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Effect of Silica in Ash of Coke on Carburization and Melting of Iron

机译:二氧化硅在焦炭中的灰色渗碳和熔炼熔化的影响

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Reducing energy consumption in ironmaking process is essential for decreasing the amount of carbon dioxide emission from the blast furnace process. To effectively reduce carbon dioxide emission, a faster reduction of iron ore, as well as the acceleration of carburization and melting of the reduced iron is important. Understanding the ash behavior of coke in blast furnace is necessary for controlling carburization because ash prevents carburization. In this study, the following were investigated:1) Condensation behavior of the ash components on the surface of coke by gasification under the simulated blast furnace condition2) Melting behavior of iron tablet by the direct contact with coke plate3) In-situ observation of the melting behavior of coke-iron composite and effect of deashing treatment4) In-situ observation of the melting behavior of Fe–Si alloy using graphiteThe results revealed that ash condenses on the coke surface via gasification, and the ash coverage ratio of the coke surface increases with increasing in the coke reactivity. In addition, the melting of iron by carburization with coke proceeds at lower temperature when the coke reactivity is high. However, the effect of ash coverage on this behavior is significantly higher than that of coke reactivity, and an increase in the ash coverage ratio suppresses the carburization and melting of iron. In addition, during holding at high temperature, SiO_(2) in ash is reduced to Si, and it alloys with metallic iron. Furthermore, an increase in Si concentration in metallic iron increases the melting temperature of Fe–Si system. Consequently, carburization and melting iron are suppressed.
机译:降低铁制造过程中的能量消耗对于降低高炉方法的二氧化碳排放量至关重要。为了有效降低二氧化碳排放,铁矿石的速度更快,以及减少铁的渗碳加速和熔化是重要的。理解焦炭中焦炭的灰烬行为对于控制渗碳是必要的,因为灰烬防止渗碳。在本研究中,研究了以下内容:1)灰分成分在焦炭表面上通过气化在模拟高炉条件下的焦炭化熔融行为通过直接接触与焦板3)熔化行为3)原位观察焦炭复合材料的熔化行为和DeShing Hippation的效果4)使用石墨的Fe-Si合金熔化行为的原位观察结果显示,灰烬通过气化和灰覆盖物在焦炭表面上凝结焦炭表面的比例随着焦炭反应性的增加而增加。此外,当焦炭反应性高时,通过焦炭渗碳通过渗碳熔化在较低的温度下进行。然而,对这种行为的灰度覆盖的影响显着高于焦炭反应性的影响,并且灰分覆盖率的增加抑制了铁的渗碳和熔化。另外,在保持高温期间,灰分中的SiO_(2)减少到Si,用金属铁合金。此外,金属铁中的Si浓度的增加增加了Fe-Si系统的熔化温度。因此,抑制了渗碳和熔融铁。

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