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 Gogotov I.N., Zorin N.A., Serebriakova L.T. Hydrogen production by model systems including hydrogenases from phototrophic bacteria. Int J Hydrogen Energy 1991; 16: 393–396.
Golomysova A., Gomelsky M., Ivanov P.S. Flux balance analysis of photoheterotrophic growth of purple nonsulfur bacteria relevant to biohydrogen production. Int J Hydrogen Energy 2010; 35: 12751–12760.
Greenbaum E. Energetic efficiency of hydrogen photo evolution by algal water splitting. Biophys J 1988; 54: 365–368.
Guan Y., Deng M., Yu X., Zhang W. Two-stage photo-biological production of hydrogen by marine green alga Platymonas subcordiformis. Biochem Eng J 2004; 19: 69–73.
Hallenbeck P.C., Benemann J.R. Biological hydrogen production; fundamentals and limiting processes. Int J Hydrogen Energy 2002; 27: 1185–1193.
Happe T., Hemschemeier A., Winkler M., Kaminski A. Hydrogenases in green algae: Do they save algae’s life and solve our energy problems?. Trends Plant Sci 2002; 7: 246–250.
Happe T., Naber J.D. Isolation, characterization and N-terminal amino acid sequence of hydrogenase from the green alga Chlamydomonas reinhardtii. Eur J Biochem 1993; 214: 475–481.
He D., Bultel Y., Magnin J.P., Willison J.C. Kinetic analysis of photosynthetic growth and photohydrogen production of two strains of Rhodobacter Capsulatus. Enzyme Microb Technol 2006; 38: 253–259.
He D., Bultel Y., Magnin J.P., Roux C., Willison J.C. Hydrogen photosynthesis by Rhodobacter capsulatus and its coupling to PEM fuel cell. J Power Sources 2005; 141: 19–23.
Heyer H., Stal L.J., Krumbein W.E. Simultaneous heterolactic and acetate fermentation in the marine cyanobacterium Oscillatoria limosa incubated anaerobically in the dark. Arch Microbiol 1989; 151: 558–564.
























































































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