Claims
- 1. A process for the preparation of propylene copolymers, which comprises carrying out in the presence of a catalyst consisting essentially of:
- (A) a solid catalyst component obtained by contacting (i) a solid component comprising titanium, magnesium and a halogen as essential ingredients obtained by contacting a magnesium halide with a titanium tetraalkoxide and a polymeric silicon compound represented by the following formula: ##STR5## where R is a hydrocarbon residue having 1 to 10 carbon atoms, and n is the degree of polymerization such that the polymer has a viscosity of 0.1 to 100 centistokes,
- contacting the resulting solid component with (a) an electron donor compound and a halogen-containing titanium compound, or a silicon halide compound or a mixture thereof, or with (b) a silicon halide and phosphorus chloride, or with (c) a silicon halide, said solid component (i) having a polymer of an olefin deposited thereon in an amount of 0 to 5 gram per gram of the solid component, said polymer of an olefin having been prepared by preliminary polymerization of the olefin over said solid component (i) in the presence of an organoaluminum compound, with (ii) a silicon compound represented by the following general formula:
- R.sup.1 R.sup.2.sub.3-n Si(OR.sup.3).sub.n
- where R.sup.1 stands for a branched hydrocarbon residue having 4 to 10 carbon atoms and has a secondary or tertiary carbon atom adjacent to the silicon atom or R.sup.1 is either one of: ##STR6## R.sup.2 is a branched or linear aliphatic hydrocarbon group having 1 to 10 carbon atoms which is the same as or different from R.sup.1 ; R.sup.3 is a linear aliphatic hydrocarbon group having 1 to 4 carbon atoms, and n is a number of from 1 to 3, and washing the contact product of (i) and (ii) with n-heptane; and
- (B) an organoaluminum compound,
- the steps of (1) polymerizing propylene alone or a propylene/ethylene mixture having an ethylene content of up to 5% by weight in a single stage or multiple stages to form a polymer in an amount corresponding to 60 to 95% by weight of the total polymerization amount and (2) polymerizing a propylene/ethylene mixture having an ethylene content of 20 to 100% by weight in a single stage or multiple stages, whereby a propylene copolymer having a total ethylene content of 3 to 40% by weight is prepared.
- 2. The process according to claim 1, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OCH.sub.3).sub.3.
- 3. The process according to claim 1, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 4. The process according to claim 1, wherein silicon compound (ii) is (C.sub.2 H.sub.5).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 5. The process according to claim 1, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3).sub.2 (OCH.sub.3).
- 6. The process according to claim 1, wherein silicon compound (ii) is C.sub.6 H.sub.5 C(CH.sub.3).sub.2 --Si(OC.sub.2 H.sub.5).sub.3.
- 7. The process according to claim 1, wherein silicon compound (ii) is (CH.sub.3).sub.3 --Si--CH(CH.sub.3).sub.2 (OCH.sub.3).sub.2.
- 8. The process according to claim 1, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3)(OC.sub.2 H.sub.5).sub.2.
- 9. The process according to claim 1, wherein silicon compound (ii) is ##STR7##
- 10. The process according to claim 1, wherein silicon compound (ii) is ##STR8##
- 11. A process for the preparation of olefin polymers, which comprises carrying out homopolymerization or copolymerization of olefins in the presence of a catalyst consisting essentially of:
- (A) a solid catalyst component obtained by contacting (i) a solid component comprising titanium, magnesium and a halogen as essential ingredients obtained by contacting a magnesium halide with a titanium tetraalkoxide and a polymeric silicon compound represented by the following formula: ##STR9## where R is a hydrocarbon residue having 1 to 10 carbon atoms, and n is the degree of polymerization such that the polymer has a viscosity of 0.1 to 100 centistokes,
- contacting the resulting solid component with (a) an electron donor compound and a halogen-containing titanium compound, or a silicon halide compound or a mixture thereof, or with (b) a silicon halide and phosphorus chloride, or with (c) a silicon halide, said solid component (i) having a polymer of an olefin deposited thereon in an amount of 0 to 50 gram per gram of the solid component, said polymer of an olefin having been prepared by preliminary polymerization of said solid component (i) in the presence of an organoaluminum compound, with (ii) a silicon compound represented by the following general formula:
- R.sup.1 R.sup.2.sub.3-n Si(OR.sup.3).sub.n
- wherein R.sup.1 stands for a branched hydrocarbon residue having 4 to 10 carbon atoms and R.sup.1 has a secondary or tertiary carbon atoms adjacent to the silicon atom or R.sup.1 is either one of: ##STR10## R.sup.2 is a branched or linear aliphatic hydrocarbon group having 1 to 10 carbon atoms which is the same or different from R.sup.1 ; R.sup.3 is a linear aliphatic hydrocarbon group having 1 to 4 carbon atoms, and n is a number of from 1 to 3, and washing the contact product of (i) and (ii) with n-heptane; and
- (B) an organoaluminum compound.
