Publication | Open Access
Engineering electrochemical CO<sub>2</sub> reduction to formate under bioprocess‐compatible conditions to bioreactor scale
13
Citations
21
References
2019
Year
Environmental ElectrochemistryEngineeringBioelectrochemistryBioprocess‐compatible ConditionsMicrobial Electrochemical SystemBioelectrochemical ReactorEnergy BiotechnologyBioprocess EngineeringChemical EngineeringL ElectrobioreactorBioremediationBiochemical EngineeringBioelectrochemical SystemCo 2ElectrochemistryBiomanufacturingElectrochemical Co 2MicrobiologyMedicine
Abstract The coupling of electrochemical CO 2 reduction to formate with the microbial biosynthesis of valuable products is promising for exploiting CO 2 as well as to store excess renewable electricity. Here, electrochemical CO 2 reduction to formate at bioprocess‐compatible conditions was transferred from the scale of 50 mL electrochemical cells to 1 L electrobioreactors. In the 1 L electrobioreactor, a reproducible coulombic efficiency of 74.9±5.5 % and formate production rate of 0.038±0.005 mmol h −1 cm −2 could be achieved. Autoclaving by standard steam sterilization was shown to negatively affect the reliability of the process performance and, therefore, needs further investigation. However, mass transfer is not limiting for the process performance. Thus, the coupling of electrochemical CO 2 reduction to formate with microbial biosynthesis in sterile conditions at technical scale can be targeted in the future.
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