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ویرایش: سری: ISBN (شابک) : 9780471773924, 9780470947777 ناشر: سال نشر: 2010 تعداد صفحات: 447 زبان: English فرمت فایل : PDF (درصورت درخواست کاربر به PDF، EPUB یا AZW3 تبدیل می شود) حجم فایل: 14 مگابایت
در صورت تبدیل فایل کتاب Molten Salts and Ionic Liquids: Never the Twain? به فرمت های PDF، EPUB، AZW3، MOBI و یا DJVU می توانید به پشتیبان اطلاع دهید تا فایل مورد نظر را تبدیل نمایند.
توجه داشته باشید کتاب نمکهای مذاب و مایعات یونی: هرگز تواین؟ نسخه زبان اصلی می باشد و کتاب ترجمه شده به فارسی نمی باشد. وبسایت اینترنشنال لایبرری ارائه دهنده کتاب های زبان اصلی می باشد و هیچ گونه کتاب ترجمه شده یا نوشته شده به فارسی را ارائه نمی دهد.
The editors of this book, recognising that there was so much knowledge, both empirical and theoretical, which can be passed from the molten salt community to the ionic liquid community, and vice versa, organised a landmark meeting in Tunisia, designed to bridge the gap and heal the rift. Leaders from both communities met for a week for a mutual exchange, with a high tutorial content intermixed with cutting edge findings. This volume is a condensate of the principal offerings of that week, and emphasises the success which was achieved. Indeed, four future biannual meetings, under the title of “EUCHEM Conferences on Molten Salts and Ionic Liquids”, have now been planned as a direct result of this meeting of minds.
Topics discussed in this volume include structure, dynamics,
electrochemistry, interfacial and thermodynamic properties,
spectroscopy, synthesis, and theoretical studies.
Experimental and theoretical methods for investigating these
data are elaborated, as are techniques for data collection
and analysis. This book represents the first serious
discussion on the transfer of these methods and techniques
between the differing temperature regimes, and is a major
contribution to the future of both fields.Content:
Chapter 1 Ionic Liquids in the Temperature Range 150?1500 K:
Patterns and Problems (pages 1–24): C. Austen Angell
Chapter 2 Conductivities of Ionic Liquid Mixtures with
Organic Electrolyte Solutions (pages 25–36): D. Bansal, F.
Croce, J. Swank and M. Salomon
Chapter 3 How Hydrophilic Ionic Liquids Behave in Aqueous
Solutions (pages 37–48): Marijana Blesic, Kenneth R. Seddon,
Natalia V. Plechkova, Nimal Gunaratne, Antonio Lopes and Luis
Paulo N. Rebelo
Chapter 4 Mass Spectrometric Studies on Ionic Liquid
Aggregates (pages 49–61): R. Lopes da Silva, I. M. Marrucho,
J. A. P. Coutinho and Ana M. Fernandes
Chapter 5 Study of Sm?Al Alloy Formation in the Molten
LiCl?KCl Eutectic (pages 63–74): G. De Cordoba and C.
Caravaca
Chapter 6 Alumina Solubility and Electrical Conductivity in
Potassium Cryolites with Low Cryolite Ratio (pages 75–84):
Alexander Dedyukhin, Alexei Apisarov, Olga Tkatcheva, Yurii
Zaikov and Alexander Redkin
Chapter 7 Ionic Liquids as Solvents for the Variable
Temperature Electrodeposition of Metals and Semiconductors: A
Short Introduction (pages 85–99): S. Zein El Abedin and F.
Endres
Chapter 8 Predicting the Thermodynamic Behaviour of Water +
Ionic Liquids Systems Using COSMO?RS (pages 101–121): M. G.
Freire, L. M. N. B. F. Santos, I. M. Marrucho and J. A. P.
Coutinho
Chapter 9 Metallic Inert Anodes for Aluminium Electrolysis
(pages 123–131): I. Galasiu, R. Galasiu and C.
Nicolescu
Chapter 10 The Behaviour of Phosphorus and Sulfur in
Cryolite?Alumina Melts: Thermodynamic Considerations (pages
133–141): I. Galasiu, R. Galasiu, C. Nicolescu, J. Thonstad
and G. M. Haarberg
Chapter 11 Ionic Liquid?Ionic Liquid Biphasic Systems (pages
143–150): Dirk Gerhard, Friedrich Fick and Peter
Wasserscheid
Chapter 12 Recent Developments in the Reprocessing of Spent
Fuel by Catalyst Enhanced Molten Salt Oxidation (CEMSO)
(pages 151–167): Trevor R. Griffiths, Vladimir A. Volkovich
and W. Robert Carper
Chapter 13 Plasma?Induced Molten Salt Electrolysis to Form
Functional Fine Particles (pages 169–180): Yasuhiko Ito,
Tokujiro Nishikiori and Takuya Goto
Chapter 14 Liquid Electrolytes: Their Characterisation,
Investigation, and Diverse Applications (pages 181–192):
Keith E. Johnson
Chapter 15 Protection of a Microstructured Molybdenum Reactor
from High Temperature Oxidation by Electrochemical Deposition
Coatings in Molten Salts (pages 193–217): S. A. Kuznetsov, A.
R. Dubrovskiy, S. V. Kuznetsova, E. V. Rebrov, M. J. M. Mies,
M. H. J. M. de Croon and J. C. Schouten
Chapter 16 Molten Salt Synthesis of LaA1O3 Powder at Low
Temperatures (pages 219–228): Zushu Li, Shaowei Zhang and
William Edward Lee
Chapter 17 Accurate Measurement of Physicochemical Properties
on Ionic Liquids and Molten Salts (pages 229–263): V. M. B.
Nunes, M. J. V. Lourenco, F. J. V. Santos, M. L. S. M. Lopes
and C. A. Nieto de Castro
Chapter 18 Molten Salt Physics and Chemistry in the Current
Development of Spent Nuclear Fuel Management (pages 265–278):
Toru Ogawa, Kazuo Minato and Yasuo Arai
Chapter 19 An Organic Chemist's Perspective on High
Temperature Molten Salts and Room Temperature Ionic Liquids
(pages 279–299): Richard M. Pagni
Chapter 20 Raman Spectroscopy of High Temperature Melts
(pages 301–340): G. N. Papatheodorou, A. G. Kalampounias and
S. N. Yannopoulos
Chapter 21 Thermodynamic Properties of LnI3?MI Binary Systems
(Ln = La or Nd; M = K, Rb, or Cs) (pages 341–353): Leszek
Rycerz, M. F. Butman and Marcelle Gaune?Escard
Chapter 22 Materials Informatics for Molten Salts Chemistry
(pages 355–366): Changwon Suh, Slobodan Gadzuric, Marcelle
Gaune?Escard and Krishna Rajan
Chapter 23 A Novel Ionic Liquid?Polymer Electrolyte for the
Advanced Lithium Ion Polymer Battery (pages 367–388): Daisuke
Teramoto, Ryo Yokoyama, Hiroshi Kagawa, Tsutomu Sada and
Naoya Ogata
Chapter 24 Solubility of A12O3 in NaCl?KCl Based Molten Salt
System (pages 389–395): Y. Xiao, C. R. Mambote, G. A. Wierink
and A. van Sandwijk
Chapter 25 Molten Salt Synthesis of Ceramic Materials (pages
397–406): Shaowei Zhang, D. D. Jayaseelan, Zushu Li and
William Edward Lee
Chapter 26 Fuel Cell and Electrolysis Studies with Dual Phase
Proton and Oxide Ion Conduction (pages 407–417): Bin Zhu, S.
Li, X. L. Sun and J. C. Sun