Claims
- 1. A method for prepolymerizing a catalyst system comprising:(a) providing a catalyst system wherein the catalyst system has an activity greater than about 100,000 g/g/hr, and comprises a metallocene catalyst component and a support consisting essentially of an inorganic oxide provided that the support does not simultaneously include titanium, magnesium and halogen; (b) providing at least one alpha-olefin monomer feed at a feed rate; (c) providing hydrogen; (d) combining the catalyst system, alpha-olefin monomer feed, and hydrogen under prepolymerization reaction conditions; and (e) recovering a prepolymerized, non-fouling, non-agglomerating supported catalyst system.
- 2. The method of claim 1 wherein the inorganic oxide consists essentially of Group-2a, -3a, -4a, -4b, or -5b metal oxide.
- 3. The method of claim 1 wherein the inorganic oxide consists essentially of silica, magnesia, alumina, titania, zirconia, or their mixtures.
- 4. The method of claim 1 wherein the metallocene catalyst component has the following formula: whereinM is a metal of Group 4, 5, or 6 of the Periodic Table; R1 and R2 are identical or different, and are one of a hydrogen atom, a C1-C10 alkyl group, a C1-C3 alkyl group, a C1-C10 alkoxy group, a C6-C10 aryl group, a C6-C10 aryloxy group, a C2-C10 alkenyl group, a C7-C40 arylalkyl group, a C7-C40 alkylaryl group, a C8-C40 arylalkenyl group, or a halogen atom; R3 and R4 are hydrogen atoms; R5 and R6 are identical or different, and are one of a halogen atom, a halogenated or unhalogenated C1-C10 alkyl group, a halogenated or unhalogenated C6-C10 aryl group, a C2-C10 alkenyl group, a C7-C40-arylalkyl group, a C7-C40 alkylaryl group, a C8-C40 arylalkenyl group, a —NR215, —SR15, —OR15, —OSiR315 or —PR215 radical, wherein R15 is one of a halogen atom, a C1-C10 alkyl group, or a C6-C10 aryl group; ═BR11, ═AR11, —Ge—, —Sn—, —O—, —S—, ═SO, ═SO2, ═NR11, ═CO, PR11, or ═P(O)R11; wherein: R11, R12 and R13 are identical or different and are a hydrogen atom, a halogen atom, a C1-C20 alkyl group, a C1-C20 fluoroalkyl group, a C6-C30 aryl group, a C6-C30 fluoroaryl group, a C1-C20 alkoxy group, a C2-C20 alkenyl group, a C7-C40 arylalkyl group, a C8-C40 arylalkenyl group, a C7-C40 alkylaryl group, or R11 and R12, or R11 and R13 can form ring systems with the atoms they are connected to; M2 is silicon, germanium or tin; R8 and R9 are identical or different and have the meanings stated for R11; m and n are identical or different and are zero, 1 or 2, m plus n is zero, 1 or 2; and R10 are identical or different radicals, and have the meanings stated for R11, R12 and R13; two adjacent R10 can be joined together to form a ring system.
- 5. The method of claim 1 wherein the metallocene component is represented by the formula: wherein:M1 is Zr or Hf, R1 and R2 are methyl or chlorine, and R5 and R6 are identical or different, and are one of a halogen atom, a halogenated or unhalogenated C1-C10 alkyl group, a halogenated or unhalogenated C6-C10 aryl group, a C2-C10 alkenyl group, a C7-C40-arylalkyl group, a C7-C40 alkylaryl group, a C8-C40 arylalkenyl group, a —NR215, —SR15, —OR15, —OSiR315 or —PR215 radical; wherein R15 is one of a halogen atom, a C1-C10 alkyl group, or a C6-C10 aryl group; R11, R12 and R13 are identical or different and are a hydrogen atom, a halogen atom, a C1-C20 alkyl group, a C1-C20 fluoroalkyl group, a C6-C30 aryl group, a C6-C30 fluoroaryl group, a C1-C20 alkoxy group, a C2-C20 alkenyl group, a C7-C40 arylalkyl group, a C8-C40 arylalkenyl group, a C7-C40 alkylaryl group, or R11 and R12, or R11 and R13 can form ring systems with the atoms they are connected to; R8 and R9 are identical or different and have the meanings stated for R11; R10 are identical or different radicals, and have the meanings stated for R11, R12 and R13; two adjacent R10 can be joined together to form a ring system.
- 6. A method for prepolymerizing a catalyst system comprising:(a) providing a catalyst system wherein the catalyst system has an activity greater than about 100,000 g/g/hr, and comprises metallocene catalyst component and a support consisting essentially of an inert solid provided that the support does not simultaneously include titanium, magnesium, and halogen; (b) providing at least one alpha-olefin monomer feed at a feed rate; (c) providing hydrogen; (d) combining the catalyst system, alpha-olefin monomer feed, and hydrogen under prepolymerization reaction conditions; and (e) recovering a prepolymerized, non-fouling, non-agglomerating supported catalyst system.
- 7. The method of claim 6 wherein the inert solid is inorganic.
- 8. A method for prepolymerizing a catalyst system comprising:(a) providing a catalyst system wherein the catalyst system has an activity greater than about 100,000 g/g/hr, and comprises metallocene catalyst component and a support consisting essentially of a porous inert solid provided that the support does not simultaneously include titanium, magnesium and halogen; (b) providing at least one alpha-olefin monomer feed at a feed rate; (c) providing hydrogen; (d) combining the catalyst system, alpha-olefin monomer feed, and hydrogen under prepolymerization reaction conditions; and (e) recovering a prepolymerized, non-fouling, non-agglomerating supported catalyst system.
