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Titanite-Containing Mineral Compositions and Their Chemical Treatment with Preparation of Functional Materials

机译:含钛矿物质的组成及其功能材料的化学处理

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摘要

The waste of apatite-nepheline ore processing was chosen as the material of study for the present investigation. The chemical and phase compositions have been analyzed and the route of the new technology has been developed. Treatment of the waste with diluted hydrochloric acid enables to separate apatite, nepheline, titano-magnetite minerals from titanite (CaSiTiO ). The obtained titanite concentrate contains 30–32% of titanium dioxide. Interaction of titanite with hydrochloric acid under heating and stirring conditions results in calcium leaching. The titanite decomposition is accompanied by titanium and silica oxides precipitation. The resulting solid has been used as a precursor for the synthesis of functional materials. Mechanochemical activation of the precursor provides the structural and morphological disorder of the initial particles. Thermodynamic stability of activated particles is achieved by chemisorption or roasting.
机译:选择磷灰石-霞石矿石加工废料作为本研究的研究材料。分析了化学和相组成,并开发了新技术的途径。用稀盐酸处理废物可从钛矿(CaSiTiO)中分离磷灰石,霞石,钛磁铁矿矿物。获得的钛矿精矿含有30-32%的二氧化钛。钛矿与盐酸在加热和搅拌条件下的相互作用导致钙的浸出。钛矿分解伴随着钛和二氧化硅的沉淀。所得固体已用作合成功能材料的前体。前体的机械化学活化提供了初始颗粒的结构和形态紊乱。活化颗粒的热力学稳定性是通过化学吸附或焙烧实现的。

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