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首页> 外文期刊>Latin American Applied Research >Emulsion copolymerization of acrylonitrile and butadiene in an industrial reactor: Mathematical modeling, estimation, and control of polymer quality variables on the basis of calorimetric measurements
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Emulsion copolymerization of acrylonitrile and butadiene in an industrial reactor: Mathematical modeling, estimation, and control of polymer quality variables on the basis of calorimetric measurements

机译:工业反应器中丙烯腈和丁二烯的乳液共聚合:基于量热法测量的聚合物质量变量的数学建模,估计和控制

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An industrial emulsion copolymerization of acrylonitrile and butadiene carried out in a batch (or semibatch) reactor for the production of nitrile rubber (NBR) is investigated. The effect of variable amounts of deactivating impurities on the predictions of a global polymerization model is analyzed; and the advantages of using the model predictions in combination with on-line calorimetric measurements are shown. The adjusted polymerization model allows to adequately monitor main quality variables of the process, such as: monomer conversion, average copolymer composition, average molecular weights, and degree of branching. The semibatch addition of the comonomers and/or the chain transfer agent along the reaction was investigated with the aim of controlling the polymer quality characteristics and increasing the productivity. It is possible to obtain a uniform-composition copolymer with pre-specified profiles of the average molecular weights or the degrees of branching. Furthermore, the NBR productivity can be increased by about 5%, without deteriorating the final copolymer quality with respect to that produced in the more conventional batch operation.
机译:研究了在间歇(或半间歇)反应器中进行的丙烯腈和丁二烯的工业乳液共聚,用于生产丁腈橡胶(NBR)。分析了可变数量的失活杂质对整体聚合模型预测的影响;并显示了将模型预测与在线量热测量结合使用的优势。调整后的聚合模型可以充分监控过程的主要质量变量,例如:单体转化率,平均共聚物组成,平均分子量和支化度。研究了共聚单体和/或链转移剂在反应过程中的半间歇添加,目的是控制聚合物的质量特性并提高生产率。可以得到具有平均分子量或支化度的预先确定的轮廓的均匀组成的共聚物。此外,相对于在更常规的间歇操作中生产的共聚物,NBR的生产率可以提高约5%,而不会降低最终共聚物的质量。

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