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Flash Ironmaking from Magnetite Concentrate in a Laboratory Reactor: Experimental and CFD Work

机译:实验室反应堆中磁铁精矿的闪速炼铁:实验和CFD工作

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A flash ironmaking process is being developed at the University of Utah in which iron is produced directly from magnetite concentrate. The kinetics of magnetite reduction by a mixture of H_2 and CO gases was determined in the temperature range 1150-1600 ℃. Over 90% reduction degree was achieved at a temperature as low as 1250 ℃ within 4-6 s which is the typical residence time available in a flash reactor. The kinetics results were applied to experimental data obtained in a laboratory flash reactor in which H_2 and CO gas mixtures were produced from in situ partial oxidation of natural gas with oxygen. CFD was used to simulate the laboratory reactor, and the results were in good agreement with the experimental data.
机译:犹他大学正在开发一种闪速炼铁工艺,其中的铁直接由磁铁矿精矿生产。在1150-1600℃的温度范围内测定了H_2和CO混合气体还原磁铁矿的动力学。在低至1250℃的温度下4-6 s内达到90%以上的还原度,这是闪蒸反应器中的典型停留时间。动力学结果被应用于在实验室闪蒸反应器中获得的实验数据,在该反应器中,H 2和CO气体混合物是由天然气与氧气的原位部分氧化而产生的。用CFD对实验室反应器进行了模拟,结果与实验数据吻合良好。

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