
Rare Metal Technology 2021
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Content
- Intro
- Preface
- Contents
- About the Editors
- Part I Li, Co, and Ni
- 1 Application of Eutectic Freeze Crystallization in the Recycling of Li-Ion Batteries
- 2 Recovery of Valuable Metals from End-of-Life Lithium-Ion Battery Using Electrodialysis
- 3 Lithium Adsorption Mechanism for Li²TiO³
- 4 Study on the Production of Lithium by Aluminothermic Reduction Method
- 5 Effect of Synthesis Method on the Electrochemical Performance of LiNixMnCo¹-x-yO² (NMC) Cathode for Li-Ion Batteries: A Review
- 6 Recovery of Cobalt as Cobalt Sulfate from Discarded Lithium-Ion Batteries (LIBs) of Mobile Phones
- Part II Li, Co, Au, Ag, PGMs, Te, Na, W, and In
- 7 Environmental Aspects of the Electrochemical Recovery of Tellurium by Electrochemical Deposition-Redox Replacement (EDRR)
- 8 Sodium Metal from Sulfate
- 9 Preparation of High Grade Ammonium Metatungstate (AMT) as Precursor for Industrial Tungsten Catalyst
- 10 Industrial-Scale Indium Recovery from Various e-Waste Resources Through Simulation and Integration of Developed Processes
- 11 Recovery of Lithium (Li) Salts from Industrial Effluent of Recycling Plant
- 12 Extraction of Platinum Group Metals from Spent Catalyst Material by a Novel Pyro-Metallurgical Process
- 13 Developed Commercial Processes to Recover Au, Ag, Pt, and Pd from E-waste
- Part III REEs
- 14 Innovative Reactors for Recovery of Rare Earth Elements (REEs)
- 15 Recovery of Rare Earth Elements from Recycled Hard Disk Drive Mixed Steel and Magnet Scrap
- 16 Extraction Chromatography for Separation of Rare Earth Elements
- 17 Tool and Workflow for Systematic Design of Reactive Extraction for Separation and Purification of Valuable Components
- 18 Rethinking Mineral Processing and Extractive Metallurgy Approaches to Ensure a Sustainable Supply of High-tech and Critical Raw Materials
- 19 Extraction of Rare Earth Metals: The New Thermodynamic Considerations Toward Process Hydrometallurgy
- Part IV REEs and Sc
- 20 Developing Feasible Processes for the Total Recycling of WEEE to Recover Rare Metals
- 21 Rare Earth Elements Extraction from Coal Waste Using a Biooxidation Approach
- 22 Scandium Extraction from Bauxite Residue Using Sulfuric Acid and a Composite Extractant-Enhanced Ion-Exchange Polymer Resin
- 23 Scandium - Leaching and Extraction Chemistry
- 24 Preparation of Industrial Sodium Chromate Compound from an Indigenous Chromite Ore by Oxidative Decomposition
- Part V Recycling, Co, and REE
- 25 The Italian National Research Council Operations Within the EIT Raw Materials Framework
- 26 Experimental Determination of Liquidus Temperature and Phase Equilibria of the CaO-Al²O³-SiO²-Na²O Slag System Relevant to E-Waste Smelting
- 27 How to Prepare Future Generations for the Challenges in the Raw Materials Sector
- Part VI V, Ce, Mo, Cr, and Fe
- 28 Transformation and Distribution of Vanadium Phases in Stone Coal and Combustion Fly Ash
- 29 Solvo-Chemical Recovery of Cerium from Sulfate Solution Using Cyanex 923 and Oxalate Precipitation
- 30 Recovery of Molybdenum from Low Concentration Molybdenum-Containing Solution with Addition of Fe(III)
- 31 An Effective Way to Extract Cr from Cr-Containing Tailings
- 32 Study on the Enhancement of Iron Removal in the Becher Aeration by a Novel Tubular Reactor
- Author Index
- Subject Index
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