Journals →  Obogashchenie Rud →  2018 →  #1 →  Back

SECONDARY RAW MATERIAL PROCESSING
ArticleName Copper smeltery final dump slag processing technology improvement
DOI 10.17580/or.2018.01.07
ArticleAuthor Mamonov S. V., Gazaleeva G. I., Dresvyankina T. P., Volkova S. V.
ArticleAuthorData

Technical University of UGMK (Ekaterinburg, Russia):
Mamonov S. V., Head of Chair, Candidate of Engineering Sciences, Mamonov_SV@umbr.ru

 

JSC «Uralmekhanobr» (Ekaterinburg, Russia):
Gazaleeva G. I., Deputy CEO for Analytical Work, Doctor of Engineering Sciences, gazaleeva_gi@umbr.ru
Dresvyankina T. P., Senior Researcher
Volkova S. V., Senior Researcher

Abstract

This paper deals with innovative prospects in copper smeltery final dump slag processing metallurgical results improvement, based upon slag slow cooling and ultrafine grinding in bead mills. It was established, that temperature regime and cooling rate are of crucial importance in final dump slag slow cooling process. It is shown that slow cooling leads to qualitative and quantitative changes in slag structure — size of sulfide particles is increased severalfold, and copper is redistributed in mineral forms. Regularities in slowly cooled slag processing metallurgical results improvement have been determined with respect to pH drop. Beneficiation of this type of slag under laboratory and commercial-scale conditions permits to produce copper concentrate with copper mass fraction of 20 %, copper recovery being 65–74 %. It has been proved that slag slow cooling technology with its subsequent processing at an operating beneficiation plant provides for increase in copper recovery into copper concentrate by 15–22 %, also increasing grinding equipment throughput rate by 25 %, and copper minerals liberation degree — by 25—30 %. Possible final dump slag processing metallurgical results improvement has been demonstrated by way of example of Vanukov furnace and high-furnace final dump slags with application of ultrafine grinding in bead mills.

keywords Vanukov furnace slag, high-furnace slag, loose grains, liberation degree, fineness of grinding, copper sulfides, ultrafine grinding, slag slow cooling, bead mill, technology, copper concentrate
References

1. Technology of the Urals copper and copper-zinc ores beneficiation. Ed. V. A. Chanturiya, I. V. Shadrunova. Moscow: Nauka, 2016. 387 p.
2. Gazaleeva G. I., Mamonov S. V., Sladkov M. M., Kutepov A. V. Increasing of metallurgical results during the processing of copper slags. Tsvetnye Metally. 2016. No. 3. pp. 18–22. DOI: 10.17580/tsm.2016.03.03.
3. Sabanova M. N. Intensification of copper slag flotation in the conditions of water circulation. Dissertation for the degree of Candidate of Engineering Sciences. Moscow, 2016. 169 p.
4. Kireeva O. V., Dresvyankina T. P., Mamonov S. V. The role of special cooling of copper smelting slag in its processing technology. Globus. 2014. No. 3. pp. 50–51.
5. Akella L. N., Vasu K. J., Prasad P. M. J. Electrochem. Soc. India. 1978. Vol. 27, No. 1. pp. 1–8.
6. Shelly T. R., Shelly R. Transaction of the Institution of Mining and Metallurgy. 1974. 33, June (811). pp. 124–125.
7. Huang H., Dai Z., Hu Y., Sun W., Cao X. Technology and mechanism research for crystal phase regulating flotation of copper-containing slag. XXVIII International Mineral Processing Congress Proceedings. Québec, 2016. Paper ID 853.
8. Mamonov S., Аshikhin V. Increasing technology indexes of beneficiation of copper slag. XXVIII International Mineral Processing Congress Proceedings. Québec, 2016. Paper ID 676.
9. Kireeva O. V., Dresvyankina T. P., Nazarenko L. N. Improving technology of stale slag waste beneficiation with the use of ultra-fine grinding. Globus. 2014. No. 3. pp. 52–53.
10. Selivanov E. N., Belyaev V. V., Gulyaeva R. I., Kopytov A. S., Selmenskikh N. I. Phase composition of products and distribution of metals in flotation of converter slags at Sredneuralsky copper-smelting works. Tsvetnye Metally. 2008. No. 12. pp. 23–27.
11. Karimi N., Vaghar R., Tavakoli Mohammadi M. R., Hashemi S. A. Recovery of copper from the slag of Khatoonabad flash smelting furnace by flotation method. J. of the Institution of Engineers (India): Ser. D. 2013. Vol. 94, Iss. 1. pp. 43–50.
12. Shadrunova I. V., Kolodezhnaya E. V., Ozhogina E. G., Gorlova O. E. Estimation of technogenic mineral raw materials mineralogical-technological features at forecasting of possibilities of its processing and selectivity of disintegration. Technological mineralogy of natural and anthropogenous deposits. Collection of articles of the IX seminar on technological mineralogy. Petrozavodsk: KNTs RAN, 2015. pp. 35–42.

Language of full-text russian
Full content Buy
Back