Estimation of indices of BF heat of titanium-magnetite concentrates with different titanium dioxide content

A. Dmitriev, G. Vitkina, R. V. Petukhov, S. Petrova, Y. Chesnokov
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引用次数: 3

Abstract

Russia owns world largest reserves of titanium- magnetite and ilmenite- titanium- magnetite ores. Following the stepby-step inclusion into metallurgical processing of titanium- magnetite raw materials, the matter of maximum extraction of iron, vanadium and titanium becomes more and more actual. Kachkanar group of deposits of titanium- magnetite ores consists of two deposits: Gusevgoskoe and Sobstvenno-Kachkanar. At present JSC EVRAZ NTMK uses titanium- magnetite sinter and pellets, produced of Gusevgorskoe deposit ores. To make up the dropped out capacities and to keep the volume of mined ore at the level of 55 m t/year, it is planned to put into operation the reserved Sobstvenno-Kachkanar deposit. To process the titanium- magnetite ores of this deposit, their specific peculiarities should be taken into consideration. In particular, the increased TiO2content in iron ore concentrate up to 3.4% might require corrections of the BF technology. In this connection a study of metallurgical properties of lump iron ore raw materials with different titanium dioxide content was carried out. To clarify the pellets phase components a method of X-ray-phase analysis was used. The studies were done at CKP “Ural-M” equipment in the Institute of Metallurgy, Ural branch of Russian academy of Sciences. It was determined that pellets chemistry was represented by hematite (from 77 up to 89%), magnetite (from 2.84 up to 10.44%), complicated diopside (from 2 up to 10%), as well as in a small amount by quartz, hedenbergite, corundum, rutile, ferro-periclase, ilmenite, wollastonite, α-Fe, wustite. Results of viscosity calculation of obtained slags showed that it is within a range, typical for real BF slags viscosity. The obtained values of slag viscosity do not offer problems with slag regime of BF heat. It was shown, that increase of titanium dioxide content in pellets does not give rise to quality deterioration of iron ore raw materials preparation to BF heat as volume of introduced concentrate with increase TiO2content into the materials is increasing. Increase of hot strength and pellets temperature of beginning of softening, the pellets having increased titanium dioxide content, will positively affect main technical and economic indices of BF heat – coke rate and productivity, that was confirmed by BF indices calculation by application of balance logical and statistical model of BF process. 
不同钛白粉含量钛磁铁矿精矿高炉热指标估算
俄罗斯拥有世界上最大的钛磁铁矿和钛铁矿-钛磁铁矿储量。随着钛磁铁矿原料逐步纳入冶金工艺,最大限度地提取铁、钒、钛的问题越来越现实。卡奇卡纳尔钛磁铁矿群由古谢夫戈斯科和索布斯蒂文诺-卡奇卡纳尔两个矿床组成。目前,JSC EVRAZ NTMK采用钛磁铁矿烧结矿和球团矿,生产的是古谢夫戈尔斯科矿床矿石。为了弥补退出的产能,并将开采的矿石量保持在55万吨/年的水平,计划将保留的Sobstvenno-Kachkanar矿床投入运营。在处理该矿床的钛磁铁矿时,应考虑其特殊的特点。特别是,铁精矿中tio2含量增加到3.4%可能需要对高炉技术进行修正。为此,对不同二氧化钛含量的块状铁矿原料的冶金性能进行了研究。采用x射线相分析的方法来澄清微丸的相成分。这些研究是在俄罗斯科学院乌拉尔分院冶金研究所的CKP“Ural- m”设备上完成的。测定球团化学成分以赤铁矿(77% ~ 89%)、磁铁矿(2.84% ~ 10.44%)、复杂透辉石(2% ~ 10%)为代表,少量为石英、钙辉石、刚玉、金红石、铁方辉石、钛铁矿、硅灰石、α-Fe、浮士石。对所得炉渣的黏度计算结果表明,其黏度在一定范围内,符合高炉实际炉渣黏度的要求。所得的炉渣黏度值不存在高炉热的炉渣状态问题。结果表明,球团中二氧化钛含量的增加并不会导致铁矿石原料制备到高炉热前的质量变差,而是随着二氧化钛含量的增加而引入的精矿体积增大。应用平衡逻辑和统计模型计算高炉指标,证实了热强度和球团软化起始温度的提高对高炉热焦率和生产率等主要技术经济指标有积极的影响。
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