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Mathematical Modeling of the Internal Surface Area of Copolymer Particles Based on Elementary Gel Structures

机译:基于基于基础凝胶结构的共聚物颗粒内表面积的数学建模

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摘要

The present work describes a kinetic approach which is able to predict how the internal surface area of polymer particles evolve during suspension copolymerization in the presence of porogen. For such a purpose, the concept of elementary gel structures has been introduced by modeling their surface area through the numerical fractionation technique. Thus, variables such as diluents composition, divinyl monomer concentration, and dilution degree could be assessed in the simulations. The present mathematical model is validated by using different experimental data from literature and a fair agreement is reached. Furthermore, the developed model is also capable of predicting the most significant copolymerization variables, e.g., conversion rate, concentration of species, and average molecular weights.
机译:本作者描述了一种动力学方法,其能够预测聚合物颗粒的内表面区域在致孔的悬浮共聚期间如何进化。为此目的,通过数值分馏技术建模它们的表面积来引入基本凝胶结构的概念。因此,可以在模拟中评估诸如稀释剂组合物,二乙烯基单体浓度和稀释度的变量。目前的数学模型是通过使用文献的不同实验数据验证,达到了公平的协议。此外,开发的模型也能够预测最重要的共聚变量,例如,种类的转化率,物种浓度和平均分子量。

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