Thermodynamics of simultaneous desulfurization and dephosphorization of silicomanganese alloy
- Authors
- Jeong, Jongmin; Shin, Jaehong; Park, Joo hyun; Nam, Chul woo; Park, Kyung ho
- Issue Date
- Dec-2016
- Publisher
- Springer International Publishing AG
- Keywords
- Desulfurization; MnO-slags; Reducing dephosphorization; Silicomanganese (SiMn) alloy
- Citation
- Minerals, Metals and Materials Series, no.9783319510903, pp 495 - 499
- Pages
- 5
- Indexed
- SCOPUS
- Journal Title
- Minerals, Metals and Materials Series
- Number
- 9783319510903
- Start Page
- 495
- End Page
- 499
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/11634
- DOI
- 10.1007/978-3-319-51091-0_48
- ISSN
- 2367-1181
2367-1696
- Abstract
- Because sulfur and phosphorus are very harmful in steel products, there are increasing requirements for refining these elements from ferroalloys industries. Hence, in the present study, simultaneous desulfurization (de-S) and reducing dephosphorization (Rde-P) from silicomanganese (SiMn) alloy were investigated using metal-slag equilibration method under highly reducing condition at 1773 K. Experiments were carried out by equilibration between SiMn alloy and MnO-based slag in graphite crucible under p(O2) = 10−18 atm. Slag composition was designed by changing basicity (CaO/SiO2) and MnO content at fixed Al2O3 (=20%) and MgO (=5%) contents. De-S ratio increased with increasing basicity until C/S = 1.5 whereas Rde-P ratio was not significantly affected by slag basicity. This was because thermodynamic driving force of de-S reaction was greater than that of Rde-P reaction under present experimental conditions. The de-S and Rde-P ratios commonly increased with decreasing oxygen partial pressure. © 2017, The Minerals, Metals & Materials Society.
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