Claims
- 1. The solid catalytic product resulting from removing the liquid components from the product resulting from admixing in an inert diluent and in an atmosphere which excludes moisture and oxygen
- (A) at least one hydrocarbon soluble organomagnesium compound;
- (B) at least one organic hydroxyl-containing compound;
- (C) at least one reducing halide (X) source;
- (D) at least one transition metal (Tm) alkoxide; and wherein
- (a) the components are added in the order (A) (B), (C) and (D) or (A), (B), (D) and (C); and
- (b) the components are employed in quantities so as to provide the following atomic ratios Mg:Tm of from about 0.1:1 to about 100:1; and X:Mg of from about 3:1 to about 20:1; and
- (c) the organic hydroxyl-containing compound is employed in a quantity such that for every metal atom present in component (A) there remains on the average not more than about 0.9 hydrocarbon group attached to such metal atoms.
- 2. A catalytic product of claim 1 wherein the components are employed in amounts which provide atomic ratios of Mg:Tm of from about 1:1 to about 40:1; X:Mg of from about 6:1 to about 20:1; and on the average, there is from about 0.3 to about 0.9 hydrocarbyl or hydrocarbyloxy group attached to a metal atom in the organomagnesium compound.
- 3. A catalytic product of claim 2 wherein the components are employed in amounts which provide atomic ratios of Mg:Tm of from about 5:1 to about 20:1; X:Mg of from about 8:1 to about 12:1; and on the average, there is from about 0.5 to about 0.9 hydrocarbyl or hydrocarbyloxy group attached to a metal atom in the organomagnesium compound.
- 4. A catalytic product of claim 1, 2, or 3 wherein
- (a) component (A) is a compound or mixture of compounds represented by the formula R.sub.2 Mg.xMeR' x' wherein each R is independently a hydrocarbyl group and, a hydrocarbyl or a hydrocarbyloxy group; each R' is independently hydrogen, a hydrocarbyl or a hydrocarbyloxy group: Me is Al, Zn or B; x has a value from zero to about 10; and x' has a value equal to the valence of Me; p1 (b) component (B) is a compound or mixture of compounds represented by the formulas R.sup.a --(O--R.sup.b --).sub.n --OH or Z((--O--R.sup.b --).sub.n --O--R.sup.c).sub.n' wherein R.sup.a is a hydrocarbyl group having from 1 to about 20 carbon atoms; each R.sup.b is independently a divalent hydrocarbyl group having from 1 to about 20 carbon atoms; each R.sup.c is independently hydrogen or a hydrocarbyl group having from 1 to about 20 carbon atoms, at least one of which is hydrogen; Z is a multivalent organic group containing from 2 to about 10 carbon atoms; n has a value from zero to about 10; and n' has a value from 2 to about 10;
- (c) component (C) is a compound or mixture of compounds represented by the formulas Al(R.sup.1).sub.3-mXm or B(R.sup.1).sub.3-m X.sub.m wherein each R.sup.1 is independently hydrogen or a hydrocarbyl group having from 1 to about 20 carbon atoms; and m has a value from 1 to 2; and
- (d) component (D) is a compound or mixture of compounds represented by the formula ##STR2## wherein Tm is a transition metal in its highest valence state and is selected from groups IV-B, V-B and VI-B of the Periodic Table of the Elements; R is a hydrocarbyl group having from 1 to about 20 carbon atoms; and m' has a value from 1 to about 20.
- 5. A catalytic product of claim 4 wherein
- (a) in Component (A) each R is an alkyl group having from 1 to about 20 carbon atoms; each R' is an alkyl group having from 1 to about 20 carbon atoms; Me is Al; x has a value from about 0.2 to about 5 and x' has a value of 3;
- (b) component (B) is a compound represented by the formula R.sup.a --(O--R.sup.b --).sub.n --OH wherein R.sup.a is a hydrocarbyl group having from 1 to about 10 carbon atoms and n has a value of zero;
- (c) component (C) is a compound represented by the formula Al(R.sup.1).sub.3- m X.sub.m wherein R.sup.1 is a hydrocarbyl group having from 1 to about 10 carbcn atoms; and
- (d) in component (D), each R independently has from 1 to about 10 carbon atoms; Tm is Ti; and m' has a value from 1 to about 10.
