Catalyst used for olefine polymerization or copolymerization, its preparation method and application
A technology for olefin polymerization and copolymerization, which is used in catalysts for olefin polymerization or copolymerization, preparation and application fields, and can solve problems such as being unsuitable for propylene polymerization and ethylene-propylene copolymers, poor catalyst particle morphology, and insufficient sensitivity to hydrogen conditioning. problem, to achieve the effect of excellent impurity resistance, narrow particle distribution and good particle shape
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Embodiment 1
[0029] 1. Preparation of magnesium / titanium solids
[0030] In the reaction kettle that has been repeatedly replaced by high-purity nitrogen, 6.5 kg of anhydrous magnesium chloride, 132.7 liters of toluene, 5.4 liters of epichlorohydrin, and 16.9 liters of tributyl phosphate were added in sequence, at a stirring speed of 130 rpm and a temperature of 60 ° C , reacted for 2.5 hours, added 1.89 kg of phthalic anhydride, continued the reaction for one hour, cooled to -28°C, added 56 liters of titanium tetrachloride dropwise, gradually raised the temperature to 85°C, kept the temperature for one hour, filtered off the mother liquor, and passed the inert The diluent toluene and the organic solvent hexane are washed several times and then dried to obtain the solid A containing magnesium / titanium.
[0031] 3. Preparation of solid titanium catalyst components
[0032] Suspend the above-prepared solid A in toluene, add 1.4 liters of ethanol and 48 liters of titanium tetrachloride at -1...
Embodiment 2
[0038] 1. Preparation of magnesium / titanium solids
[0039] In the reaction kettle that has been repeatedly replaced by high-purity nitrogen, 4.8 grams of anhydrous magnesium chloride, 93 milliliters of toluene, 4.0 milliliters of epichlorohydrin, and 12.5 milliliters of tributyl phosphate were added in sequence, at a stirring speed of 450 rpm and a temperature of 60 ° C , reacted for 2 hours, added 1.4 g of phthalic anhydride, continued to react for one hour, cooled to -28°C, added 56 ml of titanium tetrachloride dropwise, gradually raised the temperature to 85°C, kept at constant temperature for one hour, filtered off the mother liquor, and passed the inert The diluent toluene and the organic solvent hexane are washed several times and then dried to obtain the solid A containing magnesium / titanium.
[0040] 2. Preparation of solid titanium catalyst components
[0041] Suspend the above-prepared solid A in toluene, add 1.7 ml of n-butanol and 48 ml of titanium tetrachloride ...
Embodiment 3
[0047] 1. Preparation of magnesium / titanium solids
[0048] With embodiment 2.
[0049] 2. Preparation of solid titanium catalyst components
[0050] Suspend the above-prepared solid A in toluene, add 3.0 ml of isooctyl alcohol at 10°C, cool down to -10°C, add 48 ml of titanium tetrachloride, gradually raise the temperature to 110°C, add 1.0 ml of DIBP at 80°C, 110 ℃ to temperature after constant temperature for 1 hour, after filtering off the liquid, use 48 milliliters of titanium tetrachloride and 72 milliliters of toluene to keep the temperature at 110 ℃ for 2 hours, repeat the treatment once after filtering, then wash 5 times with hexane, and the remaining solid product Vacuum dried to obtain a solid titanium catalyst component. Wherein the titanium content is 2.34% (wt), the DIBP content is 10.57% (wt), the specific surface area of the catalyst is 273.6m 2 / g, the pore volume is 0.26cm 3 / g, the pore diameter is 3.78nm. .
[0051] 3. Polymerization 1
[0052] Pro...
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