Electrochemical Impedance Characteristics of a Low-Temperature Single Cell for CO2/H2O Co-Reduction to Produce Syngas (CO+H-2)

Authors
Ha, Min GwanShin, DonghoonJung, JeawooAudasso, EmilioSong, JuhunKim, Yong -TaePark, Hee YoungPark, Hyun S.Na, YoungseungJang, Jong Hyun
Issue Date
2022-11
Publisher
The Korean Electrochemical Society
Citation
Journal of Electrochemical Science and Technology, v.13, no.4, pp.462 - 471
Abstract
In this study, the electrochemical impedance characteristics of CO2/H2O co-reduction to produce CO/H-2 syngas were investigated in a low-temperature single cell. The effect of the operating conditions on the single-cell performance was evaluated at different feed concentrations and cell voltages, and the corresponding electrochemical impedance spectroscopy (EIS) data were collected and analyzed. The Nyquist plots exhibited two semicircles with separated characteristic frequencies of approximately 1 kHz and tens of Hz. The high-frequency semicircles, which depend only on the catholyte concentration, could be correlated to the charge transfer processes in competitive CO2 reduction and hydrogen evolution reactions at the cathodes. The EIS characteristics of the CO2/H2O co-reduction single cell could be explained by the equivalent circuit suggested in this study. In this circuit, the cathodic mass transfer and anodic charge transfer processes are collectively represented by a parallel combination of resistance and a constant phase element to show low-frequency semicircles. Through nonlinear fitting using the equivalent circuit, the parameters for each electrochemical element, such as polarization resistances for high- and low-frequency processes, could be quantified as functions of feed concentration and cell voltage.
Keywords
AU NANOPARTICLES; CARBON-DIOXIDE; AG; ELECTROREDUCTION; ELECTROLYTE; CONVERSION; CATALYSTS; FORMATE; LAYER; CO2/H2O Co-Reduction; Syngas; Carbon Dioxide Reduction; Proton Exchange Membrane; Electrochemical Impedance Spectroscopy
ISSN
2093-8551
URI
https://pubs.kist.re.kr/handle/201004/114279
DOI
10.33961/jecst.2022.00458
Appears in Collections:
KIST Article > 2022
Files in This Item:
There are no files associated with this item.
Export
RIS (EndNote)
XLS (Excel)
XML

qrcode

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE