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Numerical simulation on novel blast furnace operation of combining coke oven gas injection with hot burden charging

机译:高炉煤气注入与热装料相结合的新型高炉运行的数值模拟

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摘要

A novel blast furnace operation of coke oven gas (COG) injection simultaneously with hot burden charging has been proposed to solve the problem of insufficient heat in the BF shaft zone under the condition of COG injection and make full use of the abundant sensible heat of high temperature burden. In this paper, the novel process has been simulated with a multifluid blast furnace model. The results show that, in comparison with the operation of COG injection only, under the operation of COG injection together with hot burden charging, the temperature in the upper zone of the shaft increases while that in lower zone decreases. Furthermore, the reduction of iron bearing material is improved in the top zone, and the cohesive zone tends to descend and narrow. The coke ratio, fuel ratio and CO2 emissions of the operation of charging hot pellet and coke with the temperature of 800 degrees C are decreased by 4.0, 4.7 and 5.3% respectively, while the hot metal productivity is increased by 7.14%. Therefore, COG injection combined with hot burden charging operation not only increases temperature in the upper part of the blast furnace but also decreases energy consumption per tonne hot metal.
机译:为了解决高炉煤气注入条件下高炉竖井区热量不足的问题,提出了一种新颖的高炉煤气注入炉煤气与热装料同时进行的方案。温度负担。在本文中,已经用多流体高炉模型对新工艺进行了模拟。结果表明,与仅进行COG注入的操作相比,在COG注入与热装料一起运行的情况下,竖井上部区域的温度升高,而下部区域的温度降低。此外,在顶部区域改善了含铁材料的减少,并且粘结区域趋于下降和变窄。在温度为800℃的条件下装入热球团和焦炭时,焦炭比,燃料比和CO2排放量分别降低了4.0%,4.7%和5.3%,而铁水生产率提高了7.14%。因此,COG注入与热负荷装料操作相结合,不仅提高了高炉上部的温度,而且降低了每吨高炉铁水的能耗。

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