Environmental Engineering Reference
In-Depth Information
Morita, M., Watanable, Y. and Saiki, H. (2000) Investigation of photobioreactor design for
enhancing the photosynthetic productivity of microalgae. Biotechnology and Bioengineering ,
69, 693-698.
Najafpour, G., Younesi, H. and Mohamed, A.R. (2004) Effect of organic substrate on hydrogen-
production from synthesis gas using Rhodospirillum rubrum , in batch culture. Biochemical
Engineering Journal , 21, 123-130.
Ozturk, Y., Yucel, M., Daldal, F., Mandaci, S., Gunduz, U., Turker, L. and Eroglu, I. (2006)
Hydrogen production by using Rhodobacter capsulatus mutants with genetically modified
electron transfer chains. International Journal of Hydrogen Energy , 31, 1545-1552.
Pinto, F.A.L., Troshina, O. and Lindblad, P. (2002) A brief look at three decades of research on
cyanobacterial hydrogen evolution. International Journal of Hydrogen Energy , 27, 1209-
1215.
Planchard, A., Mignot, L., Jouenne, T. and Junter, G.A. (1989) Photoproduction of molecu-
lar hydrogen by Rhodospirillum rubrum immobilized in composite agar layer/microporous
membrane structures. Applied Microbiology and Biotechnology , 31, 49-54.
Polle, J.E.W., Kanakagiri, S., Jin, E., Masuda, T. and Melis, A. (2002) Truncated chlorophyll
antenna size of the photsystems - a practical method to improve microalgal productivity
and hydrogen production in mass culture. International Journal of Hydrogen Energy , 27,
1257-1264.
Polle, J.E.W., Kanakagiri, S. and Melis, A. (2003) tla1, a DNA insertional transformant of the
green alga Chlamydomonas reinhardtii with a truncated light-harvesting chlorophyll antenna
size. Planta , 217, 49-59.
Posten C. (2009) Design principles of photo-bioreactors for cultivation of microalgae. Engineer-
ing in Life Sciences , 9, 165-177.
Qu, X.F., Wang, Y.Z., Zhu, X., Liao, Q., Li, J., Ding, Y.D. and Lee, D.J. (2011) Bubble behavior
and photo-hydrogen production performance of photosynthetic bacteria in microchannel
photobioreactor. International Journal of Hydrogen Energy , 36, 14111-14119.
Ren, H.Y., Liu, B.F., Ding, J., Xie, G.J., Zhao L., Xing, D.F., Guo, W.Q. and Ren, N.Q.
(2012) Continuous photo-hydrogen production in anaerobic fluidized bed photo-reactor with
activated carbon fiber as carrier. RSC Advances , 2, 5531-5535.
Ren, N.Q., Liu, B.F., Zheng, G.X., Xing, D.F., Zhao, X., Guo, W.Q. and Ding, J. (2009) Strategy
for enhancing photo-hydrogen production yield by repeated fed-batch cultures. International
Journal of Hydrogen Energy , 34, 7579-7584.
Sasikala, C.H., Ramana, C.H.V. and Rao, P.R. (1995) Regulation of simultaneous hydrogen
photoproduction during growth by pH and glutamate in Rhodobacter sphaeroides O.U.
001. International Journal of Hydrogen Energy , 20, 123-126.
Shah, V., Garg, N. and Madamwar, D. (2003) Ultrastructure of the cyanobacterium Nostoc
muscorum and exploitation of the culture for hydrogen production. Folia Microbiologica ,
48, 65-70.
Shi, X.Y. and Yu, H.Q. (2005) Response surface analysis on the effect of cell concentra-
tion and light intensity on hydrogen production by Rhodopseudomonas capsulata . Process
Biochemistry , 40, 2475-2481.
Shi, X.Y. and Yu, H.Q. (2006) Continuous production of hydrogen from mixed volatile fatty
acids with Rhodopseudomonas capsulata . International Journal of Hydrogen Energy , 31,
1641-1647.
Show, K.Y., Lee, D.J. and Chang, J.S. (2011) Bioreactor and process design for biohydrogen
production. Bioresource Technology , 102 8524-8533.
Skjanes, K., Knutsen, G., Kallqvist, T. and Lindblad, P. (2008) H 2 production from marine and
freshwater species of green algae during sulfur starvation and considerations for bioreactor
design. International Journal of Hydrogen Energy , 33, 511-521.
Search WWH ::




Custom Search