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Hydrochloric Acidic Processing of Titanite Ore to Produce a Synthetic Analogue of Korobitsynite

机译:盐酸酸性处理钛矿矿石以生产合成钾铁矿的类似物

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The modal composition of (apatite)-nepheline-titanite ore and its geological setting within apatite deposits of the Khibiny Massif allow selective mining of titanite ore and its hydrochloric acidic processing. The reaction of titanite with concentrated hydrochloric acid produces hydrated titanosilicate precipitate (TSP) which, in turn, can be a precursor in titanosilicate synthesis. It is particularly noteworthy that a synthetic analogue of korobitsynite, Na 5 (Ti 3 Nb)[Si 4 O 12 ] 2 O 2 (OH) 2 ·7H 2 O, was synthesized by means of TSP alteration by alkaline hydrothermal solution at 200 °C within three days. The titanosilicate obtained this way has comparatively weak cation-exchange properties regarding Cs + and Sr 2+ cations and considerable photocatalytic activity occurring under visible light, which allows the use of a synthetic korobitsynite analogue (SKR) for production of self-cleaning, sterilizing, and anti-fouling building materials.
机译:Khibiny地块的磷灰石矿床中的(磷灰石)-霞石-钛矿矿石的模态组成及其地质环境允许钛矿矿石的选择性开采及其盐酸处理。钛酸盐与浓盐酸反应生成水合钛硅酸盐沉淀物(TSP),而后者又可能是钛硅酸盐合成中的前体。特别值得一提的是,通过在200°C的碱性水热溶液中进行TSP改变,合成了硼锰矿的合成类似物Na 5(Ti 3 Nb)[Si 4 O 12] 2 O 2(OH)2·7H 2O。三天内C。以此方式获得的钛硅酸盐对Cs +和Sr 2+阳离子具有相对较弱的阳离子交换性能,并且在可见光下具有相当大的光催化活性,从而可以使用合成的钾硼锰矿类似物(SKR)进行自清洁,灭菌,和防污建材。

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