Catalyst used for ethylene polymerization or copolymerization, its preparation method and application
A technology of ethylene polymerization and catalyst, which is applied in the field of catalyst components, which can solve the problems of wide particle size distribution, low activity, and large amount of fine powder of polymers, and achieve the effects of good particle shape, good hydrogen adjustment sensitivity, and high catalytic activity
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Embodiment 1
[0033] 1. Preparation of catalyst components
[0034] Add 4.8 grams of anhydrous magnesium chloride, 93 milliliters of toluene, 4.0 milliliters of epichlorohydrin, and 12.5 milliliters of tributyl phosphate into a reaction kettle fully replaced by nitrogen, and react two times at a stirring speed of 450 rpm and a temperature of 60°C. hour, add 1.4 grams of phthalic anhydride, continue the reaction for one hour, cool down to -28°C, add 56 ml of titanium tetrachloride dropwise in 1 hour, gradually heat up to 85°C in 2 hours, and keep the temperature constant for one hour. The solid matter gradually precipitated out; the mother liquor was filtered off, washed twice with toluene and hexane, and then dried to obtain the solid matter A containing magnesium / titanium.
[0035] Add 10 grams of solid A to another reactor fully replaced by nitrogen, add 90 milliliters of isopentane, 0.3 grams of titanium trichloride and 30 milliliters of tetrahydrofuran, react at room temperature for one...
Embodiment 2
[0043] In the reaction kettle, add 10 grams of solid A prepared in Example 1, add 90 ml of isopentane, add 0.7 ml of titanium tetrachloride and 5 ml of tetrahydrofuran dropwise at room temperature, react at room temperature for one hour, and then add 5 ml of tetrahydrofuran. The silicon chloride was reacted at room temperature for one hour, and the granular solid catalyst component B was obtained through evaporation and drying.
[0044] Polymerization evaluation conditions are the same as in Example 1, and the results are shown in Table 1.
Embodiment 3
[0046] Add 10 g of the solid component A prepared in Example 1 to the reaction kettle, add 60 ml of toluene and 40 ml of titanium tetrachloride, add 8.3 ml of tetrahydrofuran dropwise at room temperature, raise the temperature to 120° C., react for one hour, and filter off the solution. 100 milliliters of hexane was washed three times, and then 90 milliliters of isopentane was added, and 10 milliliters of silicon tetrachloride was reacted at room temperature for one hour, and the granular solid catalyst component B was obtained through evaporation and drying.
[0047] Polymerization evaluation conditions are the same as in Example 1, and the results are shown in Table 1.
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