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Reaction Behaviors of Various Agglomerates in Reducing the Temperature of the Thermal Reserve Zone of the Blast Furnace

机译:各种附聚物的反应行为降低高炉热储量区温度的凝聚

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As an innovative measure to mitigating CO_(2) emissions during ironmaking, the enhancement of carbon reactivity in blast furnaces is promising. It can reduce the temperature of the thermal reserve zone (TRZ), which is among the limiting factors to reaction efficiency in blast furnaces, thereby enabling operation under a low reducing agent rate (RAR). Therefore, reaction behaviors of two types of agglomerates with high carbon reactivity, composite agglomerates (CAs), and Ferro-coke, were evaluated using a softening-melting tester and via large-scale thermogravimetry. Process estimation of the blast furnace using them was also performed using a counter-current reaction simulator. CAs exhibited low-temperature gasification, efficiently promoting reduction by mixing with sintered ores. The carbon-consumption ratios of CAs and Ferro-coke were higher than that of coke. The reactive coke agglomerate, which is reinforced CAs with high carbon content toward reducing the RAR, exhibited the highest carbon reactivity, because of the coupling phenomena between the gas reduction of iron oxide and gasification of carbon. The addition of metallic iron to the CA increased the consumption of carbon and reduction of sintered ores, because of the catalytic effect. A combined use of the CA and Ferro-coke in the blast furnace successfully reduced the temperature of the TRZ by 150°C, offering the potential to decrease RAR by 35 kg/t-HM. Estimation of the distance between carbon and iron oxide or metallic iron in these agglomerates revealed that reducing the temperature of the TRZ by them was closely associated with shortening the distance.
机译:作为在炼铁过程中减轻CO_(2)排放的创新措施,高炉中碳反应性的增强是有前途的。它可以降低热量储备区(TRZ)的温度,这是高炉中反应效率的限制因素之一,从而在低还原剂率(RAR)下能够进行操作。因此,使用软化熔点测试仪并通过大规模的热重评定评估两种类型的聚集液,具有高碳反应性,复合凝聚酯(CAS)和铁焦的反应性。使用逆流反应模拟器也进行使用它们的高炉处理估计。 CAS表现出低温气化,通过与烧结矿石混合有效地促进减少。 CAS和铁焦炭的碳消耗比高于焦炭。具有高碳含量的增强CA具有高碳含量的反应性焦炭凝聚表现出最高的碳反应性,因为氧化铁的气体减少与碳气化之间的偶联现象。由于催化作用,添加金属铁增加了CA的消耗,增加了烧结矿石的消耗。 CA和铁焦在高炉中的结合使用成功地将TRZ的温度降低了150℃,提供了降低RAR 35kg / T-HM的可能性。在这些附聚物中估计碳和氧化铁或金属铁之间的距离显示,通过缩短距离,将TRZ的温度紧密相关。

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