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  4. Vanadium electrolyte for all-vanadium redox-flow batteries: The effect of the counter ion
 
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2019
Journal Article
Title

Vanadium electrolyte for all-vanadium redox-flow batteries: The effect of the counter ion

Abstract
In this study, 1.6 M vanadium electrolytes in the oxidation forms V(III) and V(V) were prepared from V(IV) in sulfuric (4.7 M total sulphate), V(IV) in hydrochloric (6.1 M total chloride) acids, as well as from 1:1 mol mixture of V(III) and V(IV) (denoted as V3.5+) in hydrochloric (7.6 M total chloride) acid. These electrolyte solutions were investigated in terms of performance in vanadium redox flow battery (VRFB). The half-wave potentials of the V(III)/V(II) and V(V)/V(IV) couples, determined by cyclic voltammetry, and the electronic spectra of V(III) and V(IV) electrolyte samples, are discussed to reveal the effect of electrolyte matrix on charge-discharge behavior of a 40 cm2 cell operated with 1.6 M V3.5+ electrolytes in sulfuric and hydrochloric acids. Provided that the total vanadium concentration and the conductivity of electrolytes are comparable for both acids, respective energy efficiencies of 77% and 72-75% were attained at a current density of 50 mA∙cm−2. All electrolytes in the oxidation state V(V) were examined for chemical stability at room temperature and +45 °C by titrimetric determination of the molar ratio V(V):V(IV) and total vanadium concentration.
Author(s)
Roznyatovskaya, Nataliya  
Fraunhofer-Institut für Chemische Technologie ICT  
Noack, Jens  
Fraunhofer-Institut für Chemische Technologie ICT  
Mild, Heiko
Fraunhofer-Institut für Chemische Technologie ICT  
Fühl, Matthias  
Fraunhofer-Institut für Chemische Technologie ICT  
Fischer, Peter  
Fraunhofer-Institut für Chemische Technologie ICT  
Pinkwart, Karsten  
Fraunhofer-Institut für Chemische Technologie ICT  
Tübke, Jens  
Fraunhofer-Institut für Chemische Technologie ICT  
Skyllas-Kazacos, Maria
Journal
Batteries  
Open Access
DOI
10.24406/publica-r-255700
10.3390/batteries5010013
File(s)
N-531399.pdf (2.28 MB)
Rights
CC BY 4.0: Creative Commons Attribution
Language
English
Fraunhofer-Institut für Chemische Technologie ICT  
Keyword(s)
  • vanadium redox-flow battery

  • electrolyte

  • vanadium redox reactions

  • electrolyte stability

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