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Dephosphorization equilibria between pure molten iron and CaO-saturated FeOn-CaO-CaF2slags

Johann-Christian Wrampelmeyer, Stefan Dimitrov, Dieter Janke

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Abstract

Metal-slag refining reactions have been investigated to determine dephosphorization equilibria in steelmaking using CaO-saturated FeOn–CaO–CaF2 slags low in P2O5 content. Slag compositions have been optimized to achieve maximum partition ratios wt.%(P2O5)/wt.%[P] and minimum phosphorus contents in pure molten iron at 1 550 and 1 600°C. FeOn–CaO–CaF2 slags prove to be most effective dephosphorizers. Optimal slag compositions are between 10 and 20 wt.% FeOn. Attempts were also made to present phosphate capacities fractions of free oxygen ions and theoretical optical basicities Λ as a function of the FeOn content of slags. Dephosphorization capacity of FeOn–CaO–CaF2 slags is compared with that of FeOn–CaO–SiO2 and FeOn–CaO–Al2O3 slags.

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Metal-slag refining reactions have been investigated to determine dephosphorization equilibria in steelmaking using CaO-saturated FeOn–CaO–CaF2 slags low in P2O5 content. Slag compositions have been optimized to achieve maximum partition ratios wt.%(P2O5)/wt.%[P] and minimum phosphorus contents in pure molten iron at 1 550 and 1 600°C. FeOn–CaO–CaF2 slags prove to be most effective dephosphorizers. Optimal slag compositions are between 10 and 20 wt.% FeOn. Attempts were also made to present phosphate capacities fractions of free oxygen ions and theoretical optical basicities Λ as a function of the FeOn content of slags. Dephosphorization capacity of FeOn–CaO–CaF2 slags is compared with that of FeOn–CaO–SiO2 and FeOn–CaO–Al2O3 slags.

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Available abstract

Metal-slag refining reactions have been investigated to determine dephosphorization equilibria in steelmaking using CaO-saturated FeOn–CaO–CaF2 slags low in P2O5 content. Slag compositions have been optimized to achieve maximum partition ratios wt.%(P2O5)/wt.%[P] and minimum phosphorus contents in pure molten iron at 1 550 and 1 600°C. FeOn–CaO–CaF2 slags prove to be most effective dephosphorizers. Optimal slag compositions are between 10 and 20 wt.% FeOn. Attempts were also made to present phosphate capacities fractions of free oxygen ions and theoretical optical basicities Λ as a function of the FeOn content of slags. Dephosphorization capacity of FeOn–CaO–CaF2 slags is compared with that of FeOn–CaO–SiO2 and FeOn–CaO–Al2O3 slags.

Key concepts: Slag (welding), Steelmaking, Chemistry, Metallurgy, Mineralogy, Metal, Analytical Chemistry (journal), Materials science

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