-
2
-
-
0022541209
-
A new sulfur-reducing, extremely thermophilic eubacterium from a submarine thermal vent
-
Belkin, S., C. O. Wirsen, and H. W. Jannasch. 1986. A new sulfur-reducing, extremely thermophilic eubacterium from a submarine thermal vent. Applied Environ. Microbiol.51(6): 1180-1185. (Pubitemid 16068614)
-
(1986)
Applied and Environmental Microbiology
, vol.51
, Issue.6
, pp. 1180-1185
-
-
Belkin, S.1
Wirsen, C.O.2
Jannasch, H.W.3
-
3
-
-
0033727923
-
Hydrogen production by microalgae
-
Benemann, J. R. 2000. Hydrogen production by microalgae. J. Applied Phycol. 12(3-5): 291- 300.
-
(2000)
J. Applied Phycol.
, vol.12
, Issue.3-5
, pp. 291-300
-
-
Benemann, J.R.1
-
4
-
-
0026484958
-
Improved methods for cultivation of the extremely thermophilic bacterium Thermotoga neapolitana
-
Childers, S. E., M. Vargas, and K. M. Noll. 1992. Improved methods for cultivation of the extremely thermophilic bacterium Thermotoga neapolitana. Applied Environ. Microbiol. 58(12): 3949-3953.
-
(1992)
Applied Environ. Microbiol.
, vol.58
, Issue.12
, pp. 3949-3953
-
-
Childers, S.E.1
Vargas, M.2
Noll, K.M.3
-
5
-
-
0036827186
-
Pretreatment of Miscanthus for hydrogen production by Thermotoga elfii
-
de Vrije, T., G. G. de Haas, G. B. Tan, E. R. P. Keijsers, and P. A. M. Claassen. 2002. Pretreatment of Miscanthus for hydrogen production by Thermotoga elfii. Intl. J. Hydrogen Energy 27(11-12): 1381-1390.
-
(2002)
Intl. J. Hydrogen Energy
, vol.27
, Issue.11-12
, pp. 1381-1390
-
-
De Vrije, T.1
De Haas, G.G.2
Tan, G.B.3
Keijsers, E.R.P.4
Claassen, P.A.M.5
-
6
-
-
76749141273
-
Hydrogen metabolism in the extreme thermophile Thermotoga neapolitana
-
d'Ippolito, G., L. Dipasquale, F. M. Vella, I. Romano, A. Gambacorta, A. Cutignano, and A. Fontana. 2010. Hydrogen metabolism in the extreme thermophile Thermotoga neapolitana. Intl. J. Hydrogen Energy 35(6): 2290-2295.
-
(2010)
Intl. J. Hydrogen Energy
, vol.35
, Issue.6
, pp. 2290-2295
-
-
D'Ippolito, G.1
Dipasquale, L.2
Vella, F.M.3
Romano, I.4
Gambacorta, A.5
Cutignano, A.6
Fontana, A.7
-
7
-
-
0003985221
-
Bioprocess engineering principles
-
Academic Press
-
Doran, P. M. 1995. Bioprocess Engineering Principles. San Diego, Cal.: Academic Press.
-
(1995)
San Diego, Cal.
-
-
Doran, P.M.1
-
8
-
-
13944250070
-
-
EIA Report No. DOE/EIA- 0383(2009). Washington, D.C.: Energy Information Administration. Available at
-
EIA. 2009. Annual energy outlook 2009 with projections to 2030. Report No. DOE/EIA- 0383(2009). Washington, D.C.: Energy Information Administration. Available at: www.eia.gov/oiaf/aeo/pdf/0383(2009).pdf.
-
(2009)
Annual Energy Outlook 2009 with Projections to 2030
-
-
-
9
-
-
0036827191
-
Biological hydrogen production: Fundamentals and limiting processes
-
Hallenbeck, P. C., and J. R. Benemann. 2002. Biological hydrogen production: Fundamentals and limiting processes. Intl. J. Hydrogen Energy 27(11-12): 1185-1193.
-
(2002)
Intl. J. Hydrogen Energy
, vol.27
, Issue.11-12
, pp. 1185-1193
-
-
Hallenbeck, P.C.1
Benemann, J.R.2
-
10
-
-
0036827182
-
Sustainable fermentative hydrogen production: Challenges for process optimization
-
Hawkes, F. R., R. Dinsdale, D. L. Hawkes, and I. Hussy. 2002. Sustainable fermentative hydrogen production: Challenges for process optimization. Intl. J. Hydrogen Energy 27(11- 12): 1339-1347.
