Claims
- 1. A process for homopolymerizing ethylene, or copolymerizing ethylene with a comonomer, to produce an ethylene polymer that has an increased amount of long chain branching and a decreased amount of die swell, said process comprising polymerizing ethylene with a chromium catalyst composition that comprises:
- (a) a support that comprises silica, wherein said support has a surface area (SA) to pore volume relationship as follows
- 0.5.ltoreq.Pore volume.ltoreq.f(SA)
- wherein said f(SA) is
- (1.14.times.10.sup.-7)(SA).sup.3 -(1.19.times.10.sup.-4)(SA).sup.2 +(3.19.times.10.sup.-2)(SA)+0.20;
- and
- (b) a hexavalent chromium compound; wherein the surface concentration of said hexavalent chromium on said support is from 0.4 to 1 hexavalent chromium atoms per square nanometer.
- 2. A process according to claim 1 wherein said support consists essentially of silica.
- 3. A process according to claim 2 wherein said support consists of silica.
- 4. A process according to claim 2 wherein said support consists essentially of silica and a refractory metal oxide selected from the group consisting of alumina, boria, magnesia, thoria, zirconia, titania, and mixtures of two or more said refractory metal oxides.
- 5. A process according to claim 4 wherein said support consists essentially of silica and titania.
- 6. A process according to claim 4 wherein said support consists of silica and titania.
- 7. A process according to claim 1 wherein said support has a surface area from about 50 to about 500 square meters per gram.
- 8. A process according to claim 1 wherein said support has a surface area from 100 to 300 square meters per gram.
- 9. A process according to claim 1 wherein said support has a pore volume from about 0.5 to about 2.5 cubic centimeters per gram.
- 10. A process according to claim 1 wherein said support has a pore volume from 1 to 2 cubic centimeters per gram.
- 11. A process according to claim 1 wherein the amount of said hexavalent chromium is from about 0.5 to about 5 weight percent based on the weight of said chromium compound and said support.
- 12. A process according to claim 1 wherein the amount of said hexavalent chromium is from about 1 to about 4 weight percent based on the weight of said chromium compound and said support.
- 13. A process according to claim 1 wherein the amount of said hexavalent chromium is from 1 to 3 weight percent based on the weight of said chromium compound and said support.
- 14. A process according to claim 1 wherein said surface concentration of said hexavalent chromium Is from about 0.25 to about 1 hexavalent chromium atoms per square nanometer.
- 15. A process according to claim 1 wherein said hexavalent chromium has been activated at a temperature from about 750.degree. C. to about 1000.degree. C.
- 16. A process according to claim 1 wherein said hexavalent chromium has been activated at a temperature from about 800.degree. C. to about 1000.degree. C.
- 17. A process according to claim 1 wherein said hexavalent chromium has been activated at a temperature from 800.degree. C. to 925.degree. C.
- 18. A process according to claim 1 wherein said polymerizing is conducted in the presence of a cocatalyst selected from the group consisting of trialkylaluminum compounds, trialkylboron compounds, and mixtures of said cocatalysts.
- 19. A process according to claim 1 wherein said polymerizing is conducted in the presence of a trialkylaluminum cocatalyst.
- 20. A process according to claim 19 wherein said trialkylaluminum cocatalyst is triethylaluminum.
- 21. A process according to claim 1 wherein said polymerizing is conducted in the presence of a trialkylboron cocatalyst.
- 22. A process according to claim 21 wherein said trialkylboron cocatalyst is triethylboron.
- 23. A process for homopolymerizing ethylene, or copolymerizing ethylene with a comonomer, to produce an ethylene polymer that has an increased amount of long chain branching and a decreased amount of die swell, said process consisting essentially of polymerizing ethylene with a chromium catalyst composition that consists essentially of:
- (a) a support that is selected from the group consisting of silica and silica titania, wherein said support has a surface area (SA) to pore volume relationship as follows
- 0.5.ltoreq.Pore volume.ltoreq.f(SA)
- wherein said f(SA) is
- (1.14.times.10.sup.-7)(SA).sup.3 -(1.19.times.10.sup.-4)(SA).sup.2 +(3.19.times.10.sup.-2)(SA)+0.20;
- and
- (b) a hexavalent chromium compound, wherein said hexavalent chromium compound is activated at a temperature from 800.degree. C. to 925.degree. C.; wherein the surface concentration of said hexavalent chromium on said support is from 0.4 to 1 hexavalent chromium atoms per square nanometer.
- 24. A process for homopolymerizing ethylene, or copolymerizing ethylene with a comonomer, to produce an ethylene polymer that has an increased amount of long chain branching and a decreased amount of die swell, said process consisting essentially of polymerizing ethylene with a chromium catalyst composition that consists essentially of:
- (a) a support that is selected from the group consisting of silica and silica/titania, wherein said support has a surface area (SA) to pore volume relationship as follows
- 0.5.ltoreq.Pore volume.ltoreq.f(SA)
- wherein said f(SA) is
- (1.14.times.10.sup.-7)(SA).sup.3 -(1.19.times.10.sup.-4)(SA).sup.2 +(3.19.times.10.sup.-2)(SA)+0.20;
- and wherein said support is calcined at a temperature from 750.degree. C. to 1000.degree. C.;
- and
- (b) a hexavalent chromium compound, wherein said hexavalent chromium compound is activated at a temperature from 600.degree. C. to 700.degree. C.; wherein the surface concentration of said hexavalent chromium on said support is from 0.4 to 1 hexavalent chromium atoms per square nanometer, and wherein said polymerizing is conducted in the presence of a cocatalyst selected from the group consisting of triethylaluminum, triethylboron, and mixtures of said cocatalysts.
Parent Case Info
This application is a Division of application Ser. No. 08/174,938, filed Dec. 28, 1993, now pending.
US Referenced Citations (4)
Divisions (1)
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Number |
Date |
Country |
Parent |
174938 |
Dec 1993 |
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