- 6. A catalytic product of claim 5 wherein
- (a) component (A) is butylethylmagnesium.1/2triethylaluminum, di-n-butyl magnesium, ethyl-n-butylmagnesium, n-butyl-sec-butylmagnesium, di-n-hexylmagnesium, di-n-octylmagnesium, n-butyl-ethylmagnesium.1/2triisobutylaluminum, or a combination thereof;
- (b) component (B) is n-propyl alcohol, 2-pentanol, n-octyl alcohol or a combination thereof;
- (c) component (C) is ethylaluminum dichloride, ethylaluminum sesquichloride, diethylaluminum chloride, or a combination thereof; and
- (d) component (D) is tetraisopropoxy titanium, tetra-n-butoxytitanium, tetra-(2-ethylhexoxy)titanium, or a combination thereof.
- 7. A catalytic product of claim 6 wherein
- (a) component (A) is butylethylmagnesium;
- (b) component (B) is n-propyl alcohol;
- (c) component (C) is ethylaluminum dichloride; and
- (d) component (D) is tetraisopropoxy titanium.
- 8. A process for preparing a catalyst which process comprises
- (1) contacting (A) at least one organomagnesium compound with (B) at least one organic hydroxyl-containing compound by the slow addition of the organic hydroxyl-containing compound to the organomagnesium compound and in a quantity such that for every metal atom present in component (A) there remains on the average not more than about 0.9hydrocarbyl or hydrocarbyloxy group attached to such metal atoms;
- (2) contacting the product resulting from step (1) with either one, but not both of (C) at least one reducing halide (X) source or (D) at least one transition metal (Tm) alkoxide; and
- (3) contacting the product resulting from step (2) with whichever component (C) or (D) was not employed in step (2); and
- wherein the components are employed in quantities corresponding to the atomic ratios cf Mg:Tm of from about 0.1:1 to about 100:1; and X:Mg of from about 3:1 to about 20:1.
- 9. The process of claim 8 wherein the components are employed in amounts which provide atomic ratios of Mg:Tm of from about 1:1 to about 40:1; X:Mg of from about 6:1 to about 20:1; and on the average, there is from about 0.3 to about 0.9 hydrocarbyl or hydrocarbyloxy group attached to a metal atom in the organomagnesium compound.
- 10. A process of claim 9 wherein the components are employed in amounts which provide atomic ratios of Mg:Tm of from about 5:1 to about 20:1; X:Mg of from about 8:1 to about 12:1; and on the average, there is not more than from about 0.5 to about 0.9 hydrocarbyl or hydrocarbyloxy group attached to a metal atom in the organomagnesium compound.
- 11. A process of claim 8, 9 or 10 wherein
- (a) component A is a compound or mixture of compounds represented by the formula R.sub.2 Mg.xMeR'.sub.xMeR'x' wherein each R is independently a hydrocarbyl group and, a hydrocarbyl or a hydrocarbyloxy group; each R' is independently hydrogen, a hydrocarbyl or a hydrocarbyloxy group: Me is Al, Zn or B; x has a value from zero to about 10; and x' has a value equal to the valence of Me;
- (b) component (B) is a compound or mixture of compounds represented by the formulas R.sup.a --(O--R.sup.b --).sub.n --OH or Z((--O--R.sup.b --).sub.n --O--R.sup.c).sub.n ' wherein R.sup.a is a hydrocarbyl group having from 1 to about 20 carbon atoms; each R.sup.b is independently a divalent hydrocarbyl group having from 1 to about 20 carbon atoms; each R.sup.c is independently hydrogen or a hydrocarbyl group having from 1 to about 20 carbon atoms, at least one of which is hydrogen; Z is a multivalent organic group containing from 2 to about 10 carbon atoms; n has a value from zero to about 10; and n' has a value from 2 to about 10;
- (c) component (C) is a compound or mixture of compounds represented by the formulas Al(R.sup.1).sub.3-m X.sub.m or B(R.sup.1).sub.3- m X.sub.m wherein each R.sup.1 is independently hydrogen or a hydrocarbyl group having from 1 to about 20 carbon atoms; and m has a value from 1 to 2; and
- (d) component (D) is a compound or mixture of compounds represented by the formula ##STR3## wherein Tm is a transition metal in its highest valence, state and is selected from groups IV-B, V-B and VI-B of the Periodic Table of the Elements; R is a hydrocarbyl group having from 1 to about 20 carbon atoms; and m' has a value from 1 to about 20.
