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Alkali roasting of bomar ilmenite: rare earths recovery and physico-chemical changes

机译:mar钛铁矿的碱焙烧:稀土的回收和理化变化

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摘要

In this work, the alkali roasting of ilmenite (FeTiO3) is presented as a process route for integrated beneficiation of the mineral for rutile-rich phase and rare earth oxides; the latter is released as a consequence of physical changes in the ilmenite matrix, during the water leaching after roasting. The oxidative alkali roasting transforms ilmenite mineral into water-insoluble alkali titanate and water-soluble ferrite. After roasting the insoluble alkali titanate is separated from rare-earth oxide mixture in colloidal form and water-soluble ferrite. Further leaching of alkali titanate is carried out with oxalic (0.3M) and ascorbic (0.01M) acid solution which removes the remaining Fe2+ ions into the leachate and allows precipitation of high-purity synthetic rutile containing more than 95% TiO2. Iron is removed as iron oxalate. The physico-chemical changes occurred during the roasting and leaching processes are reported by comparing the role of alkali on the roasting process and product morphologies formed.
机译:在这项工作中,提出了钛铁矿(FeTiO3)的碱焙烧作为将矿物质富集金红石相和稀土氧化物进行综合选矿的工艺路线。后者是由于钛铁矿基体在焙烧后浸出水期间发生物理变化而释放出来的。氧化碱焙烧将钛铁矿矿物转化为水不溶性钛酸碱金属盐和水溶性铁氧体。焙烧后,将不溶性碱金属钛酸酯以胶体形式和水溶性铁氧体从稀土氧化物混合物中分离出来。用草酸(0.3M)和抗坏血酸(0.01M)酸溶液进一步浸提钛酸碱,将剩余的Fe2 +离子去除到浸出液中,并使高纯度合成金红石(含TiO2含量超过95%)沉淀出来。铁以草酸铁的形式除去。通过比较碱在焙烧过程中的作用和形成的产品形态,报告了焙烧和浸出过程中发生的理化变化。

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