Claims
- 1. A polymerization process comprising contacting at least one monomer and a catalyst composition under polymerization conditions to produce a polymer;wherein said catalyst composition is produced by a process comprising contacting at least one organometal compound, and at least one organoaluminum compound, and at least one fluorided silica-alumina to produce said catalyst composition, wherein said organometal compound has the following general formula: (X1)(X2)(X3)(X4)M1 wherein M1 is selected from the group consisting of titanium, zirconium, and hafnium; wherein (X1) is independently selected from the group consisting of cyclopentadienyls, indenyls, fluorenyls, substituted cyclopentadienyls, substituted indenyls, and substituted fluorenyls; wherein substitutents on said substituted cyclopentadienyls, substituted indenyls, and substituted fluorenyls of (X1) are selected from the group consisting of aliphatic groups, cyclic groups, combinations of aliphatic and cyclic groups, silyl groups, alkyl halide groups, halides, organometallic groups, phosphorus groups, nitrogen groups, silicon, phosphorus, boron, and germanium; wherein at least one substituent on (X1) can be a bridging group which connects (X1) and (X2); wherein (X3) and (X4) are independently selected from the group consisting of halides, aliphatic groups substituted aliphatic groups, cyclic groups, substituted cyclic groups, combinations of aliphatic groups and cyclic groups, combinations of substituted aliphatic groups and cyclic groups, combinations of aliphatic groups and substituted cyclic groups, combinations of substituted aliphatic groups and substituted cyclic groups, amido groups, substituted amido groups, phosphido groups, substituted pphosphido groups, alkyloxide groups, substituted alkyloxide groups, aryloxide groups, substituted aryloxide groups, organometallic groups, and substituted organometallic groups; wherein (X2) is selected from the group consisting of cyclopentadienyls, indenyls, fluorenyls, substituted cyclopentadienyls, substituted indenyls, substituted fluorenyls, halides, aliphatic groups, substituted aliphatic groups, cyclic groups, substituted cyclic groups, combinations of aliphatic groups and cyclic groups, combinations of substituted aliphatic groups and cyclic groups, combinations of aliphatic groups and Substituted cyclic groups, combinations of substituted aliphatic groups and substituted cyclic groups, amido groups, substituted amido groups, phosphido groups, substituted phosphido groups, alkyloxide groups, substituted alkyloxide groups, aryloxide groups, substituted aryloxide groups, organometallic groups, and substituted organometallic groups; wherein substitutents on (X2) are selected from the group consisting of aliphatic groups, cyclic groups, combinations of aliphatic groups and cyclic groups, silyl groups, alkyl halide groups, halides, organometallic groups, phosphorus groups, nitrogen groups, silicon, phosphorus, boron, and germanium; wherein at least one substitutuent on (X2) can be a bridging group which connects (X1) and (X2); wherein said organoaluminum compound has the general formula: Al(X5)n(X6)3-n wherein (X5) is a hydrocarbyl having from 1 to about 20 carbon atoms; wherein (X6) is a halide, hydride, or alkoxide; and wherein “n” is a number from 1 to 3 inclusive; and wherein said fluorided silica-alumina comprises fluoride, silica, and alumina; and wherein there is a absence of organoborates and aluminoxanes.
- 2. A process according to claim 1 wherein said polymerization conditions comprise slurry polymerization conditions.
- 3. A process according to claim 2 wherein said contacting is conducted in a loop reaction zone.
- 4. A process according to claim 3 wherein said contacting is conducted in the presence of a diluent that comprises, in major part, isobutane.
- 5. A process according to claim 1 wherein at least one monomer is ethylene.
- 6. A process according to claim 1 wherein at least one monomer comprises ethylene and an aliphatic 1-olefin having 3 to 20 carbon atoms per molecule.
Parent Case Info
This application is a divisional of application Ser. No. 09/401,354, filed on Sep. 27, 1999, now U.S. Pat. No. 6,355,594.
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