arrow
Return

Pulsed electrolysis - explained

delete2023-01-01
delete14
delete
OA
AI
T
Tamara Miličić
M
Monisha Sivasankaran
C
C. Blümner
A
Antonio Sorrentino
T
Tanja Vidaković‐Koch *
DOI:10.1039/d3fd00030cdelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Lately, there has been high interest in electrolysis under dynamic conditions, the so-called pulsed electrolysis. Different studies have shown that in pulsed electrolysis, selectivity towards certain products can be improved compared to steady-state operation. Many groups also demonstrated that the selectivity can be tuned by selection of pulsing profile, potential limits, as well as frequency of the change. To explain the origin of this improvement, some modeling studies have been performed. However, it seems that a theoretical framework to study this effect is still missing. In the present contribution, we suggest a theoretical framework of nonlinear frequency response analysis for the evaluation of the process improvement under pulsed electrolysis conditions. Of special interest is the DC component, which determines how much the mean output value under dynamic conditions will be different from the value under steady-state conditions. Therefore, the DC component can be considered as a measure of process improvement under dynamic conditions compared to the steady-state operation. We show that the DC component is directly dependent on nonlinearities of the electrochemical process and demonstrate how this DC component can be calculated theoretically as well as how it can be obtained from measurements.
Keywords:
NONLINEAR FREQUENCY-RESPONSE
PERIODICALLY OPERATED REACTORS
ELECTROCHEMICAL CO2 REDUCTION
FARADAIC RECTIFICATION
SILVER

Journal

Faraday Discussions cover
Faraday Discussions
IF:
3.1
Papers:
4.4K
Citations:
1.0W

Organization

M
Max Planck Society
Scholars:
8.2W
Papers: 7.7W
Citations: 3.3W
Cited Papers

Cited Papers

errShare
errSave
Dynamic Boundary Layer Simulation of Pulsed CO2 Electrolysis on a Copper Catalyst
err2021-03-11
err88
errOAAI
errBui, Justin C.; Kim, Chanyeon; Weber, Adam Z.; Bell, Alexis T.
errShare
errSave
The GARD assay for assessment of chemical skin sensitizers
err2013-04-01
err0
errOAAI
errHenrik Johansson; Ann-Sofie Albrekt; Carl A.K. Borrebaeck; Malin Lindstedt
errShare
errSave
Nonlinear frequency response analysis: a recent review and perspectives
err2021-12-01
err24
errOAAI
errVidakovic-Koch, Tanja; Milicic, Tamara; Zivkovic, Luka A.; Chan, Hoon Seng; Krewer, Ulrike; Petkovska, Menka
errShare
errSave
Electrochemical CO2 Reduction at Silver from a Local Perspective
err2021-11-17
err52
errOAAI
errZhu, Xinwei; Huang, Jun; Eikerling, Michael
errShare
errSave
Pulse check: Potential opportunities in pulsed electrochemical CO2 reduction
errJOULE
IF35.4
err2021-08-01
err95
errOAAI
errCasebolt, Rileigh; Levine, Kelsey; Suntivich, Jin; Hanrath, Tobias
errShare
errSave
researcher View more