Запис Детальніше

Formation characteristics of Fe₃O₄ magnetic particles precipitated from aqueous solutions and their sorption properties

Vernadsky National Library of Ukraine

Переглянути архів Інформація
 
 
Поле Співвідношення
 
Title Formation characteristics of Fe₃O₄ magnetic particles precipitated from aqueous solutions and their sorption properties
 
Creator Odnovolova, A.M.
Sofronov, D.S.
Puzan, A.N.
Baumer, V.N.
Mateychenko, P.V.
Desenko, S.M.
Vovk, O.M.
Mozul', K.A.
Bryleva, E.Yu.
 
Subject Characterization and properties
 
Description Effect of temperature and iron concentration in solution on the phase composition, particle size, and magnetization was studied. It is shown that amount of the magnetite phase increases with the temperature increase. The magnetization slightly decreases with increase in the initial iron concentration. It is found that, regardless of the deposition conditions, spherical particles are formed, the average size of which varies within 7 to 15 nm. Comparison between the for removal efficiency and sorption capacity of the particles with the magnetite and hematite phase for cobalt was carried out. The sorption capacity of the particles is essentially independent of the phase composition and is about 18 mg/g for cobalt. For preparation of sorption material based on Fe₃O₄ magnetic particles, it is recommended to carry out the precipitation at the temperature of not lower than 80°C and the concentration of iron in solution of 0.15 to 0.3 M. The resulting particles comprise not less than 90 wt. % of magnetite phase and are characterized by magnetization of 65 to 70 A·m²/kg.
 
Date 2017-06-07T18:38:16Z
2017-06-07T18:38:16Z
2015
 
Type Article
 
Identifier Formation characteristics of Fe₃O₄ magnetic particles precipitated from aqueous solutions and their sorption properties / A.M. Odnovolova, D.S. Sofronov, A.N. Puzan, V.N. Baumer, P.V. Mateychenko, S.M. Desenko, O.M. Vovk, K.A. Mozul', E.Yu. Bryleva // Functional Materials. — 2015. — Т. 22, № 4. — С. 475-481. — Бібліогр.: 13 назв. — англ.
1027-5495
DOI: dx.doi.org/10.15407/fm22.04.475 untranslated
http://dspace.nbuv.gov.ua/handle/123456789/119634
 
Language en
 
Relation Functional Materials
 
Publisher НТК «Інститут монокристалів» НАН України