Claims
- 1. An olefin polymerization catalyst precursor composition prepared by a process comprising the steps of:
- (a) contacting a solid, porous carrier with an aluminum compound of the formula
- R.sub.k Al Z.sub.(3-k) (I)
- where R is a C.sub.1 -C.sub.10 alkyl group, Z is a halogen and k is 1, 2 or 3;
- (b) contacting the product of step (a) with a mixture containing a vanadium compound of the formula
- VO.sub.m X.sub.(n-2m) (II)
- where X is a halogen, m is 0 or 1, and n is 2, 3, 4 or 5, and a titanium compound of the formula
- Ti X'.sub.4 (III)
- where X' is a halogen; and
- (c) contacting the product of step (b) with an ether selected from the group consisting of an alkyl ether having 2 to 18 carbon atoms, an alkyl/aryl ether having 2 to 18 carbon atoms, or a silane ether of the formula
- R" Si(OR'").sub.m R.sup.IV.sub.(3-m) (IV)
- where R", R'" and R.sup.IV are the same or different alkyl or aryl groups and m is 1, 2 or 3.
- 2. A catalyst precursor of claim 1 where R is a C.sub.2 -C.sub.5 alkyl group.
- 3. A catalyst precursor of claim 2 wherein R is an ethyl group.
- 4. A catalyst precursor of claim 3 wherein k is 3.
- 5. A catalyst precursor of claim 4 wherein X and X' are each the same or different and they are bromine or chlorine.
- 6. A catalyst precursor of claim 5 wherein X and X' are each chlorine.
- 7. A catalyst precursor of claim 5 wherein the vanadium compound of the formula (II) is vanadium oxytrichloride.
- 8. A catalyst precursor of claim 7 wherein the ether is a cyclic alkyl ether or a silane ether.
- 9. A catalyst precursor of claim 8 wherein the ether is a cyclic alkyl ether having 2 to 7 carbon atoms or a silane ether of the formula
- R" Si(OR'")R.sup.IV.sub.(3-m)
- where R", R'", and R.sup.IV are the same or different alkyl or aryl groups and m is 1,2, or 3.
- 10. A catalyst precursor of claim 9 wherein R" is an aryl group and R'" and R.sup.IV are the same or different C.sub.1 -C.sub.4 alkyl groups.
- 11. A catalyst precursor of claim 10 wherein the ether is tetrahydrofuran or phenyltrimethoxysilane.
- 12. A catalyst precursor of claim 11 wherein the ether is tetrahydrofuran.
- 13. A catalyst precursor of claim 12 wherein the amount of the tetrahydrofuran is about 0.1 to about 2.0 mmoles/gram of the carrier.
- 14. A catalyst precursor of claim 13 wherein the amount of the tetrahydrofuran is about 0.5 to about 1.5 mmoles/gram of the carrier.
- 15. A catalyst precursor of claim 14 wherein the amount of the tetrahydrofuran is about 1.0 mmole/gram of the carrier.
- 16. A catalyst precursor of claim 15 wherein the molar ratio of V per weight unit of the carrier is about 0.3 to about 2.0 mmole/gram of the carrier.
- 17. A catalyst precursor of claim 16 wherein the molar ratio of V per weight unit of the carrier is about 0.7 to about 1.3 mmole/gram of the carrier.
- 18. A catalyst precursor of claim 17 wherein the molar ratio of V per weight unit of the carrier is about 1.0 mmole/gram of the carrier.
- 19. A catalyst precursor of claim 18 wherein the molar ratio of Ti per unit weight of the carrier is about 0.05 to about 1.0 mmoles/gram of the carrier.
- 20. A catalyst precursor of claim 19 wherein the molar ratio of Ti per unit weight of the carrier is about 0.1 to about 0.4 mmoles/gram of the carrier.
- 21. A catalyst precursor of claim 20 wherein the molar ratio of Ti per unit weight of the carrier is about 0.2 mmoles/gram of the carrier.
- 22. A catalyst precursor of claim 21 wherein the steps (a), (b) and (c) are conducted in the presence of a solvent.
