Preparation method of olefine polymerization catalyst solid component
A technology for the polymerization of solid components and olefins, which is applied in the field of preparation of supported Ziegler-Natta catalyst solid components, can solve the problems of high price and increased catalyst cost, and achieves simple preparation, good particle shape, and cheap and easy-to-obtain raw materials. Effect
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example 1
[0027] The following examples prepare the magnesium complexes of the present invention.
[0028] A three-neck reaction flask with a magnetic stirring device was filled with N 2 fully permuted, and at N 2 Add 1.0 g of Mg powder under airflow, I 2 0.1 g, 100 ml of dichloromethane. Stir at 40°C for 2 hours, then add 8 ml of n-butanol and react for 8 hours to obtain a uniform and clear solution a.
[0029] Take 20 ml of solution a in N 2 Dry at 60° C. for 6 hours under airflow to obtain a white solid powder, which is a magnesium complex containing 9.36% by mass of magnesium, 69.08% by mass of n-butoxy (n-BuO-), and 14.66% by mass of chlorine.
example 2
[0031] The magnesium complex solution was prepared according to the method of Example 1, except that the added alcohol was 8 ml of isobutanol (i-BuOH), and a uniform and clear solution b was obtained.
[0032] Take 20 ml of solution b in N 2 Dry at 60° C. for 6 hours under airflow to obtain a white solid powder, which is a magnesium complex containing 9.68% by mass of magnesium, 69.08% by mass of isobutoxy (i-BuO-) and 16.66% by mass of chlorine.
example 3
[0034] The magnesium complex solution was prepared according to the method of Example 1, except that the methyl chloride added during the reaction was 100 milliliters of chloroform, and the alcohol was 8 milliliters of ethanol (EtOH), to obtain a uniform and clear solution c.
[0035] Take 20 ml of solution c in N 2 Dry at 60° C. for 6 hours under airflow to obtain a white solid powder, which is a magnesium complex containing 9.88% by mass of magnesium, 58.08% by mass of ethoxy (EtO-), and 19.63% by mass of chlorine.
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