Magnesium halide adduct, preparation and use thereof
A technology of magnesium halides and adducts, applied in the direction of magnesium organic compounds, etc., can solve the problem of low isotacticity of stereospecific polymers, and achieve the effects of high melt index, reduced fragmentation, and high isotacticity
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Embodiment 1
[0040] Preparation of spherical carrier: In a 0.5L autoclave, add 150ml of white oil, 30g of magnesium chloride, 50ml of ethanol and 3ml of o-methoxybenzoyl chloride, heat up to 125°C under stirring, and stir at 125°C for 2.5 hours, and the mixture Put it into silicone oil at 120°C, stir for 45 minutes, then put it into 2L hexane pre-cooled to -30°C to form spherical solid particles, filter off the liquid, wash the solid five times with hexane, and dry it in vacuum to obtain 50 g spherical magnesium chloride adduct support. (D50) is 80 microns, and the particle size distribution value (D50 / (D90-D10)) is 1.2.
Embodiment 2
[0042] A. Preparation of Spherical Catalysts
[0043] In a 300ML glass reaction bottle, add 100ml of titanium tetrachloride, cool to -20°C, add 8 grams of the spherical magnesium chloride adduct of Example 1, heat up to 110°C, add phthalic acid di 1.5 ml of isobutyl ester, the liquid was filtered off, washed twice with titanium tetrachloride, washed three times with hexane, and dried in vacuo 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 (cyclohexyldimethoxysilane), 10mg of the spherical catalyst obtained above, 1.5L of hydrogen (standard volume), and heat up to 70°C , polymerized for 1 hour. The test results are shown in Tables 1 and 2.
Embodiment 3
[0047] Same as Example 2 except that 5.0 L of hydrogen gas was added during the propylene polymerization.
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