Nanoparticle Size Control Using a Rotating Disk Anode for Plasma‐Induced Cathodic Discharge Electrolysis (English)
- New search for: Tokushige, M.
- New search for: Nishikiori, T.
- New search for: Ito, Y.
- New search for: Gaune‐Escard, Marcelle
- New search for: Haarberg, Geir Martin
- New search for: Tokushige, M.
- New search for: Nishikiori, T.
- New search for: Ito, Y.
In:
Molten Salts Chemistry and Technology
;
133-141
;
2014
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ISBN:
- Article/Chapter (Book) / Electronic Resource
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Title:Nanoparticle Size Control Using a Rotating Disk Anode for Plasma‐Induced Cathodic Discharge Electrolysis
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Contributors:Gaune‐Escard, Marcelle ( editor ) / Haarberg, Geir Martin ( editor ) / Tokushige, M. ( author ) / Nishikiori, T. ( author ) / Ito, Y. ( author )
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Published in:Molten Salts Chemistry and Technology ; 133-141
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Publisher:
- New search for: John Wiley & Sons, Ltd
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Place of publication:Chichester, UK
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Publication date:2014-05-23
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Size:9 pages
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ISBN:
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DOI:
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Type of media:Article/Chapter (Book)
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Type of material:Electronic Resource
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Language:English
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Keywords:
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Source:
Table of contents eBook
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 1
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Formation of CO2 and CO on Carbon Anodes in Molten SaltsThonstad, J. / Sandnes, E. et al. | 2014
- 9
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Interaction of Carbon with Molten Salts‐Chloride‐Carbonate MeltsFray, D. et al. | 2014
- 17
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Anode Processes on Carbon in Chloride Melts with Dissolved OxidesSandnes, E. / Haarberg, G. M. / Martinez, A. M. / Osen, K. S. / Tunold, R. et al. | 2014
- 27
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Aluminium Electrolysis with Inert Anodes and Wettable Cathodes and with Low Energy ConsumptionGalasiu, I. / Galasiu, R. et al. | 2014
- 39
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Influence of the Sulfur Content in the Carbon Anodes in Aluminum Electrolysis—a Laboratory StudyPietrzyk, S. / Thonstad, J. et al. | 2014
- 53
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Aluminum Electrolysis in an Inert Anode CellTkacheva, O. / Spangenberger, J. / Davis, B. / Hryn, J. et al. | 2014
- 71
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Effect of Phosphorus Impurities on the Current Efficiency for Aluminium Deposition from Cryolite‐Alumina Melts in a Laboratory CellMeirbekova, R. / Haarberg, G. M. / Sævarsdottir, G. et al. | 2014
- 77
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Influence of LOI on Alumina Dissolution in Molten Aluminum ElectrolyteYang, Y. / Gao, B. / Hu, X. / Wang, Z. / Shi, Z. et al. | 2014
- 85
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The Electrolytic Production of Al‐Cu‐Li Master Alloy by Molten Salts ElectrolysisGao, B. / Wang, S. / Qu, J. / Shi, Z. / Hu, X. / Wang, Z. et al. | 2014
- 95
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Transference Numbers in Na(K) Cryolite‐Based SystemsHíveš, J. / Fellner, P. / Thonstad, J. et al. | 2014
- 103
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125 years of the Hall‐Héroult Process—What Made It a Success?Lorentsen, O.‐A. et al. | 2014
- 113
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Ionic Conduction of Oxygen and Calciothermic Reduction in Molten CaO‐CaCl2Suzuki, R. O. / Yamada, D. / Osaki, S. / Descallar‐Arriesgado, R. F. / Kikuchi, T. et al. | 2014
- 123
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Effects of Temperature and Boron Concentration of a Boron‐Doped Diamond (BDD) Electrode on NF3 Current Efficiency, and Stability of BDD Electrode in Molten NH4F·2HFTasaka, A. / Iida, Y. / Shiono, T. / Uno, M. / Nishiki, Y. / Furuta, T. / Saito, M. / Inaba, M. et al. | 2014
- 133
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Nanoparticle Size Control Using a Rotating Disk Anode for Plasma‐Induced Cathodic Discharge ElectrolysisTokushige, M. / Nishikiori, T. / Ito, Y. et al. | 2014
- 143
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Cathodic Phenomena in Li Electrolysis in LiCl‐KCl MeltTakenaka, T. / Morishige, T. / Umehara, M. et al. | 2014
