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 Eroglu E., Gunduz U., Yucel M., Turker L., Eroglu I. Photobiological hydrogen production from olive mill wastewater as sole substrate sources. Int J Hydrogen Energy 2004; 29: 163–171.
Eroglu I., Aslan K., Gunduz U., Yucel M., Turker L. Substrate consumption rate for hydrogen production by Rhodobacter sphaeroides in a column photobioreactor. J Biotechnol 1999; 70: 103–113.
Fang H.H.P., Liu H., Zhang T. Phototrophic hydrogen production from acetate and butyrate in wastewater. Int J Hydrogen Energy 2005; 30: 785–793.
Fang H.H.P., Zhu H., Zhang T. Phototrophic hydrogen production from glucose by pure and co-cultures of Clostridium butyricum and Rhodobacter sphaeroides. Int J Hydrogen Energy 2006; 31: 2223–2230.
Fascetti E., Todini O. Rhodobacter sphaeroides RV cultivation and hydrogen production in a one- and two-stage chemostat. Appl Microbiol Biotechnol 1995; 44: 300–305.
Federov A.S., Tsygankov A.A., Rao K.K., Hall D.O. Hydrogen photoproduction by Rhodobacter sphaeroides immobilized on polyurethane foam. Biotechnol Lett 1998; 20: 1007–1009.
Fisler J., Kohring G.W., Giffhorn F. Enhanced hydrogen production fromaromatic acids by immobilized cells of Rhodopseudomonas palustris. Appl Microbiol Biotechnol 1995; 44: 43–46.
Forestier M., King P., Zhang L., Posewitz M., Schwarzer S., Happe T., Ghirardi M.L., Seibert M. Expression of two [Fe]-hydrogenases in Chlamydomonas reinhardtii under anaerobic conditions. Eur J Biochem 2003; 270: 2750–2758.
Gaffron H., Rubin J. Fermentative and photochemical production of hydrogen in algae. J Gen Physiol 1942; 26: 219–240.
Ghirardi M.L., Zhang L., Lee J.W., Flynn T., Seibert M., Greenbaum E., Melis A. Microalgae: A green source of renewable H2. Trends Biotechnol 2000; 18: 506–511.
























































































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