Elaboration of a technology for production conditional ilmenite concentrate by enrichment of titanium-magnetite ores

E. Degodya, O. P. Shavakuleva
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引用次数: 1

Abstract

The titanium-magnetite ores keep an important place among complex iron-containing ores. Utilization of these ores, comprising ores of Kopanskoe deposit, in steel industry is a serious problem, requiring for its solving enrichment resulting in obtaining iron-vanadium and ilmenite concentrates. A principal flow-chart of titanium-magnetite ores enrichment with obtaining conditional iron-vanadium and ilmenite concentrates elaborated. Results of flotation tests of non-magnetic fraction of Kopanskoe deposit titanium-magnetite ores, which is difficult for concentration. Application of flotation process for Kopanskoe deposit titaniummagnetite ores enrichment, which is difficult for concentration, enables not only to improve the enrichment indices, but considerably simplify the process chain of the plant equipment by excluding a big number of gravitational facilities. It was shown, that ilmenite and rutile flotation is successfully carried out in an acidic environment with the use of oleic acid, kerosene, sodium fluoride, sulfuric acid, foam activator VKP. The elaborated reagent complex provides obtaining conditional ilmenite concentrate. As a result of enrichment by application the elaborated magnetic flotation technology, iron-vanadium concentrate with a mass fraction of iron equal to 63.4 % and titanium dioxide – 4.5 % as well as ilmenite concentrate with a mass fraction of titanium dioxide equal to 45.2% obtained. The elaborated technology can be used for titanium-magnetite ores of Medvedevskoe, Kusinskoe, Chernorechenskoe deposits.
钛磁铁矿富集生产有条件钛铁矿精矿的工艺研究
钛磁铁矿在复杂含铁矿石中占有重要地位。这些矿石(包括Kopanskoe矿床的矿石)在钢铁工业中的利用是一个严重的问题,需要解决其富集问题,从而获得铁钒和钛铁矿精矿。阐述了获得条件铁钒钛精矿富集钛磁铁矿的主要流程。Kopanskoe矿床难选钛磁铁矿非磁性部分浮选试验结果对于难选的Kopanskoe矿钛磁铁矿,采用浮选工艺富集,不仅提高了富集指标,而且省去了大量的重力设施,大大简化了厂内设备的工艺链。试验结果表明,在酸性环境下,采用油酸、煤油、氟化钠、硫酸、泡沫活化剂VKP,可成功浮选钛铁矿和金红石。所制备的复配试剂可获得有条件的钛铁矿精矿。采用精心设计的磁浮工艺进行富集,获得了铁质量分数为63.4%、钛白粉质量分数为4.5%的铁钒精矿和钛白粉质量分数为45.2%的钛铁矿精矿。该工艺可用于Medvedevskoe、Kusinskoe、Chernorechenskoe矿床的钛磁铁矿。
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