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Turning a Cr-based heterogeneous ethylene polymerisation catalyst into a selective ethylene trimerisation catalyst

机译:将Cr基非均相乙烯聚合催化剂转变成选择性乙烯三聚催化剂

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摘要

A Phillips Cr/SiO2 polymerisation catalyst was converted into an ethylene trimerisation catalyst after assembling new active sites on the silica surface in the presence of TAC (1,3,5-triphenylhexahydro 1,3,5-triazacyclohexane) as ligand and CH2Cl2 as solvent. The reaction conditions play a role in tuning the catalytic activity of this system. It is a true trimerisation catalyst at low ethylene pressures, while, at high pressures, the polymerisation activity becomes dominant. Moreover, at high ethylene pressures, polyethylene characterised by a high crystallinity degree is obtained. Instead, a highly branched heavy oligomer of ethylene characterised by a very narrow molecular weight distribution is obtained at 1 bar. 1-Hexene, formed as the main product in the ethylene trimerisation reaction at low pressures, is partially incorporated into this growing oligomer making redundant the use of a second comonomer feedstock and an expensive catalyst.
机译:在TAC(1,3,5-三苯基六氢1,3,5-三氮杂环己烷)作为配体和CH2Cl2作为溶剂存在下,在二氧化硅表面上组装了新的活性位点之后,将Phillips Cr / SiO2聚合催化剂转化为乙烯三聚催化剂。 。反应条件在调节该系统的催化活性中起作用。在低乙烯压力下,它是真正的三聚催化剂,而在高压下,聚合活性占主导。此外,在高乙烯压力下,获得了具有高结晶度的聚乙烯。相反,在1巴下获得特征在于非常窄的分子量分布的高度支化的乙烯重链低聚物。在低压下乙烯三聚反应中作为主要产物形成的1-己烯被部分地掺入到这种增长的低聚物中,从而多余地使用了第二种共聚单体原料和昂贵的催化剂。

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