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Patent · US5641406A · A · US

Lactic acid extraction and purification process

(11) Publication number
US5641406A
(21) Application number
US-50516695-A
(22) Filing date
1994-02-17
(30) Priority date
1993-02-18
(43) Publication date
1997-06-24
(45) Date of grant
1997-06-24
(52) CPC
  • C12P Fermentation or enzyme-using processes to synthesise a desired chemical compound or composition or to separate optical isomers from a racemic mixture {}: 7/48
  • C07C Acyclic or carbocyclic compounds: 51/47
(73) Assignee
VOGELBUSCH GMBH
(54) Title
Lactic acid extraction and purification process
(57) Abstract

PCT No. PCT/AT94/00016 Sec. 371 Date Oct. 10, 1995 Sec. 102(e) Date Oct. 10, 1995 PCT Filed Feb. 17, 1994 PCT Pub. No. WO94/19307 PCT Pub. Date Sep. 1, 1994The subject of the invention is a process for extracting pure lactic acid from fermentation liquors by ion exchange chromatography on a strongly acidic cation exchanger, preferably in H+ form. In a first step, the NH4 lactate coming from the fermentation is converted into the free acid by genuine ion exchange. This conversion is preferably effected on a weakly acidic cation exchanger in H+ form.

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Claims (15)

  1. Process for the separation and purification of lactic acid from salt-containing and carbohydrate-containing substrates from a fermentation solution from which coarsely dispersed and lipophilic impurities have been removed, said separation and purification process comprising the steps of: a) converting the salts which may be present in the fermentation solution, principally the salt of lactic acid, into free acids by means of genuine ion exchange in one or more "preliminary columns", and b) separating the free lactic acid from the rest of the acids, carbohydrates and other impurities present in the fermentation solution by chromatography at strongly acidic ion exchangers in one or more "separation columns".
  2. Process according to claim 1, wherein the fermentation solution from which the lactic acid is separated has a pH greater than 5.0.
  3. Process according to claim 1 wherein the resin located in one or more "preliminary columns" is a cation exchanger.
  4. Process according to claim 3 wherein the temperature of the "preliminary column" is at least 50° C.
  5. Process according to claim 4 wherein the temperature of the "preliminary column" is 70°-80° C.
  6. Process according to claim 3 wherein the cation exchanger is a weakly acidic cation exchanger in H + form.
  7. Process according to claim 1, wherein the strongly acidic cation exchanger found in one or more "separation columns" is present in H + form.
  8. Process according to claim 1, wherein the decationized fermentation solution, upon contact with the strongly acidic cation exchanger, is divided into a raffinate fraction I (initial fraction) containing the components without a lactic acid content, a product fraction containing lactic acid, and a raffinate fraction II (final fraction) containing primarily ethanoic acid.
  9. Process according to claim 8 wherein the elution temperature lies between room temperature and the stability threshold temperature of the resins employed.
  10. Process according to claim 9, wherein the diluted salt solution occurring in the regeneration of the resins in the preliminary columns is separated into the corresponding acids and bases by salt-hydrolyzing electrodialysis and fed back to the process.
  11. Process according to claim 9 wherein the elution temperature lies between 50° C. and 65° C.
  12. Process according to claim 1 wherein pure water is used as eluting agent for washing the individual fractions out of the separation columns.
  13. Process according to claim 12 wherein the pure water is deionized.
  14. Process according to claim 1 wherein only the weakly acidic cation exchanger located in the "preliminary columns" is regenerated with a diluted strong mineral acid after being completely loaded by the cations of the fermentation solution.
  15. Process according to claim 14 wherein the diluted strong mineral acid is a 1-2N sulfuric acid.

