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53. Ding SF, Tan TW. L-lactic acid production by Lactobacillus casei fermentation using different
fed-batch feeding strategies. Process Biochemistry 2006; 41 (6):1451-1454.
54. Gonzalez Vara A, Pinelli D, Rossi M, Fajner D, Magelli F, Matteuzzi D. Production of L(+)
and D(-) lactic acid isomers by Lactobacillus casei subsp casei DSM 20011 and Lactobacillus
coryniformis subsp torquens DSM 20004 in continuous fermentation. Journal of Fermentation
and Bioengineering 1996; 81 (6):548-552.
55. Bai DM, Wei Q, Yan ZH, Zhao XM, Li XG, Xu SM. Fed-batch fermentation of Lactobacillus
lactis for hyper-production of L-lactic acid. Biotechnology Letters 2003; 25 (21):1833-1835.
56. Hirata M, Gao MT, Toorisaka E, Takanashi H, Hano T. Production of lactic acid by continuous
electrodialysis fermentation with a glucose concentration controller. Biochemical Engineering
Journal 2005; 25 (2):159-163.
57. Wee YJ, Kim JN, Yun JS, Ryu HW. Optimum conditions for the biological production of
lactic acid by a newly isolated lactic acid bacterium, Lactobacillus sp RKY2. Biotechnology
and Bioprocess Engineering 2005; 10 (1):23-28.
58. Sirisansaneeyakul S, Luangpipat T, Vanichsriratana W, Srinophakun T, Chen HHH, Chisti Y.
Optimization of lactic acid production by immobilized Lactococcus lactis IO-1. Journal of
Industrial Microbiology & Biotechnology 2007; 34 (5):381-391.
59. Tay A, Yang ST. Production of L(+)-lactic acid from glucose and starch by immobilized cells
of Rhizopus oryzae in a rotating fibrous bed bioreactor. Biotechnology and Bioengineering
2002; 80 (1):1-12.
60. Liu Y, Wen Z, Liao W, Liu C, Chen S. Optimization of the process for the production of
L(+)-lactic acid from cull potato by Rhizopus oryzae . Engineering in Life Sciences 2005;
5 (4):343-349.
61. Assinder SJ, Eynstone LVJ, Shellis RP, Dibdin GH. Inhibition of acid production in
Streptococcus-Mutans R9 - inhibition constants and reversibility. FEMSMicrobiology Letters
1995; 134 (2-3):287-292.
62. Li Y, Shahbazi A, Coulibaly S, Mims MM. Semicontinuous production of lactic acid from
cheese whey using integrated membrane reactor. Applied Biochemistry and Biotechnology
2007; 137 :897-907.
63. Buyukkileci AO, Harsa S. Batch production of L(+) lactic acid from whey by Lactobacillus
casei NRRL B-441. Journal of Chemical Technology and Biotechnology 2004; 79 (9):
1036-1040.
64. Schepers AW, Thibault J, Lacroix C. Lactobacillus helveticus growth and lactic acid pro-
duction during pH-controlled batch cultures in whey permeate/yeast extract medium. Part
II: kinetic modeling and model validation. Enzyme and Microbial Technology 2002; 30 (2):
187-194.
65. Schepers AW, Thibault J, Lacroix C. Continuous lactic acid production in whey per-
meate/yeast extract medium with immobilized Lactobacillus helveticus in a two-stage
process: Model and experiments. Enzyme and Microbial Technology 2006;
38 (3-4):
324-337.
66. Kim HO, Wee YJ, Kim JN, Yun JS, Ryu HW. Production of lactic acid from cheese whey
by batch and repeated batch cultures of Lactobacillus sp RKY2. Applied Biochemistry and
Biotechnology 2006; 131 (1-3):694-704.
67. Mulligan CN, Gibbs BF. Batch conversion of whey permeate to ammonium lactate by
Streptococcus-cremoris . Biotechnology and Applied Biochemistry 1991; 14 (1):41-53.
68. Leh MB, Charles M. The effect of whey-protein hydrolyzates on the lactic-acid fermentation.
Journal of Industrial Microbiology 1989; 4 (1):71-75.
69. Oh H, Wee YJ, Yun JS, Han SH, Jung SW, Ryu HW. Lactic acid production from agricultural
resources as cheap raw materials. Bioresource Technology 2005; 96 (13):1492-1498.
70. Wee YJ, Reddy LVA, Ryu HW. Fermentative production of L(+)-lactic acid from starch
hydrolyzate and corn steep liquor as inexpensive nutrients by batch culture of Enterococcus
faecalis RKY1. Journal of Chemical Technology and Biotechnology 2008;
83 (10):
1387-1393.
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