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首页> 外文期刊>Journal of Applied Polymer Science >Continuous dosing of fast initiator during vinyl chloride suspension polymerization: Polymerization rate and PVC properties
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Continuous dosing of fast initiator during vinyl chloride suspension polymerization: Polymerization rate and PVC properties

机译:氯乙烯悬浮聚合过程中快速引发剂的连续投加:聚合速率和PVC性能

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摘要

Continuous dosing of a fast initiator during the suspension polymerization of vinyl chloride has been carried out in a pilot-scale reactor. The kinetics course of this polymerization and the particle features of the resulting grains were discussed and compared to the conventional polymerization with the same conversion and maximum reaction rate. It was found for the system used that a suitable dosage trajectory allows the reaction rate to remain constant during polymerization. This decreases the polymerization time up to 53% compared with the conventional suspension polymerization, while the molecular weight distribution and molecular weight of the final grains remained almost unchanged. SEM micrographs revealed that PVC grains prepared using this polymerization process had irregularly shaped, uneven particle surfaces and larger particle sizes. The grains also featured high porosity with loosely aggregated smaller primary particles that led to low levels of residual unreacted monomer. (C) 2016 Wiley Periodicals, Inc.
机译:在中试规模的反应器中,已经在氯乙烯的悬浮聚合过程中连续定量快速引发剂。讨论了该聚合反应的动力学过程以及所得晶粒的颗粒特征,并将其与具有相同转化率和最大反应速率的常规聚合反应进行了比较。对于所使用的系统发现,合适的剂量轨迹使反应速率在聚合期间保持恒定。与常规的悬浮聚合相比,这将聚合时间缩短至53%,而最终颗粒的分子量分布和分子量几乎保持不变。 SEM显微照片显示,使用该聚合方法制备的PVC颗粒具有不规则形状,不均匀的颗粒表面和较大的粒径。颗粒还具有高孔隙率,疏松聚集的较小初级颗粒,导致残留的未反应单体含量低。 (C)2016威利期刊公司

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