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首页> 外文期刊>The Korean journal of chemical engineering >Optimization fluidization characteristics conditions of nickel oxide for hydrogen reduction by fluidized bed reactor
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Optimization fluidization characteristics conditions of nickel oxide for hydrogen reduction by fluidized bed reactor

机译:流化床反应器还原氢氧化镍的最佳流化特性条件

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We evaluated the optimal conditions for fluidization of nickel oxide (NiO) and its reduction into high-purity Ni during hydrogen reduction in a laboratory-scale fluidized bed reactor. A comparative study was performed through structural shape analysis using scanning electron microscopy (SEM); variance in pressure drop, minimum fluidization velocity, terminal velocity, reduction rate, and mass loss were assessed at temperatures ranging from 400 to 600 degrees C and at 20, 40, and 60 min in reaction time. We estimated the sample weight with most active fluidization to be 200 g based on the bed diameter of the fluidized bed reactor and height of the stocked material. The optimal conditions for NiO hydrogen reduction were found to be height of sample H to the internal fluidized bed reactor diameter D was H/D=1, reaction temperature of 550 degrees C, reaction time of 60 min, superficial gas velocity of 0.011 m/s, and pressure drop of 77 Pa during fluidization. We determined the best operating conditions for the NiO hydrogen reduction process based on these findings.
机译:我们评估了在实验室规模的流化床反应器中氢还原过程中氧化镍(NiO)的流化及其还原成高纯度Ni的最佳条件。使用扫描电子显微镜(SEM)通过结构形状分析进行了比较研究;在400至600摄氏度的温度以及20、40和60分钟的反应时间中评估了压降,最小流化速度,最终速度,还原速率和质量损失的变化。根据流化床反应器的床直径和储备物料的高度,我们估计最活跃流化的样品重量为200 g。发现NiO氢还原的最佳条件是样品H到内部流化床反应器直径D的高度为H / D = 1,反应温度为550摄氏度,反应时间为60分钟,表观气体速度为0.011 m / s,流化过程中的压降为77 Pa。基于这些发现,我们确定了NiO氢还原过程的最佳操作条件。

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