Background: Integrating hydrogen-producing bacteria with complementary capabilities, dark-fermentative bacteria (DFB) and photo-fermentative bacteria (PFB), is a promising way to completely recover bioenergy from waste biomass. However, the current coupled models always suffer from complicated pretreatment of the effluent from dark-fermentation or imbalance between dark and photo-fermentation, respectively. In this work, an integrated dark and photo-fermentative reactor (IDPFR) was developed to completely convert an organic substrate into bioenergy. Results: In the IDPFR, Ethanoligenens harbinese B49 and Rhodopseudomonas faecalis RLD-53 were separated by a membrane into dark and photo chambers, while the acetate produced by E. harbinese B49...
Engineering strategies were applied to promote the phototrophic H-2 production of an indigenous purp...
Abstract Background Biologically, hydrogen (H2) can be produced through dark fermentation and photof...
Cette étude porte sur l’intensification de la production d’hydrogène par fermentation obscure en bio...
Hydrogen is an attractive, clean, future renewable energy carrier. Biological H2 production from was...
Biological hydrogen production by a sequential operation of dark and photofermentation is a promisin...
This article overviews reported studies on bio-hydrogen production from different raw materials by d...
Hydrogen recovery through solar-driven biomass conversion by photo-fermentative bacteria (PFB) has b...
Photofermentative production of hydrogen is a promising and sustainable process; however, it should ...
Most energy fuels, chemicals, and raw materials in our daily lives are derived from petroleum-based ...
By the integration of dark and photo fermentative hydrogen production processes, higher yields of hy...
Harnessing hydrogen competently through wastewater treatment using a particular class of biocatalyst...
Hydrogen generation from complex substrates composed of simple sugars has the potential to mitigate ...
Biomass can be a sustainable choice for bioenergy production worldwide. Biohydrogen production using...
This study aimed at finding applicable tools for favouring dark fermentation application in full-sca...
This work investigated the production of hydrogen and ethanol from carbohydrates by bacterial dark f...
Engineering strategies were applied to promote the phototrophic H-2 production of an indigenous purp...
Abstract Background Biologically, hydrogen (H2) can be produced through dark fermentation and photof...
Cette étude porte sur l’intensification de la production d’hydrogène par fermentation obscure en bio...
Hydrogen is an attractive, clean, future renewable energy carrier. Biological H2 production from was...
Biological hydrogen production by a sequential operation of dark and photofermentation is a promisin...
This article overviews reported studies on bio-hydrogen production from different raw materials by d...
Hydrogen recovery through solar-driven biomass conversion by photo-fermentative bacteria (PFB) has b...
Photofermentative production of hydrogen is a promising and sustainable process; however, it should ...
Most energy fuels, chemicals, and raw materials in our daily lives are derived from petroleum-based ...
By the integration of dark and photo fermentative hydrogen production processes, higher yields of hy...
Harnessing hydrogen competently through wastewater treatment using a particular class of biocatalyst...
Hydrogen generation from complex substrates composed of simple sugars has the potential to mitigate ...
Biomass can be a sustainable choice for bioenergy production worldwide. Biohydrogen production using...
This study aimed at finding applicable tools for favouring dark fermentation application in full-sca...
This work investigated the production of hydrogen and ethanol from carbohydrates by bacterial dark f...
Engineering strategies were applied to promote the phototrophic H-2 production of an indigenous purp...
Abstract Background Biologically, hydrogen (H2) can be produced through dark fermentation and photof...
Cette étude porte sur l’intensification de la production d’hydrogène par fermentation obscure en bio...