Issue
Korean Journal of Chemical Engineering,
Vol.28, No.12, 2312-2315, 2011
Effects of three main sugars in cane molasses on the production of butyric acid with Clostridium tyrobutyricum
The effects of three main sugars in cane molasses were investigated systematically to prepare a cost-effective medium for butyric acid bioproduction. Additionally, 30 g/L corn steep liquor was screened out as the suitable nitrogen source. In the batch fermentation of free cells, when 60 g/L glucose was the only carbon source, 21.28 g/L butyric acid was achieved after 30 h cultivation. Similar product concentration, productivity and yield were obtained when 60 g/L fructose was applied. The utilization of sucrose would bring about lower productivity (0.29 g/L·h) and product concentration (18.15 g/L), but the yield of butyric acid/sucrose (0.34 g/g) is almost the same as that from glucose or fructose (0.35 g/g). Finally, the sugar mixture (15 g/L glucose, 20g/L fructose and 35 g/L sucrose) was employed to produce butyric acid in a fibrous-bed bioreactor (FBB), and 40.11 g/L butyric acid was produced with one simple fed-batch strategy.
[References]
  1. Armstrong DW, Yamazaki H, Trends Biotechnol., 4, 264, 1986
  2. Sharpel FHJ, Comprehensive biotechnology, Oxford, UK: Pergamon Press, 965, 1985
  3. Willims EA, Coxhead JM, Mathers JC, Proc. Nutr. Soc., 62, 107, 2003
  4. Zigova J, Sturdik E, J. Ind. Microbiol. Biotechnol., 24, 153, 2000
  5. Michel-Savin D, Marchal R, Vandecasteele JP, Appl. Microbiol. Biotechnol., 32, 387, 1990
  6. Liu XG, Zhu Y, Yang ST, Enzyme Microb. Technol., 38(3-4), 521, 2006
  7. Wu ZT, Yang ST, Biotechnol. Bioeng., 82(1), 93, 2003
  8. Zhu Y, Wu ZT, Yang ST, Process Biochem., 38, 657, 2002
  9. Jiang L, Wang JF, Liang SZ, Wang XN, Cen PL, Xu ZN, Appl. Biochem. Biotechnol., 160(2), 350, 2010
  10. Liu YP, Zheng P, Sun ZH, Ni Y, Dong JJ, Zhu LL, Bioresour. Technol., 99(6), 1736, 2008
  11. Kotzamanidis C, Roukas T, Skaracis G, World J. Microbiol. Biotechnol., 18, 441, 2002
  12. Wang JL, Wen XH, Zhou D, Bioresour. Technol., 75(3), 231, 2000
  13. Jiang L, Wang JF, Liang SZ, Wang XN, Cen PL, Xu ZN, Bioresour. Technol., 100, 3403, 2009
  14. Huang Y, Yang ST, Biotechnol. Bioeng., 60, 499, 1998
  15. Silva EM, Yang ST, J. Biotechnol., 41, 59, 1995
  16. Liu XG, Yang ST, Process Biochem., 41, 801, 2006
  17. He G, Kong Q, Chen Q, Ruan H, J. Zhejiang Univ. Sci., 11, 1076, 2005