Supported non-metallocene catalyst, its preparation method and application
A non-metallocene and catalyst technology, applied in the field of non-metallocene catalysts, can solve the problems of low catalytic activity, difficulty in controlling the carrier molding process and particle shape, difficult to control the polymer shape, etc., and achieve the effect of simple preparation method
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no. 1 approach
[0177] In the context of the present invention, unless otherwise clearly defined, or the meaning is beyond the scope of understanding of those skilled in the art, hydrocarbon or hydrocarbon derivative groups with more than 3 carbon atoms (such as propyl, propoxy, butyl , butane, butene, butenyl, hexane, etc.) all have the same meaning as when the prefix "positive" is not prefixed. For example, propyl is generally understood as n-propyl and butyl is generally understood as n-butyl.
[0178]The invention relates to a preparation method of a supported non-metallocene catalyst, comprising the following steps: reacting a porous carrier optionally subjected to thermal activation treatment, a Grignard reagent and a halogenating reagent to obtain a composite carrier; complexing the non-metallocene a step of contacting the composite carrier with the composite carrier in the presence of a solvent to obtain a mixed slurry; and a step of directly drying the mixed slurry to obtain the supp...
Embodiment 1
[0348] The Grignard reagent adopts methylmagnesium chloride (MeMgCl), the solvent for dissolving the Grignard reagent adopts tetrahydrofuran, the halogenated reagent adopts chlorobutane, and the porous carrier adopts silica, that is, silica gel, and the model is ES757 of Ineos Company, which is non-metallocene The complex adopts the structure The compound, the second solvent adopts dichloromethane.
[0349] Firstly, the silica gel was continuously fired at 600° C. under nitrogen atmosphere for 4 hours to thermally activate it.
[0350] Weigh the activated silica gel, add it into the Grignard reagent solution (containing 0.1mol Grignard reagent) at normal temperature to form a homogeneous slurry, add the halogenated reagent dropwise to the homogeneous slurry under stirring at normal temperature, and the dropping time is 30 minutes . After the dropwise addition was completed, the mixture was stirred at room temperature for 2 hours. The solid components were collected by filt...
Embodiment 2
[0355] Basically the same as Example 1, but with the following changes:
[0356] The Grignard reagent uses ethylmagnesium chloride (EtMgCl), the solvent used to dissolve the Grignard reagent is ether, the halogenated reagent uses ethyl chloride, and the non-metallocene complex uses The porous carrier was changed to 955 type silica gel of Grace Company, and it was continuously calcined at 400° C. for 8 hours under a nitrogen atmosphere to be thermally activated, and the second solvent was chloroform.
[0357] Wherein the proportioning is that the proportioning of the Grignard reagent in terms of Mg element and the solvent for dissolving the Grignard reagent is 1mol: 500mL, and the molar ratio of the Grignard reagent to the halogenated reagent is 1: 2; The molar ratio of the metal complex is 1:0.1; the ratio of the Grignard reagent to the porous carrier is 1 mol:100 g; the ratio of the non-metallocene complex to the second solvent is 0.15 g / ml.
[0358]Supported non-metallocen...
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