-
(2002)
Intl. J. Hydrogen Energy
, vol.27
, Issue.11-12
, pp. 1339-1347
-
-
Hawkes, F.R.1
Dinsdale, R.2
Hawkes, D.L.3
Hussy, I.4
-
11
-
-
71749086512
-
Thermotogales
-
M. Dworkin, ed. New York, N.Y.: Springer
-
Huber, R., and M. Hannig. 2006. Thermotogales. In Prokaryotes, 899-922. M. Dworkin, ed. New York, N.Y.: Springer.
-
(2006)
Prokaryotes
, pp. 899-922
-
-
Huber, R.1
Hannig, M.2
-
12
-
-
0022522022
-
Thermotoga maritima sp. nov. represents a new genus of unique extremely thermophilic eubacteria growing up to 90°C
-
Huber, R., T. A. Langworthy, H. Konig, M. Thomm, C. R. Woese, U. B. Sleytr, and K. O. Stetter. 1986. Thermotoga maritima sp. nov. represents a new genus of unique extremely thermophilic eubacteria growing up to 90°C. Arch. Microbiol. 144(4): 324-333. (Pubitemid 16074944)
-
(1986)
Archives of Microbiology
, vol.144
, Issue.4
, pp. 324-333
-
-
Huber, R.1
Langworthy, T.A.2
Konig, H.3
-
13
-
-
0001218383
-
Thermotoga neapolitana sp. nov. of the extremely thermophilic, eubacterial genus Thermotoga
-
Jannasch, H. W., R. Huber, S. Belkin, and K. O. Stetter. 1988. Thermotoga neapolitana sp. nov. of the extremely thermophilic, eubacterial genus Thermotoga. Arch. Microbiol. 150(1): 103- 104.
-
(1988)
Arch. Microbiol.
, vol.150
, Issue.1
, pp. 103-104
-
-
Jannasch, H.W.1
Huber, R.2
Belkin, S.3
Stetter, K.O.4
-
14
-
-
0037333577
-
A critical assessment of renewable energy usage in the USA
-
DOI 10.1016/S0301-4215(02)00069-1, PII S0301421502000691
-
Klass, D. L. 2003. A critical assessment of renewable energy usage in the USA. Energy Policy: 31(4): 353-367. (Pubitemid 36029335)
-
(2003)
Energy Policy
, vol.31
, Issue.4
, pp. 353-367
-
-
Klass, D.L.1
-
15
-
-
33747333106
-
Use of dinitrosalicylic acid reagent for determination of reducing sugar
-
Miller, G. L. 1959. Use of dinitrosalicylic acid reagent for determination of reducing sugar. Anal. Chem. 31(3): 426-428.
-
(1959)
Anal. Chem.
, vol.31
, Issue.3
, pp. 426-428
-
-
Miller, G.L.1
-
16
-
-
69149083787
-
The fermentation stoichiometry of Thermotoga neapolitana and influence of temperature, oxygen, and pH on hydrogen production
-
Munro, S. A., S. H. Zinder, and L. P. Walker. 2009. The fermentation stoichiometry of Thermotoga neapolitana and influence of temperature, oxygen, and pH on hydrogen production. Biotech. Prog. 25(4): 1034-1042.
-
(2009)
Biotech. Prog.
, vol.25
, Issue.4
, pp. 1034-1042
-
-
Munro, S.A.1
Zinder, S.H.2
Walker, L.P.3
-
17
-
-
40749084738
-
Optimization of hydrogen production by hyperthermophilic eubacteria, Thermotoga maritima and Thermotoga neapolitana in batch fermentation
-
DOI 10.1016/j.ijhydene.2007.09.033, PII S0360319907005721
-
Nguyen, T.-A. D., J. P. Kim, M. S. Kim, Y. K. Oh, and S. J. Sim. 2008. Optimization of hydrogen production by hyperthermophilic eubacteria Thermotoga maritima and Thermotoga neapolitana in batch fermentation. Intl. J. Hydrogen Energy 33(5): 1483-1488. (Pubitemid 351389633)
-
(2008)
International Journal of Hydrogen Energy
, vol.33
, Issue.5
, pp. 1483-1488
-
-
Nguyen, T.A.D.1
Pyo Kim, J.2
Sun Kim, M.3
Kwan Oh, Y.4
Sim, S.J.5
-
18
-
-
70350068450
-
Hydrogen production of the hyperthermophilic eubacterium Thermotoga neapolitana under N2 sparging conditions
-
Nguyen, T.-A. D., S. J. Han, J. P. Kim, M. S. Kim, and S. J. Sim. 2010. Hydrogen production of the hyperthermophilic eubacterium Thermotoga neapolitana under N2 sparging conditions. Bioresource Tech. 101(1): 538-541.
