Claims
- 1. A solid catalyst component for alkene polymerization prepared by a process comprising:
- (a) contacting a magnesium compound of the formula
- MgRR'.nCO.sub.2
- wherein R is alkoxy or aryloxy, R' is halogen, alkoxy or aryloxy, and n is a number from 0 to 2, with titanium tetrachloride in a halohydrocarbon diluent in the presence of an aromatic ester electron donor to produce a halogenated product;
- (b) contacting said halogenated product with a halide of tetravalent titanium; and
- (c) contacting the product of step (b) with TiCl.sub.3 --Oar where Ar is dihalophenyl or dialkoxyphenyl.
- 2. The catalyst component of claim 1 wherein n is 0.
- 3. The catalyst component of claim 2 wherein R and R' are alkoxy of up to 8 carbon atoms.
- 4. The catalyst component of claim 3 wherein the aromatic ester is ethyl benzoate, methyl benzoate, ethyl p-methoxybenzoate or diisobutyl phthalate.
- 5. The catalyst component of claim 4 wherein the proportion of electron donor contained in the resulting solid catalyst component, calculated as mol per mol of magnesium, is between about 0.05 and 5.0
- 6. The catalyst component of claim 5 wherein the solid catalyst component has a titanium content of from 1.5 to 4.5 percent by weight.
- 7. The catalyst component of claim 6 wherein the electron donor is ethyl benzoate.
- 8. The catalyst component of claim 7 wherein R and R' are ethoxy.
- 9. The catalyst component of claim 8 wherein the halohydrocarbon is chlorobenzene.
- 10. The catalyst component of claim 10 wherein n does not equal zero.
- 11. The catalyst component of claim 10 wherein R and R' are ethoxy.
- 12. The catalyst component of claim 11 wherein the aromatic ester is ethyl benzoate, methyl benzoate, ethyl p-methoxybenzoate or diisobutyl phthalate.
- 13. The catalyst of claim 12 wherein the aromatic ester is ethyl benzoate.
- 14. The catalyst component of claim 1 wherein Ar is dichlorophenyl.
- 15. The catalyst component of claim 1 wherein Ar is dimethoxyphenyl.
- 16. A solid catalyst component for alkene polymerization prepared by a process comprising:
- (a) contacting a magnesium compound of the formula
- MgRR'.nCO.sub.2
- wherein R is alkoxy or aryloxy, R' is halogen, alkoxy, or aryloxy, and n is 0, with titanium tetrachloride in a halohydrocarbon diluent in the presence of an aromatic ester electron donor under conditions effective to produce a halogenated product having an atomic ratio of halogen to magnesium of at least 1.2 to 1;
- (b) contacting successively said halogenated product with a halide of tetravalent titanium in a halohydrocarbon titanium content of said halogenated product;
- (c) contacting the product of step (b) with TiCl.sub.3 --OAr where Ar is dihalophenyl or dialkoxyphenyl; and
- (d) recovering a solid titanium compound having a titanium content within the range of 1.5 to 4.5 percent by weight.
- 17. The catalyst component of claim 16 wherein R and R' are alkoxy of up to 8 carbon atoms.
- 18. The catalyst component of claim 17 wherein the aromatic ester is ethyl benzoate, methyl benzoate, ethyl p-methoxybenzoate or diisobutyl phthalate.
- 19. The catalyst component of claim 18 wherein the proportion of electron donor contained in the resulting solid catalyst component, calculated as mol per mol of magnesium, is between about 0.05 and 5.0.
- 20. The catalyst component of claim 19 wherein the electron donor is ethyl benzoate.
- 21. The catalyst component of claim 20 wherein R and R' are ethoxy.
- 22. The catalyst component of claim 21 wherein the halohydrocarbon is chlorobenzene.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8820357 |
Aug 1988 |
GBX |
|
Parent Case Info
This is a continuation of application Ser. No. 595,628, filed Oct. 9, 1990, which is a continuation of Ser. No. 387,264 filed Jul. 31, 1989, both now abandoned.
US Referenced Citations (14)
Foreign Referenced Citations (3)
Number |
Date |
Country |
18025B |
Oct 1980 |
EPX |
045977B |
Aug 1981 |
EPX |
0096770 |
Dec 1983 |
EPX |
Continuations (2)
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Number |
Date |
Country |
Parent |
595628 |
Oct 1990 |
|
Parent |
387264 |
Jul 1989 |
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