Batch dark fermentation experiments were performed on mixtures of cheese whey (CW) and wastewater activated sludge (AS) to evaluate the influence of pH and the inoculum-tosubstrate ratio (ISR) on biological H2 production via dark fermentation. Factorial design experiments were conducted to derive response surfaces for the fermentation process by means of a predictive model describing the effects of the operating conditions on the main response variables (namely, H2 production yield and kinetic parameters). The specific H2 production potential was found to vary with pH and ISR by a factor of 6, from 61 L H2/kg TOCwhey at ISR = 0 and pH = 7.0 to 371 L H2/kg TOCwhey at ISR = 1.44 g VS/g TOC and pH = 5.5. The metabolic products included...
Batch factorial experiments were performed on cheese whey + wastewater sludge mixtures to ...
Hydrogen (H2) is considered as fuel for future and its biological production from renewable feedstoc...
The modelization of non methanogenic anaerobic environments can be particularly challenging owing to...
Batch factorial experiments were performed on cheese whey + wastewater sludge mixtures to evaluate t...
Batch factorial experiments were performed on cheese whey + wastewater sludge mixtures to ...
Hydrogen production from cheese whey through dark fermentation was investigated in this study in ord...
Hydrogen production from cheese whey through dark fermentation experiments was investigated in the p...
Hydrogen production from cheese whey through dark fermentation experiments was investigated in the p...
Cheese whey (CW) is one of the most abundant by-products of cheese manufacturing, with~9.0 kg of ...
Cheese whey (CW) is one of the most abundant by-products of cheese manufacturing, as about 9.0 kg of...
Cheese whey (CW) is one of the most abundant by-products of cheese manufacturing, as about 9.0 kg of...
In the present work, a lab-scale experimental campaign on dark fermentation of milk powder (used as ...
In the present work, a lab-scale experimental campaign on dark fermentation of milk powder (used as ...
This paper evaluates the effect of both pH and inoculum to substrate ratio (ISR) on fermentative H2...
This paper evaluates the effect of both pH and inoculum to substrate ratio (ISR) on fermentative H2...
Batch factorial experiments were performed on cheese whey + wastewater sludge mixtures to ...
Hydrogen (H2) is considered as fuel for future and its biological production from renewable feedstoc...
The modelization of non methanogenic anaerobic environments can be particularly challenging owing to...
Batch factorial experiments were performed on cheese whey + wastewater sludge mixtures to evaluate t...
Batch factorial experiments were performed on cheese whey + wastewater sludge mixtures to ...
Hydrogen production from cheese whey through dark fermentation was investigated in this study in ord...
Hydrogen production from cheese whey through dark fermentation experiments was investigated in the p...
Hydrogen production from cheese whey through dark fermentation experiments was investigated in the p...
Cheese whey (CW) is one of the most abundant by-products of cheese manufacturing, with~9.0 kg of ...
Cheese whey (CW) is one of the most abundant by-products of cheese manufacturing, as about 9.0 kg of...
Cheese whey (CW) is one of the most abundant by-products of cheese manufacturing, as about 9.0 kg of...
In the present work, a lab-scale experimental campaign on dark fermentation of milk powder (used as ...
In the present work, a lab-scale experimental campaign on dark fermentation of milk powder (used as ...
This paper evaluates the effect of both pH and inoculum to substrate ratio (ISR) on fermentative H2...
This paper evaluates the effect of both pH and inoculum to substrate ratio (ISR) on fermentative H2...
Batch factorial experiments were performed on cheese whey + wastewater sludge mixtures to ...
Hydrogen (H2) is considered as fuel for future and its biological production from renewable feedstoc...
The modelization of non methanogenic anaerobic environments can be particularly challenging owing to...