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首页> 外文期刊>Macromolecular reaction engineering >Modeling the Dynamics of the Xylene Soluble Fraction (XS) in a Bulk Propylene Polymerization Process
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Modeling the Dynamics of the Xylene Soluble Fraction (XS) in a Bulk Propylene Polymerization Process

机译:在本体丙烯聚合过程中模拟二甲苯可溶级分(XS)的动力学

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摘要

A model is built to describe the dynamic trajectories of the xylene soluble fraction (XS) in an industrial bulk propylene polymerization process. Emphasis is given to the coupling between the XS dynamics and the reactor liquid bleed policy. It is shown that cocatalyst recirculation can affect the dynamics of the cocatalyst/donor ratio and consequently the dynamics of XS during polymerization. Simulation results indicate that the effect of the reactor liquid bleed operation and of the cocatalyst/donor ratio upon the XS trajectories can be minimized if PI controllers are designed to control the propane concentration and to increase the speed of the cocatalyst/donor transitions. Finally, it is shown that the model is able to reproduce the dynamic XS profile obtained during a large XS transition at plant site.
机译:建立一个模型来描述工业本体丙烯聚合过程中二甲苯可溶级分(XS)的动态轨迹。重点介绍了XS动力学和反应堆液体排放策略之间的耦合。结果表明,助催化剂的再循环可以影响助催化剂/给体比的动力学,从而影响聚合过程中XS的动力学。仿真结果表明,如果将PI控制器设计为控制丙烷浓度并提高助催化剂/供体转变的速度,则可以最大程度地减少反应器液流操作和助催化剂/供体比对XS轨迹的影响。最后,表明该模型能够再现在工厂现场进行大型XS过渡期间获得的动态XS轮廓。

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