Claims
- 1. A process for preparing an ascorbic acid comprising contacting a 2-keto-hexonic acid; a 2-keto-hexonic acid derivative selected from esters, acetals, hemiacetals, ketals, hemiketals, and ethers of a 2-keto-hexonic acid; or a mixture thereof with a catalyst comprising at least one alkaline earth silicate with the proviso that the alkaline earth silicate is not a zeolite.
- 2. A process according to claim 1 wherein the 2-keto-hexonic acid is 2-keto-L-gulonic acid (2-KLG) or 2-keto-D-gluconlc acid (2-KDG).
- 3. A process according to claim 2 wherein the ascorbic acid is L-ascorbic acid or D-araboascorbic acid.
- 4. A process according to claim 3 wherein the 2-KLG or 2-KDG ester is prepared from an alcohol containing from 1 up to about 12 carbon atoms.
- 5. A process according to claim 4 wherein the 2-keto-hexonic acid, the 2-keto-hexonic acid derivative, or the mixture thereof further comprises a solvent selected from the group consisting of water, alcohols, esters, ethers, amides, sulfoxides, sulfones, nitriles, ketones, aldehydes, and mixtures thereof.
- 6. A process according to claim 5 wherein the alkaline earth silicate catalyst is a composition or a mixture of compositions comprising at least a one compound of an alkaline earth metal selected from the group consisting of berylium, magnesium, calcium, strontium, and barium; and silica wherein the gram-atom ratio of alkaline earth metal to silicon is in the range of about 1:20 to about 20:1 gram-atom alkaline earth metal:gram-atom silicon.
- 7. A process for the preparation of L-ascorbic acid comprising contacting a water, methanol, or ethanol solution comprising a 2-KLG reactant with a catalyst comprising at least one alkaline earth silicate, with the proviso that the alkaline earth silicate is not a zeolite, at reaction condition of temperature and pressure wherein the gram-atom ratio of alkaline earth metal to silicon is in the range of about 1:5 to about 5:1 gram-atom alkaline earth metal:gram-atom silicon and wherein the catalyst has a surface area in the range of about 50 m2/gram up to about 300 m2/gram.
- 8. A process according to claim 7 wherein the 2-KLG reactant is selected from the group consisting of 2-KLG, the methyl ester of 2-KLG, the ethyl ester of KLG, and mixtures thereof.
- 9. A process according to claim 8 wherein the alkaline earth silicate catalyst is a composition or mixture of compositions comprising at least a one compound of an alkaline earth metal selected from the group consisting of magnesium, calcium, and mixtures thereof; and silica.
- 10. A process for the continuous preparation of L-ascorbic acid comprising the steps of (i) continuously feeding a water, methanol, or ethanol solution comprising a 2-KLG reactant selected from the group consisting of 2-KLG, the methyl ester of 2-KLG, the ethyl ester of 2-KLG, and mixtures thereof to a reactor operated under substantially plug-flow conditions and maintained at reaction conditions of temperature and pressure; (ii) contacting the feed solution from step(i) with a catalyst selected from the group consisting of a calcium silicate, a calcium-magnesium silicate, a magnesium silicate, and mixtures thereof wherein a portion of the 2-KLG reactant is reacted to form L-ascorbic acid; (iii) continuously removing a solution comprising L-ascorbic acid and unreacted 2-KLG reactant from the reactor; (iv) separating and recovering the unreacted 2-KLG reactant from the L-ascorbic acid to produce an enriched L-ascorbic acid and a solution comprising the 2-KLG reactant; and (v) recycling the recovered 2-KLG reactant solution of step(iv) to step(i).
- 11. A process according to claim 10 wherein the 2-KLG reactant is the product of a fermentation process.
- 12. A process according to claim wherein the catalyst is selected from the group consisting of entastite (MgSiO3), talc (Mg3Si4O10), serpentine (Mg2Sl2O5(OH)2), wollastonite (CaSiO3), diopside (CaMgSi2O6), akermanite (Ca2MgSl2O7), and montcellite (CaMgSiO4).
- 13. A process according to claim 12 wherein the catalyst is a magnesium silicate comprising 15 wt. % MgO: 85 wt. % SiO2, a magnesium silicate comprising the general formula 1 MgO: 2.6 SiO2.H2O, or a calcium silicate.
- 14. A process according to claim 9 or 13 wherein the temperature is in the range of about 100° C. up to about 175° C. and the pressure is in the range of about 1 bar absolute up to about 40 bars absolute.
- 15. A process according to claim 14 wherein the reactor is a trickle bed reactor or simulated moving bed reactor.
Parent Case Info
This application claims the benefit under 35 U.S.C. §119(e) of U.S. Provisional Application Serial No. 60/314,860, filed Aug. 24, 2001, and of U.S. Provisional Application Serial No. 60/322,281, filed Sep. 14, 2001. The disclosure of provisional applcations 60/314,860 and 60/322,281 is hereby incorporated herein by reference.
US Referenced Citations (8)
Number |
Name |
Date |
Kind |
2265121 |
Reichstein |
Dec 1941 |
A |
2462251 |
Bassford, Jr. et al. |
Feb 1949 |
A |
2491065 |
van Eekelen et al. |
Dec 1949 |
A |
4767870 |
Fujiwara et al. |
Aug 1988 |
A |
5128487 |
Tomislav et al. |
Jul 1992 |
A |
5391770 |
Le Fur et al. |
Feb 1995 |
A |
5744618 |
Fechtel et al. |
Apr 1998 |
A |
5817238 |
Makino et al. |
Oct 1998 |
A |
Foreign Referenced Citations (11)
Number |
Date |
Country |
38 43 389 |
Jun 1990 |
DE |
0 554 090 |
Aug 1993 |
EP |
428814 |
May 1935 |
GB |
428815 |
May 1935 |
GB |
1 222 322 |
Feb 1971 |
GB |
2 034 315 |
Jun 1980 |
GB |
73015931 |
May 1973 |
JP |
WO 8700839 |
Feb 1987 |
WO |
WO 9713761 |
Apr 1997 |
WO |
WO 9907691 |
Feb 1999 |
WO |
WO 0046216 |
Aug 2000 |
WO |
Non-Patent Literature Citations (2)
Entry |
T. Reichstein et al., Helv. Chim. Acta 17, (1934), pp. 311-328. |
Crawford et al. Adv. Carbohydrate Chemistry, 37 (1980), pp. 79-155. |
Provisional Applications (2)
|
Number |
Date |
Country |
|
60/314860 |
Aug 2001 |
US |
|
60/322281 |
Sep 2001 |
US |