论文标题

聚合物反应动力学的预测模型和种子乳液共凝结中的凝血行为

Predictive model of polymer reaction kinetics and coagulation behavior in seeded emulsion co- and ter-polymerizations

论文作者

Banetta, Luca, Storti, Giuseppe, Hoogard, George, Simpson, Gareth, Zaccone, Alessio

论文摘要

开发了一种数学模型来描述共同聚合和TER聚合的乳液聚合动力学。该模型基于伪聚合方法中的经典史密斯 - 欧洲方程(SE)方程,并采用了最新的根本进入和解吸模型。对于共同聚合物,模型中有未知参数与单体特异性凝胶效应系数有关,以计算双分子终止反应速率。未知参数是通过对\ textit {n} - 丁基丙烯酸酯(N-BA)和甲基丙烯酸甲酯(MMA)的同型和共聚合的文献数据进行广泛校准来确定的。然后,将所谓的预测模型应用于N-BA和MMA与2-羟基甲基丙烯酸甲酯(2HEMA)的TER-BA和MMA的TER-TER聚合模型,用玻璃硫酸钠(SPR)作为引发剂作为引发剂:预测粒度和转换的时间流动,并具有实验性测量(均匀的散布(DL),以及对粒度和转化的时间流动(DL),并具有良好的散布(DL)(DL)(DL)(dl)(dl)(dl)(DL)凝胶效应系数与2-HEMA有关。开发的模型用于量化颗粒的表面活性剂表面覆盖范围以及整个聚合过程中系统中对抗的总浓度。该关键信息提供了一种在整个聚合过程中合理化和控制凝血行为的方法。

A mathematical model to describe the emulsion polymerization kinetics of co- and ter-polymerizations is developed. The model is based on the classical Smith-Ewart (SE) equations, within the pseudo-homopolymerization approach, with state-of-the-art models for radical entry and desorption. For co- and ter-polymerizations there are unknown parameters in the model which are related to monomer-specific gel-effect coefficients, that are needed to compute the bimolecular termination reaction rates. The unknown parameters are determined through extensive calibration of the model on literature data for homo- and co-polymerizations of \textit{n}-butyl acrylate (n-BA) and methyl methacrylate (MMA). The so-obtained predictive model is then applied to the modelling of the ter-polymerization of n-BA and MMA with 2-hydroxyethyl methacrylate (2-HEMA) with sodium persulphate (SPR) as initiator: predictions for the time-evolution of particle size and conversion are in excellent agreement with experimental measurements using Dynamic Light Scattering (DLS) and Gas Chromatography (GC), upon tuning the gel-effect coefficient related to 2-HEMA. The developed model is used to quantify the surfactant surface coverage of the particles as well as the total concentration of counterions in the system throughout the entire polymerization process. This key information provides a way to rationalize and control the coagulation behavior during the whole polymerization process.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源