Effect of the operating conditions on the particle size distribution by the suspension polymerization process

José Josué Rodríguez-Pizano, Laura Edith Granados-Rivera, H. Hernández-Escoto, D. Contreras-López
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Abstract

In this research, we focus on the study of the operating conditions that influence on suspension process for obtaining (co)polymers of styrene with polar monomers (copolymers of styrene with acrylate of butyl (S-BA) and copolymers of styrene with vinyl acetate (S-VAc)) using the technique of conventional free radical polymerization (FRP). At higher agitation speed, the reaction performance decreases. Likewise, the influence of the molecular weight of the dispersing agent, in this case polyvinyl alcohol (PVA), influences the polymerization performance was also observed. That is, at a higher molecular weight of PVAs, there is an increase in the particle size of the bead and in the polymerization yield. Finally, there is an influence of the polar part on the copolymer both for the yield and for the particle size of the bead. When obtaining copolymers of S-VAc, the yield is lower compared to the respective styrene homopolymer and higher in the S-BA.
操作条件对悬浮聚合过程中粒径分布的影响
在本研究中,我们重点研究了使用常规自由基聚合(FRP)技术获得苯乙烯与极性单体(苯乙烯与丙烯酸酯的共聚物(S-BA)和苯乙烯与醋酸乙烯的共聚物(S-VAc))的悬浮过程的操作条件对悬浮过程的影响。搅拌速度越高,反应性能越差。同样,还观察了分散剂(在本例中为聚乙烯醇(PVA))分子量对聚合性能的影响。也就是说,在较高的分子量的聚乙烯醇,有增加粒径的头和在聚合收率。最后,极性部分对共聚物的收率和珠粒大小都有影响。当得到S-VAc共聚物时,产率低于各自的苯乙烯均聚物,而S-BA的产率较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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