The present study is aimed to test the effectiveness and the reproducibility of the acid pretreatment of sewage sludge to suppress the methanogenic bacteria activity, in order to increase the hydrogen forming bacteria activity, mainly Clostridium species. The treated sludge has been tested on glucose reach medium under mesophilic conditions (358C), in batch mode to quantify the biological fermentative hydrogen production. In the whole series of experiments, the main components of biogas are hydrogen (52–60%) and carbon dioxide (40–48%); no methane and hydrogen sulphide were present in it. The rate of biogas production reached a maximum of 75 ml/lh. An overall mean hydrogen conversion efficiency was 11.20% on the assumption of maximu...
[[abstract]]The pH and hydraulic retention time (HRT) of a chemostat reactor were varied according t...
To assess the viability of biohydrogen production from thin stillage, a comparative evaluation of an...
Energy demands have dramatically increased over the last decade, and a revolution in technology and ...
The amount of sewage sludge has increased remarkably with the acceleration of urbanization and the p...
[[abstract]]Excess wastewater sludge collected from the recycling stream of the wastewater treatment...
The aim of this study is to investigate the production of bio-hydrogen, via dark anaerobic fermentat...
Abstract: The high volumes of sewage sludge produced have raised interests for simultaneous treatmen...
Abstract The main requirement for efficient H 2 production is the availability of efficient microbia...
Three different pre-treatment methods were applied on two different anaerobic sludge cultures and th...
Dark fermentation shares many features with anaerobic digestion with the exception that to maximize ...
The purpose of this study was to enhance the efficiency of anaerobic co-digestion with sewage sludge...
Dark fermentation for hydrogen production is an attractive source of renewable energy. Hydrogen prod...
Five pretreatment methods, namely chemical, acid, heat-shock, freezing and thawing, and base, were e...
Anaerobic digestion using mixed-culture with broader choice of pretreatments for hydrogen (H2) produ...
Mixed-culture dark fermentation is an environmentally friendly bio-hydrogen production process. In ...
[[abstract]]The pH and hydraulic retention time (HRT) of a chemostat reactor were varied according t...
To assess the viability of biohydrogen production from thin stillage, a comparative evaluation of an...
Energy demands have dramatically increased over the last decade, and a revolution in technology and ...
The amount of sewage sludge has increased remarkably with the acceleration of urbanization and the p...
[[abstract]]Excess wastewater sludge collected from the recycling stream of the wastewater treatment...
The aim of this study is to investigate the production of bio-hydrogen, via dark anaerobic fermentat...
Abstract: The high volumes of sewage sludge produced have raised interests for simultaneous treatmen...
Abstract The main requirement for efficient H 2 production is the availability of efficient microbia...
Three different pre-treatment methods were applied on two different anaerobic sludge cultures and th...
Dark fermentation shares many features with anaerobic digestion with the exception that to maximize ...
The purpose of this study was to enhance the efficiency of anaerobic co-digestion with sewage sludge...
Dark fermentation for hydrogen production is an attractive source of renewable energy. Hydrogen prod...
Five pretreatment methods, namely chemical, acid, heat-shock, freezing and thawing, and base, were e...
Anaerobic digestion using mixed-culture with broader choice of pretreatments for hydrogen (H2) produ...
Mixed-culture dark fermentation is an environmentally friendly bio-hydrogen production process. In ...
[[abstract]]The pH and hydraulic retention time (HRT) of a chemostat reactor were varied according t...
To assess the viability of biohydrogen production from thin stillage, a comparative evaluation of an...
Energy demands have dramatically increased over the last decade, and a revolution in technology and ...