Experimental Thermodynamic Study of the Equilibrium Phase Assemblage AgBi3S5-Bi2S3-S

The Minerals, Metals and Materials Society
Fiseha Tesfaye Pekka Taskinen
Organization:
The Minerals, Metals and Materials Society
Pages:
9
File Size:
872 KB
Publication Date:
Jan 1, 2012

Abstract

"A thermodynamic study of the equilibrium phase assemblage AgBi3S5-Bi2S3-S was made by an EMF-technique, using the RbAg4l5 solid electrolyte. The ternary phase was synthesized from the pure Ag2S and Bi2S3 in an evacuated silica ampoule and grinded into powder and mixed with appropriate compositions of B12S3 and S, in a series of experiments, for pressing in to pellets. The pellets were assembled to form the galvanic cells Pt (-) | Ag ] RbAg4ls | AgBi3S5+ Bi2S3 + S + (C) I Pt (+). The EMF-measurements were made in the temperature range 299 - 460 K.In this paper, thermodynamic functions of the ternary phase AgBi3S5 (pavonite) have been determined. The agreement between the obtained results and the literature values were established.IntroductionThe complex group of ore minerals constitutes from trace amounts to a major proportions of sulfosalts. Although the sulfosalts rarely form massive ore bodies, they are commonly associated with rich sulfide ore minerals for the base and precious metals and widely distributed in a metal poor sulfide minerals [1]. For instance, Ag-bearing sulfosalts are encountered in ore minerals for the production of the base metals and are common sources of silver. Nevertheless, thermodynamic properties of the sulfosalts are poorly known.Reliable thermochemical data are essential for quantitative modeling of the chemical behavior of the sulfosalts in equilibrium with sulfides, which in turn would promote the optimization of complex minerals treatment and extractive metallurgy of the valuable metals."
Citation

APA: Fiseha Tesfaye Pekka Taskinen  (2012)  Experimental Thermodynamic Study of the Equilibrium Phase Assemblage AgBi3S5-Bi2S3-S

MLA: Fiseha Tesfaye Pekka Taskinen Experimental Thermodynamic Study of the Equilibrium Phase Assemblage AgBi3S5-Bi2S3-S. The Minerals, Metals and Materials Society, 2012.

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