of the groups absorbing at 3633 cm~(-1) as free secondary alcohols. This is especially important because if the hydroperoxide groups are the dominant hydroxyl group for polyethylene processed at low temperature, the alcohols become very rapidly the dominant hydroxyl species at temperatures above 180℃.
机译:正在重新检查开放式混合机中聚乙烯的加工。为了完成文献中已有的数据,就鉴定聚乙烯氧化降解形成的官能团进行了额外的工作。为此,已通过熔融共混将模型羟基和羰基化合物掺入低密度聚乙烯(PE-LD)中。如所期望的,该程序允许确认链内酮和羧酸的形成。还可以排除大量过酸和二酰基过氧化物的存在。在熔融加工的样品中也不太可能存在过酸酯。然而,即使相应的浓度相对较小,也清楚地识别出酯基和γ-内酯基团。毫无疑问,在先前的工作中已经清楚地确定了游离的和相关的氢过氧化物基团的存在。最重要的任务之一是清楚地识别在3633 cm〜(-1)处吸收的基团为游离仲醇。这一点特别重要,因为如果氢过氧化物基团是在低温下加工的聚乙烯的主要羟基,则在180℃以上的温度下,醇会很快成为主要羟基。

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