4.5 Article

Thermal Analysis and Optimization of the Phase Diagram of the Cu-Ag Sulfide System

期刊

ENERGIES
卷 15, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/en15020593

关键词

sulfide; silver; copper; inorganic materials; thermal analysis; thermochemistry; thermal energy; phase diagram

资金

  1. Academy of Finland project Thermodynamic investigation of complex inorganic material systems for improved renewable energy and metals production processes, Johan Gadolin Process Chemistry Center activities at Abo Akademi University [311537]
  2. Abo Akademi University

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The thermal stabilities of selected ternary phases in the Ag-Cu-S system were studied using calorimetric and electromotive force techniques. The obtained thermodynamic properties were used to calculate the thermal energy of processes involving the ternary phases and develop a thermodynamic database. The database was combined with existing literature data to model the phase diagram of the Ag2S-Cu2S system.
Thermal stabilities of selected ternary phases of industrial interest in the Ag-Cu-S system have been studied by the calorimetric and electromotive force techniques. The ternary compounds Ag1.2Cu0.8S (mineral mackinstryite) and AgCuS (mineral stromeyerite) were equilibrated through high-temperature reaction of the pure Cu2S and Ag2S in an inert atmosphere. The synthesized single solid sample constituting the two ternary phases was ground into fine powders and lightly pressed into pellets before calorimetric measurements. An electrochemical cell incorporating the two equilibrated phase and additional CuS as a cathode material was employed. The measurement results obtained with both techniques were analyzed and thermodynamic properties in the system have been determined and compared with the available literature values. Enthalpy of fusion data of the Ag-richer solid solution (Ag,Cu)(2)S have also been determined directly from the experimental data for the first time. The thermodynamic quantities determined in this work can be used to calculate thermal energy of processes involving the Ag-Cu-S-ternary phases. By applying the obtained results and the critically evaluated literature data, we have developed a thermodynamic database. The self-developed database was combined with the latest pure substances database of the FactSage software package to model the phase diagram of the Ag2S-Cu2S system.

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