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Название Investigation of regularities and full-scale testings of flotation classification of ores and tails
DOI 10.17580/tsm.2016.06.03
Автор Morozov Yu. P., Abdykirova G. Zh., Faley E. A., Dyusenova S. B.
Информация об авторе

Ural State Mining University, Ekaterinburg, Russia:

Yu. P. Morozov, Professor of a Chair of Mineral Dressing, e-mail: tails2002@inbox.ru

 

Center of Earth Sciences, Metallurgy and Ore Benefication, Almaty, Kazakhstan:

G. Zh. Abdykirova, Leading Researcher of Laboratory of Flotation Reagents and Dressing

S. B. Dyusenova, Engineer (Master's Degree Student)

 

LLC “Tails CO”, Ekaterinburg, Russia:

E. A. Faley, Engineer of Scientific-Research Department

Реферат

Flotation combining with other dressing processes in a single unit is a promising way of increasing the mineral dressing efficiency. According to this, the flotation classification method was developed, combining flotation and hydraulic classification in the unit. The pulp aeration effect on hydraulic classification characteristics in flotation classifier was investigated. Presence of air bubbles in the hydraulic classification zone tends to equalize the flow velocity over the unit area, and increases the separation size and classification efficiency. The mechanism of the effect of air bubbles on the hydraulic classification characteristics in the flotation classifier is described. It consists in the increase the flow rates by reducing the pulp cross-section area through the present air bubbles and in the lifting of particles with air bubbles through their physical and physical-chemical interaction. The optimal condition for the allocation of flotation classification sand is to ensure the mode of sand unloading from the bed (solid mass fraction 55–60%), formed at the flotation classifier bottom. This paper also presents the examples of full-scale testing of these classifiers on the copper-zinc concentrating plants. The use of flotation classification in closed ore grinding circuit before the flotation allowed obtaining a significant amount of conditioned copper concentrate in the froth product.

Ключевые слова Flotation classification, pulp aeration, classification efficiency, separation size, solid mass fraction in sands, closed grinding circuit, full-scale testing
Библиографический список

1. Plaksin I. N., Shakhmatov S. S. O primenenii flotootsadki dlya obogashcheniya rud (About the application of mat flotation for ore dressing). Tsvetnye Metally = Non-ferrous metals. 1965. No. 4. pp. 18–21.
2. Komlev A. M., Ruchkin I. I., Viduetskiy M. G. Novyy flotogravitatsionnyy apparat (New flotation gravitation apparatus). Obogashchenie Rud = Mineral processing. 1980. No. 4. pp. 33–37.
3. Meshcheryakov N. F., Knaus O. M. Flotogravitatsionnoe obogashchenie v vintovykh separatorakh (Flotation gravitation dressing in spiral separators). Tsvetnaya metallurgiya = Non-ferrous metallurgy. 1963. No. 19. pp. 18, 19.
4. Meshcheryakov N. F. Flotoklassifikatsiya kak sposob obogashcheniya rud (Flotation classification as a method of ore dressing). Gornyi Zhurnal = Mining Journal. 1962. No. 9. pp. 62–64.
5. Lamberg P., Bernal L. Flash Flotation – from pilot size to full size installation at Esperanza. V International Mineral Processing Seminar: Proceedings of Procemin 2008. 2008. pp. 251–257.
6. Curry D., Cooper M., Rubenstein J., Shouldice T., Young M. The Right Tools in the Right Place: How Xstrata Nickel Australasia Increased Ni throughput at its Cosmos Plant. Proceedings of the 42nd Annual Canadian Mineral Processors Conference. Ottawa, Canada, January 19 to 21, 2010. pp. 215–234.
7. Chadwick J. Golden horizons. International Mining. 2011. May. p. 68–76.
8. Aksenov B. V., Galyutin A. Yu., Babuk A. V. Protsess peskovoy flotatsii kak chast universalnoy skhemy obogashcheniya, ustoychivoy k izmeneniyam svoystv pererabatyvaemykh rud (Process of sand flotation as a part of universal dressing scheme, stable to the changes of the properties of the processed ores). Zolotodobyvayushchaya promyshlennost = Gold-bearing industry. 2009. February, No. 1 (31). pp. 4–9.
9. Lavrinenko A. A. Sovremennye flotatsionnye mashiny dlya mineralnogo syrya (Modern flotation machines for mineral raw materials). Gornaya tekhnika = Mining Engineering. 2008. pp. 186–195.
10. Panshin A. M., Maltsev V. A., Viduetskiy M. G., Purgin A. P., Garifulin I. F. Use of pneumatic columnar flotation machines in the process of concentration of refractory copper-zinc ores, copper ores and zinc cakes. Non-ferrous Metals. 2014. No. 1. pp. 3–8.
11. Zhang Yi, Wen Sh., Liu D., Cao Q. Application of flotation column on flotation of copper ore. Advanced Materials Research. 2013. Vol. 634/638. pp. 3289–3293.
12. Plinio Eduardo Praes, Rodrigo Oscar de Albuquerque, Antonio Furquim Oliveira Luz. Recovery of Iron Ore Tailings by Column Flotation. Journal of Minerals and Materials Characterization and Engineering. 2013. No. 1. pp. 212–216.

