Claims
- 1. A process for neutralizing an alkali metal catalyst in an alkali metal catalyst polymerized organopolysiloxane, where said polymerized organopolysiloxane has a viscosity of 10 to 500,000 centipoises at 25.degree. C., which process comprises (1) intimately contacting said polymerized organopolysiloxane with an effective amount of an organic carboxylic acid of general formula ZCOOH where Z is a hydrocarbon group containing at least two carbon atoms and where said organic carboxylic acid is selected from the group consisting of straight-chain organic carboxylic acids and cyclohexane carboxylic acid, and (2) filtering the product of step (1) in order to reduce the alkali metal content of said polymerized organopolysiloxane.
- 2. A process as defined in claim 1 wherein, in said organic carboxylic acid of general formula ZCOOH, Z contains from 2 to 21 carbon atoms inclusive.
- 3. A process as defined in claim 2 wherein said organic carboxylic acid is selected from the group consisting of propionic acid, oleic acid, undecylenic acid and cyclohexane carboxylic acid.
- 4. A process as defined in claim 3 wherein said organic carboxylic acid is propionic acid.
- 5. A process as defined in claim 2 wherein said polymerized organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-A)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical and wherein said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates.
- 6. A process as defined in claim 3 wherein said polymerized organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-a)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical and wherein said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates.
- 7. A process as defined in claim 4 wherein said polymerized organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-a)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical and wherein said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates.
- 8. A process as defined in claim 5 wherein said polymerized organopolysiloxane consists essentially of 80 to 96.5 mol percent of (CH.sub.3).sub.2 SiO units, 2.0 to 10.0 mol percent of CH.sub.3 SiO.sub.3/2 units, 1.25 to 6.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.25 to 4.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 9. A process as defined in claim 6 wherein said polymerized organopolysiloxane consists essentially of 80 to 96.5 mol percent of (CH.sub.3).sub.2 SiO units, 2.0 to 10.0 mol percent of CH.sub.3 SiO.sub.3/2 units, 1.25 to 6.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.25 to 4.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 10. A process as defined in claim 7 wherein said polymerized organopolysiloxane consists essentially of 80 to 96.5 mol percent of (CH.sub.3).sub.2 SiO units, 2.0 to 10.0 mol percent of CH.sub.3 SiO.sub.3/2 units, 1.25 to 6.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.25 to 4.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 11. A process as defined in claim 8 wherein said polymerized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 12. A process as defined in claim 9 wherein said polymerized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 13. A process as defined in claim 10 wherein said polymerized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 14. A process for neutralizing an alkali metal catalyst in an alkali metal catalyst polymerized organopolysiloxane, where said polymerized organopolysiloxane has a viscosity of 10 to 500,000 centipoises at 25.degree. C., where said polymerized organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-a)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical, and where said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates, which process comprises (1) intimately contacting said polymerized organopolysiloxane with an effective amount of an organic carboxylic acid at a temperature of less than 200.degree. C. where said organic carboxylic acid is of general formula ZCOOH where Z is a hydrocarbon group containing from 2 to 21 carbon atoms inclusive and where said organic carboxylic acid is selected from the group consisting of straight-chain organic carboxylic acids and cyclohexane carboxylic acid, and (2) filtering the product of step (1) in order to reduce the alkali metal content of said polymerized organopolysiloxane.
- 15. A process as defined in claim 14 wherein in said polymerized organopolysiloxane of general formula
- R.sub.a SiO.sub.(4-a)/2
- a has a value of 1.95 to 2.01 inclusive and R is selected from the group consisting of monovalent hydrocarbon radicals containing 1 to 4 carbon atoms, vinyl, phenyl or trifluoropropyl radicals, and wherein said alkali metal catalyst is potassium hydroxide or potassium silanolate, where said organic carboxylic acid is selected from the group consisting of propionic acid, oleic acid, undecylenic acid and cyclohexane carboxylic acid and where said polymerized organopolysiloxane is intimately contacted with said organic carboxylic acid at a temperature of 100.degree. 175.degree. C.
- 16. A process as defined in claim 15 wherein said polymerized organopolysiloxane consists essentially of 80 to 96.5 mol percent of (CH.sub.3).sub.2 SiO units, 2.0 to 10.0 mol percent of CH.sub.2 SiO.sub.3/2 units, 1.25 to 6.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.25 to 4.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 17. A process as defined in claim 16 wherein said polymerized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 18. A process as defined in claim 15 wherein said alkali metal catalyst is potassium silanolate and said organic carboxylic acid is propionic acid and wherein said organic carboxylic acid is present in an amount stoichiometrically equivalent to 100 to 150 weight percent of the alkali metal catalyst.
- 19. A process as defined in claim 17 wherein said alkali metal catalyst is potassium silanolate and said organic carboxylic acid is propionic acid and wherein said organic carboxylic acid is present in an amount stoichiometrically equivalent to 100 to 150 weight percent of the alkali metal catalyst.
- 20. A polymerized organopolysiloxane as prepared by the method of claim 16 wherein the alkali metal content of said polymerized organopolysiloxane after completion of step (2) is less than 0.5 part per million.
- 21. A polymerized organopolysiloxane as prepared by the method of claim 17 wherein the alkali metal content of said polymerized organopolysiloxane after completion of step (2) is less than 0.5 part per million.
- 22. A polymerized organopolysiloxane as prepared by the method of claim 19 wherein the alkali metal content of said polymerized organopolysiloxane after completion of step (2) is less than 0.5 part per million.
