To improve bacterial hydrogen production, ten hydrogen-producing strains belonging to Clostridium spp. were isolated from various sludges under low vacuum. Hydrogenogenesis by dark fermentation in batch cultures of these strains was optimal at about 35 degrees C and an initial pH of 6.5, which for all strains gradually dropped to ca. pH 4 during the fermentation. Clostridium roseum H5 and C. diolis RT2 had the highest hydrogen yields per total substrate (120 ml H-2/g initial COD). Substrate consumption alone by C. beijerinckii UAM and C. diolis RT2 reached 573 and 475 ml H-2/g consumed COD, respectively. Butyric acid fermentation was predominant, with butyrate and acetate as the major by-products and propionate, ethanol, and lactate as seco...
Fast energy consumption and global climate change is pushing people to seek alternative and renewabl...
Hydrogen formation performances of different anaerobic bacteria were investigated in batch dark ferm...
Biohydrogen (H2) production via dark fermentation (DF) is a promising renewable energy technology. I...
To improve bacterial hydrogen production, ten hydrogen-producing strains belonging to Clostridium sp...
The production of hydrogen is a ubiquitous, natural phenomenon under anoxic or anaerobic conditions....
Dark fermentation is a promising biological method for hydrogen production because of its high produ...
Copyright © 2007 The Authors Published in Journal of Applied Microbiology, 2007; 103 (5):1415-1423 a...
The hydrogen-producing strain PROH2 pertaining to the genus Clostridium was successfully isolated fr...
Three newly discovered H2 producing bacteria namely Clostridium perfringens strain JJC, Clostridium ...
This paper investigates the biohydrogen production by two mesophilic strains, a strict anaerobe (Clo...
Fermentative hydrogen production has often been described as inhibited by its own gas production. In...
The aim of this study is to investigate the production of bio-hydrogen, via dark anaerobic fermentat...
Biohydrogen (H2) production via dark fermentation (DF) is a promising renewable energy technology. I...
Hydrogen applicability in the power, chemical and petrochemical industries is constantly growing. Ef...
[en] ABSTRACT: BACKGROUND: Pure bacterial strains give better yields when producing H2 than mixed, n...
Fast energy consumption and global climate change is pushing people to seek alternative and renewabl...
Hydrogen formation performances of different anaerobic bacteria were investigated in batch dark ferm...
Biohydrogen (H2) production via dark fermentation (DF) is a promising renewable energy technology. I...
To improve bacterial hydrogen production, ten hydrogen-producing strains belonging to Clostridium sp...
The production of hydrogen is a ubiquitous, natural phenomenon under anoxic or anaerobic conditions....
Dark fermentation is a promising biological method for hydrogen production because of its high produ...
Copyright © 2007 The Authors Published in Journal of Applied Microbiology, 2007; 103 (5):1415-1423 a...
The hydrogen-producing strain PROH2 pertaining to the genus Clostridium was successfully isolated fr...
Three newly discovered H2 producing bacteria namely Clostridium perfringens strain JJC, Clostridium ...
This paper investigates the biohydrogen production by two mesophilic strains, a strict anaerobe (Clo...
Fermentative hydrogen production has often been described as inhibited by its own gas production. In...
The aim of this study is to investigate the production of bio-hydrogen, via dark anaerobic fermentat...
Biohydrogen (H2) production via dark fermentation (DF) is a promising renewable energy technology. I...
Hydrogen applicability in the power, chemical and petrochemical industries is constantly growing. Ef...
[en] ABSTRACT: BACKGROUND: Pure bacterial strains give better yields when producing H2 than mixed, n...
Fast energy consumption and global climate change is pushing people to seek alternative and renewabl...
Hydrogen formation performances of different anaerobic bacteria were investigated in batch dark ferm...
Biohydrogen (H2) production via dark fermentation (DF) is a promising renewable energy technology. I...