- 23. A catalyst precursor of claim 22 wherein the solvent is an alkane.
- 24. A catalyst precursor of claim 23 wherein the alkane is hexane, n-heptane, octane, nonane or decane.
- 25. A catalyst precursor of claim 24 wherein the alkane is hexane.
- 26. A catalyst precursor of claim 23 wherein the carrier is silica, alumina or combinations thereof.
- 27. A catalyst precursor of claim 26 wherein the carrier is silica dehydrated by fluidizing it with air and heating at about 600.degree. C. for about 8 to 16 hours.
- 28. A catalyst precursor of claim 21 wherein the aluminum compound is trimethylaluminum, triethylaluminum, tripropylaluminum, triisopropylaluminum, tributylaluminum, triisobutylaluminum, tripentylaluminum, tri-n-hexylaluminum, triheptyl aluminum, diethylaluminum chloride or ethylaluminum dichloride.
- 29. A catalyst precursor of claim 28 wherein the aluminum compound is triethylaluminum.
- 30. A catalyst precursor of claim 28 wherein the amount of the aluminum compound is such that the ratio of Al, derived from the aluminum compound, per weight unit of the carrier is about 0.5 to about 2.0 mmoles of the Al per gram of the carrier.
- 31. A catalyst precursor of claim 30 wherein the ratio of the Al per weight unit of the carrier is about 0.8 to about 1.3 mmoles of the Al per gram of the carrier.
- 32. A catalyst precursor of claim 31 wherein the ratio of the Al per weight unit of the carrier is about 1.0 mmoles of the Al per gram of the carrier.
- 33. A catalyst precursor of claim 29 wherein the ratio of Al, derived from the triethylaluminum, per weight unit of the carrier is about 0.5 to about 2.0 mmoles of the Al per gram of the carrier.
- 34. A catalyst precursor of claim 33 wherein the ratio of Al, derived from the triethylaluminum, per weight unit of the carrier is about 0.8 to about 1.3 mmoles of the Al per gram of the carrier.
- 35. A catalyst precursor of claim 34 wherein the ratio of Al, derived from the triethylaluminum, per weight unit of the carrier is about 1.0 mmoles of the Al per gram of the carrier.
- 36. An activated olefin polymerization catalyst composition comprising the precursor of claim 1 and a catalyst activator containing a compound of Group IB, IIA, IIB, IIIB or IVB of the Periodic Chart of the Elements.
- 37. A catalyst composition of claim 36 wherein the activator is a Group IIIB metal alkyl or a dialkylhalide having 1 to 20 carbon atoms per alkyl radical.
- 38. A catalyst composition of claim 37 wherein the activator is a trialkylaluminum compound having 1 to 6 carbon atoms per alkyl radical.
- 39. A catalyst composition of claim 60 wherein the activator is triethylaluminum.
- 40. An activated olefin polymerization catalyst composition comprising the precursor of claim 35 and a catalyst activator containing a compound of Group IB, IIA, IIB, IIIB or IVB of the Periodic Chart of the Elements.
- 41. A catalyst composition of claim 40 wherein the activator is a group IIIB metal alkyl or a dialkylhalide having 1 to 20 carbon atoms per alkyl radical.
- 42. A catalyst composition of claim 41 wherein the activator is a trialkylaluminum compound having 1 to 6 carbon atoms per alkyl radical.
- 43. A catalyst composition of claim 42 wherein the activator is triethylaluminum.
- 44. A method of preparing an olefin polymerization catalyst precursor composition comprising the steps or:
- (a) contacting a solid, porous carrier with an aluminum compound of the formula
- R.sub.k Al Z.sub.(3-k) (I)
- where R is a C.sub.1 -C.sub.10 alkyl group, Z is a halogen and k is 1, 2 or 3;
- (b) contacting the product of step (a) with a mixture containing a vanadium compound of the formula
- VO.sub.m X.sub.(n-2m) (II)
- where X is a halogen, m is 0 or 1, and n is 2, 3, 4 or 5, and a titanium compound of the formula
- Ti X'.sub.4 (III)
- where X' is a halogen; and
- (c) contacting the product of step (b) with an ether selected from the group consisting of an alkyl ether having 2 to 18 carbon atoms, an alkyl/aryl ether having 2 to 18 carbon atoms, or a silane ether of the formula
- R" Si(OR'").sub.m R.sup.IV.sub.(3-m) (IV)
- where R", R'" or R.sup.IV are the same or different alkyl or aryl groups and m is 1, 2 or 3.
