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Kinetics of Dephosphorization of Iron Carbon Alloys: The Importance of Competing Reactions, Slag Properties and CO Bubbles

机译:铁碳合金脱磷的动力学:竞争反应,渣性能和共同气泡的重要性

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Data on the kinetics and thermodynamics of dephosphorization are analyzed in terms of the dynamic partition ratio, determined by a combination of slag thermodynamic properties and the balance of oxygen supply and consumption. A recently developed phosphate capacity con-elation is combined with data on kinetics to quantify the most significant parameters in controlling the interfacial oxygen potential. The role of slag composition, entrained gas fraction and temperature are discussed in addition to metal carbon and sulfur content. It is demonstrated that the mass transport of oxygen in the slag is enhanced by factors increasing conductivity and inhibited by entrained gas. The mass transfer of phosphorus in the metal is described considering surface renewal induced by CO bubbles.
机译:通过动态分区比率分析动态分配比率的动力学和热力学的数据,通过渣热力学性质的组合和氧气供应和消耗的平衡来分析。最近开发的磷酸盐容量消极组合与动力学的数据相结合,以量化控制界面氧气电位的最重要参数。除金属碳和硫含量外,还讨论了炉渣组合物,夹带气体级分和温度的作用。证明炉渣中的氧气的质量传输通过增加导电性和夹带气体抑制的因素增强。考虑到Co气泡诱导的表面更新,描述了金属中磷的传质转移。

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