Claims
- 1. A process for the production of polyolefins which comprises homopolymerizing or copolymerizing .alpha.-olefins at a temperature in the range of about 20.degree. to 120.degree. C. under a pressure in the range of about atmospheric to 70 kg./cm..sup.2 and in the presence of a catalyst comprising a solid catalyst component and an organo-aluminum compound, said solid catalyst component resulting from the reaction of:
- (a) a magnesium dihalide,
- (b) a compound represented by the formula:
- Al(OR).sub.n X.sub.3-n
- where
- R is a hydrocarbon residual group having
- 1to 20 carbon atoms,
- X is a halogen atom, and
- n is 1 to 3,
- (c) a compound represented by the general formula:
- Si(OR').sub.m X.sub.4-m
- where
- R' is a hydrocarbon residual group have 1 to 20 carbon atoms,
- X is a halogen atom and
- m is 1 to 4, and
- (d) a titanium compound and/or a vanadium compound wherein:
- the mol ratio of magnesium dihalide (a) to compound (b) expressed as Mg/Al is in the range of 1/0.05-1/0.5,
- compound (c) is used in an amount of 0.1-50 grams per 100 grams of magnesium dihalide (a), and
- the titanium compound and/or vanadium compound (d) is used in an amount such that the resulting solid catalyst component contains 0.5-10 percent by weight of titanium and/or vanadium.
- 2. A process as defined in claim 1, wherein said compound (c) is used in an amount of 0.5-10 grams per 100 grams of said magnesium dihalide (a).
- 3. A process as defined in claim 1, wherein said titanium compound and/or vanadium compound is used in an amount such that the resulting solid catalyst component contains about 1 to 8 percent by weight of titanium and/or vanadium.
- 4. A process as defined in claim 1, wherein said magnesium dihalide is selected from the group consisting of magnesium fluoride, magnesium chloride, magnesium bromide, magnesium iodide and mixtures thereof.
- 5. A process as defined in claim 1, wherein said compound (b) is selected from the group consisting of aluminum trimethoxide, aluminum triethoxide, diethoxymonochloroaluminum, monoethoxydichloroaluminum, monomethoxidiethoxyaluminum, aluminum tri-n-propoxide, aluminum triisopropoxide, diisopropoxymonochloroaluminum, monoisopropoxydichloroaluminum, monomethoxydiisopropoxyaluminum, aluminum tri-n-butoxide, aluminum tri-sec-butoxide and aluminum tri-t-butoxide.
- 6. A process as defined in claim 1, wherein said compound (c) is selected from the group consisting of, monomethoxytrichlorosilane, monoethoxytrichlorosilane, monoisopropoxytrichlorosilane, mono-n-butoxytrichlorosilane, monopentoxytrichlorosilane, monoctoxytrichlorosilane, monostearoxytrichlorosilane, monophenoxytrichlorosilane, mono-p-methylphenoxytrichlorosilane, dimethoxydichlorosilane, diethoxydichlorosilane, diisopropoxydichlorosilane, di-n-butoxydichlorosilane, dioctoxydichlorosilane, trimethoxymonochlorosilane, triethoxymonochlorosilane, triisopropoxymonochlorosilane, tri-n-butoxymonochlorosilane, tri-sec-butoxymonochlorosilane, tetraethoxysilane, and tetraisopropoxysilane.
- 7. A process as defined in claim 1, wherein said solid catalyst component is prepared by copulverizing the components (a), (b), (c) and (d).
- 8. The process as defined in claim 1 wherein said compound (d) is a trivalent or tetravalent titanium compound.
- 9. The process as defined in claim 1, wherein said compound (d) is a tetravalent titanium compound represented by the formula Ti(OR).sub.n X.sub.4-n, wherein R is an alkyl, aryl or aralkyl group of 1 to 20 carbon atoms, X is a halogen atom and n has the value 0.ltoreq.n.ltoreq.4.
- 10. The process as defined in claim 1, wherein said magnesium dihalide is MgCl.sub.2.
- 11. The process according to claim 1 in which an .alpha.-olefin of 2 to 12 carbon atoms is homopolymerized, ethylene is copolymerized with an .alpha.-olefin containing 3 to 8 carbon atoms, or propylene is copolymerized with butene-1.
