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Building of a Mathematical Model for the Reduction of Iron Ore in Ore/Coal Composites

机译:还原矿石/煤复合物中铁矿石的数学模型的建立

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A non-isothermal and non-isobaric mathematical model which consists of 19 independent equations, was developed for the study of the kinetics of reduction iron ore in an ore/coal composite, based on experimental condition with furnace temperature of 1200 deg C and ore/coal ratio of 80/20. This model has been applied to the other sets of independent experiments different in furnace temperatures (1300 deg C) and ore/coal ratios (82/18 and 85/15) for its validation. General agreement between the computed and measured temperatures, the degree of reduction and the degree of carbon gasification as functions of reaction time and location illustrates that this mathematical model is capable of representing data observed in this system.
机译:根据炉温为1200℃的实验条件,建立了由19个独立方程组成的非等温,非等压数学模型,用于研究矿石/煤复合物中还原铁矿石的动力学。煤比为80/20。该模型已被应用于其他不同的独立实验组,以验证其炉温(1300℃)和矿石/煤比(82/18和85/15)不同。计算温度和测量温度,还原程度和碳气化程度之间的总体一致性作为反应时间和位置的函数,表明该数学模型能够表示在该系统中观察到的数据。

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