Last edited by Kalrajas
Tuesday, August 4, 2020 | History

5 edition of Refractory Metals in Molten Salts Their Chemistry, Electrochemistry and Technology (NATO Science Partnership Sub-Series: 3:) found in the catalog.

Refractory Metals in Molten Salts Their Chemistry, Electrochemistry and Technology (NATO Science Partnership Sub-Series: 3:)

  • 36 Want to read
  • 35 Currently reading

Published by Springer .
Written in English

    Subjects:
  • Chemistry of metals & their compounds,
  • Science/Mathematics,
  • Fused salt electrolysis,
  • Technology & Industrial Arts,
  • Alloys,
  • Electrochemistry,
  • Technology,
  • Metallurgy,
  • Material Science,
  • Fused salts,
  • Chemistry - Inorganic,
  • Chemistry - Physical & Theoretical,
  • Science / Chemistry / Physical & Theoretical,
  • Science-Chemistry - Inorganic,
  • Science-Chemistry - Physical & Theoretical,
  • Technology / Material Science,
  • Congresses,
  • Heat resistant alloys

  • Edition Notes

    ContributionsD.H. Kerridge (Editor), Evgeny G. Polyakov (Editor)
    The Physical Object
    FormatHardcover
    Number of Pages288
    ID Numbers
    Open LibraryOL7808696M
    ISBN 100792351347
    ISBN 109780792351344

    in Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology, Editors: David H. Kerridge, Evgeny G. Polyakov, Springer, NATO ASI Series, Vol , Investigations of complex formation and phase diagrams of molten salts related to the oxidized form of sulphuric acid catalysts. Their Chemistry, Electrochemistry and Technology Proceedings of the NATO Advanced Research Workshop on Refractory Metals in Molten Salts, Apatity, Russia, August , Springer -Science Business Media, B.V., XIII, p. ISBN , ISBN eBook, DOI.

      Molten Salts Chemistry: From Lab to Applications examines how the electrical and thermal properties of molten salts, and generally low vapour pressure are well adapted to high temperature chemistry, enabling fast reaction rates. It also explains how their ability to dissolve many inorganic compounds such as oxides, nitrides, carbides and other Reviews: 1. 2. Electrochemistry of Corrosion in Molten Salts 3. Mechanism of Growth, Composition and Structure of Passive Films Formed on Ni, Fe and Their Alloys in Molten Salt Electrolytes 4. Hot Corrosion in Gas Turbines 5. Fireside Corrosion in Boilers and Waste Incinerators 6. Corrosion of Alloys and Metals by Molten Nitrates 7.

      Specific topics in applied research are the following: environmentally sound electrochemical extraction and recycling of metals, lithium solid-polymer-electrolyte batteries, advanced materials for use as electrodes, separators, and walls in fused-salt electrolysis cells and batteries, electrochemical sensors, electrochemical synthesis of thin. The major fundamental topics covered are the structure of melts, thermodynamics of molten salt mixtures, theoretical and experimental studies of transport processes, metal-metal salt solutions, solvent properties of melt systems, acid-base effects in molten salt chemistry, electronic absorption, vibrational and nuclear magnetic resonance spectroscopy of melt systems, electrochemistry .


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Refractory Metals in Molten Salts Their Chemistry, Electrochemistry and Technology (NATO Science Partnership Sub-Series: 3:) Download PDF EPUB FB2

Refractory Metals in Molten Salts Their Chemistry, Electrochemistry and Technology. Editors from nine countries enabled the 59 participants to learn a great deal about many areas of recent research in the molten salt chemistry of refractory metals, while making new contacts as well as renewing old friendships.

Book Title Refractory. Buy Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology: Proceedings of the NATO Advanced Research Workshop on Refractory (Nato Science Partnership Subseries: 3) by Kerridge, D.H., Polyakov, Evgeny G.

(ISBN: ) from Amazon's Book Store. Everyday low prices and free delivery on eligible : Hardcover. It nevertheless facilitated a fruitful week, both ofscience and ofhuman contacts. The 42 oral presentations and posters from nine countries enabled the 59 participants to learn a great deal about many areas of recent research in the molten salt chemistry of refractory metals, while making new contacts as well as renewing old friendships.

Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology M. Gaune-Escard (auth.), David H. Kerridge, Evgeny G. Polyakov (eds.) This NATO Advanced Research Workshop was devoted to a specialized topic in molten salt chemistry and was held in an exotic location (as far as Westerners were concerned) well within the.

Compra Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology. SPEDIZIONE GRATUITA su ordini idonei : Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology - NATO Advanced Research Workshop on Refractory Metals in Molten Salts ( Apatity, Russia), Kerridge, David H Format: Copertina rigida.

Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology from nine countries enabled the 59 participants to learn a great deal about many areas of recent research in the molten salt chemistry of refractory metals, while making new contacts as well as renewing old friendships.

G.R. Stafford, G.M. Haarberg. Refractory Metals in Molten Salts Their Chemistry, Electrochemistry and Technology edited by David H. Kerridge Department of Engineering Materials, University of Southampton, Southampton, United Kingdom and Evgeny G.

Polyakov Institute of Chemistry, Kola Science Centre, Russian Academy of Sciences, Apatity, Russia Kluwer Academic Publishers. Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology to a specialized topic in molten salt chemistry and.

acid addition alkali metal alloys alumina aluminum anode applications aqueous bath boron CaC2 CaCl2 calcium carbide carbonate fuel cell catalysts cathode cell operation Chem chemical Chemistry chloride coal components composition compounds concentration conductivity corrosion cryolite current density current efficiency cycles effect electrical.

Refractory Metals in Molten Salts, Their Chemistry Electrochemistry and Technology, Kluwer Academic Publishers, Dordrecht () M. Gaune-Escard Molten Salts: From Fundamentals to Applications (Nato Science Series II), Springer, Heidelberg () Y.

Ito (Ed.) Yoyuen no Ohyo -Energy Kankyo Gijutsu eno Tenkai- Industrial Publishing &. Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology (Nato Science Partnership Subseries: 3) [Kerridge, D.H., Polyakov, Evgeny G.] on *FREE* shipping on qualifying offers.

Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology (Nato Science Partnership Subseries: 3). During the past several years there has been remarkable interest and activity in two fields of the fused salt chemistry, namely Molten Salt Extractive Metallurgy and High-Temperature Fuel required fundamental investigations for improving industrial processes are necessarily devoted to all aspects of the reactivity in molten salts.

This "state-of-the-art" volume presents the new developments in fundamental research and in industrial applications of Molten Salts. Special attention is placed on recent developments of special topics such as Electrodeposition of Refractory Metals (Niobium, Molybdenum), and Organic Chemistry and Electrochemistry in Molten Salts.

Written to record and report on recent research progresses in the field of molten salts, Molten Salts Chemistry and Technology focuses on molten salts and ionic liquids for sustainable supply and application of materials.

Including coverage of molten salt reactors, electrodeposition, aluminium electrolysis, electrochemistry, and electrowinning, the text. Proceedings of the NATO Advanced Research Workshop on Refractory Metals in Molten Salts, Apatity, Russia, AugustThis NATO Advanced Research Workshop was devoted to a specialized topic in molten salt chemistry and was held in an exotic location (as far as Westerners were concerned) well within the Arctic Circle.

It nevertheless facilitated a fruitful. Get this from a library. Refractory metals in molten salts: their chemistry, electrochemistry, and technology.

[David H Kerridge; Evgeny G Polyakov; North Atlantic Treaty Organization. Scientific Affairs Division.;]. Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology: Kerridge, D H, Polyakov, Evgeny G: : LibrosFormat: Pasta dura. Electrochemistry of refractory metals in molten salts: Application for the creation of new and functional materials* Sergey A.

Kuznetsov Institute of Chemistry, Kola Science Center RAS, Apatity, Murmansk regionRussia Abstract: The processes of refractory metal complex electroreduction in transition from chlo.

Get this from a library. Refractory Metals in Molten Salts: Their Chemistry, Electrochemistry and Technology. [David H Kerridge; Evgeny G Polyakov] -- The principal researchers from East and West present the chemistry, electrochemistry and technology of refractory metals in molten salts, in particular the electrochemical deposition of these metals.

Head of the Laboratory: Tkachev Nikolay Konstantinovich DSc(Chemistry) Tel.: +7 () E-mail: N. [email protected] The Laboratory of Molten Salts is one of the oldest chemistry laboratories in the Ural branch of the Russian Academy of Sciences.

From the tothe laboratory was supervised by M.V. Smirnov, USSR State Prize Winner, Honored. Certain elements of the middle part of the periodic table (columns IVB, VB, and VIB), devoted to transition metals, are so-called refractory metals because of their high fusion temperature (above 2, °C), which have relevant consequences in particular on their thermoelastic properties, microhardness, and a correlative industrial use as tools for metal working at high.

Kerridge D.H., Polyakov E.G. (Eds.), Refractory Metals in Molten Salts (Their Chemistry, Electrochemistry and Technology), 3/53, Kluwer Academic Publishers (), p. The processes of refractory metal complex electroreduction in transition from chloride to chloride–fluoride and oxofluoride melts have been studied.

Decrease of the stage number of process complex electroreduction to metal and the possibility of a large number of electrons transferred in a single electrochemical stage on increasing the melt basicity has been .