Catalyst for production of polyethylene with narrow molecular weight distribution
A narrow molecular weight distribution and catalyst technology, which is applied in the field of catalysts for the production of narrow molecular weight distribution polyethylene, can solve the problems of low production capacity and insufficient activity, and achieve the effects of reduced molecular weight distribution, high bulk density and high catalytic activity
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Embodiment 1
[0043] 1) Preparation of magnesium chloride / silica gel carrier (prepared according to the method of Chinese patent application 200710176589)
[0044] Under nitrogen protection, in a glass reactor, add 1.04 grams of anhydrous magnesium chloride at room temperature, then add 700 milliliters of dried tetrahydrofuran, after starting to stir, 2.42 grams of silica gel (GRACE Sylopol2485, under nitrogen, 150 ℃ roasting 2.5 hours, heat up to 300°C for 2 hours, then at 600°C for 5 hours) into the reactor, heated to 65°C, stirred and dissolved for 2 hours, then evaporated at 80°C to remove the solvent to obtain a white solid powder. The white solid powder was vacuum-dried at 100° C. for 2 hours, and then vacuum-dried at 300° C. for 10 hours to obtain 3.40 g of solid powder with good fluidity. According to gas chromatography analysis, no tetrahydrofuran was detected.
[0045] 2), the preparation of catalyst A
[0046] 0.686 grams (2.16mmolMgCl) of magnesium chloride / silica gel carrier p...
Embodiment 2
[0048] Preparation of Catalyst B
[0049] 0.717 g (2.26 mmol) of the magnesium chloride / silica gel carrier obtained by the preparation method in Example 1, under the protection of an inert gas such as nitrogen, was added to 30 ml of hexane, stirred, heated to 70°C for 0.5 hours, and then added 0.20 1 ml of n-butanol, stirred and reacted for 0.5 hour, removed the supernatant, added 30 ml of hexane to the reaction flask, and added 1.0 ml of TiCl 4 , heated to 70°C and stirred for 1 hour, lowered to room temperature, added 0.13 milliliters (1.13 mmol) of 1-chloro-3 methoxypropane, raised to 50.0°C for 2 hours, then removed the supernatant, and the solid was washed with ethyl alcohol Wash with alkane solvent for 3 times until the mother liquor in the upper layer is colorless, and dry it with nitrogen gas at 50°C until it becomes fluid to obtain a solid catalyst B. After analysis, the Ti content was 3.77wt%.
Embodiment 3
[0051] Preparation of Catalyst C
[0052] 0.737 g (2.33 mmol) of the magnesium chloride / silica gel carrier obtained by the preparation method in Example 1 was added to 30 ml of hexane under the protection of an inert gas such as nitrogen, and heated to 70° C. for 0.5 hours under stirring, and then added 0.21 1 ml of n-butanol, stirred and reacted for 0.5 hour, removed the supernatant, added 30 ml of hexane to the reaction flask, added 1.11 ml of TiCl under stirring 4 , heated to 70°C and stirred for 1 hour, lowered to room temperature, added 0.26 milliliters (2.33 mmol) of 1-chloro-3 methoxypropane, raised to 50.0°C for 2 hours, then removed the supernatant, and the solid was washed with ethyl alcohol Wash with alkane solvent for 3 times until the upper layer mother liquor is colorless, and dry it with nitrogen gas at 50°C until it becomes fluid to obtain a solid catalyst C. After analysis, the Ti content was 4.1 wt%.
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