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Kinetic study on gas molten particle reduction of iron ore fines at high temperature

机译:高温还原铁矿粉气体熔融颗粒的动力学研究

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A kinetic study of gas molten particle reduction has been carried out using a high temperature drop tube furnace at the typical conditions of the smelting cyclone of the HIsarna ironmaking process. The results demonstrated that particle size has a significant effect on the reduction rate of fine iron ore particles and that the reduction ability of H-2 is two to three times higher than that of CO at high temperature. It was found that almost all of the Fe2O3 in the iron ore particles was reduced to Fe3O4 and FeO in the first 210 ms. The morphology images of the partially reduced spherical particles showed that a liquid FeO product layer was formed outside the solid Fe3O4 unreacted core. The kinetic analysis revealed that the rate controlling step of the gas molten particle reduction was the diffusion of Fe3+ in the liquid product layer and that the activation energy was similar to 156 kJ mol(-1)
机译:在HIsarna炼铁工艺的典型旋风分离器条件下,使用高温降管炉对气体熔融颗粒的还原进行了动力学研究。结果表明,粒径对细铁矿石颗粒的还原速率有显着影响,并且高温下H-2的还原能力比CO的还原能力高2至3倍。发现在最初的210 ms内,铁矿石颗粒中几乎所有的Fe2O3都还原为Fe3O4和FeO。部分还原的球形颗粒的形态图像显示,在固态未反应的Fe3O4核的外部形成了液态FeO产物层。动力学分析表明,气体熔融颗粒还原的速率控制步骤是Fe3 +在液体产物层中的扩散,活化能类似于156 kJ mol(-1)。

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