转炉炼钢前期石灰石分解及CO2氧化作用的热力学分析

Thermodynamic analysis of limestone decomposition and CO2 oxidation effect in the early stage of BOF steelmaking

  • 摘要: 应用热力学方法,对转炉炼钢前期高碳低温铁水条件下石灰石分解及CO2氧化作用进行了分析,推导出了CO2分压(pCO2)和高碳低温区域碳活度系数fC,%的求解方程.结果表明:石灰石中CaCO3在高碳低温的铁水面附近,其分解反应平衡温度比标准状态时低得多,随着吹炼过程中炉温上升其反应趋势增大,CO2在转炉炼钢吹炼初期与C、Si、Mn和Fe(l)的反应都可以自发进行,其排列次序与各元素被O2氧化的反应相同;在高碳低温铁水条件下pCO2值非常小,转炉炼钢初期pCO2在0.002 2~0.000 5pΘ左右,因此可以认为石灰石分解产生的CO2会全部参与铁水氧化反应.

     

    Abstract: The computational formulas of CO2 partial pressure pCO2 andC activity coefficient fC,% under the condition of high carbon concentration and low temperature were derived from the analysis of limestone decomposition and CO2 oxidation in the early stage of BOF steelmaking by the thermodynamic method. It is shown that the equilibrium decomposition reaction temperature of calcium carbonate in limestone near the surface of molten iron with high carbon concentration and low temperature is much lower than that under the standard state. The reaction tendency of limestone decomposition increases as the furnace temperature rises,and the reactions of CO2 withC,Si,Mnas well as Fe(l) can occur spontaneously as the same reaction sequence of oxidation by O2 in the early stage. The value of pCO2 under the condition of high carbon concentration and low temperature is very small,near the value of 0.002 2 to 0.000 5pΘ in the early stage of BOF steelmaking,so all of the CO2 produced from the limestone decomposition reaction can be thought to participate in the oxidation reaction of molten iron.

     

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