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Metallization and Carburization Kinetics in DR Shaft Furnaces: The METCARB Model

机译:DR轴炉中的金属化和渗碳动力学:Metcarb模型

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The production and consumption of Direct Reduced Iron (DRI) are continuously increasing, as a consequence of the impact of shale gas extraction technology on the Natural Gas (NG) market. Considering this context, DRI may improve the Blast Furnace (BF), Electric arc Furnace (EAF) and LD converter's productivities and consequently their competitiveness. In this work the results of a cooperative research conducted by PUC-Rio University and a Brazilian mining company are presented. Laboratory-scale simulation tests, using DR commercial pellets and typical industrial operational parameters of a benchmarked DR shaft furnace, were conducted and planned using statistical and factorial analysis. In the simulated experiments, the following three regions of the DR shaft furnace were considered: Reduction Zone (RZ), Transition Zone (TZ) and Cooling Zone (CZ). Three stages were considered in the research development: (i) the reactions and equations concerning pellet metallization and Carbon precipitation were analyzed; (ii) experiments focused on the definition of the carburization kinetic equations occurring in the Transition and Cooling zones, and finally, (iii) aimed to develop the "METCARB" model, a computational program conceived to simulate mathe-matically the metallization and carbonization reactions along the height of the furnace. In conclusion, a comparison is made with industrial results in order to validate the resulting "METCARB" model.
机译:由于页岩气萃取技术对天然气(NG)市场的影响,直接减少铁(DRI)的生产和消费是不断增加的。考虑到这一背景,DRI可以改善高炉(BF),电弧炉(EAF)和LD转换器的生产力,并因此改善其竞争力。在这项工作中,提出了Puc-Rio University和巴西矿业公司的合作研究的结果。使用统计和因子分析进行实验室规模的模拟测试,使用商业颗粒和基准研磨炉的典型工业操作参数进行了开展的。在模拟实验中,考虑了DR轴炉的以下三个区域:还原区(RZ),过渡区(TZ)和冷却区(CZ)。在研究开发中考虑了三个阶段:(i)分析了颗粒金属化和碳沉淀的反应和方程; (ii)(ii)专注于过渡和冷却区发生的渗碳动力学方程定义的实验,最后,(iii)旨在开发“Metcarb”模型,构思的计算计划模拟了Mathe-Mathization的金属化和碳化反应沿着炉子的高度。总之,通过工业成果进行比较,以验证所产生的“Metcarb”模型。

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