Environmental Engineering Reference
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Srirangan, K., Pyne, M.E. and Chou, C.P. (2011) Photofermentative hydrogen production from
wastes. Bioresource Technology , 102, 8557-8568.
Suwansaard, M., Choorit, W., Zeilstra-Ryalls, J.H. and Prasertsan, P. (2010) Phototropic H 2
production by a newly isolated strain of Rhodopseudomonas palustris . Biotechnology letters ,
32, 1667-1671.
Tao, Y.Z., He, Y.L., Wu, Y.Q., Liu, F.H., Li, X.F., Zong, W.M. and Zhou, Z.H. (2008) Charac-
teristics of a new photosynthetic bacterial strain for hydrogen production and its application
in wastewater treatment. International Journal of Hydrogen Energy , 33, 963-973.
Tekucheva, D.N., Laurinavichene, T.V., Seibert, M. and Tsygankov, A.A. (2011) Immobilized
purple bacteria for light-driven H 2 production from starch and potato fermentation effluents.
Biotechnology Progress , 27, 1248-1256.
Tian, X., Liao, Q., Liu, W., Wang, Y.Z., Zhu, X., Li, J. and Wang, H. (2009) Photo-hydrogen
production rate of a PVA-boric acid gel granule containing immobilized photosynthetic
bacteria cells. International Journal of Hydrogen Energy , 34, 4708-4717.
Tian, X., Liao, Q., Zhu, X., Zhu, X., Wang, Y.Z., Zhang, P., Li, J. and Wang, H. (2010) Charac-
teristics of a biofilm photobioreactor as applied to photo-hydrogen production. Bioresource
Technology , 101, 977-983.
Tredici, M.R., Carlozzi, P., Zittelli, G.C. and Materassi, R. (1991) A vertical alveolar panel (VAP)
for outdoor mass cultivation of microalgae and cyanobacteria. Bioresoure Technology , 38,
153-159.
Tredici, M.R., Zittelli, G.C. and Benemann, J.R. (1998) A tubular integral gas exchange photo-
bioreactor for biological hydrogen production. In: Biohydrogen Ed. O.R. Zaborsky. Plenum
Press, London, UK.
Tsygankov, A.A., Hall, D.O., Liu, J. and Rao, K.K. (1998) An automated helical photobioreactor
incorporating cyanobacteria for continuous hydrogen production. In: Biohydrogen ed. O.R.
Zaborsky. Plenum Press, London, UK.
Tsygankov, A.A., Hirata, Y. Asada, Y. and Miyake, J. (1993) Immobilization of the purple non-
sulfur bacterium Rhodobacter sphaeroides on glass surfaces. Biotechnology Techniques ,7,
283-286.
Ugwa, C.U., Aoyagi, H. and Uchiyama, H. (2008) Photobioreactors for mass cultivation of
algae. Bioresource Technology , 99, 4021-4028.
Uyar, B., Eroglu, I., Yucel, M., Gndz, U. and Turker, L. (2007) Effect of light intensity, wave-
length and illumination protocol on hydrogen production in photobioreactors. International
Journal of Hydrogen Energy , 32, 4670-4677.
Vasilyeva, L., Miyake, M., Khatipov, E., Wakayama, T., Sekine, M., Hara, M., Nakada,
E., Asada, Y. and Miyake, J. (1999) Enhanced hydrogen production by a mutant of
Rhodobacter sphaeroides having an altered light-harvesting system. Journal of Bioscience
and Bioengineering , 87, 619-624.
von Felten, P., Zurrer, H. and Bachofen, R. (1985) Production of molecular hydrogen with
immobilized cells of Rhodospirillum rubrum . Applied Microbiology and Biotechnology , 23,
15-20.
Wang, Y.J., Liao, Q., Wang, Y.Z., Zhu, X. and Li, J. (2011) Effects of flow rate and sub-
strate concentration on the formation and H 2 production of photosynthetic bacterial biofilm.
Bioresource Technology , 102, 6902-6908.
Wang, Y.Z., Liao, Q., Zhu, X., Tian, X. and Zhang, C. (2010) Characteristics of hydro-
gen production and substrate consumption of Rhodopseudomonas palustris CQK 01 in an
immobilized-cell photobioreactor. Bioresource Technology , 101, 4034-4041.
Wang, Y.Z., Xie, X.W., Zhu, X., Liao, Q., Chen, R., Zhao, X. and Lee, D.J. (2012) Hydrogen
production by Rhodopseudomonas palustris CQK 01 in a continuous photobioreactor with
ultrasonic treatment. International Journal of Hydrogen Energy , 37, 15450-15457.
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