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Carbothermic Reduction of Iron Oxide Waste Generated During the Processing of Ilmenite

机译:在钛铁矿加工过程中产生的氧化铁废料的碳热还原

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In India, ilmenite is considered as a major mineral reserve for the extraction of titanium. During the processing of ilmenite to produce titanium dioxide, huge amount of iron oxide is generated and dumped as waste. According to an approximation, 0.7 ton of iron oxide waste is generated for one ton of synthetic rutile production. This waste iron oxide has great potential to be utilized as resource of iron. Therefore, the present work deals with the carbothermic reduction studies of iron oxide waste generated during the ilmenite processing. The spent graphite electrode of electric arc furnace was used as reductant for the reduction studies. Different parameters such as reduction temperature, residence time and weight ratio of iron oxide/reductant were investigated. Reduction studies were carried out by varying the residence time at 15, 30, 60 and 120min. With an increase in reduction temperature and residence time, percent reduction was found to be increased. Maximum reduction value of 95% was obtained at optimized reduction condition. After reduction, fine powder of metallic iron was obtained, which was characterized by XRD and particle size analyzer. The generated fine powder of metallic iron had direct application and high market value.
机译:在印度,Ilmenite被认为是钛的主要矿物储备。在加工钛铁矿生产二氧化钛期间,产生大量的氧化铁作为废物倾倒。根据近似,产生0.7吨的氧化铁废物,用于一吨合成金红石生产。氧化铁氧化铁具有很大的潜力,可用于铁的资源。因此,本工作涉及在钛铁矿加工过程中产生的氧化铁废弃物的碳热还原研究。将电弧炉的废石墨电极用作还原剂的还原剂。研究了不同的参数,例如还原温度,停留时间和重量比的氧化铁/还原剂的重量比。通过在15,30,60和120min下改变停留时间来进行减少研究。随着还原温度和停留时间的增加,发现减少百分比增加。在优化的还原条件下获得最大减少值95%。还原后,获得金属铁的细粉末,其特征在于XRD和粒度分析仪。金属铁的产生细粉直接应用和高市场价值。

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