Environmental Engineering Reference
In-Depth Information
34. Xu GQ, Chu J, Wang YH, Zhuang YP, Zhang SL, Peng HQ. Development of a continuous
cell-recycle fermentation system for production of lactic acid by Lactobacillus paracasei .
Process Biochemistry 2006; 41 (12):2458-2463.
35. 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.
36. Roukas T, Kotzekidou P. Lactic acid production from deproteinized whey by mixed cultures
of free and coimmobilized Lactobacillus casei and Lactococcus lactis cells using fedbatch
culture. Enzyme and Microbial Technology 1998; 22 (3):199-204.
37. Rao CS, Prakasham RS, Rao AB, Yadav JS. Functionalized alginate as immobilization
matrix in enantioselective L (+) lactic acid production by Lactobacillus delbrucekii . Applied
Biochemistry and Biotechnology 2008; 149 (3):219-228.
38. Chen CC, Ju LK. Adsorption characteristics of polyvinylpyridine and activated carbon for
lactic acid recovery from fermentation of Lactobacillus delbrueckii . Separation Science and
Technology 1998; 33 (10):1423-1437.
39. Kumar R, Nanavati H, Noronha SB, Mahajani SM. A continuous process for the recovery of
lactic acid by reactive distillation. Journal of Chemical Technology and Biotechnology 2006;
81 (11):1767-1777.
40. Kim YH, Moon SH. Lactic acid recovery from fermentation broth using one-
stage electrodialysis. Journal of Chemical Technology and Biotechnology 2001; 76(2):
169-178.
41. Li YB, Shahbazi A. Lactic acid recovery from cheese whey fermentation broth using com-
bined ultrafiltration and nanofiltration membranes. Applied Biochemistry and Biotechnology
2006; 132 (1-3):985-996.
42. Gonzalez MI, Alvarez S, Riera FA, Alvareza R. Lactic acid recovery from whey ultrafiltrate
fermentation broths and artificial solutions by nanofiltration. Desalination 2008; 228 (1-3):
84-96.
43. Lee EG, Kang SH, Kim HH, Chang YK. Recovery of lactic acid from fermentation broth by
the two-stage process of nanofiltration and water-splitting electrodialysis. Biotechnology and
Bioprocess Engineering 2006; 11 (4):313-318.
44. Li Y, Shahbazi A, Williams K, Wan C. Separate and concentrate lactic acid using combination
of nanofiltration and reverse osmosis membranes. Applied Biochemistry and Biotechnology
2008; 147 (1-3):1-9.
45. Kim YH, Moon SH. Lactic acid recovery from fermentation broth using one-stage electro-
dialysis. Journal of Chemical Technology and Biotechnology 2001; 76 (2):169-178.
46. Lee EG, Moon SH, Chang YK, Yoo IK, Chang HN. Lactic acid recovery using two-stage
electrodialysis and its modelling. Journal of Membrane Science 1998; 145 (1):53-66.
47. Michelson T, Kask K, Jogi E, Talpsep E, Suitso I, Nurk A. L(+)-Lactic acid producer Bacillus
coagulans SIM-7 DSM 14043 and its comparison with Lactobacillus delbrueckii ssp lactis
DSM 20073. Enzyme and Microbial Technology 2006; 39 (4):861-867.
48. Oh H, Wee YJ, Yun JS, Ryu HW. Lactic acid production through cell-recycle repeated-batch
bioreactor. Applied Biochemistry and Biotechnology 2003; 105 :603-613.
49. Yun JS, Wee YJ, Ryu HW. Production of optically pure L(+)-lactic acid from various car-
bohydrates by batch fermentation of Enterococcus faecalis RKY1. Enzyme and Microbial
Technology 2003; 33 (4):416-423.
50. Bruno-Barcena JM, Ragout AL, Cordoba PR, Sineriz F. Continuous production of L(+)-lactic
acid by Lactobacillus casei in two-stage systems. Applied Microbiology and Biotechnology
1999; 51 (3):316-324.
51. Hujanen M, Linko YY. Effect of temperature and various nitrogen sources on L(+) lac-
tic acid production by Lactobacillus casei . Applied Microbiology and Biotechnology 1996;
45 (3):307-313.
52. Hujanen M, Linko S, Linko YY, Leisola M. Optimisation of media and cultivation con-
ditions for L(+)(S)-lactic acid production by Lactobacillus casei NRRL B-441. Applied
Microbiology and Biotechnology 2001; 56 (1-2):126-130.
Search WWH ::




Custom Search