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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium High Temperature Electrochemistry: An FMD Symposium Honoring Uday B. Pal
Presentation Title Electrochemical Recovery of Rare Earth Elements from Magnets in Molten Salts
Author(s) Aida Abbasalizadeh, Seshadri Seetharaman
On-Site Speaker (Planned) Aida Abbasalizadeh
Abstract Scope In this work, selective extraction of rare earth (RE) metals from NdFeB magnets is investigated by studying the effects of various fluxes, viz. AlF3, ZnF2, FeF3 and Na3AlF6 in the LiF-NdFeB system. The aim is to convert RE from RE magnet into the fluoride salt melt. The results show the complete selective separation of neodymium from the magnet and formation of rare earth fluoride, leaving iron and boron unreacted. The formed rare earth fluoride can subsequently be processed in the same reactor through an electrolysis route so that RE can be deposited as a cathode product. The results of XRD and EPMA analysis of the reacted samples indicate that AlF3, ZnF2 and FeF3 can act as strong fluorinating agents for extraction of rare earth from NdFeB magnet, converting the RE to REF3. The results confirm the feasibility of the rare earth metals recovery from scrap NdFeB magnet as raw material.
Proceedings Inclusion? Planned:

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Journey through New Research Applications in High Temperature Electrochemistry
Analysis of Operating Parameters Affecting SOEC Performance
Assessment of Phase Evolution and Cycling Performance for the Li-Sb-Sn Liquid Metal Battery System with Mixed Cation Molten Salt Electrolytes
Combination of Electrolysis and Thermocatalysis for Dry Reforming of Methane in a Liquid Alloy-salt Catalytic System
Considerations for Measuring High Electrical Conductivity Molten Salts with Concentric Electrodes
Degradation Mechanisms and Mitigation Strategies of YSZ Membranes in Contact with Oxy-Fluorite Flux
Dissolution and Diffusion of Titanium in Liquid Tin and Electrochemical Behavior of Ti-Sn Alloy Separation in Molten Salt
Dynamic Operation of Metal-supported Solid Oxide Electrolysis Cells
Electrically-enhanced Boron and Phosphorus Removal from Silicon by CaO-SiO₂-Al₂O₃/-MgO Slag Treatment
Electrically Enhanced Metal Refining Using Slag – Recent Developments and Future Outlook
Electrochemical Attempts in Molten Salts for Extraction, Recycling, and Synthesis
Electrochemical Recovery of Rare Earth Elements from Magnets in Molten Salts
Electrode Processes of Reactive Rare-earth Metals and Alloys in Molten Salt Electrolytes
Examples of High Temperature Electrochemical Research
High-Throughput Measurement Techniques for Physical Properties of Molten Salt
High Performance Battery Materials from Sustainable Sources
Highly Active and Thermally Stable Single-atom Electrocatalysts for High-temperature Solid Oxide Cells
Improving Performance and Durability of Intermediate Temperature Proton‐conducting Solid Oxide Electrolysis Cells via Materials Design and Catalyst Surface Engineering
Mitigating Fuel Electrode Degradation in SOECs by Infiltrated of Nanoscale GDC Catalyst
Mixed Ionic and Electronic Conductors for Reactive Separation of Hydrogen
On Electrochemically Driven Phase Change and Accelerated Test Protocols in Solid Oxide Cells
Processing Contributions to the Conduction Variability of Sr2-xVMoO6-δ
Production of Pure Aluminum and Oxygen by Solid Oxide Membrane-based Electrolysis Using an Inert Anode
Quantitatively Relating Reaction Site Density and Performance in Electrocatalyst-infiltrated Ni-YSZ Symmetric Cells
Recycling EOL-LIB’s Using Thermokinetic Fundamentals in the LIFE Process for Sustainable Metallurgy
Taking SOM to the Moon: A Lunar Demonstrator for Oxygen and Metals Extraction from Regolith Based on the ROXY Process
The Effect of A-site Doping Elements and Concentrations on the Diffusivity and Ionic Conductivity of La2NiO4+δ Studied by Ab Initio Calculations
The Effect of Temperature on Electrodeposition Behavior of Cobalt from Cobalt Chloride Using 2:1 Urea/ ChCl Ionic Liquid
The Long Road to SOM Primary Magnesium Production
Transforming Residues to Resources and How Sustainable Metallurgy Can Set the Example
Transport Modeling in High-temperature Electrochemical Systems
Unraveling the Essence of Welding Flux Sustainability Towards High Heat Input Applications

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