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Peculiarities of ethylene polymerization reactions with heterogeneous Ziegler-Natta catalysts: Kinetic analysis

机译:用多相齐格勒-纳塔催化剂进行乙烯聚合反应的特殊性:动力学分析

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The previously developed kinetic scheme for olefin polymerization reactions with heterogeneous Ziegler-Natta catalysts states that the catalysts have several types of active centers which have different activities, different stabilities, produce different types of polymer materials, and respond differently to reaction conditions. In the case of ethylene polymerization reactions, each type of center exhibits an unusual chemical feature: a growing polymer chain containing one ethylene unit, Ti-C2H5, is unusually stable and can decompose with the formation of the Ti-H bond. This paper examines quantitative kinetic ramifications of this chemical mechanisms. Modeling of the complex kinetics scheme described in the Scheme demonstrates that it correctly and quantitatively predicts three most significant peculiarities of ethylene polymerization reactions, the high reaction order with respect to the ethylene concentration, reversible poisoning with hydrogen and activation in the presence of a-olefins. [References: 32]
机译:先前开发的用于均相齐格勒-纳塔催化剂的烯烃聚合反应的动力学方案指出,该催化剂具有几种类型的活性中心,这些活性中心具有不同的活性,不同的稳定性,产生不同类型的聚合物材料以及对反应条件的不同反应。在乙烯聚合反应的情况下,每种类型的中心都表现出不同寻常的化学特征:一条包含一个乙烯单元Ti-C2H5的增长的聚合物链异常稳定,并且会随着Ti-H键的形成而分解。本文研究了这种化学机理的定量动力学影响。方案中描述的复杂动力学方案的模型表明,它正确并定量地预测了乙烯聚合反应的三个最重要的特征,相对于乙烯浓度的高反应顺序,氢气可逆中毒以及在α-烯烃存在下的活化。 [参考:32]

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