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Model Analysis of Iron Ore Reduction in a Circulating Fluidized Bed

机译:循环流化床中铁矿石还原的模型分析

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A reduction reaction mdoel of fine iron ore in a circulating fludized bed,which involved inner and outer circulation of power,was developed to obtain scale-up information and to examine the effects of operating factors on reduction degree.Differential equations of mass balance were solved numerically under a one-interface unreacted core model by the Runge-Kutta-Gill method.Calculated curves of reduction degree vs.reduction temperature,consumed gas volume per supplied iron ore,and mean residence time agreed with experimental ones.Reduction degree decreased with increasing input gas oxidation degree.However,the differential changed discontinuously depending on whether reduced iron oxides or metallic iron were in equilibrium with the gas composition in the circulating fluidized bed.This model enabled us to predict gas oxidation degree accoreding to the targeted reduction degree of iron ore.
机译:研制了循环流化床中细粉铁矿的还原反应模型,该还原反应模型涉及动力的内,外循环,以获取放大信息,并研究操作因素对还原度的影响。用Runge-Kutta-Gill方法在一个单界面未反应堆芯模型上进行数值模拟。还原度与还原温度,每份供应铁矿石的耗气量,平均停留时间的计算曲线与实验结果一致。输入气体氧化度。但是,差值会根据还原的氧化铁或金属铁与循环流化床中的气体组成是否平衡而连续变化。该模型使我们能够根据目标铁的还原度预测气体氧化度矿石。

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