- 12. The process according to claim 11, wherein the polymerization is carried out in a solvent including recycling at least part of the solvent left after separation of a polymer formed from the reaction mixture to the polymerization step.
- 13. The process according to claim 11, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OCH.sub.3).sub.3.
- 14. The process according to claim 11, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 15. The process according to claim 11, wherein silicon compound (ii) is (C.sub.2 H.sub.5).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 16. The process according to claim 11, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3).sub.2 (OCH.sub.3).
- 17. The process according to claim 11, wherein silicon compound (ii) is C.sub.6 H.sub.5 C(CH.sub.3).sub.2 --Si(OC.sub.2 H.sub.5).sub.3.
- 18. The process according to claim 11, wherein silicon compound (ii) is (CH.sub.3).sub.3 --Si--CH(CH.sub.3).sub.2 (OCH.sub.3).sub.2.
- 19. The process according to claim 11, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3)(OC.sub.2 H.sub.5).sub.2.
- 20. The process according to claim 11, wherein silicon compound (ii) is ##STR11##
- 21. The process according to claim 11, wherein silicon compound (ii) is ##STR12##
- 22. A process for the gas phase polymerization of olefins, which comprises polymerizing an olefin in the presence of a catalyst consisting essentially of:
- (A) a solid catalyst component obtained by contacting (i) a solid component comprising titanium, magnesium and a halogen as essential ingredients obtained by contacting a magnesium halide with a titanium tetraalkoxide and a polymeric silicon compound represented by the following formula: ##STR13## where R is a hydrocarbon residue having 1 to 10 carbon atoms, and n is the degree of polymerization such that the polymer has a viscosity of 0.1 to 100 centistokes,
- contacting the resulting solid component with (a) an electron donor compound and a halogen-containing titanium compound, or a silicon halide compound or a mixture thereof, or with (b) a silicon halide and phosphorus chloride, or with (c) a silicon halide, said solid component (i) having a polymer of an olefin deposited thereon in an amount of 0 to 50 gram per gram of the solid component, said polymer of an olefin having been prepared by preliminary polymerization of the olefin over consisting essentially of said solid component (i) in the presence of an organoaluminum compound, with (ii) a silicon compound represented by the following general formula:
- R.sup.1 R.sup.2.sub.3-n Si(OR.sup.3).sub.n
- where R.sup.1 stands for a branched hydrocarbon residue having 4 to 10 carbon atoms and R.sup.1 has a secondary or tertiary carbon atom adjacent to the silicon atom or R.sup.1 is either one of: ##STR14## R.sup.2 is a branched or linear aliphatic hydrocarbon group having 1 to 10 carbon atoms which is the same as or different from R.sup.1 ; R.sup.3 is a linear aliphatic hydrocarbon group having 1 to 4 carbon atoms, and n is a number of from 1 to 3, and washing the contact product of (i) and (ii) with n-heptane; and
- (B) an organoaluminum compound,
- substantially in the absence of a solvent.
- 23. The process according to claim 22, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OCH.sub.3).sub.3.
- 24. The process according to claim 22, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 25. The process according to claim 22, wherein silicon compound (ii) is (C.sub.2 H.sub.5).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 26. The process according to claim 22, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3).sub.2 (OCH.sub.3).
- 27. The process according to claim 22, wherein silicon compound (ii) is C.sub.6 H.sub.5 (CH.sub.3).sub.2 --Si(OC.sub.2 H.sub.5).sub.3.
- 28. The process according to claim 22, wherein silicon compound (ii) is (CH.sub.3).sub.3 --Si--CH(CH.sub.3).sub.2 (OCH.sub.3).sub.2.
- 29. The process according to claim 22, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3)(OC.sub.2 H.sub.5).sub.2.
