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Meeting 2020 TMS Annual Meeting & Exhibition
Symposium Electrometallurgy 2020
Presentation Title The Electrochemical Conversion of Chalcopyrite to Less Refractory Mineral Phases for Hydrometallurgical Processing
Author(s) Jonathan T. Vardner, Campbell A. Donnelly, Zhengyan Zhang, Minghui Wang, Angela A. Ye, Scott Banta, Alan C. West
On-Site Speaker (Planned) Jonathan T. Vardner
Abstract Scope The high demand for copper is causing a sharp decline in the grade of copper reserves, and as a result, copper scarcities are expected to arise by 2050. In this work, a transformative hydrometallurgical process is being developed to lower the costs of copper production and thereby sustain its use for the coming decades. It has been demonstrated that an electrochemical reactor can convert chalcopyrite into mineral phases that are more susceptible to oxidative treatment. The efficiency of the electrochemical reaction is improved by optimizing the electrode materials, applied current density, and reactor design. The bulk and surface phases of the chalcopyrite mineral during the progression of the electrochemical reaction are monitored using XRD and XPS, respectively. The operating steps for the complete process consist of open-pit mining, concentrating ore, electrochemical conversion, leaching, solvent extraction, and electrowinning. A preliminary analysis suggests that the process can be competitive with industrial standards.
Proceedings Inclusion? Planned: Supplemental Proceedings volume

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A 3-D Numerical Model to Predict Low Temperature Aluminum Electrochemical Process Using Ionic Liquids as Electrolytes at Different Boundary Conditions
A Key Role for Electrometallurgy in Climate Change Mitigation
Capital Cost Estimation for Electrochemical Processes
Development of a Magnesium Metal Production Process Using North Korean Magnesite
Development of a Novel Magnesium Metal Production Process by Electrolysis of Magnesium Oxide Using a Tin Metal Cathode
Effective Copper Diffusion Coefficients in CuSO4 – H2SO4 Electrowinning Electrolytes
Electrolytic Extraction of Liquid Copper and Iron from Chalcopyrite Ore
Enhanced Aluminum Electrorefining Process from Aluminum Alloy Scraps via Surface Engineering
Future Prospects for Copper Leaching, Solvent Extraction and Electrowinning Technology
M-56 (Digital): Electron Beam Refinery and Purification in Newly Constructed Production Units with Gas Discharged Electron Beam Guns
M-58: Electrochemical Behavior of Fe2O3 in Electro-deoxygenation in NaCl-CaCl2 Molten Salt System
M-59: Reduction Mechanism of Metal Cobalt from Cathode Material of Waste Lithium Cobalt Oxide Battery
Modeling Nickel and Zinc Electrowinning Based on Ion Mass Transport and Electrode Reaction Kinetics
Study on High-temperature Liquid Lithium Battery with LiI-KI Electrolyte
The Electrochemical Conversion of Chalcopyrite to Less Refractory Mineral Phases for Hydrometallurgical Processing
Theories of Electrodeposition, Beings-of-reason, and Reality

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