Claims
- 1. A process for polymerizing ethylene or a mixture of ethylene and at least one polymerizable ethylenically unsaturated monomer under suitable polymerization conditions in the presence of a supported catalyst composition resulting from reacting in an inert hydrocarbon medium
- (A) at least one hydrocarbon soluble organomagnesium component represented by the formula MgR".sub.2.xMR".sub.y wherein each R" is independently a hydrocarbyl group having from 1 to 20 carbon atoms; M is a metal selected from Al, Zn, Si, Sn, B and P; y has a number corresponding to the valence of M and x has a value from about 0.001 to about 10;
- (B) a sufficient quantity of at least one halide source so as to convert all of the organic groups attached to a magnesium atom in component (A) to a halide group; said halide source being selected from
- (1) an active non-metallic halide, said non-metallic halide corresponding to the formula R'X wherein R' is hydrogen or a hydrocarbyl group having from 1 to about 20 carbon atoms and such that the hydrocarbyl halide is at least as active as sec-butyl chloride and does not poison the catalyst and X is halogen; or
- (2) a metallic halide corresponding to the formula MR.sub.y-a X.sub.a wherein M is a metal of Group IIIA or IVA of Mendeleev's Periodic Table of Elements, R is a monovalent hydrocarbyl group having from 1 to about 20 carbon atoms, X is halogen, y is a number corresponding to the valence of M and a is a number from 1 to y;
- (C) at least one titanium compound represented by the formula Ti(OR).sub.x X.sub.4-x wherein each R is independently a hydrocarbyl group having from 1 to about 20, carbon atoms; X is a halogen and x has a value from zero to 4; with
- (D) at least one compound containing at least two aromatic hydroxyl groups represented by the formulas ##STR20## wherein each A is independently a divalent hydrocarbyl group having from 1 to about 10, carbon atoms --O--, --S--, --S--S--, ##STR21## each A' is independently a divalent hydrocarbyl group having from 1 to about 10 carbon atoms; each R is independently --OH, ##STR22## or a hydroxyl substituted hydrocarbyl or hydrocarbyloxy group having from 1 to about 20 carbon atoms; each R' is independently hydrogen, hydroxyl or a hydrocarbyl or hydrocarbyloxy group having from 1 to about 10 carbon atoms; each R" is independently hydrogen or a hydrocarbyl group having from 1 to about 10 carbon atoms; each X is independently a hydroxyl group, a nitro group, a nitrile group, a hydrocarbyl group, a hydrocarbyloxy group, a hydroxyl substituted hydrocarbyl or a hydroxyl substituted hydrocarbyloxy group each such groups having from 1 to about 20 carbon atoms or a halogen; m has an average value of from about 0.01 to about 6; each n independently has a value of zero or 1; each x independently has a value of zero or 1; each y independently has a value of from zero to 4, and z has a value of from zero to 3; and when components (A) and/or (C) do not contain or contain an insufficient quantity of aluminum, then
- (E) an aluminum compound represented by the formula AlR.sub.y' X.sub.y" wherein R is a hydrocarbyl group having from 1 to about 10 carbon atoms; X is halogen and y' and y" each have a value of from zero to three with the sum of y' and y" being three is employed;
- and wherein the components are employed in quantities so as to provide the following ratios:
- (1) a Mg:Ti atomic ratio of from about 1:1 to about 200:1;
- (2) components (C) and (D) are employed in quantities which provide a molar ratio of D:C of from about 0.1:1 to about 4:1;
- (3) an excess X to Al ratio of from about 0.0005:1 to about 10:1; and
- (4) an Al:Ti aromatic ratio of from about 0.1:1 to about 2000:1; and wherein
- the catalyst components are added in one of the following orders:
- (1) A, B, (C and D, prereacted), E (if required);
- (2) A, B, E (if required), (C and D, prereacted);
- (3) (A and B, prereacted), (C and D, prereacted), E, (if required);
- (4) (A and B, prereacted), E (if required), (C and D, prereacted); and
- (5) (A, B and E, if required, prereacted), (C and D, prereacted).
