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首页> 外文期刊>Polymer Degradation and Stability >Monitoring the degradation of stabilization systems in polypropylene during accelerated aging tests by liquid chromatography combined with atmospheric pressure chemical ionization mass spectrometry
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Monitoring the degradation of stabilization systems in polypropylene during accelerated aging tests by liquid chromatography combined with atmospheric pressure chemical ionization mass spectrometry

机译:通过液相色谱与大气压化学电离质谱联用监测加速老化测试期间聚丙烯中稳定体系的降解

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摘要

Degradation pathways of three commonly used antioxidants were successfully studied by using accelerated aging tests for polymers. Additionally, thermal stability and resistance to discoloration of seven stabilizers were investigated by aging pure stabilizers dissolved in the polymer-mimicking solvent squalane. Methods based on high-performance liquid chromatography hyphenated with highly sensitive tandem mass spectrometric detection (HPLC-MS) were developed for structural elucidation of degradation products. Subsequent quantification was done using UV-detection. While Irganox 1330, Irganox 3114 and Cyanox 1790 showed a similar degradation mechanism with highly colored decomposition products, no corresponding oxidized species could be found for other stabilizers and less discoloration was observed. For Irganox 1010, hydrolysis was the preferred degradation mechanism, leading to products with an increased solubility in water. Therefore this stabilizer is less suitable for materials intended for water applications. In the aged materials previously unknown degradation mechanisms were observed for Irganox 1010 and Irgafos 168 which also contribute to the inhibition of autoxidation of the polymer.
机译:通过对聚合物进行加速老化测试,成功研究了三种常用抗氧化剂的降解途径。此外,通过溶解在模拟聚合物溶剂角鲨烷中的纯稳定剂的老化,研究了七个稳定剂的热稳定性和抗变色性。建立了基于高效液相色谱和高灵敏度串联质谱检测(HPLC-MS)联用的方法,用于结构降解产物的阐明。随后的定量使用UV检测进行。尽管Irganox 1330,Irganox 3114和Cyanox 1790表现出类似的降解机理,但分解产物的颜色很深,但没有发现其他稳定剂的相应氧化物种,并且观察到的变色较少。对于Irganox 1010,水解是首选的降解机理,从而导致产品在水中的溶解度增加。因此,该稳定剂不太适合用于水的材料。在老化的材料中,先前观察到的Irganox 1010和Irgafos 168的降解机理未知,这也有助于抑制聚合物的自氧化。

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  • 来源
    《Polymer Degradation and Stability》 |2013年第9期|1655-1661|共7页
  • 作者单位

    Johannes Kepler-University Linz, Institute of Analytical Chemistry, AltenbergerstraJSe 69, 4040 lira, Austria;

    Johannes Kepler-University Linz, Institute of Analytical Chemistry, AltenbergerstraJSe 69, 4040 lira, Austria;

    Johannes Kepler-University Linz, Institute of Polymeric Materials and Testing, AltenbergerstraJSe 69, 4040 Linz, Austria;

    Johannes Kepler-University Linz, Institute of Polymeric Materials and Testing, AltenbergerstraJSe 69, 4040 Linz, Austria;

    ACRU Kunststofftechnik GmbH, lng.-Pesendorfer-Str. 31, 4050 Bad Hall, Austria;

    Johannes Kepler-University Linz, Institute of Analytical Chemistry, AltenbergerstraJSe 69, 4040 lira, Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phenolic antioxidants; Degradation pathway; Discoloration; Oxidation; Hydrolysis;

    机译:酚类抗氧化剂;降解途径;变色;氧化;水解;

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