Collector for Copper-Arsenic Ore Flotation
https://doi.org/10.17073/2500-0632-2020-4-297-306
Abstract
About the Authors
V. I. RyaboyRussian Federation
St. Petersburg
E. D. Shepeta
Russian Federation
Khabarovsk
References
1. Khan G. A., Gabrielova L. I., Vlasova N. S. Flotation reagents and their application. Мoscow: Nedra Publ.; 1986. 271 p. (In Russ.)
2. Bogdanov O. S., Golman A. M., Kakovsky I. A. et al. Physico-chemical foundations of flotation theory. Мoscow: Nauka Publ.; 1983. 264 p. (In Russ.)
3. Konev V. A. Sulfide Flotation. Мoscow: Nedra Publ.; 1985. 262 p. (In Russ.)
4. Solozhenkin P. M., Kubak D. A., Petukhov V. N. Computer modeling of sulfhydryl compounds with hydroxyl radicals and prediction of their use as flotation agents. Vestnik of Nosov Magnitogorsk state technical university. 2016;14(1):26-33. (In Russ.)
5. Ore Beneficiation Handbook. Basic processes. Ed. Bogdanov O. S. Moscow: Nedra; 1983. P. 270-280.(In Russ.)
6. Lewis A. Tecflote-novel chemistry for new sulfide collectors. A selective collectors at natural pH for pyrite rich ores and ores containing sulfides, gold, silver and platinum group elements. In: XXIX IMPC. Moscow; 2018. P. 244.
7. Tercero N., Nagaraj D. R., Farinato R. A critical overview of dithiophosphinate and dithiophosphate interactions wits base metal sulfides and precious metals. Mining, Metal. and Explor. 2019;(1):99-110.
8. Solozhenkin P., Ibragimova O., Emelyanenko E., Yagudina J. Current understanding of thiol collector adsorption mechanismon tennantite using computational docking and FTIR-techniques. In: XXIX IMPC. Moscow; 2018. P. 20.
9. Miki H., Hirajima T., Muta Y., et al. Investigation of reagents for selective flotation on chalcopyrite and molybdenite. In: XXIX IMPC. Moscow; 2018. Р.663.
10. Karimain A., Rezaei B., Masoumi A. The effect mixed collectors in the rougher flotation of sungun copper. Life Science Journal. 2013;10(6s):268–272.
11. Solozhenkin P. M., Krausz S. Stady of sulfhydric flotation reagents isomery. In: XV Balkan Mineral Processing Congress. Bulgaria. 2013;(1):429-432.
12. Lui G., Xiao J., Yang X., Zhong H. A review of flotation collectors: fundamentals to practice. In: XXVIII IMPC. Canada, Quebec; 2016. P. 206.
13. New technologies to recover gold and silver from ores and concentrates incell-type column / P.N. Hreniuc, I. Pasca, O. Stevan, G. Badescu // XV Balkan Mineral Processing Congress. Bulgaria. 2013. Vol 1. P. 466–475.
14. Ryaboy V. I., Shepeta E. D. Effect of surface activation of dialkyldithiophosphate hydrophobizing properties on flotation of copper arsenic ores. Obogashchenie Rud. 2016;4(364):29-34. (In Russ.)
15. Ryaboy V. I., Shepeta E. D., Ryaboy I. V. Applying Reagents Containing the Thioamide Group in the Flotation of Copper-Arsenopyrite Ores. In: XXIX IMPC. Moscow; 2018. P. 692.
16. Samatova L. A., Ryaboy V. I., Shepeta E. D. Increasing recovery of nonferrous and precious metals using Aeroflot agents in flotation of scheelite-sulfide ores. Fiziko-tekhnicheskie problemy razrabotki poleznykh iskopaemykh. 2013;(6):151-157.
17. Ryaboy V.I., Levkovets S.E., Efremova G.A., Koval O.E. New dialkyldithiophosphate collector for silvercontaining ore flotation. Gornye nauki i tekhnologii = Mining Science and Technology (Russia). 2018;(3):45-53. DOI: 10.17073/2500-0632-2018-3-45-53 (In Russ.)
18. Kondratyev S. A. Estimation of Reagents-Collectors Flotation Activity. Обогащение руд. 2010;(4):24-30.
19. Pan Lei, Jung Sunghwan, Yoon Rol-Hoan. A fundamental study on the collector in the kinetics of bubbleparticle interaction. International Journal of Mineral Processing. 2012;37-41:106-109. DOI: 10.1016/j.minpro.2012.02.001
20. Pan Lei, Yoon Rol-Hoan. Direct measurement of hydrodynamic and surface forces in bubble-particle interactions. In: XXVII IMPC. Santiago, Chile. 2014;(1):88.
21. Tan Y. H., Rafiei A. A., et. al. Bubble size, gas holdup and bubble velocity profile of some alcohols and commercial frothers. International Journal of Mineral Processing. 2013;119:1-5.
22. Chu P., Finch J. Break-up in formation of small bubbles: Salts and frothers. In: XXVII IMPC. Santiago, Chile; 2014. Р. 95.
23. Kondratyev S. A., Ryaboy V. I. Influence of desorbed species of xanthates and dialkyldithiophosphates on their collecting ability. In: XXVIII IMPC. Quebec, Canada; 2016. P. 133.
24. Tan Y. H., Finch J. A. Surfactant structure-property relationship: Aliphatic alcohols and bubble rise velocity. In: XV Balkan Mineral Processing Congress. Bulgaria; 201. P. 423-428.
25. Ignatkina V. A., Dyachkov F. G., Bocharov V. A. Collecting properties of diisobutyl dithiophosphinate in sulfide minerals flotation from sulfide ore. Journal of mining science. 2013;49(5):795-802.
Review
For citations:
Ryaboy V.I., Shepeta E.D. Collector for Copper-Arsenic Ore Flotation. Mining Science and Technology (Russia). 2020;5(4):297-306. https://doi.org/10.17073/2500-0632-2020-4-297-306