- 23. In a process of manufacturing relatively high molecular weight organopolysiloxanes with a viscosity of 10 to 500,000 centipoises at 25.degree. C. by polymerization of relatively low molecular weight organopolysiloxanes in the presence of an alkali metal catalyst including the step of neutralizing the alkali metal catalyst subsequent to polymerization, the improvement comprising using an effective amount of an organic carboxylic acid to neutralize the alkali metal catalyst subsequent to polymerization when said organic carboxylic acid is of general formula ZCOOH where Z is a hydrocarbon radical containing at least two carbon atoms and where the organic carboxylic acid is selected from the group consisting of straight-chain organic carboxylic acids and cyclohexane carboxylic acid and thereafter filtering the neutralized relatively high molecular weight organopolysiloxane in order to reduce the alkali metal content of the relatively high molecular weight organopolysiloxane.
- 24. A process as defined in claim 23 wherein said relatively high molecular weight organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-a)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical and wherein said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates, wherein said alkali metal catalyst is neutralized at a temperature of less than 200.degree. C., and wherein, in said organic carboxylic acid of general formula ZCOOH, Z is a hydrocarbon group containing from 2 to 21 carbon atoms inclusive.
- 25. A process as defined in claim 24 wherein said relatively high molecular weight organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 26. A process as defined in claim 24 wherein said alkali metal catalyst is potassium silanolate and said organic carboxylic acid is propionic acid.
- 27. A process as defined in claim 25 wherein said alkali metal catalyst is potassium silanolate and said organic carboxylic acid is propionic acid.
- 28. A process for reducing the alkali metal content of an alkali metal catalyst polymerized and neutralized organopolysiloxane, where said polymerized and neutralized organopolysiloxane has been initially neutralized with either carbon dioxide or acetic acid and where said polymerized and neutralized organopolysiloxane has a viscosity of 10 to 500,000 centipoises at 25.degree. C., which process comprises (1) intimately contacting said polymerized and neutralized organopolysiloxane with an effective amount of an organic carboxylic acid of general formula ZCOOH where Z is a hydrocarbon group containing at least two carbon atoms and where said organic carboxylic acid is selected from the group consisting of straight-chain organic carboxylic acids and cyclohexane carboxylic acid, and (2) filtering the product of step (1) in order to reduce the alkali metal content of said polymerized and neutralized organopolysiloxane.
- 29. A process as defined in claim 28 wherein, in said organic carboxylic acid of general formula ZCOOH, Z contains from 2 to 21 carbon atoms inclusive.
- 30. A process as defined in claim 29 wherein said organic carboxylic acid is selected from the group consisting of propionic acid, oleic acid, undecylenic acid and cyclohexane carboxylic acid.
- 31. A process as defined in claim 30 wherein said organic carboxylic acid is propionic acid.
- 32. A process as defined in claim 29 wherein said polymerized and neutralized organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-a)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical and wherein said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates.
- 33. A process as defined in claim 30 wherein said polymerized and neutralized organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-a)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical and wherein said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates.
- 34. A process as defined in claim 31 wherein said polymerized and neutralized organopolysiloxane has a general formula
- R.sub.a SiO.sub.(4-a)/2
- where a has a value of about 1.9 to 2.2 and R is a hydrogen atom or a monovalent hydrocarbon radical or a halogenated monovalent hydrocarbon radical and wherein said alkali metal catalyst is selected from the group consisting of alkali metal hydroxides and alkali metal silanolates.
- 35. A process as defined in claim 32 wherein said polymerized and neutralized organopolysiloxane consists essentially of 80 to 96.5 mol percent of (CH.sub.3).sub.2 SiO units, 2.0 to 10.0 mol percent of CH.sub.3 SiO.sub.3/2 units, 1.25 to 6.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.25 to 4.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 36. A process as defined in claim 33 wherein said polymerized and neutralized organopolysiloxane consists essentially of 80 to 96.5 mol percent of (CH.sub.3).sub.2 SiO units, 2.0 to 10.0 mol percent of CH.sub.3 SiO.sub.3/2 units, 1.25 to 6.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.25 to 4.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 37. A process as defined in claim 34 wherein said polymerized and neutralized organopolysiloxane consists essentially of 80 to 96.5 mol percent of (CH.sub.3).sub.2 SiO units, 2.0 to 10.0 mol percent of CH.sub.3 SiO.sub.3/2 units, 1.25 to 6.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.25 to 4.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 38. A process as defined in claim 35 wherein said polymerized and neutralized organopolysiloxane has been initially neutralized with carbon dioxide and wherein said polymerized and neutralized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 39. A process as defined in claim 35 wherein said polymerized and neutralized organopolysiloxane has been initially neutralized with acetic acid and wherein said polymerized and neutralized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 40. A process as defined in claim 36 wherein said polymerized and neutralized organopolysiloxane has been initially neutralized with carbon dioxide and wherein said polymerized and neutralized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 41. A process as defined in claim 36 wherein said polymerized and neutralized organopolysiloxane has been initially neutralized with acetic acid and wherein said polymerized and neutralized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 42. A process as defined in claim 37 wherein said polymerized and neutralized organopolysiloxane has been initially neutralized with carbon dioxide and wherein said polymerized and neutralized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
- 43. A process as defined in claim 37 wherein said polymerized and neutralized organopolysiloxane has been initially neutralized with acetic acid and wherein said polymerized and neutralized organopolysiloxane consists essentially of 87 to 94 mol percent of (CH.sub.3).sub.2 SiO units, 3 to 6 mol percent of CH.sub.3 SiO.sub.3/2 units, 2.5 to 5.0 mol percent of (CH.sub.3).sub.3 SiO.sub.1/2 units, and 0.5 to 2.0 mol percent of (CH.sub.3).sub.2 (CH.sub.2 .dbd.CH)SiO.sub.1/2 units.
BACKGROUND OF THE INVENTION
This application is a continuation-in-part of application Ser. No. 504,635 filed June 15, 1983, now abandoned.
US Referenced Citations (5)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
504635 |
Jun 1983 |
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