Thermodynamic Modelling of Phosphorus in Steelmaking Slags
The published phase diagrams of some key P2O5-containing systems which are relevant to the steelmaking slag and the available experimental data on phosphorus partitioning between liquid iron and slags consisting of SiO2-Al2O3-Fe2O3-FeO-MnO-MgO-CaO-Na2O have been reviewed and assessed. A set of data...
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De Gruyter
2013-06-01
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Online Access: | https://doi.org/10.1515/htmp-2012-0129 |
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doaj-a1c27242e1be4b3d8d014431e3fa83d62021-09-06T19:19:52ZengDe GruyterHigh Temperature Materials and Processes0334-64552191-03242013-06-0132323724610.1515/htmp-2012-0129Thermodynamic Modelling of Phosphorus in Steelmaking SlagsChen Chunlin0Zhang Ling1Lehmann Jean2CSIRO Process Science and Engineering, Clayton, Victoria, AustraliaCSIRO Process Science and Engineering, Clayton, Victoria, AustraliaArcelorMittal Global R&D, Maizières-lès-Metz, FranceThe published phase diagrams of some key P2O5-containing systems which are relevant to the steelmaking slag and the available experimental data on phosphorus partitioning between liquid iron and slags consisting of SiO2-Al2O3-Fe2O3-FeO-MnO-MgO-CaO-Na2O have been reviewed and assessed. A set of data under carefully controlled experimental conditions, which was considered to be more reliable based on the assessment, was selected for optimising the generalised central atom (GCA) model parameters of phosphorus-containing slag systems. The developed model database is proved to be able to represent the liquidus temperature of some key P2O5-containing systems and the phosphorus distribution ratio between the steelmaking slags and liquid iron reasonably well. With the developed GCA model database, the dephosphorization reaction in the steelmaking process was modelled under various operating conditions such as slag chemistry and temperature. The results show that the phosphorus distribution ratio between the slags and liquid iron displays a maximum point with variation of the FeOx content in the slag. It also shows that the phosphorus deportment to the slag is favored by decreasing the operating temperature and MgO content, and increasing the CaO/SiO2 ratio in the slag. Comparison with the model of the phosphorus distribution data from a commercial BOS furnace shows that operating conditions do not permit to reach P equilibrium contents. The dis-equilibrium degree of P was found to be increased with increasing slag viscosities.https://doi.org/10.1515/htmp-2012-0129phosphorussteelmaking slagthermodynamic modelinggca modeldephosphorization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chen Chunlin Zhang Ling Lehmann Jean |
spellingShingle |
Chen Chunlin Zhang Ling Lehmann Jean Thermodynamic Modelling of Phosphorus in Steelmaking Slags High Temperature Materials and Processes phosphorus steelmaking slag thermodynamic modeling gca model dephosphorization |
author_facet |
Chen Chunlin Zhang Ling Lehmann Jean |
author_sort |
Chen Chunlin |
title |
Thermodynamic Modelling of Phosphorus in Steelmaking Slags |
title_short |
Thermodynamic Modelling of Phosphorus in Steelmaking Slags |
title_full |
Thermodynamic Modelling of Phosphorus in Steelmaking Slags |
title_fullStr |
Thermodynamic Modelling of Phosphorus in Steelmaking Slags |
title_full_unstemmed |
Thermodynamic Modelling of Phosphorus in Steelmaking Slags |
title_sort |
thermodynamic modelling of phosphorus in steelmaking slags |
publisher |
De Gruyter |
series |
High Temperature Materials and Processes |
issn |
0334-6455 2191-0324 |
publishDate |
2013-06-01 |
description |
The published phase diagrams of some key P2O5-containing systems which are relevant to the steelmaking slag and the available experimental data on phosphorus partitioning between liquid iron and slags consisting of SiO2-Al2O3-Fe2O3-FeO-MnO-MgO-CaO-Na2O have been reviewed and assessed. A set of data under carefully controlled experimental conditions, which was considered to be more reliable based on the assessment, was selected for optimising the generalised central atom (GCA) model parameters of phosphorus-containing slag systems. The developed model database is proved to be able to represent the liquidus temperature of some key P2O5-containing systems and the phosphorus distribution ratio between the steelmaking slags and liquid iron reasonably well. With the developed GCA model database, the dephosphorization reaction in the steelmaking process was modelled under various operating conditions such as slag chemistry and temperature. The results show that the phosphorus distribution ratio between the slags and liquid iron displays a maximum point with variation of the FeOx content in the slag. It also shows that the phosphorus deportment to the slag is favored by decreasing the operating temperature and MgO content, and increasing the CaO/SiO2 ratio in the slag. Comparison with the model of the phosphorus distribution data from a commercial BOS furnace shows that operating conditions do not permit to reach P equilibrium contents. The dis-equilibrium degree of P was found to be increased with increasing slag viscosities. |
topic |
phosphorus steelmaking slag thermodynamic modeling gca model dephosphorization |
url |
https://doi.org/10.1515/htmp-2012-0129 |
work_keys_str_mv |
AT chenchunlin thermodynamicmodellingofphosphorusinsteelmakingslags AT zhangling thermodynamicmodellingofphosphorusinsteelmakingslags AT lehmannjean thermodynamicmodellingofphosphorusinsteelmakingslags |
_version_ |
1717777648194682880 |