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首页> 外文期刊>ISIJ international >Reduction Behavior and Kinetics of Iron Ore Pellets under H2–N2 Atmosphere
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Reduction Behavior and Kinetics of Iron Ore Pellets under H2–N2 Atmosphere

机译:H 2 –N 2 气氛下铁矿石球团的还原行为和动力学

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Direct reduction behavior and dynamic characteristics of oxidized pellets under the 75%H_(2)-25%N_(2) atmosphere at 760, 900, 1000°C are studied in this paper. 500 g oxidized pellets in the size of 10–12.5 mm are reduced by gas with the flow rate of 12 L·min~(?1) for 1 hour. Weight loss during reduction was recorded and the model of un-reacted core was adopted for dynamic analysis. Morphology of metalized pellets was analyzed through optical microscope and scanning electron microscope. Compressive strength and degradation index were also detected. Results showed that both the reduction degree and reaction rate increased with the increasing temperature. The reduction rate was controlled by chemical reaction with the apparent activation energy of 40.954 kJ·mol~(?1). The chemical reaction resistance could be effectively reduced through appropriately raising the temperature. However, the effectiveness was weakened with the further increase of temperature. The reaction rate constant at 900°C was 0.025 m·s~(?1), which was slightly lower compared with reduction kinetics under pure hydrogen. The compressive strength decreased with the increasing temperature, and amounts of holes and cracks were observed at higher temperature. Reduction degradation behavior of pellets under this atmosphere was not obvious.
机译:本文研究了在760、900、1000°C的75%H_(2)-25%N_(2)气氛下氧化球团的直接还原行为和动力学特性。用气体以12 L·min〜(?1)的流量将500 g尺寸为10–12.5 mm的氧化颗粒还原1小时。记录还原过程中的失重,并采用未反应核的模型进行动态分析。通过光学显微镜和扫描电子显微镜分析了金属化颗粒的形态。还检测了抗压强度和降解指数。结果表明,还原度和反应速率均随温度的升高而增加。通过化学反应控制还原速率,其表观活化能为40.954 kJ·mol〜(?1)。通过适当提高温度,可以有效地降低耐化学反应性。然而,随着温度的进一步升高,效力减弱。 900℃下的反应速率常数为0.025m·s·(Δ1),与纯氢气下的还原动力学相比稍低。抗压强度随着温度的升高而降低,并且在较高的温度下观察到孔和裂纹的数量。在这种气氛下颗粒的还原降解行为并不明显。

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