- 2. A process of claim 1 wherein
- (1) in component (A),
- (a) R" has from 1 to about 10 carbon atoms;
- (b) M is aluminum; and
- (c) x has a value from 0.001 to about 5;
- (2) in component (B),
- (a) M is aluminum;
- (b) R' is hydrogen or a tertiary butyl group;
- (c) X is chlorine; and
- (d) R and R' independently have from 1 to about 10 carbon atoms;
- (3) in component (C),
- (a) R has from about 1 to about 10 carbon atoms; and
- (b) X is chlorine;
- (4) in component (D)
- (a) when A is a divalent hydrocarbyl group, it has from about 1 to about 4 carbon atoms;
- (b) when A' is a divalent hydrocarbyl group it has from about 1 to about 4 carbon atoms;
- (c) when r is a hydroxyl substituted hydrocarbyl or a hydroxyl substituted hydrocarbyloxy group, it has from 1 to about 10 carbon atoms;
- (d) when R' is a hydrocarbyl group, it has from about 1 to about 6 carbon atoms;
- (e) when X is hydrocarbyl or hydrocarbyloxy, it has from about 1 to about 12 carbon atoms;
- (f) m has a value of from about 1 to about 3;
- (g) y has a value from zero to 2;
- (h) z has a value from 1 to 2; and
- (i) x has a value of zero;
- (5) in component (E),
- (a) M is aluminum;
- (b) R has from 1 to about 10 carbon atoms; and
- (c) X is chlorine; and
- (6) the components are employed in quantities so as to provide the following ratios:
- (a) a Mg:Ti atomic ratio of from about 2:1 to about 100:1;
- (b) components (C) and (D) are employed in quantities which provide a molar ratio of D:C of from about 1:1 to about 2:1;
- (c) an excess X to Al ratio of from about 0.002:1 to about 2:1; and
- (d) an Al:Ti atomic ratio of from about 0.5:1 to about 200:1.
- 3. A process of claim 1 wherein
- (a) in component (C), each R independently has from about 2 to about 4 carbon atoms; and
- (b) component (D) is represented by the formula ##STR23##
- 4. A process of claim 3 wherein the components are employed in quantities so as to provide the following ratios:
- (a) a Mg:Ti atomic ratio of from about 5:1 to about 50:1;
- (b) an excess X to Al ratio of from about 0.01:1 to about 1.4:1; and
- (c) an Al:Ti atomic ratio of from about 1:1 to about 75:1.
- 5. A process of claim 4 wherein in component (D) each X is independently chlorine, methyl, isopropyl, t-butyl, t-octyl or methoxy.
- 6. A process of claim 5 wherein in component (D) y has a value of 1 and X is t-butyl, t-octyl, methoxy or chlorine.
- 7. A process of claim 6 wherein component (D) is 4-t-butyl catechol.
- 8. A process of claim 5 wherein in component (D) y has a value of 2 and each X is the same and is t-butyl or t-octyl.
- 9. A process of claim 5 wherein in component (D) y has a value of 2 and
- (a) one X is isopropyl in position 3 and the other is methyl in position 6, or
- (b) each X is t-butyl, one being at position 3 and the other at position 5.
- 10. A process of claim 2 wherein
- (a) in component (C), X is chlorine and x has a value of zero to 4; and
- (b) component (D) is represented by the formula ##STR24##
- 11. A process of claim 10 wherein the components are employed in quantities so as to provide the following ratios:
- (a) a Mg:Ti atomic ratio of from about 5:1 to about 50:1;
- (b) an excess X to Al ratio of from about 0.01:1 to about 1.4:1; and
- (c) an Al:Ti atomic ratio of from about 1:1 to about 75:1.
- 12. A process of claim 11 wherein in component (D) n has a value of 1 and A is ##STR25## and the hydroxyl groups are in the ortho (2) position.
- 13. A process of claim 12 wherein in component (D) each X is independently a hydrocarbyl group or a halogen and each y has a value of 1 or 2.
- 14. A process of claim 13 wherein in component (D) A is ##STR26## each X is independently methyl or t-butyl and y has a value of 2.
- 15. A process of claim 14 wherein in component (D) each X is t-butyl located at positions 3 and 5.
