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Hydrolytic stability of phenolic antioxidants and its effect on their performance in high-density polyethylene

机译:酚类抗氧化剂的水解稳定性及其在高密度聚乙烯中的性能影响

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摘要

Comparative experiments were carried out with two hindered phenolic antioxidants of different chemical structures to determine their hydrolytic stability and performance in the presence of extractive media. Hostanox O10~(~R) (HO10) and Hostanox O3~(~R) (HO3) were hydrolysed in solution and the reaction products were identified by HPLC-ESI-MS analysis. The efficiency of the two additives was checked by standard multiple extrusion test in HDPE. Samples were stored in water for a year to determine their hydrolytic stability under more practical conditions. The results proved that Hostanox O10 is a better processing stabilizer than HO3, while the latter performs much better under the effect of extractive media. Besides hydrolysis other reactions, mainly the splitting off one or more alkyl groups from the original molecule, may also take place during storage at 80℃ in water, which may also lead to a decrease in stabilizer efficiency. The results clearly prove that high efficiency in a short-term laboratory test is not the only criterion to rank a stabilizer. Under long term conditions such as storage in an extractive environment HO3 outperforms HO10.
机译:用两种不同化学结构的受阻酚类抗氧化剂进行比较实验,以确定它们在萃取介质存在下的水解稳定性和性能。将Hostanox O10〜(〜R)(HO10)和Hostanox O3〜(〜R)(HO3)在溶液中水解,并通过HPLC-ESI-MS分析鉴定反应产物。两种添加剂的效率通过HDPE中的标准多次挤出测试进行了检查。样品在水中保存一年,以测定其在更实际条件下的水解稳定性。结果证明,Hostanox O10比HO3是更好的加工稳定剂,而后者在萃取介质的作用下表现更好。除水解以外,其他反应(主要是从原始分子中分离出一个或多个烷基)也可能在80℃的水中储存过程中发生,这也可能导致稳定剂效率下降。结果清楚地证明,短期实验室测试中的高效率并不是稳定剂排名的唯一标准。在长期条件下,例如在萃取环境中的储存,HO3优于HO10。

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