A kind of propylene copolymer and preparation method thereof
A propylene copolymer and propylene technology, applied in the field of low energy consumption and high ethylene content propylene copolymer and its preparation, can solve the problems of high production raw material consumption cost, increased transformation cost, low device output, etc., to expand production capacity, reduce heat Load, the effect of meeting production capacity
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preparation example Construction
[0018] The invention provides a method for preparing a propylene copolymer with low energy consumption and high ethylene content. The method adopts gas phase multi-temperature zone technology, and in the presence of a highly active Ziegler-Natta catalyst (Ziegler-Natta catalyst), propylene or propylene The polymerization reaction is carried out with ethylene as an olefin feedstock, and the polymerization reaction is carried out in at least three consecutive polymerization zones of one or more polymerization reactors. Specifically, the method includes the following steps:
[0019] (1) Under the conditions of the gas-phase polymerization reaction of the first olefin or the liquid-phase polymerization reaction condition of the olefin, in the presence of a Ziegler-Natta catalyst, the first olefin raw material is subjected to a polymerization reaction to obtain a first polymerization reaction mixture, wherein the The first olefin raw material is propylene or propylene and ethylene;...
preparation example
[0080] This preparation example is used to prepare the titanium-containing solid catalyst component in the highly active Ziegler-Natta catalyst used in the present invention.
[0081] After fully replacing the 16L pressure-resistant reactor with agitator with nitrogen, add 10L ethanol, 300mL 2-ethylhexanol, 11.2g iodine, 8g magnesium chloride and 640g magnesium powder into the reactor. While stirring, the system was refluxed until no more hydrogen was emitted. Stop the reaction, wash with 3L ethanol, filter and dry. The resulting dialkoxymagnesium support. The resulting dialkoxymagnesium carrier has a D50 of 30.2um, a span value of 0.81, and an m value of 0.015. Take 650 g of the above-mentioned dialkoxymagnesium carrier and 3250 mL of toluene to prepare a suspension. In a 16L pressure-resistant reactor that has been repeatedly replaced by high-purity nitrogen, add 2600 mL of toluene and 3900 mL of titanium tetrachloride, raise the temperature to 80 ° C, then add the prepar...
Embodiment 1
[0083] This example is used to illustrate the preparation method of the low energy consumption and high ethylene content propylene copolymer of the present invention.
[0084] 1) Raw material
[0085] The titanium-containing solid catalyst component obtained in the preparation example is the main catalyst; Triethylaluminum is used as the cocatalyst; Tetraethoxysilane (T-Doner) is used as the first external electron donor; Propylene, ethylene and hydrogen are Polymerization grade, used after removing water and oxygen, and used after dehydrating hexane.
[0086] 2) Test device
[0087] A polymerization process in which two horizontal tank gas phase reactors are connected in series is adopted. The volume of the horizontal tank gas phase reactor is 0.2 cubic meters, the stirring blade is a T-shaped inclined blade, the inclination angle is 10 degrees, and the stirring speed is 100 rpm.
[0088] 3) Test conditions
[0089] Step (1) gas-phase propylene homopolymerization: Add the...
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