Claims
- 1. A process for the polymerization of olefins which comprises contacting said olefin at elevated temperatures and elevated pressures with an activator and a solid, particulate, catalyst complex prepared by a process comprising reducing TiCl.sub.4, containing the resultant reduced solid with a complexing agent to obtain a treated solid and contacting the treated solid with TiCl.sub.4 in the presence of silica which has been treated with an aromatic ester.
- 2. A process as defined in claim 1 wherein said aromatic ester is selected from the group consisting of those having the following formulas: ##STR2## wherein each Y is a member selected from the group consisting of alkyl radicals having from about one to about eight carbon atoms and alkenyl radicals having from about two to about eight carbon atoms, each X is a member selected from the group consisting of hydrogen, halogen radicals, alkoxy radicals having from about one to about eight carbon atoms, alkyl radicals having from about one to about eight carbon atoms and alkenyl radicals having from about two to about eight carbon atoms, and x has a value of one or two.
- 3. A process as defined in claim 1 wherein said aromatic ester is ethyl benzoate.
- 4. A process as defined in claim 1 wherein said silica has a mean particle size in the range of about 1 to about 100 microns.
- 5. A process as defined in claim 1 wherein said silica has a mean particle size in the range of about 1 to about 25 microns.
- 6. A process as defined in claim 2 wherein said silica has a mean particle size in the range of about 1 to about 100 microns.
- 7. A process as defined in claim 2 wherein said silica has a mean particle size in the range of about 1 to about 25 microns.
- 8. A process as defined in claim 3 wherein said silica has a mean particle size in the range of about 1 to about 100 microns.
- 9. A process as defined in claim 3 wherein said silica has a mean particle size in the range of about 1 to about 25 microns.
- 10. A process as defined in claim 1 wherein said silica is calcined at a temperature in the range of about 350.degree. to about 700.degree. C. for about one to about five hours prior to being treated with said aromatic ester.
- 11. A process as defined in claim 1 wherein said silica is calcined at a temperature in the range of about 400.degree. to about 500.degree. C. for about two to about three hours prior to being treated with said aromatic ester.
- 12. A process as defined in claim 2 wherein said silica is calcined at a temperature in the range of about 350.degree. to about 700.degree. C. for about one to about five hours prior to being treated with said aromatic ester.
- 13. A process as defined in claim 2 wherein said silica is calcined at a temperature in the range of about 400.degree. to about 500.degree. C., for about two to about three hours prior to being treated with said aromatic ester.
- 14. A process as defined in claim 3 wherein said silica is calcined at a temperature in the range of about 350.degree. to about 700.degree. C. for about one to about five hours prior to being treated with said aromatic ester.
- 15. A process as defined in claim 3 wherein said silica is calcined at a temperature in the range of about 400.degree. to about 500.degree. C. for about two to about three hours prior to being treated with said aromatic ester.
- 16. A process as defined in claim 1 wherein said silica is treated with said aromatic ester by introducing them into a hydrocarbon solvent, the molar ratio of aromatic ester to silica being in the range of about 1:10 to about 1:1, and heating the resultant slurry to a temperature in the range of about 70.degree. to about 300.degree. C. for about one to about ten hours.
- 17. A process as defined in claim 1 wherein said silica is treated with said aromatic ester by introducing them into a hydrocarbon solvent, the molar ratio of aromatic ester to silica being in the range of about 1:8 to about 1:2, and heating the resultant slurry to a temperature in the range of about 100.degree. to about 200.degree. C. for about two to about five hours.
- 18. A process as defined in claim 2 wherein said silica is treated with said aromatic ester by introducing them into a hydrocarbon solvent, the molar ratio of aromatic ester to silica being in the range of about 1:10 to about 1:1, and heating the resultant slurry to a temperature in the range of about 70.degree. to about 300.degree. C. for about one to about ten hours.
- 19. A process as defined in claim 2 wherein said silica is treated with said aromatic ester by introducing them into a hydrocarbon solvent, the molar ratio of aromatic ester to silica being in the range of about 1:8 to about 1:2, and heating the resultant slurry to a temperature in the range of about 100.degree. to about 200.degree. C. for about two to about five hours.
- 20. A process as defined in claim 3 wherein said silica is treated with said aromatic ester by introducing them into a hydrocarbon solvent, the molar ratio of aromatic ester to silica being in the range of about 1:10 to about 1:1, and heating the resultant slurry to a temperature in the range of about 70.degree. to about 300.degree. C. for about one to about ten hours.
- 21. A process as defined in claim 3 wherein said silica is treated with said aromatic ester by introducing them into a hydrocarbon solvent, the molar ratio of aromatic ester to silica being in the range of about 1:8 to about 1:2, and heating the resultant slurry to a temperature in the range of about 100.degree. to about 200.degree. C. for about two to about five hours.
