Peer-Reviewed Journal Details
Mandatory Fields
Petchsingh, C,Quill, N,Joyce, JT,Eidhin, DN,Oboroceanu, D,Lenihan, C,Gao, X,Lynch, RP,Buckley, DN
2016
June
Journal Of The Electrochemical Society
Spectroscopic Measurement of State of Charge in Vanadium Flow Batteries with an Analytical Model of V-IV-V-V Absorbance
Published
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Optional Fields
UV-VISIBLE SPECTROPHOTOMETRY SULFURIC-ACID MEDIA ENERGY-STORAGE PHOTOVOLTAIC SYSTEMS REDOX-BATTERY ELECTROLYTES MEMBRANE PROGRESS CARBON CELL
163
5068
5083
The ultraviolet-visible spectra of catholytes for vanadium flow batteries (VFBs) were measured and analyzed for a range of V-IV:V-V ratios and vanadium concentrations. Using a model of V2O33+ in equilibrium with VO2+ and VO2+, the spectra were characterized in terms of an excess absorbance parameter p and the molar extinction coefficients epsilon(4) and epsilon(5) of VO2+ and VO2+, respectively. The results showed that p varies weakly with the vanadium concentration C and this variation was quantified relative to a reference concentration C-r by means of a concentration coefficient phi(r). Experimental data showed that plots of fr versus C phi(r) and plots of 1/phi(r) versus C are linear and, based on this linearity, phi(r) was expressed as a simple function of C in terms of its reference concentration C-r and a single parameter M that is independent of the choice of C-r. Standard spectra of p at a concentration C-0 = 1 mol dm(-3) and of epsilon(4) and epsilon(5) were generated from which the spectrum of any catholyte may be simulated using the measured value of M in a governing equation. This enables determination of the state of charge for any VFB catholyte using absorbance measurements at a small number of wavelengths. (C) The Author(s) 2015. Published by ECS. All rights reserved.
10.1149/2.0091601jes
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