Excitation Frequencies of the Effects of Selective Drift of Solvated Cations in Moving Salts Solution; MATEC Web of Conferences; Vol. 96 : Fundamental Aspects of Rare-Earth Elements Exploration, Mining and Separation and Modern Materials Engineering (REE-2016)

Dettagli Bibliografici
Parent link:MATEC Web of Conferences
Vol. 96 : Fundamental Aspects of Rare-Earth Elements Exploration, Mining and Separation and Modern Materials Engineering (REE-2016).— 2017.— [00012, 5 p.]
Ente Autore: Томский политехнический университет
Altri autori: Shamanin I. V. Igor Vladimirovich, Kazaryan M. A. Mishik Ayrazatovich, Gofman V. N. Valery Nikolaevich, Timchenko S. N. Sergey Nikolaevich, Poberezhnikov A. D. Andrey Dmitrievich, Tuksov I. V. Iljya Vladimirovich
Riassunto:Title screen
Interaction of external electric field with free and bound charges in the salt solution volume in polar dielectric fluid was considered and the equation describing ion oscillations relative to solvent molecules was obtained. Fundamental frequencies of the solvation shell relative to the ion in different approximations describing the system: ion - solvation shell were evaluated. The results of comparison with the experiment pointed out that the model, in which the solvated ion is considered as a spherical rotator formed by the solvent molecules layer bordering with the external solvation shell, is the most appropriate. It provides an opportunity of development of new technologies for extraction of rare earth elements.
Lingua:inglese
Pubblicazione: 2017
Soggetti:
Accesso online:https://doi.org/10.1051/matecconf/20179600012
http://earchive.tpu.ru/handle/11683/45795
Natura: Elettronico Capitolo di libro
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=654148
Descrizione
Riassunto:Title screen
Interaction of external electric field with free and bound charges in the salt solution volume in polar dielectric fluid was considered and the equation describing ion oscillations relative to solvent molecules was obtained. Fundamental frequencies of the solvation shell relative to the ion in different approximations describing the system: ion - solvation shell were evaluated. The results of comparison with the experiment pointed out that the model, in which the solvated ion is considered as a spherical rotator formed by the solvent molecules layer bordering with the external solvation shell, is the most appropriate. It provides an opportunity of development of new technologies for extraction of rare earth elements.
DOI:10.1051/matecconf/20179600012