Biomedical Engineering Reference
In-Depth Information
62. Long C, Cui J, Liu Z, Liu Y, Long M, Hu Z (2010) Statistical optimization of fermentative
hydrogen production from xylose by newly isolated Enterobacter sp. CN1. Int J Hydrogen
Energy 35(13):6657-6664
63. Ren NQ, Cao GL, Wang AJ, Lee DJ (2008) Dark fermentation of xylose and glucose mix
using isolated Thermoanaerobacterium ihermosaccharolyticum W16. Int J Hydrogen Energy
33(21):6124-6132
64. Li S, Lai C, Cai Y, Yang X, Yang S, Zhu M, Wang J, Wang X (2010) High efficiency
hydrogen production from glucose/xylose by the ldh-deleted Thermoanaerobacterium strain.
Bioresour Technol 101(22):8718-8724
65. Ren NQ, Wang AJ, Gao LF et al (2008) Bioaugmented hydrogen production from
carboxymethyl cellulose and partially delignified corn stalks using isolated cultures. Int J
Hydrogen Energy 33:5250-5255
66. Wang
AJ,
Ren
NQ,
Shi
YJ
et
al
(2008)
Bioaugmented
hydrogen
production
from
microcrystalline
cellulose
using
co-culture
Clostridium
acetobutylicum
X9
and
Ethanoigenens harbinense B49. Int J Hydrogen Energy 33:912-917
67. Li DM, Chen HZ (2007) Biological hydrogen production from steam-exploded straw by
simultaneous saccharification and fermentation. Int J Hydrogen Energy 32(12):1742-1748
68. Liu Y, Yu P, Song X et al (2008) Hydrogen production from cellulose by co-culture of
Clostridium thermocellum JN4 and Thermoanaerobacterium thermosaccharolyticum GD17.
Int J Hydrogen Energy 33:2927-2933
69. Fang HHP, Zhang T, Liu H (2003) Biohydrogen production from cellulose in wastewater
under thermophilic condition. J Environ Manag 69:149-156
70. Zhang ML, Fan YT, Xing Y et al (2007) Enhanced biohydrogen production from cornstalk
wastes with acidification pretreatment by mixed anaerobic cultures. Biomass Bioenergy
31:250-254
71. Fan YT, Zhang YH, Zhang SF, Hou HW, Ren BZ (2006) Efficient conversion of wheat straw
wastes into biohydrogen gas by cow dung compost. Bioresour Technol 97:500-505
72. Fan YT, Zhang GS, Guo XY, Xing Y, Fan MH (2006) Biohydrogen-production from beer
lees biomass by cow dung compost. Biomass Bioenergy 30:493-496
73. Ren NQ, Xu JF, Gao LF, Xin L, Qiu J, Su DX (2010) Fermentative bio-hydrogen production
from cellulose by cow dung compost enriched cultures. Int J Hydrogen Energy 35(7):
2742-2746
74. Cao GL, Ren NQ, Wang AJ, Yao J, Liu LH (2010) Combination of mild chemical
pretreatment with biological conversion for enhanced hydrogen production from cornstalk
wastes. J Biotechnol 150S:S9
75. Cao GL, Ren NQ, Wang AJ (2010) Effect of lignocellulose-derived inhibitors on growth and
hydrogen
production
by
Thermoanaerobacterium
thermosaccharolyticum
W16.
Int
J
Hydrogen Energy 35:13475-13480
76. Li RY, Fang HHP (2009) Heterotrophic photo fermentative hydrogen production. Crit Rev
Environ Sci Technol 39(12):1081-1108
77. Logan
BE
(2009)
Exoelectrogenic
bacteria
that
power
microbial
fuel
cells.
Nat
Rev
Microbiol 7(5):375-381
78. Fang HP, Zhu HG, Zhang T (2006) Phototrophic hydrogen production from glucose by pure
and co-cultures of Clostridium butyricum and and Rhodobacter sphaeroides. Int J Hydrogen
Energy 31:2223-2230
79. Liu BF, Ren NQ, Tang J, Ding J, Liu WZ, Xu JF, Cao GL, Xie GJ (2010) Bio-hydrogen
production by mixed culture of photo-fermentation and dark-fermentation bacteria. Int J
Hydrogen Energy 35(7):2858-2862
80. Liu BF, Ren NQ, Xing DF, Ding J, Zheng GX, Guo WQ, Xie GJ (2009) Bio-hydrogen
production by immobilized R. faecalis RLD-53 using soluble metabolites from ethanol
fermentation bacteria E. harbinense B49. Bioresour Technol 100:2719-2723
81. Tao YZ, Chen Y, Wu YQ, He YL, Zhou ZH (2007) High hydrogen yield from a two-step
process of dark- and photo-fermentation of sucrose. Int J Hydrogen Energy 32:200-206
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