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Phase transformation and reduction kinetics during the hydrogen reduction of ilmenite concentrate

机译:Ilmenite浓缩物氢气减少过程中的相变性和减少动力学

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The reduction of ilmenite concentrate by hydrogen gas was investigated in the temperature range of 500 to 1200°C. The micro-structure and phase transition of the reduction products were studied by X-ray diffraction (XRD), scanning electron microscopy (SEM), and optical microscopy (OM). It was found that the weight loss and iron metallization rate increased with the increase of reduction temperature and reaction time. The iron metallization rate could reach 87.5% when the sample was reduced at 1150°C for 80 min. The final phase constituents mainly consist of Fe, M_3O_5 solid solution phase (M=Mg, Ti, and Fe), and few titanium oxide. Microstructure analysis shows that the surfaces of the reduction products have many holes and cracks and the reactions take place from the exterior of the grain to its interior. The kinetics of reduction indicates that the rate-controlling step is diffusion process control with the activation energy of 89 kJ-mol~(-1).
机译:在500至1200℃的温度范围内研究通过氢气的钛铁矿浓缩物的减少。 通过X射线衍射(XRD),扫描电子显微镜(SEM)和光学显微镜(OM)研究了还原产物的微结构和相转变。 发现减肥和铁金属化率随着还原温度和反应时间的增加而增加。 当样品在1150℃下降80分钟时,铁金属化速率可达到87.5%。 最终相成分主要由Fe,M_3O_5固溶溶液(M = Mg,Ti和Fe)组成,少量氧化钛组成。 微观结构分析表明,还原产品的表面具有许多孔和裂缝,并且反应从谷物的外部到其内部。 还原动力学表明,速率控制步骤是扩散过程控制,其激活能量为89 kJ-mol〜(-1)。

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