Evaluation of single chamber electrochemical reduction of CO<sub>2</sub>to formate for application under biocompatible conditions
Publiceringsår
2025
Upphovspersoner
Ul, Zainab; Sulonen, Mira; Haus, Philip; Izadi, Paniz; Baeza, Juan Antonio; Harnisch, Falk; Guisasola, Albert
Abstrakt
<p>The electrochemical CO2 reduction reaction (eCO2RR) facilitates high rates and yields for the selective production of formate, a quintessential C1-compound that can serve as a valuable carbon and energy source for biosynthesis. The use of double-chamber (DC) electrochemical cells with membranes is deemed essential to avoid mixing of electrochemical products (i.e. anodic oxygen and cathodic formate) and thus cross-reactions that lower yields, Faradaic efficiency (FE) and effective rate. However, single-chamber (SC) setups for eCO2RR can be more suitable to combine with bioprocesses. This work comprehensively evaluates, using different experimental set-ups, the conditions under which SC operation can obtain results comparable to DC systems. At a 50mL scale, under biocompatible conditions, formate production in the SC setup achieved a 14% reduction in the production rate (146mgL-1 h-1 for SC and 170mgL-1 h-1 for DC) and a 15% decrease in FE (72.2% in SC and 84.7% in DC). The highest formate concentration produced in 24h SC experiments was 1.8g·L-1 with FE of 41%, a concentration appropriate for fermentation processes. The SC operation of eCO2RR to formate without a membrane could reduce energy losses and capital costs, although at the cost of an expected reduction in rate and FE.</p>
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Publikationstyp
Publikationsform
Artikel
Moderpublikationens typ
Tidning
Artikelstyp
En originalartikel
Målgrupp
VetenskapligKollegialt utvärderad
Kollegialt utvärderadUKM:s publikationstyp
A1 Originalartikel i en vetenskaplig tidskriftPublikationskanalens uppgifter
Journal/Serie
Volym
97
Artikelnummer
103136
ISSN
Publikationsforum
Publikationsforumsnivå
1
Öppen tillgång
Öppen tillgänglighet i förläggarens tjänst
Ja
Öppen tillgång till publikationskanalen
Helt öppen publikationskanal
Licens för förläggarens version
CC BY
Parallellsparad
Nej
Övriga uppgifter
Vetenskapsområden
Teknisk kemi, kemisk processteknik
Nyckelord
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Språk
engelska
Internationell sampublikation
Ja
Sampublikation med ett företag
Nej
DOI
10.1016/j.jcou.2025.103136
Publikationen ingår i undervisnings- och kulturministeriets datainsamling
Ja