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Effect of Acid and Electrochemical Treatment on Physicochemical and Electrical Properties of Tantalite, Columbite, Zircon and Feldspar

机译:酸和电化学处理对钽,康尼斯,锆石和长石的物理化学和电学性质的影响

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摘要

The article gives a report on integrated experimental research into targeted change of chemical and phase composition of surface and increase in contrast of physicochemical, electrical and electrochemical properties of tantalite, columbite and zircon under treatment by acid product of water electrolysis-anolyte (pH < 5) and by muriatic solution (HCl, pH 3-3.5). The X-ray photoelectron spectroscopy, high resolution spectroscopy and chemical and electrophysical techniques reveal the mechanism of structural-chemical surface transformation of tantalite, columbite, zircon and feldspar under leaching in acid solutions; this surface transformation mechanism consists in activation of dissolving of iron-and silicate-containing surface films and high-rate oxidation of iron atoms in surface layer of tantalite and columbite, with transition of Fe(II) to Fe(III) and surface destruction of zircon, with formation of oxygenvacant defects of SiO32-and 0 SiO20 type under influence of anolyte.
机译:本文介绍了综合试验研究的综合试验研究,进入了化学和相位成分的靶向变化,并在水电解 - anolyte的酸产物下进行了钽,肠果和锆石的物理化学,电化学和电化学性质的对比度增加(pH <5 )通过武器溶液(HCl,pH3-3.5)。 X射线光电子能谱,高分辨率光谱和化学电子技术揭示了酸溶液浸出下钽铁矿石,哥伦博特,锆石和长石结构化学表面转化的机制; 该表面转化机制包括溶解溶解铁和硅酸盐的表面膜和钽铁矿石表面层的铁原子的高速率氧化,具有Fe(II)至Fe(III)的过渡和表面破坏 锆石,在阳极电解液的影响下形成SiO32-and 0 SiO20型的过光缺陷。

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