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Monte Carlo simulation of free radical polymerization of styrene in a spinning disc reactor

机译:旋转盘式反应器中苯乙烯自由基聚合的蒙特卡罗模拟

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We report on modeling of free-radical polymerization of styrene in a stirred tank reactor-spinning disc reactor (STR-SDR) arrangement using Kinetic Monte Carlo (KMC) simulation algorithm. The prepolymer from batch reactor was transferred to SDR and simulation results were validated comparing conversion and molecular weight of the generated molecules in the batch reactor and SDR with corresponding values from experimental data. The developed model was also applied to simulate SDR under a range of different operating conditions to accurately predict the resulting polymer properties. In this way, different prepolymer conversions were theoretically adapted to probe the evolution in chain microstructure until polymerization terminated on the rotating disc. The developed computer code based on KMC approach enables precise monitoring of molecular-level events in the reactor like variations in molar concentration of macroradicals and molecular weight distribution with time, and provides a greater insight into the STR-SDR cascade polymerization of styrene monomer.
机译:我们报告了使用动力学蒙特卡洛(KMC)模拟算法的搅拌釜反应器-旋转盘式反应器(STR-SDR)布置中苯乙烯自由基聚合的建模。将间歇反应器中的预聚物转移到SDR中,并将间歇反应器和SDR中生成的分子的转化率和分子量与实验数据中的相应值进行比较,从而验证了模拟结果。所开发的模型还用于在各种不同的操作条件下模拟SDR,以准确预测所得聚合物的性能。以这种方式,理论上使不同的预聚物转化率适合于探测链微结构的演变,直到聚合终止在旋转盘上为止。基于KMC方法开发的计算机代码能够精确监控反应器中的分子级事件,例如大自由基的摩尔浓度和分子量分布随时间的变化,并为苯乙烯单体的STR-SDR级联聚合提供了更深入的了解。

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