首页> 外文期刊>journal of applied polymer science >Kinetics study of slurry‐phase propylene polymerization with highly active Mg(OEt)2/benzoyl chloride/TiCl4catalyst
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Kinetics study of slurry‐phase propylene polymerization with highly active Mg(OEt)2/benzoyl chloride/TiCl4catalyst

机译:高活性Mg(OEt)2/苯甲酰氯/TiCl4催化剂浆相丙烯聚合动力学研究

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AbstractPropylene was polymerized in a slurry phase over superactive and stereospecific catalyst prepared by the reaction of Mg(OEt)2with benzoyl chloride and TiCl4in the presence of AlEt3with or without an external donor. A kinetic analysis of propylene polymerization was carried out. The polymerization rate was first order with respect to monomer concentration and the dependence of overall polymerization rate on the concentration of AlEt3can be explained by the Langmuir adsorption mechanism. Maximum activity was observed around an Al/Ti mole ratio of 20. The average rate over 90 min of polymerization as a function of temperature showed a maximum around 42°C and the overall activation energy was 8.5 kcal/mol atT42°C. The analysis of the phenomenon of an optimum temperature gave 2.2 kcal/mol for the activation energy of the rate‐determining step, and 6.3 kcal/mol, for the adsorption energy of AlEt3. The addition of small amount ofp‐ethoxyethyl benzoate (PEEB) as an external donor increased the percentage of isotactic polymer to 98 and slightly increased activity in spite of the decrease in the concentration of active centers due to the stabilizing effect of the active centers by the external donor. The temperature showing maximum yield was shifted to the higher temperature when AlEt3and PEEB (AlEt3/PEEB= 5) was used as a cocatalyst. © 1994 John Wiley
机译:摘要 在有或没有外部供体的情况下,Mg(OEt)2与苯甲酰氯和TiCl4反应制备的超活性和立体特异性催化剂在浆料相中聚合丙烯。对丙烯聚合反应进行了动力学分析。聚合速率相对于单体浓度是一阶的,总聚合速率对AlEt3浓度的依赖性可以用Langmuir吸附机理来解释。在Al/Ti摩尔比为20左右观察到最大活性。聚合90 min的平均速率随温度的变化,最大值约为42°C,总活化能为8.5 kcal/mol atT42°C。 对最佳温度现象的分析得出,速率决定步骤的活化能为 2.2 kcal/mol,AlEt3 的吸附能为 6.3 kcal/mol。添加少量的对乙氧基苯甲酸乙酯(PEEB)作为外部供体,使全同立构聚合物的百分比增加到98%,尽管由于外部供体对活性中心的稳定作用,活性降低,但活性略有增加。当使用AlEt3和PEEB([AlEt3]/[PEEB]= 5)作为助催化剂时,显示最大收率的温度转移到更高的温度。© 1994 约翰·威利&

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