Hydrogenation catalyst composition and application thereof in hydrogenated conjugated diene polymer

A technology of composition and titanium compound, applied in the direction of organic compound/hydride/coordination complex catalyst, chemical/physical process, physical/chemical process catalyst, etc., can solve the problem of inability to obtain good hydrogenation degree of polymer, reaction operating pressure high cost, high equipment cost, etc., to achieve the effect of good activity persistence, low residue and cost saving

Inactive Publication Date: 2010-04-28
CHI MEI CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This kind of hydrogenation catalyst composition has good activity and reproducibility, but its reaction operating pressure (hydrogen gas) is high, the equipment cost is high, and the conjugated diene polymer obtained by hydrogenation has an odor, and its hydrogenation degre

Method used

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  • Hydrogenation catalyst composition and application thereof in hydrogenated conjugated diene polymer
  • Hydrogenation catalyst composition and application thereof in hydrogenated conjugated diene polymer
  • Hydrogenation catalyst composition and application thereof in hydrogenated conjugated diene polymer

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0099] After the above-mentioned preparation examples obtained the conjugated diene polymer glue, feed hydrogen (5kg / cm 2 ) to the reactor nitrogen N 2 Get rid of, and prepare the solution of each component of hydrogenation catalyst composition, dicyclopentadienyl titanium dichloride (Cp 2 TiCl 2 ) is dissolved in cyclohexane to form a 0.12% by weight solution, polymethylhydrogensiloxane is dissolved in cyclohexane to form a 0.75% by weight solution, tetrakis(isopropoxy)titanium (TPT) is dissolved in cyclohexane to form 0.2% by weight solution and n-butyllithium were dissolved in cyclohexane to form an 8% by weight solution; the prepared hydrogenation catalyst composition was added to the reactor according to the amounts in Table 1, and the hydrogenation temperature was 75 ° C. Pressure 5kg / cm 2 hydrogenation under the conditions of 8 hours to obtain the hydrogenated conjugated diene polymer of the present invention; The operating pressure and hydrogenation temperature of ...

Embodiment 2~11

[0101] The same operation mode as in Example 1, and according to the formula and hydrogenation conditions of the hydrogenation catalyst composition in Table 1, the hydrogenated conjugated diene polymer of the present invention, the degree of hydrogenation and the trans The structural residues are shown in Table 3. In addition, the hydrogenated conjugated diene polymers in Examples 2-11 have no odor, and the hydrogenated conjugated diene polymers in Examples 2-3 are yellow in appearance after thermal stability testing.

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PUM

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Abstract

The invention provides a hydrogenation catalyst composition, which comprises: (1), a titanium compound (A) shown in the following formula (a), (2) a silyl hydride compound (B) and (3) a compound (C) shown in the following formula (e). The hydrogenation catalyst composition has good activity durability and can improve the hydrogenation degree of the polymer. In particular, when the hydrogenated catalyst composition is used for hydrogenating the conjugated diene polymer, the hydrogenation degree of the transstructure in the conjugated diene polymer is high, and a hydrogenated conjugated diene polymer with good thermal stability and without odor can be obtained.

Description

[0001] This application is a divisional application of application number 200710003167.3 technical field [0002] The present invention relates to a hydrogenation catalyst composition, in particular to a hydrogenation catalyst composition suitable for hydrogenation of conjugated diene polymers. Background technique [0003] In general, the polymerization or copolymerization of conjugated diene monomers such as butadiene and isoprene to prepare synthetic rubber has been widely used industrially for commercial production. Basically, these polymers can be prepared using either emulsification (free radical polymerization) or solution (anionic polymerization) methods, but both methods result in polymers with conjugated diatoms containing unsaturated double bonds in the backbone. vinyl polymers (copolymers). However, since these unsaturated double bonds are easily oxidized, the polymer has the disadvantage of being unstable under high temperature or weathering test (ie, exposure ...

Claims

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Application Information

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IPC IPC(8): B01J31/12B01J31/02B01J31/06C08F36/04C08F8/04
Inventor 郑贵伦黄辰宝
Owner CHI MEI CORP
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