- 9. The method of claim 8 wherein the porous inert solid is inorganic.
- 10. The method of claim 9 wherein the porous inert solid is a layered silicate.
- 11. The method of claim 10 wherein the layered silicate is talc.
- 12. A method for prepolymerizing a catalyst system comprising:(a) providing a catalyst system wherein the catalyst system has an activity greater than about 100,000 g/g/hr, and comprises a metallocene catalyst component and a support, provided that the support does not simultaneously include titanium, magnesium, and halogen; (b) providing at least one alpha-olefin monomer feed at a feed rate; (c) providing hydrogen; (d) combining the catalyst system, alpha-olefin monomer feed, and hydrogen under prepolymerization reaction conditions; and (e) recovering a prepolymerized, non-fouling, non-agglomerating, supported catalyst system.
- 13. The method of claim 12 wherein the support comprises one of inorganic oxides and resinous support materials.
- 14. The method of claim 13 wherein the inorganic oxides comprise a Group-2a, -3a, -4a, -4b, or -5b metal oxide.
- 15. The method of claim 12 wherein the inorganic oxide consists essentially of Group-2a, -3a, -4a, -4b, or -5b metal oxide.
- 16. The method of claim 12 wherein the inorganic oxide consists essentially of silica, magnesia, alumina, titania, zirconia, or their mixtures.
- 17. The method of claim 1 wherein the catalyst has an activity or greater than about 150,000 g/g/hr.
- 18. The method of claim 17 wherein the monomer feed is ethylene.
- 19. The method of claim 17 wherein the monomer feed is propylene.
- 20. The method of claim 1 wherein hydrogen is added in an amount between about 0.1 to about 10 mole percent relative to the monomer feed rate.
- 21. The method of claim 20 wherein hydrogen is added between about 0.5 to about 6 mole percent.
- 22. The method of claim 21 wherein hydrogen is added between about 1 to about 3 mole percent.
- 23. The method of claim 1 wherein the monomer feed is added at a rate of about 0.1 to about 10 g olefin/g catalyst solid/hour.
- 24. The method of claim 23 wherein the monomer feed is added at a rate of about 0.1 to about 5 g olefin/g catalyst solid/hour.
- 25. The method of claim 24 wherein the monomer feed is added at a rate of about 0.5 to about 1.5 g olefin/g catalyst solid/hour.
- 26. The method of claim 1 wherein the catalyst system has an activity of greater than about 200,000 g/g/hr.
- 27. The method of claim 26 wherein the catalyst system has an activity of from about 150,000 g/g/hr. to about 1,000,000 g/g/hr.
- 28. The method of claim 1 wherein the prepolymerization is conducted at a temperature that is in the range of from about 0 to about 10° C.
- 29. The method of claim 1 wherein the supported catalyst system comprises a metallocene catalyst component represented by the formula: wherein M1 is a metal of Group 4, 5, or 6 of the Periodic Table; R1 and R2 are identical or different, are one of a hydrogen atom, a C1-C10 alkyl group, a C1-C3 alkyl group, a C1-C10 alkoxy group, a C6-C10 aryl group, a C6-C10 aryloxy group, a C2-C10 alkenyl group, a C7-C40 arylalkyl group, a C7-C40 alkylaryl group, a C8-C10 arylalkenyl group, or a halogen atom; R3 and R4 are hydrogen atoms; R5 and R6 are identical or different, preferably identical, and are one of a halogen atom, C1-C10 alkyl group, which may be halogenated, a C6-C10 aryl group, which may be halogenated, a C2-C10 alkenyl group, a C7-C40-arylalkyl group, a C7-C40 alkylaryl group, a C8-C40 arylalkenyl group, a —NR215, —SR15, —OR15, —OSiR315 or —PR215 radical, wherein R15 is one of a halogen atom, a C1-C10 alkyl group, or a C6-C10 aryl group; R7 is ═BR11, ═AlR11, —Ge—, —Sn—, —O—, —S—, ═SO, ═SO2, ═NR11, ═CO, PR11, or ═P(O)R11; wherein: R11, R12 and R13 are identical or different and are a hydrogen atom, a halogen atom, a C1-C20 alkyl group, a C1-C20 fluoroalkyl group, a C6-C30 aryl group, a C6-C30 fluoroaryl group, a C1-C20 alkoxy group, a C2-C20 alkenyl group, a C7-C40 arylalkyl group, a C8-C40 arylalkenyl group, a C7-C40 alkylaryl group, or R11 and R12, or R11 and R13, together with the atoms binding them, can form ring systems; M2 is silicon, germanium or tin; R8 and R9 are identical or different and have the meanings stated for R11; m and n are identical or different and are zero, 1 or 2, preferably zero or 1, m plus n being zero, 1 or 2, preferably zero or 1; and the radicals R10 are identical or different and have the meanings stated for R11, R12 and R13; two adjacent R10 radicals can be joined together to form a ring system.
- 30. The method of claim 29 wherein M2 is silicon.
- 31. The method of claim 1 wherein the metallacene catalyst system comprises a metallocene component represented by the formula: wherein: M1 is Zr or Hf, R1 and R2 are methyl or chlorine, and R5, R6 R8, R9, R10, R11 and R12 have the meanings as defined in claim 4.
Parent Case Info
This is a Continuation-in-Part of U.S. application Ser. No. 08/174,498, filed Dec. 28, 1993, now abandoned.
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08/174498 |
Dec 1993 |
US |
Child |
08/401514 |
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US |