Claims
- 1. A process for polymerizing ethylene, either alone or in combination with one or more other olefins, said process comprising contacting said ethylene either, alone or in combination with one or more other olefins, with a catalyst comprising a cyclopentadienyl-group 4b transition metal compound and an alumoxane wherein the molar ratio of aluminum in the alumoxane to the total metal in the transition metal compound is in the range of 1000:1 to 0.5:1 at a temperature greater than 120.degree. C. and a pressure of about 500 bar or greater.
- 2. The process of claim 1 wherein the molar ratio is in the range of 100:1 to 1:1.
- 3. The process of claim 2 wherein the molar ratio is in the range of 50:1 to 1:1.
- 4. The process of claim 1 wherein said pressure is above about 500 bar and the temperature is in the range of 150.degree. C. to 300.degree. C.
- 5. The process of claim 1 wherien siad pressure is within the range from about 500 bar to about 3500 bar.
- 6. The process of claim 5 wherein said pressure is in the range of 550 to about 3500 bar.
- 7. The process of claim 4 wherien the temperature is in the range of 180.degree. C. to 280.degree..
- 8. The process of claim 1 wherein said cyclopentadienyl-transition metal compound can be represented by one of the following general formulae:
- (Cp).sub.m MR.sub.n X.sub.q ( (I)
- wherein Cp is a cyclopentadienyl ring, M is a Group 4b transisiton metal, R is a hydrocarbyl group or hydrocarboxy having from 1 to 20 carbon atoms, X is a halogen, and m is a whole number from 1 to 3, n is a whole number from 0 to 3, and q is a whole number from 0 to 3.
- (C.sub.5 R'.sub.k).sub.g R".sub.s (C.sub.5 R'.sub.k)MQ.sub.3-g and (II)
- R".sub.s (C.sub.5 R'.sub.k).sub.2 MQ' (III)
- wherein (C.sub.5 R'.sub.k ) is a cyclopentadienyl or substituted cyclopentadienyl, each R' is the same or different and is hydrogen or a hydrocarbyl radical such as alkyl, alkenyl, aryl, alkylaryl, or arylalkyl radical containing from 1 to 20 carbon atoms, silicon containing hydrocarbyl radicals, or a hydrocarbyl radical wherein two carbon atoms are joined together to form a C.sub.4 -C.sub.6 ring, R" is a C.sub.1 -C.sub.4 alkylene radical, a dialkyl germanium or silicon, or a alkyl phosphine or amine radical bridging two (C.sub.5 R'.sub.k) rings, Q is a hydrocarbyl radical such as aryl, alkyl, alkenyl, alkylaryl, or aryl alkyl radical having from 1-20 carbon atoms, hydrocarboxy radical having from 1-20 carbon atoms or halogen and can be the same or different from each other, Q' is an alkylidene radical having from 1 to about 20 carbon atoms, s is 0 or 1, g is 0,1 or 2, s is 0 when g is 0, k is 4 when s is 1, and k is 5 when s is 0, and M is as defined above.
- 9. The process of claim 8 wherein said alumoxane can be represented by one of the following formulae:
- (R-al-O).sub.n and I
- (R(R-Al-O).sub.n AlR.sub.2 II
- p1 wherein R is a C.sub.1 -C.sub.5 alkyl group and n is an integer from 2 to about 20.
- 10. The process of claim 9 wherein said transition metal is selected from the group of metals consisting of titanium and zirconium.
- 11. The process of claim 10 wherien said transition metal is zirconium.
- 12. The process of claim 8 wherein said cyclopentadienyl compound may be represented by formula I and m is 2, n is 0 and q is 2.
- 13. The process of claim 12 wherein X is chlorine.
- 14. The process of claim 9 wherein R is methyl and n is greater than or equal 4.
- 15. The process of claim 8 wherein the cyclopentadienyl transition metal compound is selected from one of bis(cyclopentadienyl) zirconium dimethyl, bis(cyclopentadienyl) ziconium dichloride, bis(cyclopentadienyl)titanium dichloride, bis(methylcyclopentadienyl) zirconium dichloride, bis(methylcyclopentadienyl) titanium dichloride, bis(n-butylcyclopentadienyl) zircnium dichloride, dimethylsilyldicyclopentadienyl zirconium dichloride, bis(trimethylsilylcyclopentadienyl)zirconium dichloride, dimethylsilyldicyclopentadienyl titanium dichloride or mixtures thereof.
- 16. The process of claim 9 where n is 4 or greater.
Parent Case Info
This application is a continuation-in-part of Ser. No. 54,785 filed June 4, 1987.
This invention is a continuation-in-part of application 054,785 filed June 4, 1987, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (5)
Number |
Date |
Country |
0035242 |
Sep 1981 |
EPX |
129368 |
Dec 1984 |
EPX |
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DEX |
2608933 |
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3150270 |
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Non-Patent Literature Citations (4)
Entry |
Ziegler Natta Catalysis by H. Sinn and W. Kaminski, Advances in Organo Metallic Chemistry, 18, 99 (1980). |
Halogen Free Soluble Ziegler Catalysis with Methylalumoxane as Catalysts by J. Herwig and W. Kaminski in Polymer Bulletin 9, 464 (1983). |
Homogeneous Ziegler Natta Catalysis II by E. Giannetti et al., Journal of Polymer Science, 23, 2117-2133 (1985). |
Herwig et al., Polymer Bulletin 9, 464-469 (1983). |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
54785 |
Jun 1987 |
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