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lnteractions between Refractories and Melts in High
Fluid Flow and Heat Transfer in Steelmaking Ladles
Metal Recovery by Reductant lnjection into Slags
3 other sections not shown
alumina aluminum anode argon billet blast furnace bubble bulk calculated carbon cell Chem chemical reaction concentration constant continuous casting convection corundum cracks crucible decrease density deoxidized desulfurization diameter diffusion effect electrode electrolyte energy entrainment equation equilibrium experimental Extractive Metallurgy Figure fluid flow formation fuming gas flow rate gas injection H. Y. Sohn heat flux heat loss heat transfer heat-transfer coefficient hot metal inclusions increase interface interfacial area J.K. Brimacombe Kinetics ladle liquid magnesite mass transfer mathematical model meniscus metallurgical mixing mould mullite Nilmani obtained operation oscillation marks overpotential oxide oxygen parameter periclase pores pressure Proc ratio reactant reactor refining refractory Sahai shown in Fig silica silicon slab solution spray steel melt Steelmaking stream surface layer Szekely teeming temperature Tetsu-to-Hagane thermal conductivity top slag tracer Trans transfer coefficient transport tundish turbulent tuyere velocity vessel viscosity volume water model zinc zone
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