- 149
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Ionic Conductivity and Molecular Structure of a Molten xZnBr2‐(1−x)ABr (A = Li, Na, K) SystemOhkubo, T. / Tahara, T. / Takahashi, K. / Iwadate, Y. et al. | 2014
- 159
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Molten Salts: from First Principles to Material PropertiesSalanne, M. / Madden, P. A. / Simon, C. et al. | 2014
- 163
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Different Phases of Fluorido‐TantalatesBoča, M. / Kubíková, B. / Šimko, F. / Gembický, M. / Moncol, J. / Jomová, K. et al. | 2014
- 171
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Molecular Dynamics Simulation of SiO2 and SiO2‐CaO MixturesJacob, A. / Gray‐Weale, A. / Masset, P. J. et al. | 2014
- 181
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Thermodynamic Investigation of the BaF2‐LiF‐NdF3 SystemBerkani, M. / Gaune‐Escard, M. et al. | 2014
- 193
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The Stable Complex Species in Melts of Alkali Metal Halides: Quantum‐Chemical ApproachKremenetsky, V. G. / Kremenetskaya, O. V. / Kuznetsov, S. A. et al. | 2014
- 203
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Molecular and Ionic Species in Vapor over Molten Ytterbium BromidesButman, M. F. / Sergeev, D. N. / Motalov, V. B. / Kudin, L. S. / Rycerz, L. / Gaune‐Escard, M. et al. | 2014
- 213
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Lithium Hydride Solubility in Molten ChloridesMasset, P. J. et al. | 2014
- 219
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In Situ Experimental Approach of Speciation in Molten Fluorides: A Combination of NMR, EXAFS, and Molecular DynamicsBessada, C. / Pauvert, O. / Maksoud, L. / Zanghi, D. / Sarou‐Kanian, V. / Gobet, M. / Rollet, A. L. / Rakhmatullin, A. / Salanne, M. / Simon, C. et al. | 2014
- 229
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NMR Study of Melts in the System Na3AlF6‐Al2O3‐AlPO4Rakhmatullin, A. / Keppert, M. / Haarberg, G. M. / Šimko, F. / Bessada, C. et al. | 2014
- 235
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Structure and Dynamics of Alkali and Alkaline Earth Molten Fluorides by High‐Temperature NMR and Molecular DynamicsMoussaed, G. / Sarou‐Kanian, V. / Gobet, M. / Salanne, M. / Simon, C. / Rollet, A.‐L. / Bessada, C. et al. | 2014
- 243
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Speciation of Niobium in Chloride Melts: An Electronic Absorption Spectroscopic StudyPolovov, I. B. / Brevnova, N. P. / Volkovich, V. A. / Chernyshov, M. V. / Vasin, B. D. / Rebrin, O. I. et al. | 2014
- 257
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Electrode Processes in Vanadium‐Containing Chloride MeltsPolovov, I. B. / Tray, M. E. / Chernyshov, M. V. / Volkovich, V. A. / Vasin, B. D. / Rebrin, O. I. et al. | 2014
- 283
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Electrodeposition of Lead from Chloride MeltsHaarberg, G. M. / Owe, L.‐E. / Qin, B. / Wang, J. / Tunold, R. et al. | 2014
- 287
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Electrodeposition of Ti from K2TiF6 in NaCl‐KCl‐NaF MeltsSequeira, C.A.C. et al. | 2014
- 295
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Effect of Electrolysis Parameters on the Coating Composition and Properties during Electrodeposition of Tungsten Carbides and Zirconium DiboridesMalyshev, V. / Shakhnin, D. / Gab, A. / Gaune‐Escard, M. / Astrelin, I.M. et al. | 2014
- 303
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Galvanic Coatings of Molybdenum and Tungsten Carbides from Oxide Melts: Electrodeposition and Initial Stages of NucleationMalyshev, V. / Shakhnin, D. / Gab, A. / Gaune‐Escard, M. / Astrelin, I. M. et al. | 2014
- 319
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Electrolytic Production of Matrix Coated Fibres for Titanium Matrix CompositesGussone, J. G. / Hausmann, J. M. et al. | 2014
- 329
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Electrochemical Synthesis of Double Molybdenum CarbidesDolmatov, V.S. / Kuznetsov, S.A. / Rebrov, E.V. / Schouten, J.C. et al. | 2014
- 339
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Electrodeposition of Aluminium from Ionic LiquidsBabushkina, O. / Lomako, E. / Wehr, J. / Rohr, O. et al. | 2014
- 351
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Electrolytic Synthesis of (CF3)3N from a Room Temperature Molten Salt of (CH3)3N·mHF with BDD ElectrodeTasaka, A. / Ikeda, K. / Osawa, N. / Saito, M. / Nishki, M. Uno, Y / Furuta, T. / Inaba, M. et al. | 2014
- 359
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Electrodeposition of Reactive Elements from Ionic LiquidsBund, A. / Ispas, A. / Ivanov, S. et al. | 2014
- 365
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Electrodeposition of Magnesium in Ionic Liquid at 150‐200 °CGao, B. / Nohira, T. / Hagiwara, R. / Wang, Z. et al. | 2014
- 373
-
