Claims
- 1. A process for preparing a bimetallic catalyst, the process comprising:
(a) providing a slurry of a supported non-metallocene catalyst by:
(i) preparing a slurry of a dehydrated support material in a non-polar hydrocarbon; (ii) contacting the slurry of (i) with an organomagnesium compound RMgR′, where R and R′ are the same or different C2-C12 alkyl groups; and (iii) contacting the slurry of (ii) with a non-metallocene compound of a Group 4 or Group 5 transition metal; (b) contacting the slurry of the supported non-metallocene catalyst in a non-polar hydrocarbon with a solution of a metallocene compound and methylalumoxane in an aromatic solvent; and (c) drying the product of (b) to obtain a supported bimetallic catalyst.
- 2. The process of claim 1, wherein the support material is silica.
- 3. The process of claim 1, wherein the non-polar hydrocarbon in (a) is selected from the group consisting of C4-C10 linear or branched alkanes, cycloalkanes and aromatics.
- 4. The process of claim 1, wherein the organomagnesium compound is dibutylmagnesium.
- 5. The process of claim 1, further comprising before step (iii), contacting the slurry of (ii) with an alcohol R″OH, where R″ is a C1-C12 alkyl group.
- 6. The process of claim 5, wherein the alcohol is n-butanol.
- 7. The process of claim 5, wherein the alcohol is used in an amount of 0.5 to 2.0 moles per mole of magnesium provided by the organomagnesium compound.
- 8. The process of claim 1, wherein the Group 4 or 5 transition metal is titanium or vanadium.
- 9. The process of claim 8, wherein the non-metallocene transition metal compound is a titanium halide, a titanium alkoxyhalide, a vanadium halide, or a vanadium alkoxyhalide.
- 10. The process of claim 1, wherein the non-metallocene transition metal compound is used in an amount to provide from 0.3 to 1.5 moles of the Group 4 or 5 transition metal per mole of magnesium provided by the organomagnesium compound.
- 11. The process of claim 1, wherein the metallocene compound is a substituted, unbridged bis-cyclopentadienyl compound.
- 12. The process of claim 1, wherein the alkyl aluminum compound is trimethylaluminum.
- 13. The process of claim 1, wherein the alkyl aluminum compound is triethylaluminum.
- 14. A process for preparing a bimetallic catalyst, the process comprising:
(a) providing a slurry of a supported non-metallocene catalyst by:
(i) preparing a slurry of a dehydrated support material in a non-polar hydrocarbon; (ii) contacting the slurry of (i) with an organomagnesium compound RMgR′, where R and R′ are the same or different C2-C12 alkyl groups; and (iii) contacting the slurry of (ii) with a non-metallocene compound of a Group 4 or Group 5 transition metal; (b) contacting the slurry of the supported non-metallocene catalyst in a non-polar hydrocarbon with an alkyl aluminum compound; (c) contacting the slurry of (b) with a solution of methylalumoxane and a metallocene compound in an aromatic solvent; and (d) drying the product of (c) to obtain a supported bimetallic catalyst.
- 15. The process of claim 14, wherein the support material is silica.
- 16. The process of claim 14, wherein the non-polar hydrocarbon in (a) is selected from the group consisting of C4-C10 linear or branched alkanes, cycloalkanes and aromatics.
- 17. The process of claim 14, wherein the organomagnesium compound is dibutylmagnesium.
- 18. The process of claim 14, further comprising before step (iii), contacting the slurry of (ii) with an alcohol R″OH, where R″ is a C1-C12 alkyl group.
- 19. The process of claim 18, wherein the alcohol is n-butanol.
- 20. The process of claim 18, wherein the alcohol is used in an amount of 0.5 to 2.0 moles per mole of magnesium provided by the organomagnesium compound.
- 21. The process of claim 14, wherein the Group 4 or 5 transition metal is titanium or vanadium.
- 22. The process of claim 21, wherein the non-metallocene transition metal compound is a titanium halide, a titanium alkoxyhalide, a vanadium halide, or a vanadium alkoxyhalide.
- 23. The process of claim 14, wherein the non-metallocene transition metal compound is used in an amount to provide from 0.3 to 1.5 moles of the Group 4 or 5 transition metal per mole of magnesium provided by the organomagnesium compound.
- 24. The process of claim 14, wherein the metallocene compound is a substituted, unbridged bis-cyclopentadienyl compound.
- 25. The process of claim 14, wherein the alkyl aluminum compound is dissolved in a C5-C12 aliphatic solvent.
- 26. The process of claim 14, wherein the alkyl aluminum compound is trimethylaluminum.
- 27. The process of claim 14, wherein the alkyl aluminum compound is triethylaluminum.
- 28. A process for preparing a bimetallic catalyst, the process comprising:
(a) providing a slurry of a supported non-metallocene catalyst by:
(i) preparing a slurry of a dehydrated support material in a non-polar hydrocarbon; (ii) contacting the slurry of (i) with an organomagnesium compound RMgR′, where R and R′ are the same or different C2-C12 alkyl groups; and (iii) contacting the slurry of (ii) with a non-metallocene compound of a Group 4 or Group 5 transition metal; (b) contacting the slurry of the supported non-metallocene catalyst in a non-polar hydrocarbon with a solution of methyl alumoxane in an aromatic solvent; (c) contacting the slurry of (b) with a solution of a metallocene compound and an alkyl aluminum compound in a C5-C12 aliphatic solvent; and (d) drying the product of (c) to obtain a supported bimetallic catalyst.
- 29. The process of claim 28, wherein the support material is silica.
- 30. The process of claim 28, wherein the non-polar hydrocarbon in (a) is selected from the group consisting of C4-C10 linear or branched alkanes, cycloalkanes and aromatics.
- 31. The process of claim 28, wherein the organomagnesium compound is dibutylmagnesium.
- 32. The process of claim 28, further comprising before step (iii), contacting the slurry of (ii) with an alcohol R″OH, where R″ is a C1-C12 alkyl group.
- 33. The process of claim 32, wherein the alcohol is n-butanol.
- 34. The process of claim 32, wherein the alcohol is used in an amount of 0.5 to 2.0 moles per mole of magnesium provided by the organomagnesium compound.
- 35. The process of claim 28, wherein the Group 4 or 5 transition metal is titanium or vanadium.
- 36. The process of claim 35, wherein the non-metallocene transition metal compound is a titanium halide, a titanium alkoxyhalide, a vanadium halide, or a vanadium alkoxyhalide.
- 37. The process of claim 28, wherein the non-metallocene transition metal compound is used in an amount to provide from 0.3 to 1.5 moles of the Group 4 or 5 transition metal per mole of magnesium provided by the organomagnesium compound.
- 38. The process of claim 28, wherein the metallocene compound is a substituted, unbridged bis-cyclopentadienyl compound.
- 39. The process of claim 28, wherein the alkyl aluminum compound is trimethylaluminum.
- 40. The process of claim 28, wherein the alkyl aluminum compound is triethylaluminum.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation U.S. Ser. No. 08/621,566, filed Mar. 25, 1996, now allowed, the entire disclosure of which is expressly incorporated herein by reference.
Continuations (1)
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Number |
Date |
Country |
Parent |
08621566 |
Mar 1996 |
US |
Child |
10161534 |
Jun 2002 |
US |