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Meeting 2023 TMS Annual Meeting & Exhibition
Symposium High Temperature Electrochemistry V
Presentation Title Cyclic Voltammetry for Real-time Oxide Ion Concentration Measurements of a Molten CaCl2
Author(s) Forest Mitchell Felling, Olivia Dale, Mario Gonzalez, Michael Simpson
On-Site Speaker (Planned) Forest Mitchell Felling
Abstract Scope Salt-soluble CaO is generated during direct oxide reduction (DOR) of metal oxides with Ca dissolved in CaCl2. Real-time measurement of the CaO concentration could be used to track the DOR process’s progress. It was previously reported that a cyclic voltammetry (CV) oxidation peak using a tungsten working electrode had been correlated with CaO up to 4.0 wt.% CaO. More recently, a sintered CaO pellet was slowly dissolved in CaCl2 up to 12 wt% to emulate the slow increase in CaO concentration during DOR. At CaO concentrations above 5.6 wt%, the oxidation peak could not be resolved. Instead of determining peak height, the CV current was integrated over the range of potentials at which the oxidation reaction occurred. Below about 7 wt%, a good correlation was found between CaO concentration and the integrated oxidation current. Above this concentration, the integrated current decreases with increasing time. This behavior is not currently understood.
Proceedings Inclusion? Planned:
Keywords High-Temperature Materials, Pyrometallurgy, Extraction and Processing

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Revised High Temperature Synthesis of UCl3 via Reaction of U with FeCl2
Blind Identification and Quantification of Analytes in Molten LiCl-KCl Eutectic
Chloro-aluminate Species Distribution Correlation with Electrical Conductivity of 1-ethyl-3-methyl Imidazolium Chloride (EMIC)-Aluminum Chloride (AlCl3) System
Cyclic Voltammetry for Real-time Oxide Ion Concentration Measurements of a Molten CaCl2
Electrochemical Behavior of Bismuth in molten LiCl-KCl-CaCl2
Electrochemical Properties of Ca-Sb Metal Battery with a Molten Chloride Electrolyte
Electrochemical Reduction of Nd2O3+Fe2O3 Mixed Oxide Precursors in Calcium Chloride Melt
Evaluating the Effects of Mixed Cation Molten Salt Electrolytes within the Li-Sb-Sn Liquid Metal Battery System
Evaluating the Electrochemical Recovery of Gd Using a Reactive Liquid Bi Electrode
Formation of Carbon Layer on Ni and Mo Through Electrochemical Reduction of Carbonate Ions in Molten LiCl
Numerical Modelling and Phase Field Modelling of Silicon Electrodeposition for Solar Cells at High Temperatures using Molten Salts
On the Separation of Niobium and Tantalum Metals via Molten Sulfide Electrolysis
Optimisation of the Anodic and Cathodic Current Densities during Nd Electrowinning Process
Oxide Ion Ceramic Sensor in Molten CaCl2 for Real Time Monitoring of the Direct Oxide Reduction Process
Relative Performance of Platinum, Iridium, and Ruthenium as Oxygen-Evolving Anodes during the Electrolytic Reduction of Uranium Oxide in Molten LiCl-Li2O
Study of Potentiometry for Monitoring Activity of GdCl3 in Molten LiCl-KCl Salt
The Demonstration and Optimization of Thin-cell Electrochemical Measurements in Molten LiCl-KCl Eutectic
The Impact of Moisture on the Electrochemical Behavior of Molten Calcium Chloride
Thermodynamic Properties of Nd-Fe Alloys via EMF Measurements in Molten Salts

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