-
(2010)
Bioresource Tech
, vol.101
, Issue.1
, pp. 538-541
-
-
Nguyen, T.-A.D.1
Han, S.J.2
Kim, J.P.3
Kim, M.S.4
Sim, S.J.5
-
19
-
-
0028955504
-
Thermotoga elfii sp. nov.: A novel thermophilic bacterium from an African oil-producing well
-
Ravot, G., M. Magot, M. L. Fardeau, B. K. C. Patel, G. Prensier, A. Egan, J. L. Garcia, and B. Ollivier. 1995. Thermotoga elfii sp. nov.: A novel thermophilic bacterium from an African oil-producing well. Intl. J. Syst. Bacteriol. 45(2): 308-314.
-
(1995)
Intl. J. Syst. Bacteriol.
, vol.45
, Issue.2
, pp. 308-314
-
-
Ravot, G.1
Magot, M.2
Fardeau, M.L.3
Patel, B.K.C.4
Prensier, G.5
Egan, A.6
Garcia, J.L.7
Ollivier, B.8
-
20
-
-
0002555586
-
Metabolism of hyperthermophiles
-
Schönheit, P., and T. Schäfer. 1995. Metabolism of hyperthermophiles. World J. Microbiol. and Biotech. 11(1): 26-57.
-
(1995)
World J. Microbiol. and Biotech.
, vol.11
, Issue.1
, pp. 26-57
-
-
Schönheit, P.1
-
21
-
-
0028356024
-
2 in the anaerobic hyperthermophilic eubacterium thermotoga maritima: Involvement of the Embden-Meyerhof pathway
-
DOI 10.1007/s002030050083
-
Schröder, C., M. Selig, and P. Schönheit. 1994. Glucose fermentation to acetate, CO2, and H2 in the anaerobic hyperthermophilic eubacterium Thermotoga maritima: Involvement of the Embden-Meyerhof pathway. Arch. Microbiol. 161(6): 460-470. (Pubitemid 24192012)
-
(1994)
Archives of Microbiology
, vol.161
, Issue.6
, pp. 460-470
-
-
Schroder, C.1
Selig, M.2
Schonheit, P.3
-
22
-
-
0017732032
-
Limitation of microbial H2 formation via fermentation
-
Thauer, R. 1977. Limitation of microbial H2 formation via fermentation. In Microbial Energy Conversion, 201-204. H. G. Schlegel and J. Barnea, eds. Göttingen, Germany: Erich Goltze KG. (Pubitemid 8581672)
-
(1977)
Microbial Energy Conversion
, pp. 201-204
-
-
Thauer, R.1
-
23
-
-
0036836415
-
Distinctive properties of high hydrogen producing extreme thermophiles Caldicellulosiruptor saccharolyticus and Thermotoga elfii
-
van Niel, E. W. J., M. A. W. Budde, G. G. de Haas, F. J. van der Wal, P. A. M. Claasen, and A. J. M. Stams. 2002. Distinctive properties of high hydrogen producing extreme thermophiles Caldicellulosiruptor saccharolyticus and Thermotoga elfii. Intl. J. Hydrogen Energy 27(11- 12): 1391-1398.
-
(2002)
Intl. J. Hydrogen Energy
, vol.27
, Issue.11-12
, pp. 1391-1398
-
-
Van Niel1
W, J.E.2
Budde, M.A.W.3
De Haas, G.G.4
Wal Der Van, F.J.5
Claasen, P.A.M.6
Stams, A.J.M.7
-
25
-
-
13544259604
-
2 production and carbon utilization by Thermotoga neapolitana under anaerobic and microaerobic growth conditions
-
DOI 10.1023/B:BILE.0000036602.75427.88
-
Van Ooteghem, S. A., A. Jones, D. Van Der Lelie, B. Dong, and D. Mahajan. 2004. H2 production and carbon utilization by Thermotoga neapolitana under anaerobic and microaerobic growth conditions. Biotech. Lett. 26(15): 1223-1232. (Pubitemid 40946615)
-
(2004)
Biotechnology Letters
, vol.26
, Issue.15
, pp. 1223-1232
-
-
Van Ooteghem, S.A.1
Jones, A.2
Van Der Lelie, D.3
Dong, B.4
Mahajan, D.5
-
26
-
-
32444442400
-
Nutrient composition of cottonseed meal
-
Waldroup, P. W., and J. H. Kersey. 2002. Nutrient composition of cottonseed meal. Feedstuffs 74(45): 11-12.
-
(2002)
Feedstuffs
, vol.74
, Issue.45
, pp. 11-12
-
-
Waldroup, P.W.1
Kersey, J.H.2
|