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http://dx.doi.org/10.4491/eer.2005.10.1.007

CHARACTERISTICS OF BIOHYDROGEN PRODUCTION AND MICROBIAL COMMUNITY AS A FUNCTION OF SUBSTRATE CONCENTRATION  

Youn, Jong-Ho
Shin, Hang-Sik
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Abstract
The feasibility of hydrogen production with a raw seed sludge through direct acclimation of feedstock was investigated at acidogenic stage, and methane was harvested at followed methanogenic stage in an anaerobic two-stage process. Hydrogen content was higher than 57% at all tested organic loading rates (OLRs) and the yield of hydrogen ranged from 1.5 to 2.4 mol H2/mol hexose consumed and peaked at 6 gVSl-1day-1. Normal butyrate and acetate were main volatile fatty acids (VFAs), whereas the concentration of propionate was insignificant. The hydrogen-producing bacteria, Clostridium thermosaccharolyticum, was detected with strong intensity at all tested organic loading rates (OLRs) by denaturing gradient gel electrophoresis (DGGE) of the polymerase chain reaction (PCR) analysis. From COD balance in the process, the fraction of the feed-COD converted to the hydrogen-COD at acidogenic stage ranged from 7.9% to 9.3% and peaked at 6 gVSl-1day-1, whereas the fraction of feed-COD converted to the methane-COD at methanogenic stage ranged from 66.2% to 72.3% and peaked at 3 gVSl-1day-1.
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1 Mizuno, O., Dinsdale, R., Hawkes, F. R., Hawkes, D. L, and Noike, T., 'Enhancement of hydrogen production from glucose by nitrogen gas sparing,' Bioresour. Technol., 73, 59-65 (2000)   DOI   ScienceOn
2 Fang, H. H. P. and Liu, H., 'Effect of pH on hydrogen production from glucose by a mixed culture,' Bioresour. Technol., 82, 87-93 (2002)   DOI   ScienceOn
3 Han, S. K., Kim, S. H., Sung, S., and Shin, H. S., 'Effect of pH and repeated heatshock treatment on hydrogen fermentation of sucrose by a mixed culture,' Environ. Eng. Res., 8(4), 202-211 (2003)   DOI   ScienceOn
4 Hawkes, F. R., Dinsdale, R., Hawkes, D. L., and Hussy, I., 'Sustainable fermentative hydrogen production: challenges for process optimization,' Int. J. Hydrogen Energy, 27, 1339-1347 (2002)   DOI   ScienceOn
5 Dubois, M., Gilles, K. A., Hamilton, J. K., Rebers, P. A., and Smith, F., 'Calorimetric method for determination of sugars and related substance,' Anal. Chem., 28(3), 350356 (1956)   DOI
6 APHA 'Standard Methods for the Examination of Waste and Wastewater,' 18th ed. American Public Health Association, Washington, USA. (1992)
7 Zoetemeyer, R. J., van den Heuvel, J. C., and Cohen, A., 'pH influence on acidogenic dissimilation of glucose in anaerobic digester,' Water Res., 16, 303-311 (1982)   DOI   ScienceOn
8 Vavilin, V. A., Rytow, S. V., and Lokshina, L. Y, 'Modelling hydrogen partial pressure change as a result of competition between the butyrate and propionate groups of acidogenic bacteria,' Bioresour. Technol., 54, 171-177 (1995)   DOI   ScienceOn
9 Van Haandel, A. C. and Lettinga, G., 'Anaerobic sewage treatment - A practical guide for regions with a hot climate,' Wiley, New York, (1994)
10 Ueno, Y., Haruta, S., Ishii, M., and Igarashi, Y., 'Microbial community in anaerobic hydrogen-producing microflora enriched from sludge compost,' Appl. Microbiol. Biotechnol., 57, 555-562 (2001b)   DOI   ScienceOn
11 Nandi, R., and Sengupta, S., 'Microbial production of hydrogen: an overview,' Crit. Rev. Microbiol., 24(1), 61-84 (1998)   DOI   ScienceOn
12 Yu, H. and Fang, H. H. P., 'Thermophilic acidification of dairy wastewater,' Appl. Microbiol. Biotechnol., 54, 439-444 (2000)   DOI   ScienceOn
13 Lay, J. J., Lee, Y. J., and Noike, T., 'Feasibility of biological hydrogen production from organic fraction of municipal solid waste,' Water Res., 33(11), 2579-2586 (1999)   DOI   ScienceOn
14 Okamoto, M., Miyahara, T., Mizuno, O, and Noike, T., 'Biological hydrogen potential of materials characteristic of the organic fraction of municipal solid wastes,' Water Sci. Technol., 41, 25-32 (2000)
15 Yu, H., Zhu, Z., Hu, W., and Zhang, H., 'Hydrogen production from rice winery wastewater in an upflow anaerobic reactor by using mixed anaerobic cultures,' Int. J. Hydrogen Energy, 27, 1359-1365 (2002)   DOI   ScienceOn
16 Mata-Alvarez, J., Mace, S., and Liabres, P., 'Anaerobic digestion of organic solid wastes. An overview of research achievements and perspectives,' Bioresour. Technol., 74, 3-16 (2000)   DOI   ScienceOn
17 Zhang, T., Liu, H., Fang, H. H. P., 'Biohydrogen production from starch in wastewater under thermophilic condition,' J. Environ. Management, 69(2), 149-156 (2003)   DOI   ScienceOn
18 Ueno, Y., Otsuka, S., and Morimoto, M., 'Hydrogen production from industrial waste-water by anaerobic microflora in chemostat culture,' J. Ferment. Bioeng., 82(2), 194-7 (1996)   DOI   ScienceOn
19 Collins, M. D., Lawson, P. A., Willems, A., Cordoba, J. J., Femadez-Garayzabal, J., Garcia, P., Cai, J., Hippe, H., and Farrow, J. A. E., 'The phylogeny of the genus Clostridium : proposal of five new genera and eleven species combinations,' Int. J. Syst. Bacteriol., 44, 812-826 (2003)   DOI   ScienceOn
20 Daumas, S., Cord-Ruwisch, R., and Garcial, J. L., 'Desulfotomaculum geothermicum sp. nov., a thermophilic, fatty acid-degrading, sulfate-reducing bacterium isolated with $H_{2}$ from geothermal ground water,' Antonie Leeuwenhoek, 54, 165-178 (1988)   DOI   ScienceOn