Effect of Stirring Energy and Rate of Oxygen Supply on the Rate of Hot Metal Dephosphorization
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概要
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Study was made on desiliconization and dephosphorization reaction kinetics at various size equipments. Coupled reaction model was employed to analyse rate determining step of desiliconization and dephosphorization reaction.In the case of desiliconization reaction, mass transfer process in hot metal phase determines the reaction rate. On the other hand, dephosphorization rate is controlled by mass transfer process both in hot metal and slag phase. Mass-transfer coefficient in hot metal phase <I>k</I><SUB>m</SUB> proportionally increased with 0.7 power of parameter ε/<I>d</I>C2, independently on the equipment size, where, ε, <I>d</I><SUB>C</SUB> is stirring energy of hot metal and the diameter of the vessel, respectively. Apparent rate constant of dephosphorization <I>k</I><SUB>P</SUB>=ln([%P]<SUB>i</SUB>/[%P]<SUB>f</SUB>)/<I>t</I><SUB>f</SUB> increased with increase in stirring energy ε and rate of oxygen supply <I>V</I><SUB>O2</SUB> under the optimum relationship between ε and <I>V</I><SUB>O2</SUB> which was predicted by model calculations, where [%P]<SUB>i</SUB> and [%P]<SUB>f</SUB> is initial and final phosphorus content and <I>t</I><SUB>f</SUB>, refining time. This optimum relationship was expressed as the empirical relation, ε=1.51<I>V</I><SUB>O2</SUB>2+3.31 <I>V</I><SUB>O2</SUB> under the condition of this study.
- 社団法人 日本鉄鋼協会の論文
- 1995-11-15
著者
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Mukawa Susumu
Nagoya R & D Laboratories Nippon Steel Corporation
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MIZUKAMI Yoshimasa
Nagoya R & D Laboratories, Nippon Steel Corporation
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