Biological acetate reduction with hydrogen is a potential method to convert wet biomass waste into ethanol. Since the ethanol concentration and reaction rates are low, this research studies the feasibility of using an electrode, in stead of hydrogen, as an electron donor for biological acetate reduction in conjunction of an electron mediator. Initially, the effect of three selected mediators on metabolic flows during acetate reduction with hydrogen was explored; subsequently, the best performing mediator was used in a bioelectrochemical system to stimulate acetate reduction at the cathode with mixed cultures at an applied cathode potential of -550 mV. In the batch test, methyl viologen (MV) was found to accelerate ethanol production 6-fold ...
Anaerobic bacteria have the ability to produce electricity from the oxidation of organic substrates....
Formation of hydrogen, methane, and organics at biocathodes is an attractive new application of bioe...
Bioelectrochemical systems are emerging technologies for the reduction in CO2 in fuels and chemicals...
Biological acetate reduction with hydrogen is a potential method to convert wet biomass waste into e...
This study describes the performance of bioelectrochemical systems, based on electrochemically activ...
In this research we demonstrated a new method to produce alcohols. It was experimentally feasible to...
Bioelectrochemical systems (BES) can provide an energy efficient way to recover nutrients from waste...
The use of mixed cultures to convert waste biomass into medium chain fatty acids, precursors for ren...
BACKGROUND In a methane-producing bioelectrochemical system (BES) microorganisms grow on an electrod...
Biocatalyzed electrolysis is a novel biological hydrogen production process with the potential to ef...
Biocatalyzed electrolysis is a microbial fuel cell based technology for the generation of hydrogen g...
Reduction of CO2 to acetate in microbial electrosynthesis has been widely studied. However, the sele...
Acetate reduction is an alternative digestion process to convert organic waste into ethanol. Using a...
Anaerobic bacteria have the ability to produce electricity from the oxidation of organic substrates....
Formation of hydrogen, methane, and organics at biocathodes is an attractive new application of bioe...
Anaerobic bacteria have the ability to produce electricity from the oxidation of organic substrates....
Formation of hydrogen, methane, and organics at biocathodes is an attractive new application of bioe...
Bioelectrochemical systems are emerging technologies for the reduction in CO2 in fuels and chemicals...
Biological acetate reduction with hydrogen is a potential method to convert wet biomass waste into e...
This study describes the performance of bioelectrochemical systems, based on electrochemically activ...
In this research we demonstrated a new method to produce alcohols. It was experimentally feasible to...
Bioelectrochemical systems (BES) can provide an energy efficient way to recover nutrients from waste...
The use of mixed cultures to convert waste biomass into medium chain fatty acids, precursors for ren...
BACKGROUND In a methane-producing bioelectrochemical system (BES) microorganisms grow on an electrod...
Biocatalyzed electrolysis is a novel biological hydrogen production process with the potential to ef...
Biocatalyzed electrolysis is a microbial fuel cell based technology for the generation of hydrogen g...
Reduction of CO2 to acetate in microbial electrosynthesis has been widely studied. However, the sele...
Acetate reduction is an alternative digestion process to convert organic waste into ethanol. Using a...
Anaerobic bacteria have the ability to produce electricity from the oxidation of organic substrates....
Formation of hydrogen, methane, and organics at biocathodes is an attractive new application of bioe...
Anaerobic bacteria have the ability to produce electricity from the oxidation of organic substrates....
Formation of hydrogen, methane, and organics at biocathodes is an attractive new application of bioe...
Bioelectrochemical systems are emerging technologies for the reduction in CO2 in fuels and chemicals...