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ON THE SIMULTANEOUS IRON OXIDE REDUCTION AND CARBURIZATION KINETICS

机译:关于同时氧化铁还原和渗碳动力学

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Nowadays the most important Direct Reduction - DR processes in shaft furnaces has to deal with carbon fines precipitation and DRI carburization issues. Based in a cooperative research program joining Catholic University (PUC-Rio) and SAMARCO Mining Co, a project dealing with pellets reduction and those two phenomena was established. This work analyzes kinetically the three reactions mentioned before, considering typical values for the operational variables temperature, flowrate, pressure and gas composition, parameters commonly used to control the DRI formation in the Reduction Zone - RZ of the shaft furnaces. From laboratories experimental results, the kinetic equations for those reactions were established and, using the superposition principle, generated a specific global kinetic model for the iron oxide reduction and the soot formation. Finally, using those experimental results and applying a planned statistical factorial analysis for the experiments, the numerical coefficients for each equation were calculated and the correlation factor determined for the proposed global kinetic equation.
机译:如今,轴炉中最重要的直接减速 - 型炉中的工艺必须处理碳含量降水和DRI碳化问题。在加入天主教大学(PUC-RIO)和Samarco Mining Co的合作研究计划中,建立了一个处理颗粒和颗粒的项目。这项工作分析了动力学上提到的三种反应,考虑到操作变量温度,流量,压力和气体组合物的典型值,通常用于控制轴炉的还原区 - Rz中的DRI形成的参数。从实验室实验结果,建立了那些反应的动力学方程,并使用叠加原理,为氧化铁还原和烟灰形成产生了特定的全局动力学模型。最后,使用这些实验结果并对实验应用计划的统计阶乘分析,计算了每个方程的数值系数,并且确定了所提出的全局动力学方程的相关因子。

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