Журналы →  Gornyi Zhurnal →  2014 →  №12 →  Назад

PROCESSING AND COMPLEX USAGE OF MINERAL RAW MATERIALS
Название Features of flotation of various copper sulfides and sphalerite contained in sulfide ore
Автор Ignatkina V. A., Bocharov V. A.
Информация об авторе

Author 1:
Name & Surname: Ignatkina V. A.
Company: Mining Institute of National University of Science and Technology MISiS (Moscow, Russia)
Work Position: Professor
Scientific Degree: Doctor of Engineering Sciences
Contacts: e-mail: woda@mail.ru


Author 2:
Name & Surname: Bocharov V. A.
Company: Mining Institute of National University of Science and Technology MISiS (Moscow, Russia)
Work Position: Professor
Scientific Degree: Doctor of Engineering Sciences

Реферат

 

The article reports studies on flotation of sphalerite of various modifications. The regular patterns found in absorption of oxide by iron-containing sphalerite and fine-crystalline pyrite in grinding in porcelain mills with modifiers in caustic soda environment are described. Oxide absorption by fine-crystalline pyrite decreases in the presence of sulphur-containing modifiers while iron-bearing sphalerite absorbs much oxide. Without secondary copper sulfides, sphalerite exhibits weaker floatability. Non-activated with copper cations, sphalerite is separated from chalcopyrite at рН ≥ 9÷10 likewise pyrite. Copper sulfides ground with sphalerite in an alkaline medium activate flotation ability of sphalerite in the following sequence: Cu2S ≥ CuS > Cu5FeS4 ≥ CuFeS2. Floatability of sphalerite activated by copper cations is enhanced with increase in the medium alkalinity. It is shown that the classical suppressor—cyanide—fails to ensure high performance of sphalerite separation in the presence of secondary copper sulfides. In a lime medium (when pH > 10), floatability of tennantite decreases in the sodium sulfide solution; the suppressing ability of sodium sulfide is much weaker in a soda environment. The authors make recommendations on more comprehensive utilization of process features of minerals under separation.
The studies were supported by the Russian Science Foundation, Project No. 14-17-00393.

 

Ключевые слова Sphalerite, secondary copper sulfides, pyrite, oxidation, flotation agents, alkalinity of medium, flotation technology
Библиографический список

1. Izoitko V. M. Tekhnologicheskaya mineralogiya i otsenka rud (Technological mineralogy and ore evaluation). Saint Petersburg : Nauka, 1997. 574 p.
2. Pshenichnyy G. N. Tekstury i struktury rud mestorozhdeniy kolchedannoy formatsii Yuzhnogo Urala (Textures and structures of sulfur formation deposit ores of Southern Urals). Moscow : Nauka, 1984. 208 p.
3. Pshenichnyy G. N. Usloviya formirovaniya rud mestorozhdeniy kolchedannoy formatsii Yuzhnogo Urala (Formation conditions of sulfur formation deposit ores of Southern Urals). Siluro-devonskiy vulkanizm Yuzhnogo Urala (Silurian-Devonian volcanism of Southern Urals). Ufa : Bashkirian Subsidiary of USSR Academy of Sciences, 1975. pp. 148–159.
4. Bocharov V. A., Ignatkina V. A. Tekhnologiya obogashcheniya poleznykh iskopaemykh (Mineral concentration technology). Moscow : “Ore and Metals” Publishing House, 2007. Vol. 1. 497 p.
5. Bocharov V. A., Ignatkina V. A. O roli zheleza i ego soedineniy v protsessakh obogashcheniya sulfidnykh rud tsvetnykh i blagorodnykh metallov (About the role of iron and its compounds in concentration processes of sulfide ores of non-ferrous and noble metals). Izvestiya vuzov. Tsvetnaya metallurgiya = Russian Journal of Non-Ferrous Metals. 2007. No. 5. pp. 4–12.
6. Ignatkina V. A., Bocharov V. A. O vzaimodeystvii komponentov flotatsionnoy sulfidnoy pulpy (About the interaction of flotation sulfide pulp components). Gornyi Zhurnal = Mining Journal. 2007. No. 12. pp. 78–83.
7. Mitrofanov S. I. Selektivnaya flotatsiya (Selective flotation). Moscow : Nedra, 1964. 583 p.
8. Shvedov D. A., Shorsher I. N. Vliyanie okisleniya na flotatsiyu sulfidnykh mineralov (Influence of oxidation on flotation of sulfide minerals). Sbornik nauchno-issledovatelskikh rabot po teorii i praktike flotatsii (Collection of scientific-research works on theory and practice of flotation). Leningrad : Mekhanobr. Iss. 2. pp. 5–27.
9. Kakovskiy I. A., Bogdanov O. S., Golman A. M. Sulfgidrilnye reagenty. Fiziko-khimicheskie osnovy teorii flotatsii (Sulfhydryl reagents. Physical-chemical basis of flotation theory). Moscow : Nauka, 1983. pp. 102–135.
10. Golikov A. A., Bocharov V. A. O vozmozhnosti tsementatsii medi iz tsianidnykh rastvorov pri izmelchenii (About the possibility of copper cementation from cyanide solutions with grinding). Tsvetnye Metally = Non-ferrous metals. 1969. No. 2. pp. 4–7.
11. Bagina L. I., Bocharov V. A. et al. Tekhnologiya obogashcheniya slozhnykh sulfidnykh rud Mezhozernogo mestorozhdeniya (Technology of concentration of complex sulfide ores of Mezhozernoe deposit). Byulleten “Tsvetnaya metallurgiya” = Bulletin “Non-ferrous Metallurgy”. 1971. No. 16. pp. 27–29.
12. Bogdanov O. S., Maksimov I. I., Podnek A. K., Yanis N. A. Teoriya i tekhnologiya flotatsii rud (Theory and technology of ore flotation). Moscow : Nedra, 1990.

Language of full-text русский
Полный текст статьи Получить
Назад