- 12. A process of claim 11 wherein
- (a) in Component (A), each R is an alkyl group having from 1 to about 20 carbon atoms: each R' is an alkyl group having from 1 to about 20 carbon atoms; Me is Al; x has a value from about 0.2 to about 5; and x' has a value of 3;
- (b) component (B) is a compound represented by the formula R.sup.a --(O--R.sup.b --).sub.n --OH wherein R.sup.a is a hydrocarbyl group having from 1 to about 10 oarbon atoms and n has a value of zero:
- (c) component (C) is a compound represented by the formula Al(R.sup.1).sub.3- m X.sub.m wherein R.sup.1 is a hydrocarbyl group having from 1 to about 10 carbon atoms; and
- (d) in component (D) each R independently has from 1 to about 10 carbon atoms; Tm is Ti; and m' has a value from 1 to about 10.
- 13. A process of claim 12 wherein butylethylmagnesium.1/2triethylaluminum, di-n-butyl magnesium, di-n-butyl magnesium, ethyl-n-butylmagnesium, n-butyl-sec-butylmagnesium, di-n-hexylmagnesium, di-n-octylmagnesium, n-butyl-ethylmagnesium.1/2triisobutylaluminum, or a combination thereof;
- (b) component (B) is n-propyl alcohol, 2-pentanol, n-octyl alcohol or a combination thereof;
- (c) component (C) is ethylaluminum dichloride, ethylaluminum sesquichloride, diethylaluminum chloride, or a ccmbination thereof; and
- (d) component (D) is tetraisopropoxy titanium, tetra-n-butyoxytitanium, tetra-(2-ethylhexoxy)titanium, or a combination thereof.
- 14. A process of claim 13 wherein
- (a) component (A) is butylethylmagnesium;
- (b) component (B) is n-propyl alcohol;
- (c) component (C) is ethylaluminum dichloride; and
- (d) component (D) is tetraisopropoxy titanium.
CROSS-REFERENCE TO RELATED APPLICATION.
This is a division of application Ser. No., 07/510,492 filed Apr. 18, 1990, now U.S. Pat. No. 5,045,612.
US Referenced Citations (52)
Foreign Referenced Citations (30)
Number |
Date |
Country |
845983 |
Mar 1977 |
BEX |
942734 |
Feb 1974 |
CAX |
0000007 |
Jun 1978 |
EPX |
2758312 |
Jul 1978 |
DEX |
51-102086 |
Sep 1976 |
JPX |
51-111281 |
Oct 1976 |
JPX |
51-148785 |
Dec 1976 |
JPX |
52-98076 |
Aug 1977 |
JPX |
1275641 |
Dec 1969 |
GBX |
1235062 |
Jun 1971 |
GBX |
1306001 |
Feb 1973 |
GBX |
1309987 |
Mar 1973 |
GBX |
1311013 |
Mar 1973 |
GBX |
1315770 |
May 1973 |
GBX |
1321766 |
Jun 1973 |
GBX |
1343781 |
Jan 1974 |
GBX |
1357474 |
Jun 1974 |
GBX |
1358437 |
Jul 1974 |
GBX |
1444736 |
Aug 1976 |
GBX |
1464909 |
Feb 1977 |
GBX |
1492379 |
Nov 1977 |
GBX |
1500873 |
Feb 1978 |
GBX |
1502567 |
Mar 1978 |
GBX |
1504930 |
Mar 1978 |
GBX |
1538472 |
Jan 1979 |
GBX |
1539175 |
Jan 1979 |
GBX |
1547269 |
Jun 1979 |
GBX |
2016020 |
Sep 1979 |
GBX |
1554248 |
Oct 1979 |
GBX |
2020672 |
Nov 1979 |
GBX |
Non-Patent Literature Citations (5)
Entry |
Derwent Abstract of Japanese J56104908. |
Derwent Abstract of Japanese J56141304. |
Derwent Abstract of Japanese J56166206. |
Chemical Abstract of Japanese Kokai JP81147808. |
"Ethylene Polymerization Process with a Highly Active Ziegler-Natta Catalyst: 1. Kinetics", L. L. Bohm, Polymer, vol. 19, May. 1978, pp. 553-561. |
Divisions (1)
|
Number |
Date |
Country |
Parent |
510492 |
Apr 1990 |
|