Catalyst component used for ethylene polymerization, preparation method and application thereof
A technology for ethylene polymerization and catalyst, which is applied in the field of supported chromium-based catalyst components, and can solve problems such as no disclosure of chromium-based catalyst systems.
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Embodiment 1
[0047] Take 10g of silica gel (W.R.Grece&Co.–Com 955, the pore volume is about 1.1-1.8cm 3 / g, the surface area is about 245-375m 2 / g) Dry at 200° C. for 4 hours under nitrogen fluidization. Add 0.5 g of bis(triphenylsilyl) chromate into the reactor fully replaced with anhydrous and oxygen-free nitrogen, then add 300 ml of hexane, stir at room temperature to completely dissolve the solid to form a solution. Add 10g of dried silica gel to the above solution, and after stirring, add 2ml (1.3M) diethylethoxyaluminum hexane solution, stir at room temperature for 1 hour, and then add 2.4mmol of 4,4'-di (4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)biphenyl, stirred at room temperature for 1 hour, and then removed the solvent to obtain a chromium-containing catalyst component. The polymerization evaluation results of the catalysts are listed in Table 1.
Embodiment 2
[0049] Take 10g of silica gel (W.R.Grece&Co.–Com 955, the pore volume is about 1.1-1.8cm 3 / g, the surface area is about 245-375m 2 / g) Dry at 200° C. for 4 hours under nitrogen fluidization. Add 0.5 g of bis(triphenylsilyl) chromate into the reactor fully replaced with anhydrous and oxygen-free nitrogen, then add 300 ml of hexane, stir at room temperature to completely dissolve the solid to form a solution. Add 10 g of dried silica gel to the above solution, and then add 2.4 mmol of 4,4'-bis(4,4,5,5-tetramethyl-1,3,2-dioxaborol after stirring) Alkyl-2-yl)biphenyl, after stirring at room temperature for 1 hour, add 2ml (1.3M) of a hexane solution of diethylethoxyaluminum, after stirring at room temperature for 1 hour, remove the solvent to obtain a chromium-containing catalyst component. The polymerization evaluation results of the catalysts are listed in Table 1.
Embodiment 3
[0051] Take 10g of silica gel (W.R.Grece&Co.–Com 955, the pore volume is about 1.1-1.8cm 3 / g, the surface area is about 245-375m 2 / g) Dry at 200° C. for 4 hours under nitrogen fluidization. Add 0.5 g of bis(triphenylsilyl) chromate into the reactor fully replaced with anhydrous and oxygen-free nitrogen, then add 300 ml of hexane, stir at room temperature to completely dissolve the solid to form a solution. Add 10 g of dried silica gel to the above solution, and simultaneously add 2 ml (1.3 M) diethylethoxyaluminum hexane solution and 2.4 mmol of 4,4'-bis(4,4,5,5 -tetramethyl-1,3,2-dioxaborolan-2-yl)biphenyl, after stirring at room temperature for 2 hours, the solvent was removed to obtain a chromium-containing catalyst component. The polymerization evaluation results of the catalysts are listed in Table 1.
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