Olefin polymerization catalyst and preparation method thereof
A technology for olefin polymerization and catalyst, which is applied in the field of catalyst and catalyst preparation, and can solve the problems of low copolymerization ability of comonomers and the like
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Embodiment 1
[0037] 1) Prepare the main catalyst: In the reactor fully replaced by nitrogen, add 4g of magnesium dichloride, 3.5ml of epichlorohydrin, 5.5ml of tributyl phosphate, 75ml of toluene, 10ml of hexane, and 3.2ml of ethanol in sequence, and stir Raise the temperature to 70°C, after the solid is completely dissolved to form a uniform solution, keep the temperature for 1 hour; then cool down to -25°C, add 58ml of titanium tetrachloride dropwise, add 0.5g of trimethylsilanol, 3.5ml of triethoxy Isopropoxysilane, after reacting for 1 hour, keep the temperature at -10°C for 1 hour, 0°C for 1 hour, and 20°C for 1 hour, add 5ml of hexane, heat up to 60°C, add 10ml of hexane, react for 2 hours, stop stirring , leave the suspension, separate layers, extract the supernatant, wash twice with toluene, wash twice with hexane, and blow dry with nitrogen to obtain a main catalyst component with good fluidity and narrow particle size distribution;
[0038] 2) Copolymerization of ethylene: After ...
Embodiment 2
[0040] 1) Prepare the main catalyst: In the reactor fully replaced by nitrogen, add 4g of magnesium dichloride, 7.5ml of epichlorohydrin, 10.5ml of tributyl phosphate, 75ml of toluene, 8ml of hexane, and 6.2ml of ethanol in sequence, and stir Raise the temperature to 60°C, after the solid is completely dissolved to form a uniform solution, keep the temperature for 1 hour; then cool down to -25°C, add 40ml of titanium tetrachloride dropwise, add 0.5g of triethylsilanol, 2g of tetraethoxy Silane, after reacting for 1 hour, raise the temperature to 60°C, 3ml hexane, react for 2 hours, stop stirring, let the suspension stand, separate layers, extract the supernatant, wash twice with toluene, twice with hexane, blow dry with nitrogen , to obtain the main catalyst component with good fluidity and narrow particle size distribution;
[0041] 2) Copolymerization of ethylene: After a 0.5-liter stainless steel autoclave was fully replaced with nitrogen, 20 mg of the main catalyst compone...
Embodiment 3
[0043] 1) Prepare the main catalyst: In the reactor fully replaced by nitrogen, add 3g of magnesium dichloride, 5ml of epichlorohydrin, 10.5ml of tributyl phosphate, 75ml of toluene, 5.2ml of ethanol, and 3ml of hexane in turn, and heat up under stirring After the solid is completely dissolved to form a homogeneous solution at 60°C, keep the temperature constant for 1 hour; then cool down to -25°C, add 50ml of titanium tetrachloride dropwise, add 1.5g of trinonylsilanol, 3g of diethoxyiso Propoxy tert-butylsilane, after reacting for 1 hour, keep the temperature at -10°C for 1 hour, 0°C for 1 hour, 20°C for 1 hour, heat up to 60°C for 2 hours, stop stirring, let the suspension stand, separate layers, pump Remove the supernatant, wash twice with toluene, wash twice with hexane, and blow dry with nitrogen to obtain a main catalyst component with good fluidity and narrow particle size distribution;
[0044] 2) Copolymerization of ethylene: After a 0.5-liter stainless steel autocla...
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