Preparation of highly pure vanadyl sulfate electrolyte from vanadium slag leach solution with the complexing effect of EDTA on Fe(III)
-
Add time:07/22/2019 Source:sciencedirect.com
Direct acid leach solution of converter vanadium slag containing tetravalent vanadium is considered to be a low-cost raw material to produce highly pure vanadyl sulfate electrolyte for vanadium battery. The presence of Fe(III) in the primary stripped solution is an obstacle for the further purification process since a) it is hard to separate Fe(III) from V(IV) by solvent extraction b) it is difficult to completely reduce Fe(III) to Fe(II) in the presence of oxygen from the air. A series of complexing agents, i.e. ethylenediaminetetraacetic acid (EDTA), 5-sulfosalicylic acid (SSA) and citric acid were initiatively employed to complex the Fe(III) in the aqueous phase. The impact of Fe(III) complexation on the V(IV) extraction process by D2EHPA (Di-(2-ethylhexyl)phosphoric acid) were investigated and compared. The ligand number within each complex were calculated to instruct the complexant amount needed for complete Fe(III) complexation. Experimental results confirmed that EDTA is the preferred complexing agent compared to SSA and citric acid. >98% of Fe(III) in the aqueous phase can be complexed in a liquid phase by EDTA with a mole ratio of EDTA to Fe(III) of 1.5. Moreover, the complexation degree of Fe(III)-EDTA strongly depends on solution pH, and the maximum separation coefficient (βV/Fe = 729) between V(IV) and Fe(III) takes place at pH = 1.8 in the D2EHPA extraction system. A highly pure vanadyl sulfate electrolyte product can be obtained by two-stage extraction with the complexing function of EDTA.
We also recommend Trading Suppliers and Manufacturers of Vanadium sulfate (cas 16785-81-2). Pls Click Website Link as below: cas 16785-81-2 suppliers
Prev:Proton exchange membranes with ultra-low vanadium ions permeability improved by sulfated zirconia for all vanadium redox flow battery
Next:Improved broad temperature adaptability and energy density of vanadium redox flow battery based on sulfate-chloride mixed acid by optimizing the concentration of electrolyte) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Using vanadyl sulfate to prepare carbon-supported vanadium catalyst for flue gas desulfurization07/27/2019
- Geochemical simulation of the stabilization process of vanadium-contaminated soil remediated with calcium oxide and ferrous sulfate07/26/2019
- Solvent extraction of molybdenum and vanadium from sulphate solutions with Cyphos IL 10107/25/2019
- Removal of vanadium (IV) from water solution by sulfated Katira gum-cl-poly (acrylic acid) hydrogel07/24/2019
- Improved broad temperature adaptability and energy density of vanadium redox flow battery based on sulfate-chloride mixed acid by optimizing the concentration of electrolyte07/23/2019
- Proton exchange membranes with ultra-low vanadium ions permeability improved by sulfated zirconia for all vanadium redox flow battery07/20/2019
- Investigations on physicochemical properties and electrochemical performance of sulfate-chloride mixed acid electrolyte for vanadium redox flow battery07/21/2019
- Kinetic study of the dissolution of vanadyl sulfate and vanadium pentoxide in sulfuric acid aqueous solution07/19/2019
-
Health and Chemical more >