Citations (9)

  • BE878531A
  • FR2455022A1
  • US4288619A
  • US4814273A
  • US5068418A
  • US5068419A
  • US5143834A
  • US5245078A
  • US5472616A
Record as JSON
{
  "publication_number": "US5641406A",
  "country": "US",
  "kind": "A",
  "title": "Lactic acid extraction and purification process",
  "abstract": "PCT No. PCT/AT94/00016 Sec. 371 Date Oct. 10, 1995 Sec. 102(e) Date Oct. 10, 1995 PCT Filed Feb. 17, 1994 PCT Pub. No. WO94/19307 PCT Pub. Date Sep. 1, 1994The subject of the invention is a process for extracting pure lactic acid from fermentation liquors by ion exchange chromatography on a strongly acidic cation exchanger, preferably in H+ form. In a first step, the NH4 lactate coming from the fermentation is converted into the free acid by genuine ion exchange. This conversion is preferably effected on a weakly acidic cation exchanger in H+ form.",
  "claims": [
    "1. Process for the separation and purification of lactic acid from salt-containing and carbohydrate-containing substrates from a fermentation solution from which coarsely dispersed and lipophilic impurities have been removed, said separation and purification process comprising the steps of: a) converting the salts which may be present in the fermentation solution, principally the salt of lactic acid, into free acids by means of genuine ion exchange in one or more \"preliminary columns\", and b) separating the free lactic acid from the rest of the acids, carbohydrates and other impurities present in the fermentation solution by chromatography at strongly acidic ion exchangers in one or more \"separation columns\".",
    "2. Process according to claim 1, wherein the fermentation solution from which the lactic acid is separated has a pH greater than 5.0.",
    "3. Process according to claim 1 wherein the resin located in one or more \"preliminary columns\" is a cation exchanger.",
    "4. Process according to claim 3 wherein the temperature of the \"preliminary column\" is at least 50° C.",
    "5. Process according to claim 4 wherein the temperature of the \"preliminary column\" is 70°-80° C.",
    "6. Process according to claim 3 wherein the cation exchanger is a weakly acidic cation exchanger in H + form.",
    "7. Process according to claim 1, wherein the strongly acidic cation exchanger found in one or more \"separation columns\" is present in H + form.",
    "8. Process according to claim 1, wherein the decationized fermentation solution, upon contact with the strongly acidic cation exchanger, is divided into a raffinate fraction I (initial fraction) containing the components without a lactic acid content, a product fraction containing lactic acid, and a raffinate fraction II (final fraction) containing primarily ethanoic acid.",
    "9. Process according to claim 8 wherein the elution temperature lies between room temperature and the stability threshold temperature of the resins employed.",
    "10. Process according to claim 9, wherein the diluted salt solution occurring in the regeneration of the resins in the preliminary columns is separated into the corresponding acids and bases by salt-hydrolyzing electrodialysis and fed back to the process.",
    "11. Process according to claim 9 wherein the elution temperature lies between 50° C. and 65° C.",
    "12. Process according to claim 1 wherein pure water is used as eluting agent for washing the individual fractions out of the separation columns.",
    "13. Process according to claim 12 wherein the pure water is deionized.",
    "14. Process according to claim 1 wherein only the weakly acidic cation exchanger located in the \"preliminary columns\" is regenerated with a diluted strong mineral acid after being completely loaded by the cations of the fermentation solution.",
    "15. Process according to claim 14 wherein the diluted strong mineral acid is a 1-2N sulfuric acid."
  ],
  "cpc": [
    "C12P 7/48",
    "C07C 51/47"
  ],
  "assignees": [
    "VOGELBUSCH GMBH"
  ],
  "filing_date": "1994-02-17",
  "publication_date": "1997-06-24",
  "grant_date": "1997-06-24",
  "priority_date": "1993-02-18",
  "application_number": "US-50516695-A",
  "family_id": "3487174",
  "citations": [
    "BE878531A",
    "FR2455022A1",
    "US4288619A",
    "US4814273A",
    "US5068418A",
    "US5068419A",
    "US5143834A",
    "US5245078A",
    "US5472616A"
  ]
}

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