Aspects of Slag Optimisation in Smelting of Cu-Ni Sulphide Concentrates

The Minerals, Metals and Materials Society
A. A. Hejja
Organization:
The Minerals, Metals and Materials Society
Pages:
14
File Size:
317 KB
Publication Date:
Jan 1, 1997

Abstract

The first part of this study deals with the importance of surface tension of slags produced in the smelting of sulphide concentrates. Theoretically the method of determining the surface tension of slags was laid down by Boni and Derge. The values obtained experimentally for a series of main oxide components were grouped into a useful correlation incorporating experimental constants for the relevant oxides present in the slag, some of these giving the surface tension value for the particular slag. These estimated values were coupled with or incorporated into the slag viscosity plots to show the correlation between the two factors. This is also important from a refractory attack point of view in the furnace operation. In the second part an attempt is made toward the optimisation of slag composition relevant for electric furnace smelting processes. Using the knowledge of the viscosity and electrical conductivity of the slags at the temperature of furnace operation, the mode of optimisation is based on correlations which utilize the trend of the mostly parabolic plots of viscosities and conductivities. The results obtained by this method agree well with the optimum slag compositions being used in established operations derived from years of practical experience for various slags used in the furnaces. However, due to extensive turbulence in suspension and gas injected bath smelting processes, the outlined methods cannot be used for these processes. Also great caution should be exercised in their application for three electrode circular furnaces with separate slag cleaning.
Citation

APA: A. A. Hejja  (1997)  Aspects of Slag Optimisation in Smelting of Cu-Ni Sulphide Concentrates

MLA: A. A. Hejja Aspects of Slag Optimisation in Smelting of Cu-Ni Sulphide Concentrates. The Minerals, Metals and Materials Society, 1997.

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