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Researching of physicochemical and structural-phase transformations in carbothermal titanomagnetite concentrates reduction for sustainable development of raw materials base of metallurgical enterprises

机译:冶金企业原料基地可持续发展的碳热钛磁石浓缩物浓缩物的物理化学和结构相变

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摘要

This study displays results of carbothermal reduction researches of titanоmagnetite concentrate obtained during complex apatite-titanomagnetite-ilmenite ore dressing. The mineral composition was analyzed and the structural and textural features of the titaniferous ore of Kropivensky deposit and the titanomagnetite concentrate obtained from it were revealed. The mechanism of solid-phase carbothermal the titanomagnetite concentrate reduction is investigated. Temperature-time parameters have been discovered to ensure the formation of both products with the maximum yields of iron and titania from metal and slag-phase during titanomagnetite concentrate reduction. One-stage resource-saving flow chart of titanomagnetite concentrate processing with mass fraction up to 25% TiO2 is developed.. It allows to obtain two marketable products: granular cast iron (92-96.5% Fe, 3.4-3.7% C, 0.5% V) in 57% yield and titaniferous slag (50-55% TiO2, up to 7.4% FeO) in 43% yield.
机译:本研究显示了在复合物 - 钛镁镁铝矿石矿床中获得的钛葡萄酒浓缩物的碳水化合物减少研究结果。分析了矿物质组合物,揭示了Kropivensky沉积物的二氧化钛矿石的结构和纹理特征,并揭示了从其获得的钛镁镁石浓缩物。研究了固相榴石钛镁胺浓缩物减少的机理。已经发现温度时间参数,以确保在钛磁石浓缩物减少期间,在金属和渣相期间形成具有最大铁和二氧化钛的产量的产品。开发了高达25%TiO2的钛磁磁石体浓缩物加工的一步资源节约流程图..它允许获得两种可销售产品:粒状铸铁(92-96.5%Fe,3.4-3.7%C,0.5% v)产率57%,钛渣(50-55%TiO 2,高达7.4%Feo),产量为43%。

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