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Kinetics of isothermal thermooxidative degradation of poly(vinyl chloride)/chlorinated polyethylene blends

机译:聚氯乙烯/氯化聚乙烯共混物的等温热氧化降解动力学

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摘要

The thermooxidative degradation of poly(yjnyl chloride)/chlorinated polyethylene blends of different compositions was investigated by means of isothermal thermogravimetry in flowing atmosphere of synthetic air at temperatures 240-270℃. The main degradation processes are dehydrochlorination of PVC and CPE. For calculation of the apparent activation energy and apparent pre-exponential factor two kinetic methods were used: isoconversional method and Prout-Tompkins method. True compensation dependency between Arrhenius parameters, obtained using Prout-Tompkins model, was found. Calculated kinetic parameters of isothermal thermooxidative degradation are close to those from non-isothermal degradation and confirm the assumption of the main degradation process in PVC/CPE blends.
机译:在240-270℃的合成空气流动气氛中,通过等温热重分析法研究了不同组成的聚(氯乙烯)/氯化聚乙烯共混物的热氧化降解。主要的降解过程是PVC和CPE的脱氯化氢。为了计算表观活化能和表观指数前因子,使用了两种动力学方法:等转化法和Prout-Tompkins法。发现使用Prout-Tompkins模型获得的Arrhenius参数之间的真实补偿依赖性。等温热氧化降解的动力学参数与非等温降解的动力学参数接近,证实了PVC / CPE共混物中主要降解过程的假设。

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