The possibility of providing the acetogenic microorganism Sporomusa ovata with electrons delivered directly to the cells with a graphite electrode for the reduction of carbon dioxide to organic compounds was investigated. Biofilms of S. ovata growing on graphite cathode surfaces consumed electrons with the reduction of carbon dioxide to acetate and small amounts of 2-oxobutyrate. Electrons appearing in these products accounted for over 85% of the electrons consumed. These results demonstrate that microbial production of multicarbon organic compounds from carbon dioxide and water with electricity as the energy source is feasible. Importance Reducing carbon dioxide to multicarbon organic chemicals and fuels with electricity has been identif...
Abstract Background The conversion of CO2 into high value-added products has a very important enviro...
The need for greener processes to satisfy the demand of platform chemicals together with the possibi...
The possibility of generating electricity with microbial fuel cells has been recognized for some tim...
The possibility of providing the acetogenic microorganism Sporomusa ovata with electrons delivered d...
ABSTRACT The possibility of providing the acetogenic microorganism Sporomusa ovata with electrons de...
Microbial electrosynthesis, a process in which microorganisms use electrons derived from electrodes ...
Microbial electrosynthesis is a promising strategy for the microbial conversion of carbon dioxide to...
The discovery of electrotrophs, microorganisms that can directly accept electrons from electrodes fo...
Microbial electrosynthesis is a promising strategy for the microbial conversion of carbon dioxide to...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
The recent concept of microbial electrosynthesis (MES) has evolved as an electricity-driven producti...
<p>Microbial electrosynthesis (MES) is an electricity-driven production of chemicals from low-value ...
Carbon dioxide (CO2) reduction to multi-carbon compounds at the cathode using chemolithoautotrophs i...
It is well established that some reduced fermentation products or microbially reduced artificial med...
Microbial electrosynthesis (MES) has been highlighted as a means to valorize inorganic gaseous carbo...
Abstract Background The conversion of CO2 into high value-added products has a very important enviro...
The need for greener processes to satisfy the demand of platform chemicals together with the possibi...
The possibility of generating electricity with microbial fuel cells has been recognized for some tim...
The possibility of providing the acetogenic microorganism Sporomusa ovata with electrons delivered d...
ABSTRACT The possibility of providing the acetogenic microorganism Sporomusa ovata with electrons de...
Microbial electrosynthesis, a process in which microorganisms use electrons derived from electrodes ...
Microbial electrosynthesis is a promising strategy for the microbial conversion of carbon dioxide to...
The discovery of electrotrophs, microorganisms that can directly accept electrons from electrodes fo...
Microbial electrosynthesis is a promising strategy for the microbial conversion of carbon dioxide to...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
The recent concept of microbial electrosynthesis (MES) has evolved as an electricity-driven producti...
<p>Microbial electrosynthesis (MES) is an electricity-driven production of chemicals from low-value ...
Carbon dioxide (CO2) reduction to multi-carbon compounds at the cathode using chemolithoautotrophs i...
It is well established that some reduced fermentation products or microbially reduced artificial med...
Microbial electrosynthesis (MES) has been highlighted as a means to valorize inorganic gaseous carbo...
Abstract Background The conversion of CO2 into high value-added products has a very important enviro...
The need for greener processes to satisfy the demand of platform chemicals together with the possibi...
The possibility of generating electricity with microbial fuel cells has been recognized for some tim...