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Analysis of Particle Formation under Monomer-Starved Conditions in Emulsion Polymerization Reactors

机译:乳液聚合反应器中单体饥饿条件下的颗粒形成分析

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An important characteristic of monomer-starved nucleation in semibatch reactors is that the rate of growth of particles is controlled by the rate of monomer addition. The reduced rate of growth of particles prolongs the nucleation interval by slowing down the rate of emulsifier micelle depletion and forms a larger number of particles (Nf). Model calculations show how Nv varies with the formulation parameters as the monomer-flooded nucleation shifts into monomer-starved one. Particle formation in the intermediate conversion of interval III of the styrene batch emulsion polymerization also showed an enhancement because of a low rate of growth of newly formed particles. However, at a higher conversion, the rate of particle formation decreased significantly. Modeling results show that the reduction in the rate of particle formation at high conversions could not be simply explained by existing theories which rely on the decrease in monomer concentration in the aqueous phase as a means to explain the decrease in the rate of radical capture.
机译:半靶向反应器中单体饥饿的成核的重要特征是颗粒的生长速率通过单体添加速率来控制。颗粒的生长速率降低延长了乳化剂胶束耗尽的速率并形成较大数量的颗粒(NF)的核心间隔。模型计算显示,随着单体淹没的成核变化为单体饥饿的成核,NV如何随着制剂参数而变化。衍生批料乳液聚合的间隔III的中间转化中的颗粒形成还表现出增强,因为新形成的颗粒的生长率低。然而,在更高的转化下,粒子形成率显着下降。建模结果表明,高转化粒子形成的粒子形成率的降低不能简单地通过依赖水相中的单体浓度的减少作为一种方法来解释自由基捕获速率的手段。

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