Hydrogen (H-2) is a promising alternative energy carrier which can be produced biologically. Rhodobacter capsulatus, a non-sulfur purple photosynthetic bacterium, can produce H-2 under nitrogen-limited, photoheterotrophic conditions by using reduced carbon sources such as simple organic acids. Outdoor closed photobioreactors; used for biological H-2 production are located under direct sunlight, as a result; bioreactors are exposed to temperature fluctuations during day time. In this study to overcome this problem, temperature-resistant mutants (up to 42 degrees C) of R. capsulatus were generated in this study by a directed evolution approach. Eleven mutant strains of R. capsulatus DSM 1710 were obtained by initial ethyl methane sulfonate (E...
Biohydrogen obtained from purple non sulfur bacteria (PNSB) is an environmentally friendly alternati...
Biological hydrogen production processes are considered as an environmentally friendly way to produc...
Photofermentative hydrogen production is influenced by several parameters, including feed compositio...
Hydrogen is a clean energy alternative to fossil fuels. Photosynthetic bacteria produce hydrogen fro...
Rhodobacter capsulatus produces molecular hydrogen under the photoheterotrophic growth condition wit...
International audienceFour different mutant strains of Rhodobacter capsulatus (IR1, IR3, IR4 and JP9...
Rhodobacter capsulatus DSM1710 is a purple non-sulfur bacterium capable of hydrogen production via p...
Biohydrogen is a clean and renewable form of hydrogen, which can be produced by photosynthetic bacte...
The draft genome sequences of two heat-resistant mutant strains, A52 and B41, derived from Rhodobact...
In this study, a pilot solar tubular photobioreactor was successfully implemented for fed batch oper...
In Rhodobacter capsulatus excess reducing equivalents generated by organic acid oxidation is consume...
Rhodobacter sphaeroides O.U.001 is a purple non-sulfur bacterium producing hydrogen under photoheter...
WOS: 000344825400009Biohydrogen production from microalgae still remains to be discussed and examine...
Background: In this study, the detection of nifH and nifD by a polymerase chain reaction assay was u...
Rhodobacter sphaeroides O.U.001 is one of the candidates for photobiological hydrogen production amo...
Biohydrogen obtained from purple non sulfur bacteria (PNSB) is an environmentally friendly alternati...
Biological hydrogen production processes are considered as an environmentally friendly way to produc...
Photofermentative hydrogen production is influenced by several parameters, including feed compositio...
Hydrogen is a clean energy alternative to fossil fuels. Photosynthetic bacteria produce hydrogen fro...
Rhodobacter capsulatus produces molecular hydrogen under the photoheterotrophic growth condition wit...
International audienceFour different mutant strains of Rhodobacter capsulatus (IR1, IR3, IR4 and JP9...
Rhodobacter capsulatus DSM1710 is a purple non-sulfur bacterium capable of hydrogen production via p...
Biohydrogen is a clean and renewable form of hydrogen, which can be produced by photosynthetic bacte...
The draft genome sequences of two heat-resistant mutant strains, A52 and B41, derived from Rhodobact...
In this study, a pilot solar tubular photobioreactor was successfully implemented for fed batch oper...
In Rhodobacter capsulatus excess reducing equivalents generated by organic acid oxidation is consume...
Rhodobacter sphaeroides O.U.001 is a purple non-sulfur bacterium producing hydrogen under photoheter...
WOS: 000344825400009Biohydrogen production from microalgae still remains to be discussed and examine...
Background: In this study, the detection of nifH and nifD by a polymerase chain reaction assay was u...
Rhodobacter sphaeroides O.U.001 is one of the candidates for photobiological hydrogen production amo...
Biohydrogen obtained from purple non sulfur bacteria (PNSB) is an environmentally friendly alternati...
Biological hydrogen production processes are considered as an environmentally friendly way to produc...
Photofermentative hydrogen production is influenced by several parameters, including feed compositio...