Current challenges for microbial electrosynthesis include the production of higher value chemicals than acetate, at high rates, using cheap electrode materials. We demonstrate here the continuous, biofilm-driven production of acetate (C2), n-butyrate (nC4), and n-caproate (nC6) from sole CO2 on unmodified carbon felt electrodes. No other organics were detected. This is the first quantified continuous demonstration of n-caproate production from CO2 using an electrode as sole electron donor. During continuous nutrients supply mode, a thick biofilm was developed covering the whole thickness of the felt (1.2-cm deep), which coincided with high current densities and organics production rates. Current density reached up to −14 kA m−3electrode (−1...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
Electron-transfer pathways occurring in biocathodes are still unknown. We demonstrate here that high...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
Current challenges for microbial electrosynthesis include the production of higher value chemicals t...
Current challenges for microbial electrosynthesis include the production of higher value chemicals t...
<p>Current challenges for microbial electrosynthesis include the production of higher value chemical...
The selective and high-rate microbial electrosynthesis of a valuable molecule is favoured from an ec...
The selective and high-rate microbial electrosynthesis of a valuable molecule is favoured from an ec...
High product specificity and production rate are regarded as key success parameters for large-scale ...
High product specificity and production rate are regarded as key success parameters for large-scale ...
In this work three observations are reported leading to a reconsideration of biofilm based microbial...
Microbial electrosynthesis represents a promising approach for renewable energy storage in which che...
The recent concept of microbial electrosynthesis (MES) has evolved as an electricity-driven producti...
We demonstrate here the long-term continuous bioelectrochemical chain elongation from CO2 and acetat...
Microbial electrosynthesis is a promising strategy for the microbial conversion of carbon dioxide to...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
Electron-transfer pathways occurring in biocathodes are still unknown. We demonstrate here that high...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
Current challenges for microbial electrosynthesis include the production of higher value chemicals t...
Current challenges for microbial electrosynthesis include the production of higher value chemicals t...
<p>Current challenges for microbial electrosynthesis include the production of higher value chemical...
The selective and high-rate microbial electrosynthesis of a valuable molecule is favoured from an ec...
The selective and high-rate microbial electrosynthesis of a valuable molecule is favoured from an ec...
High product specificity and production rate are regarded as key success parameters for large-scale ...
High product specificity and production rate are regarded as key success parameters for large-scale ...
In this work three observations are reported leading to a reconsideration of biofilm based microbial...
Microbial electrosynthesis represents a promising approach for renewable energy storage in which che...
The recent concept of microbial electrosynthesis (MES) has evolved as an electricity-driven producti...
We demonstrate here the long-term continuous bioelectrochemical chain elongation from CO2 and acetat...
Microbial electrosynthesis is a promising strategy for the microbial conversion of carbon dioxide to...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
Electron-transfer pathways occurring in biocathodes are still unknown. We demonstrate here that high...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...