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Reduction characteristics of oily hot rolling mill sludge by direct reduced iron method

机译:直接还原铁法还原油性热轧机污泥的特性

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摘要

Oily hot rolling mill (HRM) sludge including high amount of iron was recycled by the direct reduced iron (DRI) method. The oil component in the HRM sludge which should be removed in order to reuse the sludge was thermally decomposed at the beginning of the reduction and acted as a reducing agent in the reaction by reducing the hematite (Fe_2O_3) and magnetite (Fe_3O_4) in the HRM sludge pellets into wustite (FeO). It was found that the oil component could participate in the reduction of the HRM sludge but additional reducing agent was needed to improve the metallization indicating the generation rate of metal Fe from the oily HRM sludge. When coke dust and blast furnace slag as an additive for reducing agent was applied, increase in the degree of metallization was observed. In the range of reaction temperature, 900-1150 ℃, metallization linearly increased with the elevation of temperature. Metallization showed sharp increase at the initial stage of the reaction while the increase began to level off after 30 min. To obtain the minimum requirement for acceptable DRI, 90% metallization, temperature must be kept above 1100 ℃ and mole ratio of mixture of coke dust (C/Fe_2O_3) must be above 3.6.
机译:通过直接还原铁(DRI)方法回收包含高铁的油性热轧机(HRM)污泥。 HRM污泥中的油成分应在还原开始时进行热分解,以便重新利用污泥,并在还原开始时对其进行热分解,并通过还原HRM中的赤铁矿(Fe_2O_3)和磁铁矿(Fe_3O_4)充当还原剂。污泥颗粒成铁矾(FeO)。已经发现,油成分可以参与HRM污泥的还原,但是需要额外的还原剂来改善金属化,这表明从油性HRM污泥产生金属Fe的速率。当使用焦炭粉尘和高炉矿渣作为还原剂的添加剂时,观察到金属化程度的增加。在900-1150℃的反应温度范围内,金属化随温度的升高呈线性增加。在反应的初始阶段,金属化显示出急剧增加,而在30分钟后,这种增加开始趋于平稳。为了获得可接受的DRI的最低要求,金属化90%,温度必须保持在1100℃以上,并且焦炭粉尘混合物的摩尔比(C / Fe_2O_3)必须大于3.6。

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