Журналы →  Gornyi Zhurnal →  2012 →  №6 →  Назад

PROCESSING AND COMPLEX USING OF THE MINERAL RAW MATERIALS
Название Technology of selective flotation of pyrite copper-zinc ores
Автор Bocharov V. A., Ignatkina V. A., Khachatryan L. S., Makavetskas A. R., Bondarev A. A.
Информация об авторе

Moscow State Mining University (MGGU), Moscow, Russia:

Bocharov V. A., Professor, Doctor of Engineering Sciences

 

National University of Science and Technology "MISIS" (MISIS), Moscow, Russia

Ignatkina V. A., Assistant Professor, Candidate of Engineering Sciences

Khachatryan L. S., Leading Engineer, Candidate of Engineering Sciences

Makavetskas A. R., Senior Lecturer

 

Svyatogor JSC, Krasnouralsk, Russia:

Bondarev A. A., Chief Dresser, e-mail: aab@svg.ru

 

The following specialists participated in this work: Andreev S. N., Chief Engineer of Beneficiating Plant; Komarovskiy V. L., Head of a Researching Laboratory.

Реферат

This article gives the results of research of composition of twotype ores of Tarnersky deposit — pyrite copper-zinc ore and pyrrhotite-pyrite copper-zinc ore. Ores is distinguish by content of pyrrhotite and pyrite, as well as the various content of pyrite mineral associations. There is established that prevalence of pyrrhotite under pyrite in ratio 2:1 needs the long-term aeration before the copper flotation. It is stated together with application of sulfhydryl collectors, which are more selective than butyl xanthate. There is proposed new sulfhydryl collector M2, which is more selective to pyrrhotite. This collector allows to obtain conditioned zinc concentrate in ore cycle from bulk flotation tailings.

The work was held with the financial support of the grant of The Russian Foundation for Basic Research No. 11-05-00765 and Ministry of Science and Education of Russian Federation (contract No. 16.515.11.5037).

Ключевые слова Tarnersky deposit, copper-zinc ores, pyrite, pyrrhotite, aeration, bulk flotation, selection
Библиографический список

1. Miller J. D., Li J., Davidtz J. C., Vos F. Review of pyrrhotite flotation chemistry in the processing of PGM ores. Mineral engineering. 2005. Vol. 18. No. 8. pp. 855–865.

2. Abramov A. A. Pererabotka, obogashchenie i kompleksnoe ispolzovanie tverdykh poleznykh iskopaemykh (Processing, benefication and complex using of solid mineral resources). Moscow : Moscow State Mining University Publ., 2004. Vol. II. 509 p.

3. Chanturiya V. A., Nedosekina T. V., Mantsevich M. I. et al. Tsvetnye Metally – Non-ferrous metals. 2002. No. 10. pp. 19–21.

4. Chanturiya V. A., Nedosekina T. V. Tsvetnye Metally – Non-ferrous metals. 2006. No. 1. pp. 4–6.

5. Mantsevich M. I. Osnovnye puti sovershenstvovaniya flotatsii rud tyazhelykh tsvetnykh metallov : sbornik trudov (Basic methods of flotation improvement of ores of heavy non-ferrous metals : proceedings). Glintsvetmet, 2002. pp. 126–134.

6. Glinkin V. A. Obogashchenie Rud – Mineral processing. 1997. No. 4. pp. 22–24.

7. Puntsukova B. T. Povyshenie selektivnosti flotatsii kolchedannykh medno-tsinkovykh rud s ispolzovaniem sochetaniya ionogennnykh i neionogennykh sulfgidrilnykh sobirateley: avtoreferat dissertatsii … kandidata tekhnicheskikh nauk (Increasing of the flotation selectivity of sulfur copper-zinc ores with using the combination of ionogenic and nonionogenic sulphihydral collectors: thesis of inauguration of dissertation....of Candidate of Engineering Sciences). Moscow, 2010. 30 p.

8. Ignatkina V. A., Bocharov V. A. Gornyi Zhurnal – Mining Journal. 2010. No. 12. pp. 58–64.

9. Ignatkina V. A. Razvitie teorii selektivnosti deystviya sochetaniy sobirateley pri flotatsii trudnoobogatimykh rud tsvetnykh metallov: dissertatsiya....doktora tekhnicheskikh nauk (Development of an operation selectivity theory of collectors combination with a flotation of hard benefication ores of non-ferrous metals: dissertation....of Doctor of Engineering Sciences). Moscow, 2011. pp. 190–291

Language of full-text русский
Полный текст статьи Получить
Назад