Page 586 - เชื้อเพลิงชีวภาพและชีวเคมีภัณฑ์โดยจุลินทรีย์
P. 586

548
 Ntaikou I., Antonopoulou G., Lyberatos G. Biohydrogen production from biomass and wastes via dark fermentation: A Review. Waste Biomass Valorization 2010; 1: 21–39.
Oh B.R., Seo J.W., Choi M.H., Kim C.H. Optimization of culture conditions for 1,3- propanediol production from crude by Klebsiella pneumoniae using response surface methodology. Biotechnol Bioprocess Eng 2008; 13: 666–670.
Oh B.R., Hong W.K., Heo S.Y., Luo L.H., Kondo A., Seo J.W., Kim C.H. The production of 1,3-propanediol from mixtures of glycerol and glucose by a Klebsiella pneumoniae mutant deficient in carbon catabolite repression. Bioresour Technol 2013; 130: 719–724.
Otte B., Grunwaldt E., Mahmoud O., Jennewein S. Genome shuffling in Clostridium diolis DSM 15410 for improved 1,3-propanediol production. Appl Environ Microbiol 2009; 75: 7610–7616.
Pflügl S., Marx H., Mattanovich D., Sauer M. 1,3-propanediol production from glycerol with Lactobacillus diolivorans. Bioresour Technol 2012; 119: 133–140.
Reddy C.S.K., Ghai R., Rashmi K.V.C. Polyhydroxyalkanoates: An overview. Bioresour Technol 2003; 87: 137–146.
Ren N., Li J., Li B., Wang Y., Liu S. Biohydrogen production from molasses by anaerobic fermentation with a pilot scale bioreactor system. Int J Hydrogen Energy 2006; 31: 2147–2157.
Reungsang A., Sittijunda S., Angelidaki I. Simultaneous production of hydrogen and ethanol from waste glycerol by Enterobacter aerogenes KKU-S1. Int J Hydrogen Energy 2013; 38: 1813–1825.
Riedel S.L., Lu J., Stahl U., Brigham C.J. Lipid and fatty acid metabolism in Ralstonia eutropha: Relevance for the biotechnological production of value added products. Appl Microbiol Biotechnol 2014; 98: 1469–1483.

























































































   584   585   586   587   588