Adduct of magnesium halides, preparation method, and application
A magnesium halide and adduct technology, which is applied in the application field of preparing olefin polymerization catalysts, can solve the problems of easy stickiness, difficulty in forming spherical particles with a particle size, unsatisfactory and the like, and achieves high hydrogen modulation sensitivity, The effect of fine powder reduction and uniform distribution of active centers
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Embodiment 1
[0040] In a 1L autoclave, add 110ml of white oil, 220ml of silicone oil, 15g of magnesium chloride, 28ml of ethanol and 4ml of dimethoxypropane. The temperature is raised to 125°C with stirring, and the mixture is stirred at 125°C for 3 hours. Cooled to -30°C in 3L of hexane, filtered off the liquid, washed the solid with hexane three times, and dried in vacuum to obtain 30.3 g of spherical magnesium chloride adduct with an average particle size of 50 microns.
Embodiment 2
[0042] A. Preparation of spherical catalyst
[0043] In a 300ML glass reaction flask, add 100ml of titanium tetrachloride, cool to -20°C, add 8g of spherical magnesium chloride adduct of Example 1, heat up to 100°C, add phthalic acid bis-phthalate during the heating process 1.5 ml of isobutyl ester, filtered off the liquid, washed twice with titanium tetrachloride, washed three times with hexane, and dried in vacuum to obtain a spherical catalyst.
[0044] B. Propylene polymerization
[0045] In a 5L autoclave, add 2.5L of propylene, 1mmol of triethylaluminum, 0.05mmol of CHMMS, 10mg of spherical catalyst, and 5L of hydrogen (standard volume). The temperature is raised to 70°C and polymerization is carried out for 1 hour. The test results are shown in Tables 1 and 2.
Embodiment 3
[0047] Same as in Example 1 except that it was replaced with 6ml of dimethoxypropane. 31 grams of spherical carriers were obtained, with an average particle size of 61 microns.
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