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Main events occurring in styrene microemulsion polymerization

机译:苯乙烯微乳液聚合中发生的主要事件

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摘要

A previously presented model with four states (conversion, active and inactive particles and micelles) is further tested with conversion versus time experimental data at 50, 60, and 70 degrees C, to recognize the main events occurring in styrene microemulsion polymerization. The S-shaped conversion-with no overprediction- and the bell-shaped active particles number concentration-evidencing diffusive effects at late stages-versus time data, are well described by the proposed model. It was found that: (i) transfer of monomer and surfactant from micelles to particles occurs, (ii) the capture of radicals by micelles is the only cause of particle nucleation, (iii) the rate coefficient of radical-entry-to-micelles is much smaller than that of exit-from-particles, and (iv) no coagulation between particles was detected. The Arrhenius dependency on temperature of the kinetic rate parameters is also reported. (c) 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 41720.
机译:使用在50、60和70摄氏度下的转化率与时间的实验数据,进一步测试了具有四个状态(转化,活性和非活性颗粒以及胶束)的先前提供的模型,以识别苯乙烯微乳液聚合中发生的主要事件。提出的模型很好地描述了S型转换(无过度预测)和钟形活性粒子数在后期相对于时间数据避免浓度扩散效应。发现:(i)发生了单体和表面活性剂从胶束向颗粒的转移;(ii)胶束捕获自由基是颗粒成核的唯一原因;(iii)自由基进入胶束的速率系数比颗粒的出口小得多,并且(iv)未检测到颗粒之间的凝结。还报告了Arrhenius对动力学速率参数温度的依赖性。 (c)2014 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,41720。

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