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Surface tension and thermodynamic properties of liquid Ag-Bi solutions
Authors:W Gasior  J Pstru?  Z Moser  A Krzy?ak  K Fitzner
Affiliation:(1) Institute of Metallurgy and Materials Science, Polish Academy of Sciences, 25 Reymonta Street, 30-059 Kraków, Poland;(2) Laboratory of Physical Chemistry and Electrochemistry, Faculty of Non-Ferrous Metals, University of Mining and Metallurgy, 30 Mickiewicza Avenue, 30-057 Kraków, Poland
Abstract:With the maximum bubble pressure method, the density and surface tension were measured for five Ag-Bi liquid alloys (X Bi=0.05, 0.15, 0.25, 0.5, and 0.75), as well as for pure silver. The experiments were performed in the temperature range 544–1443 K. Linear dependences of both density and surface tension versus temperature were observed, and therefore the experimental data were described by linear equations. The density dependence on concentration and temperature was derived using the polynomial method. A similar dependence of surface tension on temperature and concentration is presented. Next, the Gibbs energy of formation of solid Bi2O3, as well as activities of Bi in liquid Ag-Bi alloys, were determined by a solid-state electromotive force (emf) technique using the following galvanic cells: Ni, NiO, Pt/O −2/W, Ag X Bi (1−X), Bi 2 O 3(s). The Gibbs energy of formation of solid Bi2O3 from pure elements was derived: 
$$\Delta G_{f(\alpha  - Bi_2 O_3 )}^0 $$
=−598 148 + 309.27T J · mol−1] and 
$$\Delta G_{f(\delta  - Bi_2 O_3 )}^0 $$
=−548 008 + 258.94T J · mol−1]; the temperature and the heat of the α → δ transformation for this solid oxide were calculated as 996 K and 50.14 J · mol−1. Activities of Bi in the liquid alloys were determined in the temperature range from 860–1075 K, for five Ag-Bi alloys (X Ag=0.2, 0.35, 0.5, 0.65, 0.8), and a Redlich-Kister polynomial expansion was used to describe the thermodynamic properties of the liquid phase. Using Thermo-Calc software, the Ag-Bi phase diagram was calculated. Finally, thermodynamic data were used to predict surface tension behavior in the Ag-Bi binary system.
Keywords:
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