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Improvement in Reduction Behavior of Sintered Ores in a Blast Furnace through Injection of Reformed Coke Oven Gas

机译:通过注射重整焦炉气体在高炉中烧结矿石还原行为的改善

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As an innovative route to mitigating CO_2 emissions in ironmaking, increasing the hydrogen reduction in a blast furnace is promising. One possible method is the shaft injection or blast tuyere injection of coke oven gas (COG) with its hydrogen concentration enhanced by steam-reforming methane and tar. Therefore, the reduction behavior of sintered ores in a blast furnace by injecting reformed COG was investigated using a softening-melting tester and counter-current reaction simulator (BIS). The shaft injection of reformed COG promoted the reduction and improved the permeability of the ore layer, particularly in the wall area of the blast furnace. An injection rate larger than 200 Nm~3/t-HM was required for reformed COG for a limiting intermediate distribution ratio of injection gas lower than 20% in a large blast furnace. Unchanged shaft temperature and increased hydrogen reduction were observed during the shaft injection of hot reformed COG in the BIS test. The water-gas shift reaction below the temperature of the thermal reserve zone was insignificant even for the shaft injection of reformed COG. As for tuyere injection, direct reduction was decreased by increasing the injection rate of reformed COG from tuyere. The injection of COG with or without reforming from tuyere reduced the carbon consumption of the blast furnace by 10 kg/t-HM. The influence of the composition of COG on carbon consumption was insignificant. Direct observation of hydrogen reduction revealed a decrease in flooding molten slag in the upper coke layer during reduction, thus explaining the improved permeability of the ore layers.
机译:作为一种创新途径,以减轻炼铁中的CO_2排放,增加高炉中的氢气减少是有前途的。一种可能的方法是通过蒸汽重整甲烷和焦油增强其氢浓度的煤烤箱气体(COG)的轴注射或爆破风口。因此,使用软化 - 熔点测试仪和逆流反应模拟器(BIS)研究了通过注入重整涡轮的高炉中烧结矿石的还原行为。轴注射重整齿轮的注入促进了矿石层的降低和改善了矿石层的渗透性,特别是在高炉的壁面积中。改性COG需要大于200nm〜3 / T-HM的注射速率,用于限制在大型高炉中的注射气体的中间分布比率低于20%。在BIS试验中,在轴注射热重整齿轮期间观察到不变的轴温度和氢还原。甚至在热储备区温度以下的水气移反应即使对于改革的嵌齿的轴注射也是微不足道的。至于风口注射,通过增加大教育的重新涡轮的注射率来降低直接减少。具有或不完全从大教现中注射齿轮的喷射将高炉的碳消耗降低了10kg / t-hm。 COG组成对碳消耗的影响微不足道。直接观察氢还原揭示了在还原期间上焦层的泛滥熔融渣的减少,从而解释了矿石层的改善渗透性。

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