- 16. A process of claim 13 wherein in component (D) A is ##STR27## each X is independently chlorine, methyl or t-butyl and each y has a value of 2.
- 17. A process of claim 16 wherein in component (D)
- (a) one X is t-butyl at position 3 and the other X is methyl at position 5; or
- (b) each X is t-butyl, one at position 3 and the other at position 5.
- 18. A process of claim 13 wherein in component (D) A is --CH.sub.2 -- and each X is chlorine in position 5 and each y has a value of 1.
- 19. A process of claim 12 wherein A is --CH.sub.2 -- and y is zero.
- 20. A process of claim 11 wherein in component (D) n has a value of zero and the hydroxyl groups are in the ortho (2) positions.
- 21. A process of claim 2 wherein
- (a) in component (C), each R has from about 2 to about 4 carbon atoms, and
- (b) component (D) is represented by the formula ##STR28##
- 22. A process of claim 2 wherein
- (a) in component (C), each R has from about 2 to about 4 carbon atoms, and
- (b) component (D) is represented by the formula ##STR29##
- 23. A process of claim 2 wherein
- (A) in component (C), each R independently has from about 2 to about 4 carbon atoms; and
- (B) component (D) is two different components each independently represented by the formulas ##STR30##
- 24. A process of claim 23 wherein in component D
- (a) one component is represented by formula I wherein R is OH, y has a value of zero and the other component is represented by formula I wherein R is OH, X is a hydrocarbyl group and y has a value of 1;
- (b) one component is represented by formula I wherein R is OH, X is a hydrocarbyl group and y is 1 and the other component is represented by formula II wherein n is zero and the hydroxyl groups are in the ortho (2) position; or
- (c) one component is represented by formula I wherein R is OH, X is a hydrocarbyl group and y is 1 and the other is represented by formula II wherein A is --CH.sub.2 --, ##STR31## each X is independently a hydrocarbyl group, each y is 2, and n is 1.
- 25. A process of claim 23 wherein in component (D)
- (A) one component is represented by formula I wherein R is a hydroxyl group at position 2 and y has a value of zero and the other component is represented by formula I wherein R is a hydroxyl group at position 2, X is t-butyl at position 4 and y has a value of 1;
- (B) one component is represented by formula I wherein R is a hydroxyl group at position 2, X is a t-butyl group at position 4, and y has a value of 1 and the other component is represented by the formula I wherein R is a hydroxyl group at position 2, each X is a t-butyl group, one at position 3 and the other at position 5 and y has a value of 2;
- (C) one component is represented by formula I wherein R is a hydroxyl group at position 2, X is t-butyl at position 4 and y has a value of 1; and the other component is represented by formula II wherein n is zero and the hydroxyl groups are in the ortho (2) position and y has a value of zero; and
- (D) one component is represented by formula I wherein R is a hydroxyl group at position 2, X is t-butyl at position 4 and y has a value of 1; and the other component is represented by formula II wherein A is --CH.sub.2 --, ##STR32## n is 1, one X is methyl at position 5, the other X is t-butyl at position 3 and y has a value of 2.
- 26. A process of claims 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24 or 25 wherein component (C) is tetraiisopropoxy titanium, tetra-n-butoxy titanium, titanium tetrachloride or a mixture thereof.
- 27. A process of claims 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24 or 25 wherein ethylene or a mixture of ethylene and at least one .alpha.-olefin having from 2 to about 10 carbon atoms is polymerized.
- 28. A process of claim 27 wherein ethylene or a mixture of ethylene and at least one of butene-1, hexene-1 or octene-1 is polymerized.
- 29. A process of claim 26 wherein ethylene or a mixture of ethylene and at least one .alpha.-olefin having from 2 to about 10 carbon atoms is polymerized.
- 30. A process of claim 29 wherein ethylene or a mixture of ethylene and at least one of butene-1, hexene-1 or octene-1 is polymerized.
CROSS REFERENCE TO RELATED APPLICATION
This is a continuation-in-part of copending application Ser. No. 407,856 filed Aug. 13, 1982, now abandoned.
US Referenced Citations (7)
Continuation in Parts (1)
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Number |
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407856 |
Aug 1982 |
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