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Extractive Metallurgy of Rare Earths compiles information from scattered sources that is often available only to specialists. It provides a complete and usable survey of the rare earth resources, extraction, and production of numerous end products that translates to both laboratory and industrial settings. This book is a source of industry expertis
This book presents the current status and future prospects of rare earth elements with respect to a multitude of factors, including resource availability, production, and applications. Among the topics covered are the extraction of raw materials, alloying and compound production, applications, resource conservation through recycling, regulatory issues, and potential new resource streams. The chapters are authored by well-known technical experts in their fields, with decades of research, industrial, and governmental policy experience. The book is expected to serve as the first single source reference on rare earth minerals and metals aimed at students, scientists, technologists, government legislators, regulatory agencies, investors, and business leaders. It provides in-depth examination of the importance of rare earth elements to the global economy and their use in technological innovation, including energy, power, transportation, medicine, electronics, and chemical/petroleum industries.
Biochemistry of Scandium and Yttrium gathers together existing knowledge about scandium and yttrium from a wide variety of disciplines. Part 1 will present a comparative study of the physical and chemical properties of scandium and yttrium, looking at both their similarities and their differences. (Part 2 will address the biochemical aspects of these two elements, and the various medical and environmental applications.) While these elements are relatively rare in nature, these books will show that they have unusual physical and chemical properties, and a disproportionate number of important applications. Improved analytical techniques have revealed that scandium and yttrium are present throu...
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Rare earth oxides, rare earth compounds and rare earth elements find a wide range of applications in metals, glasses, ceramics and electronics. Demands for high-purity separated rare earth oxides and metals with a purity of up to 99.999% is growing. The present conference was designed to discuss the needs of the materials science community and to present advances in the field.
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The volumes present investigations on grain growth phenomena and their observation in various materials: metals and alloys, ceramics, sintered materials, thin films, etc.; normal and abnormal grain growth including twinning, texture, particle and other drag effects as well as analysis of topological aspects and grain size and grain orientation correlations; grain boundary structure, mobility and interaction with particles and impurity atoms. Experimental methods applicable to measurements of grain size, orientation of individual grains, etc.
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The volumes center on the following themes: 1. The synthesis of new compounds by chemical, physical (i.e. high-pressure) and electrochemical methods; 2. The study of physical properties, such as charge transfer, electrical conductivity, structural transitions, superstructures, magnetic properties, surface properties; 3. Theoretical studies of electronic or phonon band structures, X-ray diffraction by defective lamellar stackings, thermodynamic properties, electrical conduction by various charge carriers; 4. The use of intercalation compounds as reagents in organic synthesis, for the separation of isotopes, in rechargeable batteries, or as catalysts.