- 12. The process as defined in claim 1, wherein ethylene is homopolymerized or copolymerized with an .alpha.-olefin containing 3 to 8 carbon atoms.
- 13. The process as defined in claim 1, wherein ethylene is homopolymerized or copolymerized with butene-1.
- 14. The process as defined in claim 1, wherein said magnesium dihalide is MgCl.sub.2 and wherein ethylene is homopolymerized or copolymerized with an .alpha.-olefin containing 3 to 8 carbon atoms.
- 15. The process as defined in claim 14 wherein said .alpha.-olefin is butene-1.
- 16. The process as defined in claim 1, wherein in
- said compound (b) of the formula Al(OR).sub.n X.sub.3-n, R is an alkyl group of 1 to 4 carbon atoms;
- said titanium compound (d) is a tetravalent titanium compound represented by the formula Ti(OR).sub.m X.sub.4-m, wherein R is an alkyl, aryl or aralkyl group of 1 to 20 carbon atoms, X is a halogen atom and m has the value of 0.ltoreq.m.ltoreq.4;
- said compound (c) is used in an amount of 0.5 to 10 grams per 100 grams of said magnesium dihalide (a);
- said tetravalent titanium compound is used in an amount such that the resulting solid catalyst component contains about 1 to 8 percent by weight of titanium, and
- said solid catalyst component is prepared by copulverizing components (a), (b), (c) and (d) at a temperature which ranges from 0.degree. C. to 200.degree.C.
- 17. The process of claim 16 wherein said homopolymerization or copolymerization is carried out at a temperature of about 50.degree. to 100.degree. C. and a pressure of about 2 to 60 kg./cm..sup.2.
- 18. A process for the production of polyolefins which comprises homopolymerizing or copolymerizing .alpha.-olefins at a temperature of about 50.degree. to 100.degree. C. and a pressure of about 2 to 60 kg./cm..sup.2 and in the presence of a catalyst comprising a solid catalyst component and an organoaluminum compound, said solid catalyst resulting from reaction by copulverization of:
- (a) magnesium dichloride
- (b) a compound of the formula
- Al(OR).sub.n X.sub.3-n
- where
- R is a hydrocarbon residual group having 1 to 20 carbon atoms
- X is a halogen atom, and
- n is 1 to 3
- (c) a silane selected from the group consisting of monomethyoxytrichlorosilane, monoethoxytrichlorosilane, monoisopropoxytrichlorosilane, mono-n-butoxytrichlorosilane, monopentoxytrichlorosilane, monoctoxytrichlorosilane, monostearoxytrichlorosilane, monophenoxytrichlorosilane, mono-p-methylphenoxytrichlorosilane, dimethoxydichlorosilane, diethyloxydichlorosilane, diiosopropoxydichlorosilane, di-n-butoxydichlorosilane, dioctoxydichlorosilane, trimethoxymonochlorosilane, triethoxymonochlorosilane, triiosopropoxymonochlorosilane, tri-n-butoxymonochlorosilane, trisecbutoxymonochlorosilane, tetraethoxysilane, and tetraisopropoxysilane, and
- (d) a tetravalent titanium compound wherein:
- the mol ratio of magnesium dichloride to compound (b) expressed as Mg/Al is in the range of 1/0.05 to 1/0.5,
- said compound (c) is used in an amount of about 0.5 to 50 grams per 100 grams of said magnesium chloride and
- said tetravalent titanium compound is used in an amount such that the resulting solid catalyst component contains about 1 to 8 percent by weight of titanium.
- 19. The process of claim 18 wherein ethylene is homopolymerized or copolymerized with butene-1.
Priority Claims (1)
Number |
Date |
Country |
Kind |
54-173448 |
Dec 1979 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 217,755, filed 12-18-80, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4172050 |
Gessell |
Oct 1979 |
|
4209602 |
Kuroda et al. |
Jun 1980 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
2324766 |
Jan 1974 |
DEX |
2600593 |
Jul 1976 |
DEX |
Continuations (1)
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Number |
Date |
Country |
Parent |
217755 |
Dec 1980 |
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