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Foreward; New trends in development of nuclear fuel cycle; General analysis of plasma technique for applications in chemical technology and metallurgy; Plasma technique 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 solu-tions 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 & 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 de-pleted on u-235; Plasma technology for production of oxide nuclear fuel from low-enriched; 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 technique and technologies for treatment of radioactive waste; Analysis of generalised hypothetical scheme of the nuclear fuel cycle, modernised on the basis of electrotechnology, from technical, ecological and economical points of view; References; Index.
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