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Rate and mechanism of the reduction of multi-valent iron oxide from slag

机译:从炉渣中减少多价氧化铁的速率和机制

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The rate of reduction of iron oxide from calcia-silica-alumina slag by carbon in liquid iron has been measured over the temperature range 1400-1600°C by monitoring the rate of carbon monoxide (CO) evolution. Slags containing ferric iron have beenused in order to study the reduction of both ferric and ferrous cations. Results show that ferric iron is reduced before ferrous iron, so that the ferrous iron concentration increases initially. It is also shown that the rate constant, k, decreases at low reaction rates, or, equivalently, at low concentrations. The authors conclude that the reaction occurs in two periods. During the first period, ferric iron is reduced to ferrous iron. During the second period, ferrous iron is reduced to metallic iron, and the rate-limiting step during the second period is the mass transfer of ferrous cations in the slag phase to the slag-metal interface.
机译:通过监测一氧化碳(CO)进化的速率,通过液体铁中通过碳铁钙 - 二氧化硅 - 氧化铝渣的氧化铁氧化铁的还原速率。含有铁铁的炉渣已经被阐明,以研究铁阳离子的减少。结果表明,铁锈在铁锈之前减少了铁,因此铁浓度最初增加。还示出了速率常数,K,在低反应速率下降低,或者在低浓度下等效地降低。作者得出结论,反应发生在两个时期。在第一期,铁铁还原成铁。在第二时段期间,铁铁还原成金属铁,第二时段的速率限制步骤是渣相对渣金属界面中的铁阳离子的质量传递。

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