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Full Description
Plasma & High Frequency Processes for Obtaining & Processing Materials in the Nuclear Fuel Cycle
Contents
ContentsAnalysis of Plasma Techniques for Applications in Chemical Technology and Metallurgy; Plasma Techniques and Technology in the Processes of Opening-Up of Ores and Ore Concentrates; Plasma Technology for Producing Oxides of Natural and Regenerated Uranium from Solutions (Re-Extracts) and Melts of Hydrated Salts; Plasma and Frequency Denitration Processes of Mixed Nitric Solutions and Production of Oxide Compounds; Plasma Carbothermal Processes and Equipment for Reduction of Uranium from Oxide Raw Material; High Frequency Induction Processes for Obtaining of Carbide and Boride Materials for Nuclear Power Engineering; High Frequency and Plasma Processes in Recovery Technology of Fluorine from Fluorine-Containing Natural and Synthetic Minerals as Applied to Technology of Producing Uranium Hexafluorides; Plasma and Laser Processes in Technology of Uranium Enrichment; Technological Applications of Uranium-Fluorine Plasma; Plasma Processes for Conversion of Uranium Hexafluoride Depleted on U-235; Plasma Technology for Production of Oxide Nuclear Fuel from Low-Enriched Uranium Hexafluoride for Light Water Nuclear Power Reactors; New Technique and Technologies for Separation of Gas and Disperse Products of Plasma Chemical Processes; Frequency Technology for Production of Nuclear-Grade Zirconium, Hafnium and Other Rare Metals; Use of Microwave, High Frequency and Plasma Technologies for Treatment of Radioactive Waste; Analysis of Generalised Hypothetical Scheme of the Nuclear Fuel Cycle, Modernised on the Basis of Electrotechnology.NER(01): GB IE