Piver W T
Environ Health Perspect. 1976 Oct;17:227-36. doi: 10.1289/ehp.7617227.
A simplified mathematical model which made use of Fick's laws of diffusion written in spherical coordinates was developed to describe the rate of diffusion of residual monomers from polymer resins. The properties of the monomer-polymer system which influenced the amount of monomer remaining in the polymer as a function of time were the diffusivity and solubility of the monomer in the polymer, and the particle size of the polymer resin. This model was used to analyze literature data on the diffusion of residual vinyl chloride monomer in polyvinyl chloride resins made by the suspension process. It was concluded that particle size of the resin was a significant parameter which should be taken advantage of in process equipment designed to remove residual monomer from PVC resins. The diffusivity of the monomer in the polymer was a function of the solubility of the monomer in the polymer. Monomer solubility can be determined from Henry's law. It was suggested that this model could be adapted to describe diffusion of monomers from any monomer-polymer system, and would be a useful approach to modeling the transport of nonreactive chemical additives from plastics.
开发了一种简化的数学模型,该模型利用用球坐标表示的菲克扩散定律来描述聚合物树脂中残留单体的扩散速率。影响聚合物中作为时间函数的残留单体量的单体-聚合物体系的性质是单体在聚合物中的扩散率和溶解度,以及聚合物树脂的粒径。该模型用于分析悬浮法制备的聚氯乙烯树脂中残留氯乙烯单体扩散的文献数据。得出的结论是,树脂的粒径是一个重要参数,在设计用于从PVC树脂中去除残留单体的工艺设备中应加以利用。单体在聚合物中的扩散率是单体在聚合物中溶解度的函数。单体溶解度可根据亨利定律确定。有人提出,该模型可适用于描述任何单体-聚合物体系中单体的扩散,并且将是对塑料中非反应性化学添加剂传输进行建模的一种有用方法。