4.8 Article

Evaluation of additive formulations to inhibit precipitation of positive electrolyte in vanadium battery

Journal

JOURNAL OF POWER SOURCES
Volume 340, Issue -, Pages 139-149

Publisher

ELSEVIER
DOI: 10.1016/j.jpowsour.2016.11.071

Keywords

Vanadium battery; Positive vanadium electrolyte; Scale inhibitor; Additive; V(V) precipitation

Funding

  1. Australian Research Council
  2. Center for Refining & Petrochemicals, Research Institute of King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia
  3. University of New South Wales, Sydney, Australia

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A comprehensive study has been performed to develop blended additive formulations based on organic and inorganic compounds to prevent the precipitation of supersaturated V(V) species in the Vanadium Flow Battery at high temperatures around 50 degrees C. It was found that organic formulations are oxidized by the strong oxidizing effect of V(V) species and are hence ineffective. The inorganic additive formulation KS11 which consists of 1 wt% of K3PO4+ 1 wt% of SHMP appears to be very effective with a vanadium solution of composition 3.5 M V(V) in total sulphate/bisulphate concentration of 5.7 M up to a temperature of 40 degrees C. The phosphate ions (PO43-) released from K3PO4 and PO3- ions from SHMP (NaPO3)(6) are believed to adsorb onto the nucleating ions, thus inhibiting the precipitation of scale forming species, or adsorption onto the growing crystals, deforming and/or inhibiting further formation of vanadium crystals. Although the electrochemical activity of 3.5 MV solutions was unaffected in the presence of the KS11, increasing vanadium concentration above 3.5 M and total sulphate/bisulphate concentration above 6 M is probably increasing the formation of electrochemically inactive complexes of vanadium-sulphate and polyvanadic species. This results in increased solution viscosity and subsequently reduces the electrochemical activity exponentially. (C) 2016 Elsevier B.V. All rights reserved.

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