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首页> 外文期刊>Journal of Chemical Engineering of Japan >A Simulation Method to Predict Time-Evolution of Particle Size Distribution in Microemulsion Polymerization of Styrene
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A Simulation Method to Predict Time-Evolution of Particle Size Distribution in Microemulsion Polymerization of Styrene

机译:苯乙烯微乳液聚合中预测粒度分布时间演变的模拟方法

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The method for simulating the time-evolution of the particle size distribution of polymer particles generated in the O/W microemulsion polymerization of styrene initiated by a water-soluble initiator is proposed based on the following kinetic model:The radicals generated in the aqueous phase enter the micelles,propagate therein and transform them into new polymer particles with (1) negligible bimolecular termination in the aqueous phase,and with (2) negligible entry of the second radical into the preformed polymer particles,and hence,(3) propagation of growing radicals stops only by a chain transfer reaction to monomer,(4) growth of polymer particles stops only by the desorption of the radicals generated by chain transfer out of the particles,and (5) the radicals produced by chain transfer may desorb from the particle or initiate propagation in the same particle.The average diameter calculated from the simulated particle size distribution agrees well with that measured experimentally by dynamic light scattering.The simulated particle size distribution agrees with that measured experimentally with a transmission electron microscope.
机译:基于以下动力学模型,提出了一种模拟由水溶性引发剂引发的苯乙烯的O / W微乳液聚合中产生的聚合物颗粒粒径分布随时间变化的方法:胶束在其中传播并转化为新的聚合物颗粒,其中(1)在水相中的双分子端基可忽略不计,并且(2)第二个自由基在预形成的聚合物颗粒中的可忽略不计,因此,(3)生长的传播自由基仅通过与单体的链转移反应而停止,(4)聚合物颗粒的生长仅通过由链转移产生的自由基的解吸而停止,并且(5)通过链转移产生的自由基可能从颗粒解吸或开始在同一粒子中传播。根据模拟的粒度分布计算得出的平均直径与实验测得的平均值非常吻合b y动态光散射。模拟的粒径分布与透射电子显微镜实验测得的粒径分布一致。

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