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NOBLE METALS AND ALLOYS
Название Behavior of platinum metals during sulfide copper-nickel raw materials processing
DOI 10.17580/tsm.2016.11.05
Автор Tsemekhman L. Sh., Tsymbulov L. B., Pakhomov R. A., Popov V. A.
Информация об авторе

LLC “Gipronikel Institute”, Saint Petersburg, Russia:

L. Sh. Tsemekhman, Adviser of Chief Executive Officer
L. B. Tsymbulov, Head of Laboratory of Metallurgy, e-mail: lbcym@mail.ru
R. A. Pakhomov, Junior Researcher of Laboratory of Metallurgy
V. A. Popov, Leading Researcher of Laboratory of Metallurgy

Реферат

Current production and investigation data allow rather correct assessment of nickel, copper, cobalt, iron and sulfur behavior during the pyrometallurgical processing of various copper-nickel concentrates. At the same time, behavior of platinum and noble metals on main pyrometallurgical stages is still insufficiently investigated. There are shown the investigation results of distribution of platinum group metals (such as platinum, palladium, irridium, rhodium and ruthenium) in slag and matte of copper and nickel concentrates, depending on nonferrous metals content in matte. Mixture of copper and nickel concentrates was used for investigations, and its oxidation smelting was held in Tamman
furnace. There was defined the optimal content of copper and nickel in matte, when concentration of platinum group metals in matte is high, and their distribution coefficients have almost no changes (losses with slags are proportional to their content in matte). Thermodynamic model for assessment of distribution and extraction of nickel, copper and platinoids during copper-nickel raw material processing was developed using the software FactSage 6.3.1. This model shows a good convergence with experimental investigations data, which corresponds about its usability for forecast calculations, connected with distribution of non-ferrous and platinum metals between smelting products (slag and matte).

Ключевые слова Sulfide ores, copper, nickel, noble metals, platinum group metals, slag, matte, distribution, Chernogorskoe deposit, Vanyukov process
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