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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Water extraction and degradation of a sterically hindered phenolic antioxidant in polypropylene films
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Water extraction and degradation of a sterically hindered phenolic antioxidant in polypropylene films

机译:聚丙烯薄膜中的水萃取和位阻酚类抗氧化剂的降解

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Water extraction of the sterically hindered phenolic antioxidant Irganox 1010 from three polypropylene based polymeric films has been studied in isothermal conditions at 40, 50 and 70 degreesC. The films made of isotactic polypropylene and two different heterophasic polypropylene/ethylene-propylene monomers copolymers (PP/EPM copolymers) were immersed in closed water baths under nitrogen atmosphere in order to minimise the oxidative process. The amounts of antioxidant that have left the films and are dissolved in the water bath have been monitored over time by HPLC analysis and faster extraction kinetics were observed from the polymers than from the homopolymer. No appreciable amounts of Irganox IM were found in the extraction water at any time, whereas its degradation by-products were found by LC/MS analysis in the extraction water. The experimental extraction kinetics from the three polymers were compared with the theoretical curves based on the Fick's diffusion equations solved both for a semi-infinite (degradation reaction faster than extraction) and a finite system (no degradation reaction) and Irganox 1010 was demonstrated to be extracted by water from polypropylene based material faster than predictable only on the basis of the values of its coefficient of diffusion in the polymers and of partition between water and polymer. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在40、50和70摄氏度的恒温条件下,已经研究了从三种聚丙烯基聚合物薄膜中提取位阻酚类抗氧化剂Irganox 1010的水。将由等规聚丙烯和两种不同的多相聚丙烯/乙烯-丙烯单体共聚物(PP / EPM共聚物)制成的薄膜浸入氮气气氛下的封闭水浴中,以使氧化过程最小化。随着时间的流逝,已经通过HPLC分析监测了离开膜并溶解在水浴中的抗氧化剂的量,并且从聚合物观察到的萃取动力学比从均聚物观察到的萃取动力学更快。任何时候在萃取水中均未发现明显量的Irganox IM,而通过萃取水中的LC / MS分析发现其降解副产物。将三种聚合物的实验萃取动力学与基于Fick扩散方程的理论曲线进行了比较,该方程求解了半无限(降解反应比萃取更快)和有限系统(无降解反应),并证明了Irganox 1010是从聚丙烯基材料中用水萃取的速度比仅基于其在聚合物中的扩散系数以及水与聚合物之间的分配系数值可预测的速度要快。 (C)2004 Elsevier Ltd.保留所有权利。

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