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Reduction Behaviors of Sinter Made from Magnetite Concentrates in Reducing Process Simulated COREX Shaft Furnace

机译:减少磁铁矿浓缩物在减少过程中的烧结性模拟芯轴炉

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COREX smelting reduction process which is freed of metallurgical coke provides a sustainable developing way for ironmaking industry. However, the shortage and high cost of pellets limit its development in China. Meanwhile, iron ore sinter has a great output in China. This work studied the reduction behaviors of sinter made from magnetite concentrates during the reducing process of COREX shaft furnace and compared the RI and RDI of sinter with BF process. The results showed that the reduction degree of sinter increased obviously during the temperature zone from 600 to 850°C, while the reduction degradation presented rapidly aggravate in the temperature zone from 425 to 550°C in COREX shaft furnace, and the increase of metallic iron content leads to the degradation of sinter got decreased slightly during the stage of temperature above 650°C. Sinter got higher RI than BF process but also got higher RDI in low reduction temperature of 550°C, which means sinter would have heavier disintegration in COREX shaft furnace.
机译:Corex冶炼减少过程是冶金焦炭的释放,为炼铁工业提供了可持续的开发方式。然而,颗粒的短缺和高成本限制了中国的发展。与此同时,铁矿石烧结陶瓷在中国具有巨大产量。这项工作研究了在Corex轴炉的还原过程中由磁铁矿浓缩物的烧结浓缩物的减少行为,并与BF工艺进行了烧结器的RI和RDI。结果表明,在600至850°C的温度区期间烧结烧结度明显增加,而在Corex轴炉中,呈现的还原降解在425至550℃的温度区中快速加剧,以及金属铁的增加在温度高于650℃的温度期间,含量导致烧结的降解略微下降。 Sinter比BF工艺更高的RI,但在550°C的低还原温度下也有更高的RDI,这意味着烧结在Corex轴炉中具有较重的崩解。

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