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Lo Y.C., Chen H.D., Chen C.Y., Huang T.I., Lin C.Y., Chang J.S. Combining enzymatic hydrolysis and dark–photo fermentation processes for hydrogen production from starch feedstock: A feasibility study. Int J Hydrogen Energy 2008; 33: 5224–5233.
Maeda I., Miyasaka H., Umeda F., Kawase M., Yagi K. Maximization of hydrogen production ability in high-density suspension of cells using intracellular poly (3-hydroxcbutyrate) as sole substrate. Biotechnol Bioeng 2003; 81: 474–481.
Markov S.A., Thomas A.D., Bazin M.J., Hall D.O. Photoproduction of hydrogen by cyanobacteria under partial vacuum in batch culture or in a photobioreactor. Int J Hydrogen Energy 1997; 22: 521–524.
McKinlay J.B., Harwood C.S. Photobiological production of hydrogen gas as a biofuel. Curr Opin Biotechnol 2010; 21: 244–251.
Melis A. Photosynthetic H2 metabolism in (unicellular green algae). Planta 2007; 226: 1075–1086.
Melis A., Zhang L.P., Forestier M., Ghirardi M.L., Seibert M. Sustained photobiological hydrogen gas production upon reversible inactivation of oxygen evolution in the green algae . Plant Physiology 2000; 122: 127–135.
Miyake J., Kawamura S. Efficiency of light energy conversion to hydrogen by the photosynthetic bacterium . Int J Hydrogen Energy 1987; 12: 147–149.
Miyake J., Miyake M., Asada Y. Biotechnological hydrogen production: research for efficient light energy conversion. J Biotechnol 1999a; 70: 89–101.
Miyake J., Wakayama T., Schnackenberg JS., Arai T., Asada Y. Simulation of daily sunlight illumination pattern for bacterial photo-hydrogen production. J Biosci Bioeng 1999b; 88: 659–663.
Modigell M., Holle N. Reactor development for a biosolar hydrogen production process. Renew Energy 1998; 14: 421–426.