首页> 外文会议>Macromolecular Symposia 206; Polymer Reaction Engineering Conference; 20030518-23; Quebec(CA) >Kinetic Modeling of Aggregation and Gel Formation in Quiescent Dispersions of Polymer Colloids
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Kinetic Modeling of Aggregation and Gel Formation in Quiescent Dispersions of Polymer Colloids

机译:聚合物胶体静态分散中聚集和凝胶形成的动力学模型

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摘要

In this work, a methodology suitable for the description of aggregation and gel formation processes of polymeric colloidal dispersions in quiescent conditions is presented. The modeling of aggregation is based on the use of populations balance equations to describe the time evolution of the aggregate distribution. Monte-Carlo simulations are used to generate the structural properties of individual aggregates, which are necessary to compute the average radius of gyration and hydrodynamic radius that are compared to the values measured using light scattering. The agreement between model predictions and measured sizes is good in both diffusion-limited and reaction-limited conditions. For the description of progress toward gel formation, the cumulatively occupied volume, a measure of the fraction of space occupied by the clusters, is defined. Due to the fractal nature of clusters, during the aggregation the system can reach a condition of space filling, after which the formation of gel is a result of the interconnection of the clusters. It is found that in diffusion-limited conditions the interconnection step is much faster than the preceding aggregation, while in reaction-limited conditions the aggregation and the interconnection are of comparable duration.
机译:在这项工作中,提出了一种适合描述静态条件下聚合物胶体分散体的聚集和凝胶形成过程的方法。聚集的建模基于人口平衡方程的描述,以描述聚集分布的时间演变。蒙特卡洛模拟用于生成单个集合体的结构特性,这对于计算平均回转半径和流体动力学半径是必要的,这些平均回转半径和流体动力学半径与使用光散射测量的值进行了比较。在扩散受限和反应受限的条件下,模型预测与测量尺寸之间的一致性都很好。为了描述凝胶形成的进展,定义了累积占据的体积,即簇所占据的空间分数的量度。由于团簇的分形性质,在聚集期间,系统可以达到空间填充的状态,此后,由于团簇相互连接而形成了凝胶。发现在扩散受限的条件下,互连步骤比之前的聚集要快得多,而在反应受限的条件下,聚集和互连的持续时间相当。

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