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Hydroperoxide build-up in the thermal oxidation of polypropylene — A kinetic study

机译:聚丙烯热氧化过程中氢过氧化物的堆积—动力学研究

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摘要

The thermal oxidation of unstabilised polypropylene (PP) was studied at 80 ℃ under various oxygen pressures: 0.02, 0.5 and 5.0 MPa, and, under 5.0 MPa oxygen pressure at various temperatures: 60, 80, 100 and 120 ℃. Hydroperoxides were titrated using a chemical titration method and modulated DSC (taking an enthalpy of —325 kJ mol(-1)). Starting from a previous kinetic analysis of carbonyl growth in same exposure conditions, we have tried to simulate experimental results by a model based on the classical mechanistic scheme in which initiation results from POOH (mainly bimolecular) decomposition. The model, which takes into account substrate consumption and does not rely on usual simplifying assumptions (steady state for radicals, long kinetic chains, interrelations between termination rate constants), generates kinetic curves with the same shape as experimental ones and predicts well the effect of O_2 pressure and temperature on hydroperoxide and carbonyl concentrations.
机译:在80℃,0.02、0.5和5.0 MPa的氧气压力下研究了不稳定聚丙烯(PP)的热氧化,在5.0 MPa的60、80、100和120℃的氧气压力下,进行了热氧化。使用化学滴定法和调制的DSC(具有-325 kJ mol(-1)的焓)对氢过氧化物进行滴定。从先前在相同暴露条件下羰基生长的动力学分析开始,我们尝试通过基于经典机理方案的模型来模拟实验结果,其中经典机理是由POOH(主要是双分子)分解引发的。该模型考虑了底物消耗,并且不依赖于通常的简化假设(自由基的稳态,长的动力学链,终止速率常数之间的相互关系),生成的动力学曲线与实验形状相同,并很好地预测了O_2的压力和温度对过氧化氢和羰基浓度的影响。

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