Claims
- 1. A method for homo- or copolymerizing an alphaolefin characterized in that the polymerization is conducted in the presence of a catalyst consisting of: (a) a first organoaluminum compound; and (b) a spherical titanium trichloride catalytic component prepared by: (i) mixing a saturated alphatic hydrocarbon and/or an alicyclic hydrocarbon and 20 to 70% by volume of an aromatic hydrocarbon halide to form a mixed solvent; (ii) forming a system by dissolving titanium tetrachloride, an ether and a second organo-aluminum compound which can be the same as the first organo-aluminum compound in said mixed solvent, said second organo-aluminum compound, said titanium tetrachloride and said ether being added to said mixed solvent at a solvent temperature not exceeding 55.degree. C.; (iii) raising the temperature of said system to between 45.degree. and 150.degree. C. over a period of between 10 minutes and 24 hours; and (iv) adding an ether and/or titanium tetrachloride to said system while raising its temperature to cause said spherical titanium trichloride catalytic component, which has a substantially uniform particle diameter and an average particle diameter which is adjustable between 10 and 1000.mu., to separate from said mixed solvent.
- 2. A method for homo- or copolymerizing an alphaolefin according to claim 1 wherein the ether added during said temperature raising step is added as a mixture or a complex consisting of an ether and titanium tetrachloride.
- 3. A method for homo- or copolymerizing an alphaolefin according to claim 1 or 2 wherein said aromatic hydrocarbon halide is an aromatic hydrocarbon chloride and/or an aromatic hydrocarbon bromide.
- 4. A method for homo- or copolymerizing an alphaolefin according to claim 1 or 2 wherein said ether has the formula ROR', in which R and R' are the same or different alkyl groups, at least one of said alkyl groups having 5 or fewer than 5 carbon atoms.
- 5. A method for homo- or copolymerizing an alphaolefin according to claim 1 or 2 wherein said second organo-aluminum compound has the formula AlR.sub.n X.sub.3-n in which R is an alkyl group having between 1 and 10 carbon atoms, X is a halogen or hydrogen atom, and n is a real number of 0<n.ltoreq.3.
- 6. A method for homo- or copolymerizing an alphaolefin according to claim 1 or 2 wherein said saturated aliphatic hydrocarbon has a boiling point of at least 65.degree. C.
- 7. A method for homo- or copolymerizing an alphaolefin according to claim 1 or 2 wherein said alicyclic hydrocarbon has a boiling point of at least 65.degree. C.
- 8. A method for homo- or copolymerizing an alphaolefin according to claim 1 or 2 wherein there is dissolved in said mixed solvent before starting said temperature raising step: (a) not more than 5 moles of titanium tetrachloride per liter of said mixed solvent; (b) 0.8 to 3 moles of said ether per mol of said titanium tetrachloride; and (c) 0.3 to 1.8 equivalent of said second organo-aluminum compound per equivalent of said titanium tetrachloride.
- 9. A method for homo- or copolymerizing an alphaolefin according to claims 1 or 2 wherein said ether added during said temperature raising step is added in quantity of from 0.01 to 4 mol per mol of titanium tetrachloride added before starting said temperature raising step.
- 10. A method for homo- or copolymerizing an alphaolefin according to claims 1 or 2 wherein said titanium tetrachloride added during said temperature raising step is added in a quantity of at least 0.01 mol per mol of said titanium tetrachloride contained in said mixed solvent before starting the temperature raising step.
- 11. A method for homo- or copolymerizing an alphaolefin according to claims 1 or 2 wherein said titanium tetrachloride is added during said temperature raising step in the form of a mixture or a complex in combination with an ether and is added in quantity of at least 0.01 mol per mol of said titanium tetrachloride contained in said mixed solvent before starting said temperature raising step.
- 12. A method for homo- or copolymerizing an alphaolefin according to claims 1 or 2 wherein said ether and/or titanium tetrachloride added during said temperature raising step is added when the temperature is within a range of 40.degree. to 70.degree. C.
- 13. A method for homo- or copolymerizing an alphaolefin according to claims 1 or 2 wherein said ether and/or titanium tetrachloride added during said temperature raising step is added during a temporary cooling period when said temporary cooling period is included in said temperature raising step.
