Olefin polymerization catalyst as well as preparation method and application thereof
A technology of olefin polymerization and catalyst, which is applied in the field of olefin polymerization catalyst and its preparation, and can solve the problems of complex preparation process, high melting temperature, and large energy consumption
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Embodiment 1
[0053] This embodiment provides a kind of olefin polymerization catalyst, and it is prepared through the following steps:
[0054] Add 1g of magnesium dichloride, 40mL of toluene, 2.5mL of ethanol, 2mL of tributyl phosphate, and 1.7mL of epichlorohydrin into a reactor that has been fully replaced with nitrogen, heat up to 90°C while stirring, and then react at a constant temperature for 3h. Cool down to 50°C, add 0.05 mL of tetraethoxysilane and 0.02 mL of ethylene glycol monomethyl ether in sequence, and react at constant temperature for 2 hours. Cool down to -5°C, add 15 mL of titanium tetrachloride dropwise, and then react at constant temperature for 1 h. The temperature was raised to 90°C, and the reaction was carried out at a constant temperature for 2 hours. Stop stirring, leave standstill, separate layers, filter, wash with n-hexane four times (each 30 milliliters), dry, obtain good fluidity, uniform particle size distribution, spherical powdery solid procatalyst. The...
Embodiment 2
[0056] This embodiment provides a kind of olefin polymerization catalyst, and it is prepared through the following steps:
[0057]Add 1g of magnesium dichloride, 40mL of toluene, 2.5mL of ethanol, 2mL of tributyl phosphate, and 1.7mL of epichlorohydrin into a reactor that has been fully replaced with nitrogen, heat up to 90°C while stirring, and then react at a constant temperature for 3h. Cool down to 40°C, add 0.02 mL of tetraethoxysilane and 0.02 mL of ethylene glycol monoethyl ether in sequence, and react at constant temperature for 2 hours. Cool down to -5°C, add 20 mL of titanium tetrachloride dropwise, and then react at constant temperature for 1 h. The temperature was raised to 80°C, and the reaction was carried out at a constant temperature for 2 hours. Stop stirring, leave standstill, separate layers, filter, wash with n-hexane four times (each 30 milliliters), dry, obtain good fluidity, uniform particle size distribution, spherical powdery solid procatalyst. The c...
Embodiment 3
[0059] This embodiment provides a kind of olefin polymerization catalyst, and it is prepared through the following steps:
[0060] Add 1g of magnesium dichloride, 40mL of toluene, 1mL of ethanol, 2.5mL of tributyl phosphate, and 1.5mL of epichlorohydrin into a reactor that has been fully replaced with nitrogen, heat up to 80°C while stirring, and then react at a constant temperature for 2 hours. Cool down to 60°C, add 0.01 mL of tetraethoxysilane and 0.01 mL of ethylene glycol monobutyl ether in sequence, and react at constant temperature for 2 hours. Cool down to -5°C, add 25 mL of titanium tetrachloride dropwise, and then react at constant temperature for 1 h. The temperature was raised to 90°C, and the reaction was carried out at a constant temperature for 2 hours. Stop stirring, leave standstill, separate layers, filter, wash with n-hexane four times (each 30 milliliters), dry, obtain good fluidity, uniform particle size distribution, spherical powdery solid procatalyst. ...
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