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首页> 外文期刊>Journal of Applied Polymer Science >Polymerization of liquid propylene with a fourth generation Ziegler-Natta catalyst: Influence of temperature, hydrogen, monomer concentration, and prepolymerization method on powder morphology
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Polymerization of liquid propylene with a fourth generation Ziegler-Natta catalyst: Influence of temperature, hydrogen, monomer concentration, and prepolymerization method on powder morphology

机译:第四代Ziegler-Natta催化剂聚合液态丙烯:温度,氢气,单体浓度和预聚合方法对粉末形态的影响

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Liquid propylene was polymerized in a 5-L autoclave batch reactor using a commercially available TiCl4/MgCl2/Al(ethyl)(3)/DCPDMS Ziegler-Natta catalyst, with a phthalate ester as internal electron donor. The powders from these polymerizations were characterized using laser diffraction particle size distribution (PSD) analysis, scanning electron microscopy (SEM), and bulk density measurements. These characteristics were analyzed as a function of the process conditions, including hydrogen and monomer concentration, polymerization temperature, and the prepolymerization method. It was shown that polymerization temperature influences the powder morphology to a large extent. At low temperatures, high-density particles were obtained, showing regular shaped particle surfaces and low porosities. With increasing temperature, the morphology gradually was transferred into a more open structure, with irregular surfaces and poor replication of the shape of the catalyst particle. When using a prepolymerization step at a relatively low temperature, the morphology obtained was determined by this prepolymerization step and was independent from conditions in main polymerization. The morphology obtained was the same as that observed after a full polymerization at temperature. Even when using a short polymerization at an increasing temperature, the morphology was strongly influenced by the initial conditions. The effect of variation in hydrogen concentration supported the conclusion that the initial polymerization rate determines the powder morphology. In the absence of hydrogen, high bulk densities, and regularly shaped particles were obtained, even at high temperatures. With increasing hydrogen concentration, the reaction rates increased rapidly, and with that changed the morphology. (C) 2002 Wiley Periodicals, Inc. [References: 29]
机译:使用可商购的TiCl4 / MgCl2 / Al(乙基)(3)/ DCPDMS Ziegler-Natta催化剂在5-L高压釜间歇反应器中聚合液态丙烯,其中邻苯二甲酸酯为内部电子给体。使用激光衍射粒度分布(PSD)分析,扫描电子显微镜(SEM)和堆积密度测量对来自这些聚合反应的粉末进行表征。根据工艺条件来分析这些特性,包括氢气和单体浓度,聚合温度和预聚合方法。结果表明,聚合温度在很大程度上影响粉末的形貌。在低温下,获得高密度颗粒,显示规则形状的颗粒表面和低孔隙率。随着温度升高,形态逐渐转变为更开放的结构,具有不规则的表面和不良的催化剂颗粒形状复制。当在相对较低的温度下使用预聚合步骤时,通过该预聚合步骤确定所获得的形态,并且与主要聚合的条件无关。获得的形态与在温度下完全聚合后观察到的形态相同。即使当在升高的温度下使用短聚合时,形态也受到初始条件的强烈影响。氢浓度变化的影响支持了以下结论:初始聚合速率决定了粉末的形态。在没有氢的情况下,即使在高温下,也获得了高堆积密度和规则形状的颗粒。随着氢浓度的增加,反应速率迅速增加,并由此改变了形态。 (C)2002 Wiley Periodicals,Inc. [参考:29]

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