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A Monte Carlo Method to Quantify the Effect of Reactor Residence Time Distribution on Polyolefins Made with Heterogeneous Catalysts: Part Ⅳ-Intraparticle Transfer Resistance Effects

机译:蒙特卡罗方法量化反应器停留时间分布对多相催化剂制得的聚烯烃的影响:第四部分-颗粒内转移阻力效应

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摘要

An integrated Monte Carlo/polymeric multilayer model (MC/PMLM) is developed to predict the polymer particle size distribution (PSD) and microstructures of polyolefins made with heterogeneous catalysts under intraparticle mass transfer limitations. The Monte Carlo model is used to randomly sample particle sizes and residence times from the catalyst PSD and reactor residence time distribution (RTD), respectively, while the polymeric multilayer model is used to describe single-particle growth considering intraparticle mass transfer resistances. The effect of reactor RTD, catalyst PSD, and polymerization kinetics on polymer PSD and polymer properties is systematically investigated with the MC/PMLM for the first time. The results show that intraparticle mass transfer limitations under various operating conditions may affect polymer PSD and polymer properties. In addition, due to the versatility of the Monte Carlo approach, the proposed MC/PMLM is adequate to describe complex cases, such as reactor systems with arbitrary RTD and catalyst particles having any PSD.
机译:建立了集成的蒙特卡洛/聚合物多层模型(MC / PMLM),以预测在颗粒内传质限制下,由多相催化剂制得的聚烯烃的聚合物粒度分布(PSD)和微观结构。蒙特卡洛模型用于分别从催化剂PSD和反应器停留时间分布(RTD)中随机采样粒径和停留时间,而聚合物多层模型用于考虑粒子内传质阻力来描述单粒子生长。首次使用MC / PMLM系统地研究了反应器RTD,催化剂PSD和聚合动力学对聚合物PSD和聚合物性能的影响。结果表明,在各种操作条件下的颗粒内传质限制可能会影响聚合物PSD和聚合物性能。此外,由于蒙特卡洛方法的多功能性,建议的MC / PMLM足以描述复杂的情况,例如具有任意RTD的反应器系统和具有任何PSD的催化剂颗粒。

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