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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Chemiluminescence of polyethylene: The comparative antioxidant effectiveness of phenolic stabilizers in low-density polyethylene
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Chemiluminescence of polyethylene: The comparative antioxidant effectiveness of phenolic stabilizers in low-density polyethylene

机译:聚乙烯的化学发光:酚稳定剂在低密度聚乙烯中的相对抗氧化效果

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摘要

The thermal stabilizing efficiency of a range of phenolic antioxidants (Lowinox CA22, Lowinox WSP, Lowinox TBP6, Irganox 3114, Irganox 1330, and Cyanox 1790) was determined in polyethylene films with chemiluminescence and hydroperoxide analysis and compared with standard systems based on Irganox 1010 and 1076. Under both nitrogen and oxygen conditions, good correlations were obtained between the two methods, confirming the importance and role of the hydroperoxide functionality and its stability in the oxidative process. Chemiluminescence decay rates correlated well with the initial corresponding hydroperoxide contents, which were measures of the antioxidant efficiencies in the polymer. The antioxidant structure and volatility (melting points) were important parameters to consider in any such correlations and related very much to the methodology and conditions of analysis (i.e., the temperature and atmosphere). Some of the antioxidants themselves under nitrogen exhibited strong chemiluminescence, which appeared to be a legacy associated with their manufacturing history and the partial oxidation of their structures, which gave peroxide functionalities. This was more notable for the complex antioxidant structures. Under oxygen, higher levels of chemiluminescence were observed, and this was indicative of some level of oxidation associated with the antioxidant structures. With temperature-ramping experiments, the chemiluminescence emission was significant and only observed at temperatures close to the melting points of the additives and/or polymer. Mobility was clearly an essential feature of this reaction emission because chemiluminescence was well observed when the molten state was reached. Under normal practical conditions, such levels of chemiluminescence, because of employed stabilizers, do not contribute significantly to the chemiluminescence emissions of stabilized polymer materials. (C) 2002 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 40: 3312-3326, 2002. [References: 29]
机译:在具有化学发光和氢过氧化物分析的聚乙烯薄膜中,测定了一系列酚类抗氧化剂(Lowinox CA22,Lowinox WSP,Lowinox TBP6,Irganox 3114,Irganox 1330和Cyanox 1790)的热稳定效率,并与基于Irganox 1010和1076.在氮气和氧气条件下,两种方法之间都获得了良好的相关性,证实了氢过氧化物官能度及其在氧化过程中的稳定性的重要性和作用。化学发光衰减速率与初始相应的氢过氧化物含量密切相关,氢过氧化物含量是聚合物中抗氧化剂效率的量度。抗氧化剂的结构和挥发性(熔点)是在任何这样的相关性中要考虑的重要参数,并且与分析的方法和条件(即温度和气氛)非常相关。某些抗氧化剂本身在氮气氛下表现出强烈的化学发光,这似乎与它们的生产历史以及其结构的部分氧化有关,这赋予了过氧化物功能性。对于复杂的抗氧化剂结构而言,这一点更为显着。在氧气下,观察到较高水平的化学发光,这表明与抗氧化剂结构相关的某种程度的氧化。在温度上升实验中,化学发光发射很明显,并且仅在接近添加剂和/或聚合物熔点的温度下观察到。流动性显然是该反应发射的基本特征,因为当达到熔融状态时可以很好地观察到化学发光。在正常的实际条件下,由于使用了稳定剂,因此这种化学发光水平对稳定的聚合物材料的化学发光发射没有显着贡献。 (C)2002 Wiley Periodicals,Inc. J Polym Sci Part A:Polym Chem 40:3312-3326,2002。[参考:29]

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