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Kinetic studies of semibatch emulsion copolymerization of methyl methacrylate and styrene in the presence of high intensity ultrasound and initiator

机译:高强度超声和引发剂存在下甲基丙烯酸甲酯与苯乙烯半间歇乳液共聚的动力学研究

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The present work deals with kinetic studies of copolymerization of methyl methacrylate and styrene using ultrasound assisted semibatch emulsion copolymerization in the presence of sodium dodecyl sulfate (emulsifier) and potassium persulfate (external initiator). The effect of temperature, acoustic intensity, initiator loading, surfactant concentration and monomer concentration on the extent of conversion has been investigated. The extent of polymerization was observed to increase with an increase in the temperature, and concentrations of initiator, monomer and surfactant Further, the initial polymerization rate increased with an increase in the acoustic intensity from 11.2 to 23,1 Won~(-2) and then it was found to decrease with a further increase to 33.80 W cm~(-2). The novelty of this work lies in the fact that there have been only limited kinetic studies for the approach of ultrasound assisted emulsion copolymerization. It has been also established in the present work that the formation of fine and stable monomer droplets, due to the cavitational activity atear the interface of immiscible monomer phase and subsequent disruption by micro jets, leads to the smaller final polymer particle size and under optimized conditions, it was found to be about 40 nm.
机译:本工作涉及在十二烷基硫酸钠(乳化剂)和过硫酸钾(外部引发剂)存在下使用超声辅助半间歇乳液共聚的甲基丙烯酸甲酯和苯乙烯共聚的动力学研究。研究了温度,声强度,引发剂负载量,表面活性剂浓度和单体浓度对转化程度的影响。观察到聚合程度随温度的升高而增加,引发剂,单体和表面活性剂的浓度进一步升高。初始聚合速率随声强从11.2增至23.1 Won〜(-2)和然后发现随着进一步增加至33.80 W cm〜(-2)而降低。这项工作的新颖性在于,对超声辅助乳液共聚方法的动力学研究仅是有限的。在本工作中还已经确定,由于在不混溶的单体相界面处/附近的空化活性以及随后被微射流破坏,形成细而稳定的单体液滴会导致较小的最终聚合物粒径和在最佳条件下,发现约为40 nm。

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