Effect of Oxygen Partial Pressure and B2O3 on Crystallization Behavior of Phosphorus- and Iron-Containing Phases in a CaO–SiO2–Fe2O3–P2O5 Melt
To help maintain the sustainability of the steel industry by improving slag utilization, we are developing a novel process to recover P and Fe from steelmaking slag by controlling oxygen partial pressure and adding slag modifier B 2 O 3 , to control the precipitation of targeted phases. In this pape...
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Veröffentlicht in: | Metallurgical and materials transactions. B, Process metallurgy and materials processing science Process metallurgy and materials processing science, 2023-02, Vol.54 (1), p.249-262 |
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Sprache: | eng |
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Zusammenfassung: | To help maintain the sustainability of the steel industry by improving slag utilization, we are developing a novel process to recover P and Fe from steelmaking slag by controlling oxygen partial pressure and adding slag modifier B
2
O
3
, to control the precipitation of targeted phases. In this paper, the precipitated phases of the molten synthetic CaO–SiO
2
–FeO–P
2
O
5
(–B
2
O
3
) slags were predicted through thermodynamic calculations using FactSage 8.1. A confocal laser scanning microscope (CLSM) was used to in situ observe the crystallization behavior of the targeted metal oxides in the slags. It was found that iron and phosphorus could be recovered in the form of magnetite (Fe
3
O
4
) and calcium phosphate (Ca
10
P
6
O
25
) phases by controlling oxygen partial pressure and adding slag modifier B
2
O
3
. By changing oxygen partial pressure from 0.21 to 10
–6
atm, the iron-containing phase transformed from Ca
2
Fe
2
O
5
to magnetite (Fe
3
O
4
). Through the introduction of B
2
O
3
from 2 to 8 pct, the amount of calcium phosphate (Ca
10
P
6
O
25
) first increased and then decreased, with the maximum of 28 pct (
e.g.
28/100 g slag studied) at 6 pct B
2
O
3
. |
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ISSN: | 1073-5615 1543-1916 |
DOI: | 10.1007/s11663-022-02686-0 |