用改良升级渣工艺将助熔剂含钛渣选矿成可销售的钛白粉产品

X. Goso, J. Petersen, M. Tangstad, J. Safarian
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引用次数: 0

摘要

摘要研究了采用改进的升级渣(UGS)工艺冶炼生产低MgO含量的石灰石助熔剂含钛渣,用于后续选矿,目的是生产出适销的二氧化钛产品。在氩气氛下,在铁感应炉的水冷铜坩埚中,用碳还原剂和石灰石熔剂熔炼含钛磁铁矿(钛磁铁矿)。所得的含钛渣含有高残留铁(来自感受器和钛磁铁矿中不完全的铁还原),这导致了ulvospiel的结晶。矿渣采用改良的UGS工艺进行选矿,这是一种工业焙烧-浸出工艺,用于将低钛矿渣选矿为适合生产二氧化钛颜料的原料。升级后的产品含有90.5质量%的TiO2,回收率为83%。尽管TiO2等级满足通过氯化物途径生产颜料的原料规格,但SiO2、Al2O3、CaO和Cr2O3的浓度超过了规格,并且粒度分布太细。
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Beneficiation of fluxed titaniferous slag to a marketable titania product using the modified upgraded slag process
ABSTRACT Smelting production of a limestone-fluxed titaniferous slag with low MgO content for subsequent beneficiation using the modified Upgraded Slag (UGS) process was investigated, with the aim of producing a marketable titania product. Smelting of titaniferous magnetite (titanomagnetite) with a carbon reductant and limestone flux was conducted in a water-cooled copper crucible in an iron-suscepting induction furnace under argon. The resulting titaniferous slag contained high residual iron (from the susceptor and incomplete iron reduction in the titanomagnetite), which caused crystallization of an ulvospinel. The slag was beneficiated using the modified UGS process, an industrial roast–leach process used for beneficiation of low-titania slag to a feedstock suitable for production of titania pigment. The upgraded product contained 90.5 mass% TiO2, with a recovery of 83%. Although the TiO2 grade met the feedstock specification for pigment production via the chloride route, SiO2, Al2O3, CaO, and Cr2O3 concentrations exceeded the specification and the particle size distribution was too fine.
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CiteScore
3.50
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0.00%
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6
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