Improvement of Sulfatizing Roasting of Refractory Copper-Zinc Sulphide Raw Material


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Abstract

Sulfatization roasting of refractory copper-zinc sulphide raw material is studied. Test material chemical and phase compositions are examined. Thermodynamic calculations of possible sulfatization reactions are performed. Phase transformations, mechanisms of decomposition, and oxidation of sulphide minerals are studied using thermogravimetric and differential-thermal analyses. Equilibrium distribution of the system components during copper-zinc sulphide raw material roasting is modelled using an HSC Chemistry 6.0 computer program. Optimum conditions are established for roasting in which copper and zinc sulphide minerals are converted into sulphate form and iron is converted into oxide. Consolidated tests of sulfatizing roasting of copper-zinc sulphide middlings confirm results of experimental studies.

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D. A. Rogozhnikov

Ural Federal University

Author for correspondence.
Email: darogozhnikov@yandex.ru
Russian Federation, Ekaterinburg

D. L. Tropnikov

Svyatogor Company

Email: darogozhnikov@yandex.ru
Russian Federation, Krasnouralsk

S. V. Mamyachenkov

Ural Federal University

Email: darogozhnikov@yandex.ru
Russian Federation, Ekaterinburg

O. A. Dizer

Ural Federal University

Email: darogozhnikov@yandex.ru
Russian Federation, Ekaterinburg

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