- 14. A method for homo- or co-polymerization of .alpha.-olefin wherein a spherical solid titanium trichloride catalytic component having an average particle diameter between 10 and 1000.mu. is prepared by dissolving titanium tetrachloride, an organic ether compound having the formula ROR', wherein R and R' are alkyl groups which are the same or different with at least one of them containing 5 or fewer carbon atoms, and a first organo-aluminum compound having the formula AlR.sub.n X.sub.3-n wherein R is an alkyl group of 1 to 10 carbons, X is halogen or hydrogen and n is an integer of 0<n.ltoreq.3, in a first solvent, said first solvent being a mixed solvent prepared by admixing 20 to 70% by volume of an aromatic hydrocarbon halide with a second solvent consisting of saturated aliphatic hydrocarbon and/or alicyclic hydrocarbon; said organo-aluminum compound, said titanium tetrachloride and said organic ether compound being admixed with the first solvent at a solvent temperature not exceeding 55.degree. C. to form a system; following this, the temperature of the system is raised to between 45.degree. and 150.degree. C. over a period of between 10 minutes and 24 hours; and during the temperature raising step, the organic ether compound and/or titanium tetrachloride is further added in such amount that the molar ratio of said ether added during the temperature raising step to the amount of titanium tetrachloride added while forming the system does not exceed 4, to allow the spherical solid titanium trichloride catalytic component having average particle diameter between 10 and 1000.mu. to separate; and carrying out the homo- or co-polymerization of .alpha.-olefin in the presence of a catalytic system consisting of said spherical solid titanium trichloride catalytic trichloride catalytic component and a second organo-aluminum compound which can be the same as the first organo-aluminum compound.
- 15. A method for homo- or copolymerizing an .alpha.-olefin comprising contacting said .alpha.-olefin, under homo- or copolymerizing conditions, with a catalyst consisting of: (a) a first organo-aluminum compound having the formula AlR.sub.n X.sub.3-n, wherein R is an alkyl group of 1 to 10 carbons, X is halogen or hydrogen and N is an integer of 0<n.ltoreq.3, and (b) a spherical solid titanium trichloride catalytic component having an average particle diameter between 10 and 1000.mu., said spherical solid titanium trichloride component being prepared by dissolving titanium tetrachloride, an organic ether compound having the formula ROR', wherein R and R' are alkyl groups which are the same or different with at least one of them containing 5 or fewer carbon atoms, and a second organo-aluminum compound which can be the same as the first organo-aluminum compound in a first solvent, said first solvent being a mixed solvent having 20 to 70% by volume of an aromatic hydrocarbon halide included in a second solvent consisting of saturated aliphatic hydrocarbon and/or alicyclic hydrocarbon, said second organo-aluminum compound, said titanium tetrachloride and said organic ether compound being added at a first solvent temperature not exceeding 55.degree. C. to form a system, heating the system to raise its temperature to between 45.degree. and 150.degree. C. over a period of between 10 minutes and 24 hours and, during the heating step, further adding the organic ether compound and/or titanium tetrachloride in such an amount that the molar ratio of the amount of said ether compound added during the heating step to the amount of titanium tetrachloride added while forming the system does not exceed 4, to allow said spherical solid titanium trichloride catalytic component having an average particle diameter between 10 and 1000.mu. to separate, the resulting polymer product having a bulk density of 0.34-0.43 gram per milliliter.
- 16. A method for homo- or copolymerizing an .alpha.-olefin characterized in that polymerization of the .alpha.-olefin is conducted in the presence of a catalyst consisting of: (a) a first organo-aluminum compound having the formula AlR.sub.n X.sub.3-n, wherein R is an alkyl group of 1 to 10 carbons, X is halogen or hydrogen and n is an integer of 0<n.ltoreq.3; and (b) a spherical solid titanium trichloride catalytic component having a predetermined substantially uniform average particle diameter between 10 and 1000.mu., said spherical solid titanium trichloride catalytic component being prepared by: (i) mixing a saturated aliphatic hydrocarbon and/or an alicyclic hydrocarbon and 20 to 70% by volume of an aromatic hydrocarbon halide to form a mixed solvent; (ii) forming a system by dissolving titanium tetrachloride, an ether and a second organo-aluminum compound which can be the same as the first organo-aluminum compound in said mixed solvent, said titanium tetrachloride and said ether being added to said mixed solvent at a solvent temperature not exceeding 55.degree. C.; (iii) raising the temperature of said system to between 45.degree. and 150.degree. C. over a period of between 10 minutes and 24 hours; and (iv) adding an ether and/or titanium tetrachloride to said system while raising its temperature to cause said spherical solid titanium trichloride catalytic component having a predetermined substantially uniform particle diameter between 10 and 1000.mu. to separate from said mixed solvent, the resulting polymer product having a bulk density of 0.34-0.43 gram per milliliter.
Priority Claims (1)
Number |
Date |
Country |
Kind |
53/76168 |
Jun 1978 |
JPX |
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Parent Case Info
This is a division of application Ser. No. 49,987, filed June 19, 1979, now U.S. Pat. No. 4,251,388.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
51-76196 |
Jul 1976 |
JPX |
1391067 |
Apr 1975 |
GBX |
Divisions (1)
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Number |
Date |
Country |
Parent |
49987 |
Jun 1979 |
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