13. Kozlov V. A., Pikalov M. F. Sushchestvuyushchie flotatsionnye tekhnologii dlya obogashcheniya ugolnogo shlama (Existing flotation technologies for coal slime dressing). Ugol = Russian coal. 2014. February. pp. 65–69.
14. Han O.-H., Kim M.-K., Kim B.-G., Subasinghe N., Park Ch.-H. Fine coal beneficiation by column flotation. Fuel Processing Technology. 2014. Vol. 126, October. pp. 49–59.
15. Rubinshteyn Yu. B., Linev B. I. Kolonnaya flotatsiya: istoriya, perspektivy razvitiya, modelirovanie i praktika (Columnar flotation: history, development prospects, modeling and practice). Materialy Mezhdunarodnogo soveshchaniya “Sovremennye protsessy kompleksnoy i glubokoy pererabotki trudnoobogatimogo mineralnogo syrya (Plaksinskie chteniya 2015)” (Materials of International meeting “Modern processes of complex and deep processing of complex-soluble mineral raw materials (Plaksin readings 2015)”). Irkutsk, 2015. p. 59.
16. Morozov Yu. P., Abdykirova G. Zh., Faley E. A. Perspektivy ispolzovaniya flotoklassifikatsii pri pererabotke khvostov flotatsii sulfidnykh rud (Prospects of use of flotation classification during the processing of flotation tailings of sulfide ores). Materialy Mezhdunarodnoy konferentsii “Resursosberegayushchie tekhnologii v obogashchenii rud i metallurgii tsvetnykh metallov” (14–17 sentyabrya 2015 goda) (Materials of International conference “Resource-saving technologies in ore dressing and metallurgy of non-ferrous metals” (September 14–17, 2015)). Almaty, Karaganda : LLC “Arko”, 2015. pp. 57–59.
17. Morozov Yu. P. Povyshenie kompleksnosti ispolzovaniya sulfidnykh rud na osnove dopolnitelnogo izvlecheniya zolota (Increasing of complexity of use of sulfide ores on the basis of addition gold extraction). Ural State Mining University, LLC “Tails CO”. Ekaterinburg : Publishing House “Fort Dialog-Iset”, 2015. 61 p.
18. Morozov Yu. P., Koltunov A. V., Faley E. A. et al. Flotatsionnyy klassifikator (Flotation classifier). Patent RF, No. 2548866, IPC C 22 B 3/02, B 03 D 1/14. Applier and Patent-holder: LLC “Tails CO”. No. 2014102027/02. Applied : January 22, 2014. Published : April 20, 2015. Bulletin No. 11.

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