Clostridium acetobutylicum DSM 792, C. acetobutylicum DSM 1731 and two newly isolated bacteria defined as the members of genus Clostridium - based on the 16S rRNA analysis and biochemical traits - were characterized with regard to their hydrogen production in media containing increasing beet molasses concentrations. The highest hydrogen yield was observed for C. acetobutylicum DSM 792 with a yield of 2.8 mol H-2 mol(-1) hexose in medium including 60 g L-1 molasses. This bacterium also produced the maximum amount of hydrogen (5908.8 mL L-1) at the same molasses concentration. A slightly lower hydrogen yield was measured for C. acetobutylicum DSM 1731 (2.5 mol H-2 mol(-1) hexose) when grown on 40 g L-1 molasses. The new isolates Clostridium r...
The hydrogen-producing strain PROH2 pertaining to the genus Clostridium was successfully isolated fr...
[en] ABSTRACT: BACKGROUND: Pure bacterial strains give better yields when producing H2 than mixed, n...
Whilst biological process has been recognised as a promising approach for hydrogen production, the h...
Copyright © 2009 Published by Elsevier B.V.This work sought to optimize fermentation parameters in a...
Three newly discovered H2 producing bacteria namely Clostridium perfringens strain JJC, Clostridium ...
[en] This paper investigates the biohydrogen production by two mesophilic strains, a strict anaerobe...
To improve bacterial hydrogen production, ten hydrogen-producing strains belonging to Clostridium sp...
Biological hydrogen production using renewable resources is a promising possibility to generate hydr...
This study describes the dynamics and complexity of microbial communities producing hydrogen-rich fe...
Dark fermentation is a promising biological method for hydrogen production because of its high produ...
Biohydrogen production from sugar beet molasses was investigated by using agar immobilized R. capsul...
Abstract Cellulose utilization by hydrogen producers remains an issue due to the low hydrogen yields...
Three novel hydrogen-generating strains, ST1, ST4, and ST5, were isolated from the rumen of cow in V...
The main aim of this study was to investigate biological hydrogen production from sucrose and molass...
Fermentative hydrogen production has often been described as inhibited by its own gas production. In...
The hydrogen-producing strain PROH2 pertaining to the genus Clostridium was successfully isolated fr...
[en] ABSTRACT: BACKGROUND: Pure bacterial strains give better yields when producing H2 than mixed, n...
Whilst biological process has been recognised as a promising approach for hydrogen production, the h...
Copyright © 2009 Published by Elsevier B.V.This work sought to optimize fermentation parameters in a...
Three newly discovered H2 producing bacteria namely Clostridium perfringens strain JJC, Clostridium ...
[en] This paper investigates the biohydrogen production by two mesophilic strains, a strict anaerobe...
To improve bacterial hydrogen production, ten hydrogen-producing strains belonging to Clostridium sp...
Biological hydrogen production using renewable resources is a promising possibility to generate hydr...
This study describes the dynamics and complexity of microbial communities producing hydrogen-rich fe...
Dark fermentation is a promising biological method for hydrogen production because of its high produ...
Biohydrogen production from sugar beet molasses was investigated by using agar immobilized R. capsul...
Abstract Cellulose utilization by hydrogen producers remains an issue due to the low hydrogen yields...
Three novel hydrogen-generating strains, ST1, ST4, and ST5, were isolated from the rumen of cow in V...
The main aim of this study was to investigate biological hydrogen production from sucrose and molass...
Fermentative hydrogen production has often been described as inhibited by its own gas production. In...
The hydrogen-producing strain PROH2 pertaining to the genus Clostridium was successfully isolated fr...
[en] ABSTRACT: BACKGROUND: Pure bacterial strains give better yields when producing H2 than mixed, n...
Whilst biological process has been recognised as a promising approach for hydrogen production, the h...