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1-Hexene Polymerization over Supported Titanium– Magnesium Catalyst: The Effect of Composition of the Catalytic System and Polymerization Conditions on Temperature Dependence of the Polymerization Rate

机译:负载型钛-镁催化剂上的1-己烯聚合:催化体系的组成和聚合条件对聚合速率温度依赖性的影响

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The effect of temperature on the rate of 1-hexene polymerization over supported titanium-magnesium catalyst of composition TiCl4/D-1/MgCl2 + AlR3/D-2 (D-1 is dibutyl phthalate, D-2 is propyltrimethoxysilane, and AlR3 is an organoaluminum cocatalyst) is studied. The unusual data that the polymer rate decreases when temperature is increased from 30 to 70 degrees C are obtained. The 1-hexene polymerization rate and the pattern of changes in polymerization rate with temperature depend on a combination of factors such as cocatalyst (AlEt3 or Al(i-Bu)(3)) and presence/absence of hydrogen and an external donor in the reaction mixture. These factors differ in their effects on catalytic activity at different polymerization temperatures, so the temperature coefficient (E-eff) values calculated using the Arrhenius dependence of the polymerization rate on polymerization temperature vary greatly. The normal Arrhenius plot where polymerization rate increases with temperature is observed only for polymerization with the Al(i-Bu)(3) cocatalyst in the presence of hydrogen and without an external donor. Formation of high-molecular-weight polyhexene at low polymerization temperatures results in catalyst particle fragmentation, which may additionally contribute to the increase in polymerization rate as polymerization temperature is reduced.
机译:温度对组成为TiCl4 / D-1 / MgCl2 + AlR3 / D-2的负载钛-镁催化剂上1-己烯聚合速率的影响(D-1为邻苯二甲酸二丁酯,D-2为丙基三甲氧基硅烷,AlR3为研究了有机铝助催化剂)。获得了异常的数据,即当温度从30摄氏度增加到70摄氏度时,聚合物的速率会降低。 1-己烯的聚合速率和聚合速率随温度变化的模式取决于多种因素的组合,例如助催化剂(AlEt3或Al(i-Bu)(3))以及氢气中是否存在氢和外部供体反应混合物。这些因素在不同的聚合温度下对催化活性的影响各不相同,因此使用聚合速度对聚合温度的阿累尼乌斯依赖性计算出的温度系数(E-eff)值变化很大。正常的Arrhenius图仅在有氢存在且没有外部供体的情况下,观察到聚合速率随温度升高的聚合反应。在低聚合温度下形成高分子量聚己烯会导致催化剂颗粒破碎,随着聚合温度的降低,催化剂颗粒可能会进一步增加聚合速率。

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