A kind of catalyst component and catalyst for ethylene polymerization
A technology of ethylene polymerization and catalyst, which is applied in the field of olefin polymerization, can solve the problems that cannot fully meet the needs of industrial production, and achieve the effects of reducing the amount of addition, improving the sensitivity of hydrogen adjustment, and increasing the bulk density
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Embodiment 1
[0029] (1) Preparation of catalyst components: In a reactor fully replaced by high-purity nitrogen, 6.0 g of magnesium dichloride, 90 ml of toluene, 5.0 ml of epichlorohydrin, 9.0 ml of tributyl phosphate, 4-chloro- 3.0ml of 1-butanol and 3.0ml of ethanol were heated to 70°C under stirring, and reacted at 70°C for 1 hour after the solid was completely dissolved to form a uniform solution. Then the system was cooled to -10°C, 60ml of titanium tetrachloride was slowly added dropwise, and then 5.0ml of ethyl orthosilicate was added to react for 1 hour. Slowly heat up to 80°C and react for 2 hours. Stop stirring, let it stand, the suspension will quickly separate into layers, remove the upper clear layer, wash twice with toluene, wash four times with hexane, and blow dry with high-purity nitrogen to obtain a solid catalyst component with good fluidity and narrow particle size distribution. The catalyst composition is shown in Table 1.
[0030] (2) Ethylene polymerization
[003...
Embodiment 2
[0033] (1) The synthesis of the catalyst was the same as in Example 1. The amount of 4-chloro-1-butanol was changed to 2.0ml, and the amount of ethanol was changed from 3.0ml to 4.0ml.
[0034] (2) Ethylene polymerization is with embodiment 1. Catalyst composition and polymerization results are shown in Table 1 and Table 2.
Embodiment 3
[0036] (1) The synthesis of the catalyst was the same as in Example 1. The amount of 4-chloro-1-butanol was changed to 4.0ml.
[0037] (2) Ethylene polymerization is with embodiment 1. Catalyst composition and polymerization results are shown in Table 1 and Table 2.
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