- 30. The process according to claim 22, wherein silicon compound (ii) is ##STR15##
- 31. The process according to claim 22, wherein silicon compound (ii) is ##STR16##
- 32. The process according to claims 1, 11, 22, or 12, wherein the ratio between the amounts of component (i) and (ii) to be contacted with each other is such that the Si/Ti atomic ratio of silicon in the component (ii) to titanium in the component (i) is from 0.01:1 to 1,000:1.
- 33. The process according to claims 1, 11, 22, or 12, wherein in the component (i), the olefin is preliminarily polymerized in an amount of 0.001 to 50 grams per gram of the solid component.
- 34. A process for the preparation of olefin polymers, which comprises polymerizing an olefin having the formula R--CH.dbd.CH.sub.2 wherein R is hydrogen or a hydrocarbon group having 1 to 10 carbon atoms in the presence of a catalyst comprising,
- (A) a solid catalyst component obtained by contacting (i) a solid component comprising titanium, magnesium and a halogen as essential ingredients obtained by contacting a magnesium halide with a titanium tetraalkoxide and a methylhydrogen polysiloxane
- and contacting the resulting solid component with (a) an electron donor compound and a halogen-containing titanium compound, or a silicon halide compound or a mixture thereof, or with (b) a silicon halide
- with (ii) a silicon compound represented by the following general formula:
- R.sup.1 R.sup.2.sub.3-n Si(OR.sup.3).sub.n
- where R.sup.1 stands for a branched hydrocarbon residue having 4 to 10 carbon atoms and has a secondary or tertiary carbon atom adjacent to the silicon atom,
- R.sup.2 is a branched or linear aliphatic hydrocarbon group having 1 to 10 carbon atoms which is the same as or different from R.sup.1 ; R.sup.3 is a linear aliphatic hydrocarbon group having 1 to 4 carbon atoms, and n is a number of from 1 to 3,
- and (B) an organoaluminum compound.
- 35. The process according to claim 34 carried out in the gas phase.
- 36. The process according to claim 34 carried out in the presence of a solvent.
- 37. The process according to claim 34, wherein the olefin is propylene.
- 38. The process according to claims 34, 35, 36 or 37, wherein the ratio between the amounts of component (i) and (ii) to be contacted with each other is such that the Si/Ti atomic ratio of silicon in the component (ii) to titanium in the component (i) is from 0.1:1 to 1,000:1.
- 39. The process according to claim 34, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OCH.sub.3).sub.3.
- 40. The process according to claim 34, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 41. The process according to claim 34, wherein silicon compound (ii) is (C.sub.2 H.sub.5).sub.3 C--Si(OC.sub.2 H.sub.5).sub.3.
- 42. The process according to claim 34, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3).sub.2 (OCH.sub.3).
- 43. The process according to claim 34, wherein silicon compound (ii) is C.sub.6 H.sub.5 C(CH.sub.3).sub.2 --Si(OC.sub.2 H.sub.5).sub.3.
- 44. The process according to claim 34, wherein silicon compound (ii) is (CH.sub.3).sub.3 --Si--CH(CH.sub.3).sub.2 (OCH.sub.3).sub.2.
- 45. The process according to claim 34, wherein silicon compound (ii) is (CH.sub.3).sub.3 C--Si(CH.sub.3)(OC.sub.2 H.sub.5).sub.2.
- 46. The process according to claim 34, wherein R.sup.1 of the silicon compound (ii) is a secondary carbon atom.
- 47. The process according to claim 34, wherein R.sup.1 in the silicon compound (ii) is a tertiary carbon atom.
- 48. The process according to claims 1, 11, 22, 12 or 34, wherein components (i) and (ii) are contacted at 50.degree. to 200.degree. C. by mechanical milling or stirring pulverizing, or by stirring in an inert diluent.
Priority Claims (1)
Number |
Date |
Country |
Kind |
61-19232 |
Jan 1986 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/225,080, filed Jul. 26, 1988, now abandoned, which was a divisional of application Ser. No. 07/014,835, filed Feb. 2, 1987, now U.S. Pat. No. 4,780,443.
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Divisions (1)
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Number |
Date |
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Parent |
14835 |
Feb 1987 |
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Continuations (1)
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Number |
Date |
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Parent |
225080 |
Jul 1988 |
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