Журналы →  Obogashchenie Rud →  2012 →  №4 →  Назад

BENEFICIATION TECHNOLOGY
Название Man-made titanates dressability estimation
Автор Zelenova I. М., Morozov А. А.
Информация об авторе

Baikov Institute of Metallurgy and Materials Science of the Russian Academy of Sciences (Russia):

Zelenova I. M., Researcher, irizeleno@yandex.ru

Morozov A. A., Leading Researcher, morozov@imet.ac.ru

Реферат

Reduction electrosmelting of titanium-magnetite concentrates produces titanium slag with TiO2 content varying within 30–60 %, depending on feed material composition. Main titanium phases in slag are manmade titanates — anosovite and rutile, the latter being formed as a result of oxidation of anosovite. Slag contains 40–60 % of manmade titanates, that may be separated into concentrates, thereby increasing TiO2 content in final product up to 75–95 %. Pyrometallurgical and hydrometallurgical technologies of man-made rutile production from ilmenite concentrates are known. In order to increase TiO2 content in titanium-magnetite concentrates, produced by conventional oredressing techniques, to 80–90 %, additional studies of slag phases separation conditions and man-made titanates' physicochemical properties are required. Physical characteristics of anosovite slag phases were determined on mixed samples of anosovite and oxide glass, the latter being the slag «rock» phase. It is shown, that anosovite may be separated from mixture in heavy liquid, by means of magnetic separation and flotation. Through technological experiments in processing of anosovite and rutilized slag, produced from the Khibinskoye and Gremyakha-Vyrmes concentrates, conducted in heavy liquid, by means of magnetic and electrical separation, as well as flotation, it is shown, that man-made titanates, with regard to processing properties, are similar to natural titanium minerals, and may be separated into highgrade titanium concentrates with 75–90 % titanium dioxide content to be utilized in titanium production.

Ключевые слова Slag, titanates, man-made rutile, anosovite, phases separation, concentration, separation, floatability, physicochemical properties
Библиографический список

1. Reznichenko V. A., Averin V. V., Olyunina T. V. Titanaty. Nauchnyye osnovy, tekhnologiya, proizvodstvo  (Titanates. Scientific bases, technology, and production). Moscow, Nauka, 2010, 258 p.

2. Reznichenko V. A., Menyaylova G. A. Iskusstvennyye titanaty (The artificial titanates). Moscow, Nauka, 1977, 130 p.

3. Vasyutinskiy N. A. Titanovyye shlaki (Titanic slags). Moscow, Metallurgiya, 1972, pp. 101–104, 114–117.

4. Gerasimova L. G., Nikolayev A. I., Maslov M. V. Titan, 2011, No. 1 (31), pp. 4–8.

5. Pat. 2102510 Russian Federation.

6. Zelenova I. M., Sadykhov G. B., Reznichenko V. A. Tsvetnye Metally — Non-Ferrous Metals, 2000, No. 8, pp. 116–120.

7. Reznichenko V. A., Morozov A. A., Zelenova I. M. Titan, 2009, No. 2.

8. Nayfonov T. B. Flotatsiya titanovykh mineralov pri obogashchenii kompleksnykh titansoderzhashchikh rud (Flotation of titanic minerals in the processing of complex titaniferous ores). Leningrad, Nauka, 1979, pp. 51–75, 78–99.

9. Abramov A. A. Flotatsionnyye metody obogashcheniya (Flotation methods of mineral processing). Moscow, Moscow State Mining University, 2008, pp. 462–465.

Language of full-text русский
Полный текст статьи Получить
Назад