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Название Dialkyldithiophosphates surface activity and hydrophobic properties effects upon copper arsenic-containing ores flotation
DOI 10.17580/or.2016.04.05
Автор Ryaboy V. I., Shepeta E. D.
Информация об авторе

Mekhanobr-Orgsintez-Reagent Ltd (Russia):

Ryaboy V. I., Doctor of Engineering Sciences, General Director, frim@isc1.nw.ru

 

Mining Institute of the Far Eastern Branch of the Russian Academy of Sciences (Russia):
Shepeta E. D., Ph. D. in Engineering Sciences, Senior Researcher

Реферат

Dialkyldithiophosphates surface activity and hydrophobic properties effects upon copper arsenic-containing ores flotation were studied with a view to increase metallurgical results. Reagents’ surface activity on liquid-gas interface was determined by stalagmometric method and hydrophobic property — by a specially developed method, based on reagents’ ability to form low-solubility salts with zinc. It is shown, that in dialkyldithiophosphates sequence, with increase in surface activity and small difference in hydrophobic property, selectivity in copper and arsenic-containing minerals separation increases. With hydrophobic property increase, as could be expected, recovery of metals is increased. In separation of copper minerals from arsenopyrite, reagents with high selectivity, but low hydrophobic property do not permit to achieve required copper recovery even at high consumptions. This is explained in the first place by notable increase of circulating loads in feed of re-cleaning circuits. On the basis of surface activity and hydrophobic property regulation, specimen 2255 was obtained, a copper and precious metals collector of a higher effectiveness, if compared with dialkyldithiophosphate reagent IMA-I413p, conventionally used in the industry.

Ключевые слова Surface activity, stalagmometric method, hydrophobic property, complexometric titration, selectivity, recovery, chalcopyrite, arsenopyrite, copper, arsenic, zinc
Библиографический список

1. Tanabe K. Solid acids and bases. Tokyo, Kodansha; NY-London, Academic Press, 1970, 183 pp.
2. Ryaboy V. I. Upon surface reactions of flotation reagents with minerals on the basis of their donor—acceptor interaction. Obogashchenie Rud = Mineral Processing, 2008, No. 6, pp. 24–30.
3. 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, 1980, 431 pp.
4. Sutherland K. L., Wark I. W. Printsipy flotatsii (Principles of flotation). Moscow, Metallurgizdat, 1958, 411 pp.
5. Ryaboy V. I., Zhivankov G. V., Shenderovich V. A., Zlobin M. N., Zaskevich M. V. Improvement of diamond recovery in froth separation kimberlite ore with the help of flotation reagents. Proc. of the XX IMPC, Aachen, 1997, Vol. 3, pp. 437–445.
6. Kondratyev S. A. Estimation of reagents-collectors flotation activity. Obogashchenie Rud = Mineral Processing, 2010, No. 4, pp. 24–30.
7. Pan Lei, Jung Sunghwan, Yoon Rol-Hoan. A fundamental study on the collector in the kinetics of bubble—particle interaction. Int. J. of Mineral Processing, 2012, Vol. 106–109, pp. 37–41.
8. Pan Lei, Yoon Rol-Hoan. Direct measurement of hydrodynamic and surface forces in bubble—particle. Proc. of the XXVII IMPC, Santiago, Chile, 2014, Chap. 2, pp. 88.
9. Tan Y. H., Rafiei A. A., Elmahdy A., Finch J. A. Bubble size, gas holdup and bubble velocity profile of some alcohols and commercial frothers. Int. J. of Mineral Processing, 2013, Vol. 119, pp. 1–5.
10. Chu P., Finch J. Break-up in formation of small bubbles: Salts and frothers. Proc. of the XXVII IMPC, Santiago, Chile, 2014, Chap. 2, p. 95.
11. Adamson A. Fizicheskaya khimiya poverkhnostey (Physical Chemistry of Surfaces). Moscow, Mir, 1979, pp. 22–24.
12. Batler J. Ionnyye ravnovesiya (Ionic equilibrium). Leningrad, Khimiya, 1973, pp. 270–294.
13. Ryaboy V., Shepeta E., Kretov V., Golikov V. New dialkyldithiophosphates for the flotation of copper, gold and silver containing ores. Proc. of the XXVII IMPC, Santiago, Chile, 2014, Chap. 3, pp. 1–8.
14. Karimian A., Rezali B., Masoumi A. The effect of mixed collectors in the rougher flotation of sungun copper. Life Science Jornal, 2013, No. 10, pp. 268–272.

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