Ethylene in-situ copolymerization catalyst system
A catalytic system and copolymerization catalyst technology, which is applied in the field of ethylene in-situ copolymerization catalytic system supported by a composite carrier, can solve the problem of low catalyst activity and achieve high bulk density, improved matching, and stable activity release.
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Embodiment 1
[0023] 1) Modified spherical MgCl 2 / SiO 2 Vector preparation
[0024]Add 20ml of ethanol and 10ml of n-butanol successively into a 250ml glass reactor fully replaced with nitrogen; add 4.8g of anhydrous magnesium chloride under stirring, then heat up to 65°C and react for 4 hours to form a magnesium chloride solution; add fuming 3 g of silica gel was fully stirred for 1 hour, and the formed slurry was spray-dried in a spray drying apparatus to obtain a spherical composite carrier with a particle size (D50) of 20.5 microns.
[0025] Spherical MgCl 2 / SiO 2 The composite carrier was dry dealcoholized at 180°C for 4 hours and cooled to room temperature. Add 1.0g of the treated carrier to 4ml of toluene to disperse, then add 0.4g of solid methylaluminoxane, and react at 50°C for 4 hours; after standing for 15 minutes, filter the upper layer solution, and then use 4ml of toluene, Washed with hexane, filtered and dried in vacuum to obtain modified spherical MgCl 2 / SiO 2 Com...
Embodiment 2
[0048] The supported oligomerization catalyst is the same as in Example 1, except that the supported copolymerization catalyst changes the metallocene complex into BuCp 2 ZrCl 2 Outside, other is with embodiment 1.
Embodiment 3
[0050] The supported oligomerization catalyst is the same as in Example 1, except that the supported copolymerization catalyst changes the metallocene complex into IndSiMe 2 NBu t ZrCl 2 Outside, other is with embodiment 1.
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