Hydrogen, which is a clean energy source, is one of the alternatives for fossil fuels. Biological hydrogen production is one of the hydrogen production methods. Rhodobacter capsulatus is a photosynthetic bacterium that produces hydrogen via photofermentation. R. capsulatus can also synthesize some valuable by-products such as Poly-beta- hydroxy butyric acid (PHB), which is a biodegradable bioplastic. In a two stage biohydrogen production system, which is combination of dark fermentation and photofermentation, dark fermentor effluents are used for photofermentation by R.capsulatus. Dark fermentor effluents usually contain high amount of acetate. High amount of acetate may decrease the efficiency of hydrogen production by causing high amount ...
The purpose of this study was to develop a pilot scale tubular photo bioreactor (80 L) for photo fer...
Rhodobacter capsulatus produces molecular hydrogen under the photoheterotrophic growth condition wit...
Photoheterotrophic bacteria use mechanisms such as H production, carbon dioxide fixation, and the po...
In the present study, Rhodobacter capsulatus DSM 1710 was cultured in media having various concentra...
One of the most important parameters affecting hydrogen production in photofermentation process is t...
Biological hydrogen production processes are considered as an environmentally friendly way to produc...
Photobiological hydrogen production from organic acids occurs in the presence of light and under ana...
Hydrogen is a clean energy alternative to fossil fuels. Photosynthetic bacteria produce hydrogen fro...
International audienceThis research aimed to evaluate growth and hydrogen production from Rhodobacte...
Rhodobacter capsulatus DSM1710 is a purple non-sulfur bacterium capable of hydrogen production via p...
Biohydrogen obtained from purple non sulfur bacteria (PNSB) is an environmentally friendly alternati...
submitted by BURCU ÖZSOY in partial fulfillment of the requirements for the degree of Master of Scie...
In this study, a pilot solar tubular photobioreactor was successfully implemented for fed batch oper...
Effects of temperature and light intensity on photofermentative hydrogen production by Rhodobacter c...
The main objective of this study is exploring the parameters affecting photobiological hydrogen prod...
The purpose of this study was to develop a pilot scale tubular photo bioreactor (80 L) for photo fer...
Rhodobacter capsulatus produces molecular hydrogen under the photoheterotrophic growth condition wit...
Photoheterotrophic bacteria use mechanisms such as H production, carbon dioxide fixation, and the po...
In the present study, Rhodobacter capsulatus DSM 1710 was cultured in media having various concentra...
One of the most important parameters affecting hydrogen production in photofermentation process is t...
Biological hydrogen production processes are considered as an environmentally friendly way to produc...
Photobiological hydrogen production from organic acids occurs in the presence of light and under ana...
Hydrogen is a clean energy alternative to fossil fuels. Photosynthetic bacteria produce hydrogen fro...
International audienceThis research aimed to evaluate growth and hydrogen production from Rhodobacte...
Rhodobacter capsulatus DSM1710 is a purple non-sulfur bacterium capable of hydrogen production via p...
Biohydrogen obtained from purple non sulfur bacteria (PNSB) is an environmentally friendly alternati...
submitted by BURCU ÖZSOY in partial fulfillment of the requirements for the degree of Master of Scie...
In this study, a pilot solar tubular photobioreactor was successfully implemented for fed batch oper...
Effects of temperature and light intensity on photofermentative hydrogen production by Rhodobacter c...
The main objective of this study is exploring the parameters affecting photobiological hydrogen prod...
The purpose of this study was to develop a pilot scale tubular photo bioreactor (80 L) for photo fer...
Rhodobacter capsulatus produces molecular hydrogen under the photoheterotrophic growth condition wit...
Photoheterotrophic bacteria use mechanisms such as H production, carbon dioxide fixation, and the po...