Room‐Temperature Ionic Liquid‐Based SEM/EDX Techniques for Biological Specimens and in situ Electrode Reaction ObservationTsuda, T. / Mochizuki, E. / Kishida, S. / Nemoto, N. / Ishigaki, Y. / Kuwabata, S. et al. | 2014
- 389
-
New Routes for the Production of Reactor Grade ZirconiumXiao, Y. / Sandwijk, A. van / Yang, Y. / Laging, V. et al. | 2014
- 403
-
NMR and EXAFS Investigations of Lanthanum Fluoride Solubility in Molten LiF‐ZrF4‐LaF3 Mixture: Application in Molten Salts ReactorMaksoud, L. / Gobet, M. / Zanghi, D. / Matsuura, H. / Numakura, M. / Pauvert, O. / Bessada, C. et al. | 2014
- 411
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Actinides Oxidative Back‐Extraction from Liquid Aluminium, in Molten Chloride MediaMendes, E. / Conocar, O. / Laplace, A. / Douyère, N. / Lacquement, J. / Miguirditchian, M. et al. | 2014
- 421
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Formation of Uranium Fluoride Complex by Addition of Fluoride Ion to Molten NaCl‐CsCl MeltsUehara, A. / Shirai, O. / Fujii, T. / Nagai, T. / Sato, N. / Yamana, H. et al. | 2014
- 427
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Corrosion of Austenitic Stainless Steels in Chloride MeltsAbramov, A. V. / Polovov, I. B. / Volkovich, V. A. / Rebrin, O. I. et al. | 2014
- 449
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Pulsed Neutron Diffraction Study of Molten CsCl‐NaCl‐YCl3: Approaches from Fundamentals to Pyrochemical ReprocessingIwadate, Y. / Ohkubo, T. / Michii, T. / Matsuura, H. / Kajinami, A. / Takase, K. / Ohtori, N. / Umesaki, N. / Fujita, R. / Mizuguchi, K. et al. | 2014
- 459
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Local Structural Analyses of Molten Thorium Fluoride in Mono‐ and Divalent Cationic FluoridesNumakura, M. / Sato, N. / Bessada, C. / Nezu, A. / Akatsuka, H. / Matsuura, H. et al. | 2014
- 467
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Electrodeposition of Uranium by Pulse Electrolysis in Molten Fluoride SaltsStraka, M. / Lisý, F. / Szatmáry, L. et al. | 2014
- 475
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Quantitative Analysis of Lanthanides in Molten Chloride by Absorption SpectrophotometryUda, T. / Fujii, T. / Fukasawa, K. / Uehara, A. / Kinoshita, K. / Koyama, T. / Yamana, H. et al. | 2014
- 481
-
Formation of Rare Earth Phosphates in NaCl‐2CsCl‐Based MeltsVolkovich, V. A. / Ivanov, A. B. / Yakimov, S. M. / Polovov, I. B. / Vasin, B. D. / Chukin, A. V. / Schtolts, A. K. / Griffiths, T. R. et al. | 2014
- 489
-
A Novel Method for Trapping and Studying Volatile Molybdenum(V) in Alkali Chloride Melts: Implications for Treating Spent Nuclear FuelVolkovich, V. A. / Polovov, I. B. / Kamalov, R. V. / Vasin, B. D. / Griffiths, T. R. et al. | 2014
- 499
-
Electrochemical Measurement of Diffusion Coefficient of U in Liquid CdMurakami, T. / Kurata, M. / Sakamura, Y. / Koyama, T. / Akiyama, N. / Kitawaki, S. / Nakayoshi, A. / Fukushima, M. et al. | 2014
- 507
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Reduction of Uranyl(VI) Species in Alkali Chloride MeltsVolkovich, V. A. / Aleksandrov, D. E. / Maltsev, D. S. / Vasin, B. D. / Polovov, I. B. / Griffiths, T. R. et al. | 2014
- 521
-
Molten Salt Electrochemical Processes Directed Toward a Low Carbon SocietyIto, Y. et al. | 2014
- 535
-
Conductive Property of Molten Carbonate/Ceria‐Based Oxide (Ce0.9Gd0.1O1.95) for Hybrid ElectrolyteMizuhata, M. / Ohashi, T. / Deki, S. et al. | 2014
- 543
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Recent Progress in Alkali Nitrate/Nitrite Developments for Solar Thermal Power ApplicationsBauer, T. / Laing, D. / Tamme, R. et al. | 2014
- 555
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Rechargeable Alkaline Metal Batteries of Amide Salt Electrolytes Melting at Low to Middle TemperaturesHagiwara, R. / Nohira, T. / Numata, K. / Koketsu, T. / Yamamoto, T. / Fujimori, T. / Ishibashi, T. / Fukunaga, A. / Sakai, S. / Nitta, K. et al. | 2014
- 563
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Electrochemistry of Anodic Reaction in Molten Salt Containing LiOH for Lithium–Hydrogen Energy CycleSato, Y. / Takeda, O. / Li, M. / Hoshi, M. et al. | 2014
- 569
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Electrorefining of Silicon by the Three‐Layer Principle in a CaF2‐Based ElectrolyteOlsen, E. / Rolseth, S. / Thonstad, J. et al. | 2014
- 577
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Electrochemical Behaviour of Light Lanthanides in Molten Chlorides with FluoridesShimohara, Y. / Nezu, A. / Numakura, M. / Akatsuka, H. / Matsuura, H. et al. | 2014
- 581
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Using Molten Fluoride Melts for Silicon ElectrorefiningTaxil, P. / Massot, L. / Bieber, A.L. / Gibilaro, M. / Cassayre, L. / Chamelot, P. et al. | 2014
- 597
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Index| 2014
- i
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Frontmatter| 2014