Polarized stainless steel cathodes in pure cultures of Geobacter sulfurreducens generated reduction currents of up to 30 A/m2 even when the sole electron acceptor contained in solution was completely reduced. It was shown here that these currents were driven by the carbon dioxide that was provided to the solution. It was postulated that CO2 reduction consumed succinate and produced glycerol, which remained stored inside the cells and was released under the effect of stress
Since the industrial revolution the use of fossil fuels has increased exponentially, this increase c...
Carbon dioxide can be converted to compounds such as formic acid, methanol or methane electrochemica...
In experiments performed using graphite electrodes poised by a potentiostat (200 mV versus Ag/AgCl) ...
Stainless steel and graphite electrodes were individually addressed and polarized at−0.60V vs. Ag/Ag...
Carbon dioxide (CO2) reduction to multi-carbon compounds at the cathode using chemolithoautotrophs i...
The reduction of carbon dioxide is considered a relevant topic for both the synthesis of chemicals a...
Carbon Dioxide (CO2), one of the greenhouse gases, affects the climate more because of the increasin...
Microbial biocathodes allow converting and storing electricity produced from renewable sources in ch...
The electrocatalytic reduction of carbon dioxide (CO2RR) to valuable bulk chemicals is set to become...
The high turnover of carbon dioxide during bacterial oxidation of sulfides witnessed in cultures of ...
For a few years it has been demonstrated that micro-organisms contained in different natural environ...
<p>Microbial catalysis of carbon dioxide (CO<sub>2</sub>) reduction to multi-carbon compounds at the...
Recycling technologies of CO2 allow to introduce renewable energy in the chemical and energy chain, ...
Due to rising concerns about climate change, a lot of research is currently underway with respect to...
Microbial electrosynthesis (MES) is an electrochemical process used to drive microbial metabolism fo...
Since the industrial revolution the use of fossil fuels has increased exponentially, this increase c...
Carbon dioxide can be converted to compounds such as formic acid, methanol or methane electrochemica...
In experiments performed using graphite electrodes poised by a potentiostat (200 mV versus Ag/AgCl) ...
Stainless steel and graphite electrodes were individually addressed and polarized at−0.60V vs. Ag/Ag...
Carbon dioxide (CO2) reduction to multi-carbon compounds at the cathode using chemolithoautotrophs i...
The reduction of carbon dioxide is considered a relevant topic for both the synthesis of chemicals a...
Carbon Dioxide (CO2), one of the greenhouse gases, affects the climate more because of the increasin...
Microbial biocathodes allow converting and storing electricity produced from renewable sources in ch...
The electrocatalytic reduction of carbon dioxide (CO2RR) to valuable bulk chemicals is set to become...
The high turnover of carbon dioxide during bacterial oxidation of sulfides witnessed in cultures of ...
For a few years it has been demonstrated that micro-organisms contained in different natural environ...
<p>Microbial catalysis of carbon dioxide (CO<sub>2</sub>) reduction to multi-carbon compounds at the...
Recycling technologies of CO2 allow to introduce renewable energy in the chemical and energy chain, ...
Due to rising concerns about climate change, a lot of research is currently underway with respect to...
Microbial electrosynthesis (MES) is an electrochemical process used to drive microbial metabolism fo...
Since the industrial revolution the use of fossil fuels has increased exponentially, this increase c...
Carbon dioxide can be converted to compounds such as formic acid, methanol or methane electrochemica...
In experiments performed using graphite electrodes poised by a potentiostat (200 mV versus Ag/AgCl) ...