- 45. A method of claim 44 wherein R is a C.sub.2 -C.sub.5 alkyl group.
- 46. A method of claim 45 wherein R is an ethyl group.
- 47. A method of claim 46 wherein k is 3.
- 48. A method of claim 47 wherein X and X' are each the same or different and they are bromine or chlorine.
- 49. A method of claim 48 wherein X and X' are each chlorine.
- 50. A method of claim 49 wherein the vanadium compound of the formula (II) is vanadium oxytrichloride.
- 51. A method of claim 50 wherein the ether is a cyclic alkyl ether or a silane ether.
- 52. A method of claim 51 wherein the ether is a cyclic alkyl ether having 2 to 7 carbon atoms or a silane ether of the formula
- R" Si(OR'")R.sup.IV.sub.(3-m)
- where R", R'", and R.sup.IV are the same or different alkyl or aryl groups and m is 1,2, or 3.
- 53. A method of claim 52 wherein R" is an aryl group and R'" and R.sup.IV are the same of different C.sub.1 -C.sub.4 alkyl groups.
- 54. A method of claim 53 wherein the ether is tetrahydrofuran or phenyltrimethoxysilane.
- 55. A method of claim 54 wherein the ether is tetrahydrofuran.
- 56. A method of claim 55 wherein the amount of the tetrahydrofuran is about 0.1 to about 2.0 mmoles/gram of the carrier.
- 57. A method of claim 56 wherein the amount of the tetrahydrofuran is about 0.5 to about 1.5 mmoles/gram of the carrier.
- 58. A method of claim 57 wherein the amount of the tetrahydrofuran is about 1.0 mmole/gram of the carrier.
- 59. A method of claim 58 wherein the molar ratio of V per weight unit of the carrier is about 0.3 to about 2.0 mmmole/gram of the carrier.
- 60. A method of claim 59 wherein the molar ratio of V per weight unit of the carrier is about 0.7 to about 1.3 mmole/gram of the carrier.
- 61. A method of claim 60 wherein the molar ratio of V per weight unit of the carrier is about 1.0 mmole/gram of the carrier.
- 62. A method of claim 61 wherein the molar ratio of Ti per unit weight of the carrier is about 0.05 to about 0.1 mmoles/gram of the carrier.
- 63. A method of claim 62 wherein the molar ratio of Ti per unit weight of the carrier is about 0.1 to about 0.4 mmoles/gram of the carrier.
- 64. A method of claim 63 wherein the molar ratio of Ti per unit weight of the carrier is about 0.2 mmoles/gram of the carrier.
- 65. A method of claim 64 wherein the steps (a), (b) and (c) are conducted in the presence of a solvent.
- 66. A method of claim 65 wherein the solvent is an alkane.
- 67. A method of claim 66 wherein the alkane is hexane, n-heptane, octane, nonane or decane.
- 68. A method of claim 67 wherein the alkane is hexane.
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation-in-part of Ser. No. 144,821, filed on Jan. 15, 1988, and now U.S. Pat. No. 4,831,000, the entire contents of which are incroporated herein by reference.
US Referenced Citations (16)
Non-Patent Literature Citations (5)
Entry |
Miro et al, co-pending U.S. application, Ser. No. 144,454, filed 1/15/88. |
Miro, U.S. application, Ser. No. 376,077, filed 7/5/89. |
Miro, U.S. application, Ser. No. 308,915, filed 2/10/89. |
Ser. No. 253,935, filed Oct. 5, 1988 (Mobil Docket 4147FC). |
Ser. No. 937,858, filed Dec. 4, 1986 (Mobil Docket 4147). |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
144821 |
Jan 1988 |
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