- 22. A process as defined in claim 1 wherein said TiCl.sub.4 is reduced to a solid product based on TiCl.sub.3 by means of treatment with a reducing agent of the formula AlR.sub.n X.sub.3-n, wherein R is a hydrocarbon radical containing from about 1 to about 18 carbon atoms, X is halogen and n is an integer greater than 0 but no greater than 3, said treatment being conducted in an inert medium.
- 23. A process as defined in claim 2 wherein said TiCl.sub.4 is reduced to a solid product based on TiCl.sub.3 by means of treatment with a reducing agent of the formula AlR.sub.n X.sub.3-n, wherein R is a hydrocarbon radical containing from about 1 to about 18 carbon atoms, X a halogen and n is an integer greater than 0 but no greater than 3, said treatment being conducted in an inert medium.
- 24. A process as defined in claim 3 wherein said TiCl.sub.4 is reduced to a solid product based on TiCl.sub.3 by means of treatment with a reducing agent of the formula AlR.sub.n X.sub.3-n, wherein R is a hydrocarbon radical containing from about 1 to about 18 carbon atoms, X is halogen and n is an integer greater than 0 but no greater than 3, said treatment being conducted in an inert medium.
- 25. A process as defined in claim 1 wherein said complexing agent is an organic compound containing groups capable of donating one or more pairs of electrons selected from the group consisting of ethers, thioethers, thiols, phosphines, stibines, arsines, amines, amides, ketones and esters, said treatment being conducted in an inert diluent.
- 26. A process as defined in claim 2 wherein said complexing agent is an organic compound containing groups capable of donating one or more pairs of electrons selected from the group consisting of ethers, thioethers, thiols, phosphines, stibines, arsines, amines, amides, ketones and esters, said treatment being conducted in an inert diluent.
- 27. A process as defined in claim 3 wherein said complexing agent is an organic compound containing groups capable of donating one or more pairs of electrons selected from the group consisting of ethers, thioethers, thiols, phosphines, stibines, arsines, amines, amides, ketones and esters, said treatment being conducted in an inert diluent.
- 28. A process as defined in claim 1 wherein said complexing agent is selected from the group consisting of those having the formulas R'--O--R", R'--S--R", R'--N--R" and R'--S--H, wherein R' and R" are each a hydrocarbon radical containing from 1 to 15 carbon atoms.
- 29. A process as defined in claim 2 wherein said complexing agent is selected from the group consisting of those having the formulas R'--O--R", R'--S--R", R'--N--R" and R'--S--H, wherein R' and R" are each a hydrocarbon radical containing from 1 to 15 carbon atoms.
- 30. A process as defined in claim 3 wherein said complexing agent is selected from the group consisting of those having the formulas R'--O--R", R'--S--R", R'--N--R" and R'--S--H, wherein R' and R" are each a hydrocarbon radical containing from 1 to 15 carbon atoms.
- 31. A process as defined in claim 1 wherein the weight percent of the treated silica in the catalytic complex is in the range of about 90 to about 10.
- 32. A process as defined in claim 1 wherein the weight percent of the treated silica in the catalytic complex is in the range of about 60 to about 40.
- 33. A process as defined in claim 2 wherein the weight percent of the treated silica in the catalytic complex is in the range of about 90 to about 10.
- 34. A process as defined in claim 2 wherein the weight percent of the treated silica in the catalytic complex is in the range of about 60 to about 40.
- 35. A process as defined in claim 3 wherein the weight percent of the treated silica in the catalytic complex is in the range of about 90 to about 10.
- 36. A process as defined in claim 3 wherein the weight percent of the treated silica in the catalytic complex is in the range of about 60 to about 40.
- 37. A process as defined in claim 1 wherein said activator has the formula AlR"'.sub.m X'.sub.3-m wherein R"' is a hydrocarbon radical containing from 1 to 18 carbon atoms, X' is halogen and m is a number greater than 0 but no greater than 3.
- 38. A process as defined in claim 2 wherein said activator has the formula AlR"'.sub.m X'.sub.3-m wherein R"' is a hydrocarbon radical containing from 1 to 18 carbon atoms, X' is halogen and m is a number greater than 0 but no greater than 3.
- 39. A process as defined in claim 3 wherein said activator has the formula AlR"'.sub.m X'.sub.3-m wherein R"' is a hydrocarbon radical containing from 1 to 18 carbon atoms, X' is halogen and m is a number greater than 0 but no greater than 3.
CROSS-REFERENCES TO RELATED APPLICATIONS
This is a division of application Ser. No. 227,733 filed Jan. 23, 1981, now U.S. Pat. No. 4,367,161.
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Divisions (1)
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Number |
Date |
Country |
Parent |
227733 |
Jan 1981 |
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