Blumberg et al., “Interesting Aspects in the Development of a Novel Solvent Extraction Process for Producing Sodium Bicoarbonate”, Proceedings of the International Solvent Extraction Conference, vol. 3, pp. 2789-2802 (1974). |
Ricker et al., “Solvent Extraction with Amines for Recovery of Acetic Acid from Dilute Aqueous Industrial Streams”,J. Separ. Proc. Technol. , 1(2), pp. 23-30 (1980). |
Cheng et al., “Lactic Acid Production From Enzyme-Thinned Corn Starch Using Lactobacillus amylovorus”, Journal of Industrial Microbiology, vol. 7, pp. 27-34 (1991). |
Davis et al., “A Proposed Biparticle Fluidized-Bed for Lactic Acid Fermentation and Simultaneous Adsorption”, Biotechnology and Bioengineering, vol. 39, pp. 365-368 (1992). |
Benthin et al., “Production of Optically Pure D-Lacatete by Lactobacillus Bulgaricus and Purification by Crystallisation and Liquid/Liquid Extraction”, Appl Microbiol Biotechnol, vol. 42, pp. 826-829 (1995). |
Gonzalez-Vara et al., “Production of L(+) amd D(−) Lactic Acid Isomers by Lactobacillus caseisubsp. casel DSM 20011 and Lactobacillus coryniformis subsp. torquens DSM 20004 in Continuous Fermentation”, Journal of Fermentation and Bioengineering, vol. 81, No. 6, pp. 548-552 (1996). |
Ye et al., “Performance Improvement of Lactic Acid Fermentation by Multistage Extractive Fermentation”, Journal of Fermentation and Bioengineering, vol. 81, No. 3, pp. 240-246 (1996). |
Nakamura, L.K. et al., 1997 Developments in Industrial Microbiology, Proceedings of the Thirty-Fourth General Meeting of the Society for Industrial Microbiology Held at East Lansing, MI, Aug. 21-26, 1977 “Microbiology of Corn Fermented with Swine Waste”. |
Roy, T.B.V. et al., 1982, Biotechnology Letters, 4(8):483-488 “Latic Acid Production by Lactobacillus delbreuckii in a Hollow Fiber Fermenter”. |
Roy, T.B.V. et al., 1983, Biotechnology Letters, 5(10):665-670 “The Application of Cell Recycle to Continuous Fermentative Lactic Acid Production”. |
Stenroos, S.L. et al., 1982, Biotechology Letters, 4(3):159-164 “Production of L.-Lactic Acid with Immobilized Lactobacillus delbruesckii”. |
Stieber, R.W. et al., 1981, Biotechnology and Bioengineering, XXIII(2):534-549 “Dialysis Continuous Process for Ammonium Lactate Fermentation: Simulated and Experimental Dialysate-Feed, Immobilized-Cell Systems”. |
Dequin et al., 1994, Bio/Technology, 12:173-177 Mixed Lactic Acid-Alcoholic Fermentation by Saccharomyes cerevisiae Expressing the Lactobacillus casei L(+)-LDH. |
Genga, et al., 1983, Microbiologica, 1:1-8 “Mitochondrial NAD, L-Lactate Dehydrogenase and NAD, D-Lactate Dehydrogenase in the Yeast Saccharomyces cerevisiae”. |
Porro et al., 1994, Med. Fac. Landbouww. Univ. Gent., 59/4b:2303-2311 “Production of Lactic Acid from Engineered Saccharomyces cerevisiae Cells ”. |
Porro et al., 1995, Biotechnology, 11:294-298 “Developement of Metabolically Engineered Saccharomyces cerevisia Cells for the Production of Lactic Acid”. |
Yang et al., 1995, Applied Biochemistry and Biotechnology, vol. 51/52, pp. 57-71 Lactic Acid Production by Pellet-Form Rhizopus oryzae in a Submerged System. |
San-Martin, M. et al., “Liquid-Liquid Extraction of Lactic Acid with Alamine 336”, Journal of Chemical Technology and Biotechnology, vol. 65, No. 3; Mar. 1, 1996, pp. 281-285. |
Cann, I., et al., “Characterization of Two Novel Saccharolytic Aerotolerant Thermophiles, Thermobacter polysaccharolyticum gen. nov., sp. nov. and Thermobacter zeae gen. nov., sp. nov.”, Department of Animal Sciences, University of Illinois at Urbana-Champaign, Urbana, IL 61801; 20 pages (undated). |
Mehaia, M., et al., “Lactic Acid from Acid Whey Permeate in a Membrane Recycle Bioreactor”, Enzyme Microb. Technol., 8:289-292 (May 1986). |
Fukunishi, Kunio, Chemical Abstracts, vol. 107, No. 1, 1987 “Production of optically active lactic acid” p. 543. |
Nakahara, Tadaatsu, et al., Chemical Abstracts, vol. 118, No. 5, 1993 “Manufacture of D-lactic acid from 1,2-propanediol with Pseudomonas”, p. 559. |
Peters, E., “Microbiological and Biochemical Characterization of the Steeping Phase of the Corn Wet Milling Process” (abstract of a thesis submitted in partial fulfillment of requirements for degree), University of Iowa, pp. i-v, 39-57, 62-64, 77-79, 83-100, 105-107, 115 (May 1996). |
Yabannavar, V., et al., “Extractive Fermentation for Lactic Acid Production”, Biotechnology and Bioengineering, 37:1095-1100 (1991). |
Grimont, F., et al., “Ribosomal Ribonucleic Acid Gene Restriction Patterns as Potential Taxonomic Tools,” Ann. Inst. Pasteur/Microbiol. (Paris), 1378:165-175, (1986). |
Jacquet, et al., “Typing of Listeria monocytogenes by Restriction Polymorphism of the Ribosomal Ribonucleic Acid Gene Region,” Zbl. Bakt., 276:356-365, (1992). |
Stanbury, P., et al., “Principles of Fermentation Technology,” 1984, Pergamon Press, pp. 33-37. |