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Particle Growth during the Polymerization of Olefins on Supported Catalysts. Part 2: Current Experimental Understanding and Modeling Progresses on Particle Fragmentation, Growth, and Morphology Development

机译:烯烃在负载型催化剂上聚合过程中的颗粒生长。第2部分:关于颗粒破碎,生长和形态发展的最新实验理解和建模进展

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The morphology of the growing polymer particles is important in olefin polymerisation on supported catalysts. It has a significant impact on the rate of mass and energy transport, and consequently on the polymerisation rate, comonomer incorporation, and the molecular weight distribution. The ability to quantify the evolution of morphology during the polymerisation process a priori would therefore be quite useful. The morphology itself is a direct product of the fragmentation step and concurrent/subsequent expansion of the particle, both caused by the build-up and dissipation of hydraulic forces due to the accumulation of polymer in the particle. It is influenced by the initial morphology of the support, as well as the reaction conditions and local polymer properties. The single particle models developed to describe the morphology evolution in a growing particle are reviewed here. The main assumptions, abilities, and limitations of the models are evaluated and the issues which face developing a completely predictive model are finally discussed. Despite some very interesting attempts at morphology modelling in recent years, significant progress still needs to be made in order to develop a fully predictive model of the sort.
机译:生长的聚合物颗粒的形态对于在负载型催化剂上的烯烃聚合非常重要。它对质量和能量传输的速率有重要影响,因此对聚合速率,共聚单体的掺入和分子量分布也有重要影响。因此,先验地量化聚合过程中形态演变的能力将是非常有用的。形态本身是破碎步骤和颗粒同时/随后膨胀的直接产物,二者都是由于聚合物在颗粒中的积聚而产生的水力的积累和消散所引起的。它受载体的初始形态,反应条件和局部聚合物性能的影响。本文回顾了为描述生长中的颗粒的形态演化而开发的单颗粒模型。对模型的主要假设,能力和局限性进行了评估,最后讨论了开发完全预测模型时面临的问题。尽管近年来在形态学建模方面进行了一些非常有趣的尝试,但仍需要取得重大进展才能开发出一种完全可预测的模型。

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