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Kinetics of butylacrylate polymerization in a starved feed reactor

机译:饥饿进料反应器中丙烯酸丁酯聚合的动力学

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A starved feed reactor (SFR) is a semibatch polymerization reactor where initiator and monomer are fed slowly into a fixed amount of solvent. The polymerization is carried out isothermally at elevated temperatures. The added initiator decomposes instantaneously and the added monomer polymerizes immediately. The molecular weight of the product polymer can be effectively controlled by the feed ratio of monomer to initiator. This article presents a study on the kinetics of butylacrylate polymerization in an SFR. The model parameters are regressed with experimental data. Although the solids fraction in the SFR is high (>50%), viscosity is not high and the "gel effect" is weak because of the low molecular weight of the products. It is found that the termination rate constant is a power function of molecular weight, and the lumped rate constant k(p)/(k(t)(0))(1/2) can be modeled through an Arrhenius equation. (C) 2004 Wiley Periodicals, Inc.
机译:饥饿的进料反应器(SFR)是半间歇式聚合反应器,其中将引发剂和单体缓慢进料到固定量的溶剂中。聚合在高温下等温进行。加入的引发剂立即分解,加入的单体立即聚合。产物聚合物的分子量可以通过单体与引发剂的进料比有效控制。本文介绍了在SFR中丙烯酸丁酯聚合动力学的研究。模型参数与实验数据一起回归。尽管SFR中的固体分数很高(> 50%),但由于产品的分子量低,因此粘度并不高,“凝胶效应”也很弱。发现终止速率常数是分子量的幂函数,并且集总速率常数k(p)/(k(t)(0))(1/2)可以通过Arrhenius方程建模。 (C)2004年Wiley Periodicals,Inc.

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