The selective and high-rate microbial electrosynthesis of a valuable molecule is favoured from an economic perspective. We demonstrate here that increasing selectivity towards n-butyrate and n-caproate over acetate, while maintaining high production rate and electron recovery, is achievable by adjusting the CO2 feeding strategy and hydraulic retention time. We show that high CO2 loading rate (173 L d− 1) and long hydraulic retention time (14 days) triggers bioelectrochemical chain elongation to n-butyrate and n-caproate (53.6 ± 4.1%C), whereas lower CO2 loading rate (8.6 L d− 1) does not, even with increasing HRT (96.4 ± 2.4%C into acetate). Moreover, temporarily detaching and re-attaching the biofilm allowed to obtain high-rate n-caproate ...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
The advent of renewable energy conversion systems exacerbates the existing issue of intermittent exc...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
The selective and high-rate microbial electrosynthesis of a valuable molecule is favoured from an ec...
Current challenges for microbial electrosynthesis include the production of higher value chemicals t...
We demonstrate here the long-term continuous bioelectrochemical chain elongation from CO2 and acetat...
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...
To date acetate is the main product of microbial electrosynthesis (MES) from carbon dioxide (CO 2 )....
<p>Current challenges for microbial electrosynthesis include the production of higher value chemical...
The advent of renewable energy conversion systems exacerbates the existing issue of intermittent exc...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
The recent concept of microbial electrosynthesis (MES) has evolved as an electricity-driven producti...
The advent of renewable energy conversion systems exacerbates the existing issue of intermittent exc...
Microbial electrosynthesis represents a promising approach for renewable energy storage in which che...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
The advent of renewable energy conversion systems exacerbates the existing issue of intermittent exc...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
The selective and high-rate microbial electrosynthesis of a valuable molecule is favoured from an ec...
Current challenges for microbial electrosynthesis include the production of higher value chemicals t...
We demonstrate here the long-term continuous bioelectrochemical chain elongation from CO2 and acetat...
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...
To date acetate is the main product of microbial electrosynthesis (MES) from carbon dioxide (CO 2 )....
<p>Current challenges for microbial electrosynthesis include the production of higher value chemical...
The advent of renewable energy conversion systems exacerbates the existing issue of intermittent exc...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
The recent concept of microbial electrosynthesis (MES) has evolved as an electricity-driven producti...
The advent of renewable energy conversion systems exacerbates the existing issue of intermittent exc...
Microbial electrosynthesis represents a promising approach for renewable energy storage in which che...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...
The advent of renewable energy conversion systems exacerbates the existing issue of intermittent exc...
The enhancement of microbial electrosynthesis (MES) of acetate from CO2 to performance levels that c...