A mutant strain of the anaerobic purple sulfur bacterium Thiocapsa roseopersicina, containing only nitrogenase as a functionally active enzyme for H2 generation was utilized to study the production of H2 from organic acids (acetate, pyruvate and succinate). Two types of potential substrates for H2 production, thiosulfate and salts of various organic acids, were compared under photoheterotrophic growth conditions. Thiosulfate proved to be the preferred electron donor for T. roseopersicina; the consumption of organic acids became pronounced only following depletion of the thiosulfate supply. The system is suitable for the generation of H2 from effluents of heterotrophic dark fermentation processes or waste streams rich in inorganic reduced su...
There are many biological paths to hydrogen production, each with potential advantages, but also wit...
Purple non-sulfur (PNS) bacteria have the ability to produce biohydrogen via photofermentation. This...
The aim of this thesis was to verify the feasibility of the hydrogen production process with purple ...
AbstractThe purple sulfur phototrophic bacterium Thiocapsa roseopersicina BBS synthesizes at least t...
A hydrogen gas (H₂) producing species of Ectothiorhodospira isolated from Soap Lake, Washington, pos...
Rhodobacter sphaeroides O.U.001 is one of the candidates for photobiological hydrogen production amo...
Alternative fuel sources have been extensively studied. Hydrogen gas has gained attention because it...
Photofermentative hydrogen production by purple non-sulfur bacteria is a potential candidate among b...
Hydrogenases are metalloenzymes catalyzing the oxidation of molecular hydrogen and the reverse react...
In the present study, the growth and hydrogen production of Rhodobacter sphaeroides O.U. 001, was in...
Background: Thermotoga maritima and T. neapolitana are hyperthermophile bacteria chosen by many rese...
Biological Hydrogen (H2) production has been mainly developed via Anaerobic Digestion (AD). Most of ...
Rhodopseudomonas palustris P4 can produce H-2 either from CO by water-gas shift reaction or from var...
The unique characteristic of the phototrophic purple and green sulfur bacteria as well as of members...
The work investigated physiological conditions directing cellular metabolism toward either H2-produc...
There are many biological paths to hydrogen production, each with potential advantages, but also wit...
Purple non-sulfur (PNS) bacteria have the ability to produce biohydrogen via photofermentation. This...
The aim of this thesis was to verify the feasibility of the hydrogen production process with purple ...
AbstractThe purple sulfur phototrophic bacterium Thiocapsa roseopersicina BBS synthesizes at least t...
A hydrogen gas (H₂) producing species of Ectothiorhodospira isolated from Soap Lake, Washington, pos...
Rhodobacter sphaeroides O.U.001 is one of the candidates for photobiological hydrogen production amo...
Alternative fuel sources have been extensively studied. Hydrogen gas has gained attention because it...
Photofermentative hydrogen production by purple non-sulfur bacteria is a potential candidate among b...
Hydrogenases are metalloenzymes catalyzing the oxidation of molecular hydrogen and the reverse react...
In the present study, the growth and hydrogen production of Rhodobacter sphaeroides O.U. 001, was in...
Background: Thermotoga maritima and T. neapolitana are hyperthermophile bacteria chosen by many rese...
Biological Hydrogen (H2) production has been mainly developed via Anaerobic Digestion (AD). Most of ...
Rhodopseudomonas palustris P4 can produce H-2 either from CO by water-gas shift reaction or from var...
The unique characteristic of the phototrophic purple and green sulfur bacteria as well as of members...
The work investigated physiological conditions directing cellular metabolism toward either H2-produc...
There are many biological paths to hydrogen production, each with potential advantages, but also wit...
Purple non-sulfur (PNS) bacteria have the ability to produce biohydrogen via photofermentation. This...
The aim of this thesis was to verify the feasibility of the hydrogen production process with purple ...