Claims
- 1. A process for preparation of alcohols of the formula R--(CH.sub.2 OH).sub.a which comprises reducing an ester of the formula R--(COOR.sup.1).sub.a with an alkali metal borohydride and a proton source, wherein said proton source is water, alkanol R.sup.1 OH, or mixture, wherein R is a C.sub.1 -C.sub.10 alkyl or alkylene radical or fluorine substituted alkyl or alkylene radical, R.sup.1 is a C.sub.1 -C.sub.8 alkyl or fluorinated alkyl radical, and a is an integer of 1 or 2,
- which comprises admixing said ester and said proton source, and adding the resulting admixture slowly at a rate of addition substantially equivalent to the rate being reacted to solid undispersed alkali metal borohydride under reflux conditions employing a ratio of proton source: ester of about 1:1 to 2.5:1 moles of proton source per mole of ester --COOR') group, and employing about 0.9:1 to 1.5:1 moles of alkali metal borohydride initially present per mole of ester --COOR.sup.1) group being added.
- 2. The process according to claim 1 wherein in said R is a C.sub.1 -C.sub.8 fluorinated alkyl radical, and R.sup.1 is a C.sub.1 -C.sub.3 alkyl radical.
- 3. The process according to claim 1 wherein said R is R.sub.f such that said ester is represented by R.sub.f --COOR.sup.1).sub.a, wherein R.sub.f is a C.sub.1 -C.sub.10 perfluoroalkyl or alkylene radical.
- 4. The process according to claim 3 wherein said R.sub.f is a C.sub.1 -C.sub.8 perfluoralkyl or alkylene radical, and R.sup.1 is a C.sub.1 -C.sub.3 alkyl radical.
- 5. The process according to claim 1 wherein said ester is isopropyltrifluoroacetate, sec-butyl pentafluoropropionate, methyl heptafluorobutyrate, dimethyl perfluorosuccinate, dipropyl perfluoroadipate, dimethyl perfluorosebacate, octyl perfluoro-3-methylbutyrate, methyl perfluoro-3,4-dimethylpentanoate, 2-ethylhexyl perfluorohexanoate, ethyl perfluorooctanoate, methyl perfluorodecanoate, 2,2-difluoroethyl trifluoroacetate, 1,1-dihydroheptafluorobutyl heptafluorobutyrate, isopropyl acetate, methyl acetate, methyl 2-fluoroacetate, 2-ethylhexyl heptanoate, or mixtures thereof.
- 6. The process according to claim 3 wherein said ester is isopropyl trifluoroacetate, sec-butyl pentafluoropropionate, methyl heptafluorobutyrate, dimethyl perfluorosuccinate, dipropyl perfluoroadipate, dimethyl perfluorosebacate, octyl perfluoro-3-methylbutyrate, methyl perfluoro-3,4-dimethylpentanoate, 2-ethylhexyl perfluorohexanoate, ethyl perfluorooctanoate, methyl perfluorodecanoate, 2,2-difluoroethyl trifluoroacetate, 1,1-dihydroheptafluorobutyl heptafluorobutyrate, or mixtures thereof.
- 7. The process according to claim 1 wherein said proton source is said alkanol.
- 8. The process according to claim 7 wherein said alkanol is methanol, ethanol, isopropanol, 2,2,2-trifluoroethanol, sec-butanol, 4-methylbutanol, 2-ethylhexanol, 1,1-dihydroheptafluorobutanol, or mixture.
- 9. The process according to claim 7 wherein said alkanol is a C.sub.1 -C.sub.3 alcohol selected from the group consisting of methanol, ethanol, isopropanol, 2,2,2-trifluoroethanol, or mixture.
- 10. The process according to claim 7 wherein said alkali metal borohydride is sodium borohydride, potassium borohydride, lithium borohydride, rubidium borohydride, or cesium borohydride.
- 11. The process according to claim 1 employing a contacting temperature in the range of about 0.degree. C. to 150.degree. C., and a contacting pressure in the range of about 10 psia to about 100 psia.
- 12. The process according to claim 11 wherein said alkanol employed as said proton source is a 1,1-dihydroperfluoroalkanol.
- 13. The process according to claim 11 where said proton source is employed as a mixture of methanol and methyl heptafluorobutyrate.
- 14. The process according to claim 13 wherein said mixture of methanol and methyl heptafluorobutyrate is an azeotrope thereof.
- 15. The process according to claim 1 further comprising the steps
- (a) reacting an acid compound of the formula R--COOH).sub.a with a free alkanol R.sup.1 OH under esterification conditions to produce a reaction admixture containing said ester R--COOR.sup.1).sub.a,
- (b) separating the esterification reaction admixture to recover unconverted free alkanol and said ester,
- (c) employing said ester and at least a portion of said unconverted free alkanol in said reducing step,
- (d) acidifying the resulting reduction admixture with aqueous mineral acid,
- (e) separating the acidified reduction admixture to recover free alkanol, for recycle, and to recover said product alcohol, and
- (f) recycling at least a portion of said recovered alkanol or unconverted alkanol to said step (a), (c), or both.
- 16. The process according to claim 15 wherein said free alkanol is methanol, said acid is heptafluorobutyric acid, said alkali metal borohydride is sodium borohydride, said aqueous acid is aqueous sulfuric acid, and said product alcohol is 1,1-dihydroheptafluorobutanol.
