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Thermodynamic Modeling of Oxide Phases in the Mn-O System

Title
Thermodynamic Modeling of Oxide Phases in the Mn-O System
Authors
Kang, YB.In-Ho Jung
Date Issued
2016-11
Publisher
SPRINGER
Abstract
A critical evaluation and thermodynamic modeling for thermodynamic properties of all oxide phases and phase diagrams in the Fe-Mn-O system are presented. Optimized Gibbs energy parameters for the thermodynamic models of the oxide phases were obtained which reproduce all available and reliable experimental data within error limits from 298 K to above the liquidus temperatures at all compositions covering from known oxide phases, and oxygen partial pressure from metal saturation to 0.21 bar. The optimized thermodynamic properties and phase diagrams are believed to be the best estimates presently available. Two spinel phases (cubic and tetragonal) were modeled using Compound Energy Formalism (CEF) with the use of physically meaningful parameters. The present Fe-Mn spinel solutions can be integrated into a larger spinel solution database, which has been already developed. The database of the model parameters can be used along with a software for Gibbs energy minimization in order to calculate any type of phase diagram section and thermodynamic properties. (C) 2016 Elsevier Ltd. All rights reserved.
URI
https://oasis.postech.ac.kr/handle/2014.oak/39231
DOI
10.1007/S40553-016-0083-Z
ISSN
2196-2936
Article Type
Article
Citation
METALLURGICAL AND MATERIALS TRANSACTIONS E-MATERIALS FOR ENERGY SYSTEMS, vol. 3, no. 3, page. 156 - 170, 2016-11
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강윤배KANG, YOUN-BAE
Ferrous & Eco Materials Technology
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