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首页> 外文期刊>Catalysis in industry >Kinetic Study of Chain Transfer Reactions upon 1-Hexene Polymerization on Highly Active Supported Titanium–Magnesium Catalysts
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Kinetic Study of Chain Transfer Reactions upon 1-Hexene Polymerization on Highly Active Supported Titanium–Magnesium Catalysts

机译:高活性负载钛 - 镁催化剂上1-己烯聚合对1-己烯聚合的动力学研究

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摘要

Data on the effect the concentrations of the monomer, triethylaluminium, and hydrogen on the molecular weight of polyhexene upon 1-hexene polymerization over supported titanium–magnesium catalyst are obtained. The ratios between propagation rate constant and the rate constants of the reactions of polymer chain transfer with monomer, triethylaluminium (AlEt_(3)), triisobutylaluminium, and hydrogen are calculated. The data allow us to estimate the effect of individual reactions of chain transfer on the polymer’s molecular weight under different polymerization conditions. The data help to select polymerization conditions for obtaining polyhexene of a desired molecular weight. The heterogeneity of active centers is observed in the reaction of chain transfer with hydrogen when using AlEt_(3)as co-catalyst, which alters the polymer’s polydispersity when the concentration of hydrogen is varied in the reaction mixture. The molecular weight distribution is analyzed via resolution into Flory components for polyhexene characterized by different polydispersity.
机译:得到关于效果的数据,得到单体,三乙基铝和氢对1-己烯聚合对负载钛 - 镁催化剂的聚庚烯分子量的浓度。计算繁殖率常数与聚合物链转移反应与单体,三乙基铝(Alet_(3)),三异丁基铝和氢气的速率常数的比率。数据允许我们估计链转移在不同聚合条件下对聚合物分子量对聚合物的效果的影响。数据有助于选择聚合条件以获得所需分子量的聚庚烯。在使用Alet_(3)作为助催化剂时,在链转移的反应中观察到活性中心的异质性,当氢气时改变聚合物的多分散性时,在反应混合物中变化。通过分辨率分析分子量分布,该分辨率分析到具有不同多分散性的聚庚烯的血液组分中。

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