Claims
- 1. A method for temporarily and reversibly passivating an active metallocene catalyst system comprising contacting the catalyst system with a passivator selected from oxygen, oxygen-containing compounds and nitrogen-containing compounds.
- 2. The method of claim 1 wherein said metallocene catalyst system comprises a Group 4 or Group 5 metallocene and a cocatalyst.
- 3. The method of claim 1 wherein said metallocene catalyst system comprises a zirconium metallocene and an aluminoxane.
- 4. The method of claim 1 wherein said oxygen-containing compound is selected from metal alkoxides, ethers and cyclic ethers.
- 5. The method of claim 1 wherein said nitrogen-containing compound is selected from alkylamines, cycloalkylamines, and metal amides.
- 6. The method of claim 1 wherein said passivator is oxygen.
- 7. The method of claim 1 wherein said metallocene catalyst system is a supported metallocene catalyst system comprising a Group 4 or Group 5 metallocene, a cocatalyst and a suitable carrier.
- 8. The method of claim 1 wherein the activity of said catalyst system after contacting with said passivator, as determined by catalyst yield in an olefin polymerization process, is no greater than 50% of the activity of the catalyst system before contacting with said passivator.
- 9. The method of claim 1 wherein an active supported metallocene catalyst system comprising a zirconium metallocene, an aluminoxane and a suitable carrier is temporarily and reversibly passivated by contacting said catalyst system with an effective amount of a passivator selected from the group consisting of oxygen, oxygen-containing compounds and nitrogen-containing compounds, said catalyst system after contacting with said passivator having an activity as determined by catalyst yield in an olefin polymerization process, no greater than 50% of the activity of the catalyst system before contacting with said passivator.
- 10. A latent olefin polymerization catalyst comprising a Group 4 or Group 5 metallocene, a cocatalyst and a passivator selected from the group consisting of oxygen, oxygen-containing compounds and nitrogen-containing compounds.
- 11. The catalyst of claim 10 wherein said passivator is selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides.
- 12. The catalyst of claim 10 comprising a zirconium metallocene, an aluminoxane and a passivator selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides.
- 13. The catalyst of claim 10 wherein said catalyst is a supported catalyst comprising a zirconium metallocene, an aluminoxane, a suitable carrier, and a passivator selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides.
- 14. The catalyst of claim 13 wherein said passivator is oxygen.
- 15. The catalyst of claim 10 comprising a zirconium metallocene, an aluminoxane, a suitable carrier, and from about 1 to about 5 equivalents, per equivalent of zirconium, of a passivator selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides.
- 16. A process for the polymerization of C2-C14 olefins comprising the steps of feeding a latent olefin polymerization catalyst and at least one C2-C14 olefin monomer to a polymerization reactor, dispersing said latent catalyst in the polymerization medium contained therein, and reactivating said latent catalyst.
- 17. The process of claim 16 wherein said latent catalyst is reactivated by contacting with an alkylating compound.
- 18. The process of claim 16 comprising the steps of feeding a latent olefin polymerization catalyst, at least one C2-C14 olefin monomer and an activator to a polymerization reactor, dispersing said latent catalyst in the polymerization medium contained therein, and holding said polymerization medium at an elevated temperature sufficient to reactivate said catalyst and polymerize said monomer.
- 19. The process of claim 16 wherein said latent catalyst comprises a zirconium metallocene, a cocatalyst, and an effective amount of a passivator selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides.
- 20. The process of claim 16 comprising the steps of feeding (a) a latent olefin polymerization catalyst comprising a zirconium metallocene, an aluminoxane and a passivator selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides, and (b) at least one C2-C14 olefin monomer, to a polymerization reactor, dispersing said latent catalyst in the polymerization medium contained therein, and reactivating said latent catalyst by contacting with an effective amount of a metal alkyl.
- 21. The process of claim 16 wherein said latent catalyst is a supported metallocene catalyst system comprising a zirconium metallocene, an aluminoxane, a suitable carrier, and a passivator selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides in amount effective to reduce the olefin polymerization activity of said catalyst system to less than about 50% of the activity in the absence of said passivator.
- 22. The process of claim 16 comprising the steps of feeding (a) a supported metallocene catalyst system comprising a zirconium metallocene, an aluminoxane, a suitable carrier, and a passivator selected from the group consisting of oxygen, metal alkoxides, ethers, cyclic ethers, alkylamines, cycloalkylamines and metal amides in amount effective to reduce the olefin polymerization activity of said catalyst system to less than about 50% of the activity in the absence of said passivator, (b) at least one C2-C14 olefin monomer and (c) an aluminum alkyl to a polymerization reactor, dispersing said latent catalyst in the polymerization medium contained therein, and holding said polymerization medium at an elevated temperature sufficient to reactivate said catalyst and polymerize said monomer.
- 23. The process of claim 22 wherein said olefin monomer comprises propylene, ethylene, or a mixture of propylene and ethylene.
- 24. The process of claim 23 wherein said olefin monomer is propylene.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/322,341, filed Sep. 14, 2001, which is incorporated by reference herein.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60322341 |
Sep 2001 |
US |