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Effects of top gas recycling on in-furnace status, productivity, and energy consumption of oxygen blast furnace

机译:顶部气体再循环对氧气高炉炉内状态,生产率和能耗的影响

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With its advantages of high productivity, high pulverized coal rate, low fuel rate, and low CO2 emissions, the oxygen blast furnace (OBF) process with top gas recycling is considered as a promising ironmaking process. In this work, a two-dimensional computational fluid dynamics model was established to simulate the transfer process and reaction behavior in an OBF with different flowrates of recycled gas. The effects of top gas recycling on in-furnace status, productivity, and energy consumption of the OBF were analyzed. The results indicated that, with an increase of the flowrate of the recycled gas in the shaft (under conditions ranging from 300 to 600 Nm(3)/t hot metal), the overall temperature, CO concentration, and degree of reduction in the OBF increased significantly. Comparing the performance of a traditional blast furnace with this system, the productivity of the OBF increased by 5.3%-35.3% and the energy savings reached 27.3%-35.9% when employing different criteria for energy consumption. This study may provide important perspectives for OBF application and industrial energy conservation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:凭借高生产率,高煤粉率,低燃料费率和低CO2排放的优势,带有顶部气体再循环的氧气高炉(OBF)工艺被认为是有前途的炼铁工艺。在这项工作中,建立了二维计算流体动力学模型,以模拟不同流量的再循环气体在OBF中的转移过程和反应行为。分析了顶部气体再循环对OBF的炉内状态,生产率和能耗的影响。结果表明,随着竖井中循环气体流量的增加(在300至600 Nm(3)/ t铁水的条件下),整体温度,CO浓度和OBF的降低程度明显增加。与传统高炉的性能相比,采用不同的能耗标准,OBF的生产率提高了5.3%-35.3%,节能量达到27.3%-35.9%。该研究可能为OBF的应用和工业节能提供重要的观点。 (C)2018 Elsevier Ltd.保留所有权利。

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