Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode

Eletrolysis of solid metal oxides has been demonstrated in MgCl2-NaCl-KCl melt at 700 oC taking the electrolysis of Ta2O5 as an example. Both the cathodic and anodic processes have been investigated using cyclic voltammetry, potentiostatic and constant voltage electrolysis, with the cathodic product...

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Main Authors: Yuan, Yating, Wei, Li, Zhiyong, Wang, Xianbo, Jim, Chen, George Z.
Format: Article
Published: Royal Society of Chemistry 2016
Online Access:https://eprints.nottingham.ac.uk/34058/
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author Yuan, Yating
Wei, Li
Zhiyong, Wang
Xianbo, Jim
Chen, George Z.
author_facet Yuan, Yating
Wei, Li
Zhiyong, Wang
Xianbo, Jim
Chen, George Z.
author_sort Yuan, Yating
building Nottingham Research Data Repository
collection Online Access
description Eletrolysis of solid metal oxides has been demonstrated in MgCl2-NaCl-KCl melt at 700 oC taking the electrolysis of Ta2O5 as an example. Both the cathodic and anodic processes have been investigated using cyclic voltammetry, potentiostatic and constant voltage electrolysis, with the cathodic products analysed by XRD, SEM and the anodic products by GC. Fast electrolysis of Ta2O5 against a graphite anode has been realized at a cell voltage of 2 V , or a total overpotential of about 400 mV. The energy consumption was about 1 kWh/kg-Ta with a nearly 100% Ta recovery. The cathodic product was nanometer Ta powder with sizes of about 50 nm. The main anodic product was Cl2 gas, together with about 1 mol% O2 gas and trace of CO. The graphite anode was found to be an excellent inert anode. These results promise an environment-friendly and energy efficient method for metal extraction by electrolysis of metal oxides in MgCl2 based molten salts.
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spelling nottingham-340582020-05-04T17:30:34Z https://eprints.nottingham.ac.uk/34058/ Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode Yuan, Yating Wei, Li Zhiyong, Wang Xianbo, Jim Chen, George Z. Eletrolysis of solid metal oxides has been demonstrated in MgCl2-NaCl-KCl melt at 700 oC taking the electrolysis of Ta2O5 as an example. Both the cathodic and anodic processes have been investigated using cyclic voltammetry, potentiostatic and constant voltage electrolysis, with the cathodic products analysed by XRD, SEM and the anodic products by GC. Fast electrolysis of Ta2O5 against a graphite anode has been realized at a cell voltage of 2 V , or a total overpotential of about 400 mV. The energy consumption was about 1 kWh/kg-Ta with a nearly 100% Ta recovery. The cathodic product was nanometer Ta powder with sizes of about 50 nm. The main anodic product was Cl2 gas, together with about 1 mol% O2 gas and trace of CO. The graphite anode was found to be an excellent inert anode. These results promise an environment-friendly and energy efficient method for metal extraction by electrolysis of metal oxides in MgCl2 based molten salts. Royal Society of Chemistry 2016-01-22 Article PeerReviewed Yuan, Yating, Wei, Li, Zhiyong, Wang, Xianbo, Jim and Chen, George Z. (2016) Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode. Faraday Discussions . ISSN 1364-5498 http://pubs.rsc.org/en/content/articlelanding/2016/fd/c5fd00231a#!divAbstract doi:10.1039/C5FD00231A doi:10.1039/C5FD00231A
spellingShingle Yuan, Yating
Wei, Li
Zhiyong, Wang
Xianbo, Jim
Chen, George Z.
Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode
title Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode
title_full Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode
title_fullStr Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode
title_full_unstemmed Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode
title_short Electrolysis of metal oxides in MgCl2 based molten salts with an inert graphite anode
title_sort electrolysis of metal oxides in mgcl2 based molten salts with an inert graphite anode
url https://eprints.nottingham.ac.uk/34058/
https://eprints.nottingham.ac.uk/34058/
https://eprints.nottingham.ac.uk/34058/