- 17. A process according to claim 2 wherein said ester is a perfluoroester, said proton source is a said alkanol, said reducing produces a reaction admixture containing as product alcohol 1,1-dihydroperfluoroalkanol and minor amounts of borate esters of said product alcohol 1,1dihydroperfluoralkanol, and thereafter
- acidifying said reduction admixture with aqueous mineral acid,
- separating said acidified admixture to recover a stream comprising alkanol, water, product 1,1-dihydroperfluoroalcohol, and minor amounts of boron-containing byproducts including borate esters of 1,1-dihydroperfluoroalcohol,
- fractionally distilling said separated stream producing a stream of product 1,1-dihydroperfluoroalcohol, a stream of water-saturated 1,1-dihydroperfluoroalcohol, and a high boiling bottoms product comprising said borate esters,
- hydrolyzing said bottoms product with a portion of said water-saturated 1,1-dihydroperfluoroalcohol, thereby converting said borate esters to boric acid and additional 1,1-dihydroperfluoroalcohol,
- separating said boric acid, and
- recycling water and 1,1-dihydroperfluoroalcohol to said separation step.
- 18. The process according to claim 17 wherein said hydrolyzing step of said bottoms is conducted at a temperature in the range of about 20.degree. to 100.degree. C.
- 19. The process according to claim 11 wherein said product alcohol is 1,1-dihydroheptafluorobutanol, said ester is methyl heptafluorobutyrate, said proton source is methanol, said admixture of said alkanol and ester is an azeotrope of methanol/methyl heptafluorobutyrate, and wherein said alkali metal borohydride is sodium borohydride.
- 20. The process according to claim 11 further comprising the steps:
- (a) contacting an acid compound of the formula R--COOH).sub.a with an alkanol R.sup.1 OH under esterification conditions to produce a reaction mixture containing said ester,
- (b) separating said reaction admixture to recover said ester and unreacted alkanol,
- (c) adding said ester and said unreacted alkanol as said admixture to said undispersed alkali metal borohydride thereby preparing a reaction mixture containing the corresponding alkanol R--CH.sub.2 OH).sub.a,
- (d) acidifying the resulting reduction admixture with aqueous mineral acid,
- (e) separating said acidified admixture to recover free alkanol R.sup.1 OH, and
- (f) recycling said recovered R.sup.1 OH alkanol to said esterification step.
- 21. The process according to claim 20 employing a ratio of alkanol R.sup.1 OH to acid R--COOH).sub.a in step (a) in the range of about 2.5:1 to about 10:1 moles of R.sup.1 OH per mole of --COOH) group, and employing an esterification temperature in the range of about 0.degree. C. to 150.degree. C. under a pressure suitable to maintain substantially liquid phase operation.
- 22. The process according to claim 21 wherein said alkanol is methanol, said alkali metal borohydride is sodium borohydride, said ester is methyl heptafluorobutyrate, said separating step (e) recovers a methanol/methyl heptafluorobutyrate azeotrope, and said methanol/methyl heptafluorbutyrate is used in said step (c) with said sodium borohydride, and said aqueous mineral acid is aqueous sulfuric acid.
- 23. A process according to claim 11 wherein said ester is a perfluoroester, said ester, said alkali metal borohydride, and said alkanol as said proton source, are reacted to produce a reaction admixture containing a said product alcohol 1,1-dihydroperfluoralcohol and minor amounts of borate esters of said product alcohol 1,1-dihydroperfluoroalkanol, and thereafter:
- acidifying said reduction admixture with aqueous mineral acid,
- separating said acidified admixture to recover a stream comprising alkanol, water, product 1,1-dihydroperfluoroalcohol, and minor amounts of boron-containing byproducts including borate esters of 1,1-dihydroperfluoroalcohol,
- fractionally distilling said separated stream, producing a stream of product 1,1-dihydroperfluoroalcohol, a stream of water-saturated 1,1-dihydroperfluoroalcohol, and a high boiling bottoms product comprising said borate esters,
- hydrolyzing said bottoms product with a portion of said water-saturated 1,1-dihydroperfluoroalcohol, thereby converting said borate esters to boric acid and additional 1,1-dihydroperfluoroalcohol,
- separating said boric acid, and
- recycling water and 1,1-dihydroperfluoroalcohol to said separation step.
- 24. The process according to claim 23 wherein said hydrolysis step of said bottoms is conducted at a temperature in the range of about 20.degree. to 100.degree. C.
Parent Case Info
This is a Divisional Application of Serial No. 867,078 now Pat. No. 4,156,791, filed Jan. 5, 1978 U.S. 4,156,791 patented May 29, l979; which is a Continuation of Serial No. 695,217, filed June 11, 1976, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
2683721 |
Schlesinger |
Jul 1954 |
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2824897 |
Wujciak et al. |
Feb 1958 |
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Foreign Referenced Citations (1)
Number |
Date |
Country |
1213558 |
Nov 1970 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Foerst, Newer Methods of Preparative Organic Chemistry, vol. IV, 1968, pp. 197, 204-208, Academic Press, New York. |
Divisions (1)
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Number |
Date |
Country |
Parent |
867078 |
Jan 1978 |
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Continuations (1)
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Number |
Date |
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Parent |
695217 |
Jun 1976 |
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