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Solar-grade silicon powder prepared by combining combustion synthesis with hydrometallurgy

机译:燃烧合成与湿法冶金相结合制备的太阳能级硅粉

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Solar-grade silicon microparticles have been prepared by a two-stage technique consisting of a combustion process in a SiO_2αMg (α is the mole number of Mg) system in an inert atmosphere and the hydrometallurgical treatment of the combustion product. It has been shown that the refining behavior of the metallic impurities from combustion-synthesized silicon (CS-Si) is better than that of metallic impurities from metallurgical-grade silicon (MG-Si) since CS-Si particles have a unique microporous network structure, which makes the hydrometallurgical treatment process very efficient. Inductively coupled plasma (ICP) analysis results indicate that silicon of purity greater than 99.99% can be obtained by the developed technique. The principle of the hydrometallurgical purification of CS-Si is discussed in the context of particle morphology and a comprehensive explanation for porous structure formation is provided.
机译:通过两阶段技术制备了太阳能级硅微粒,该技术包括在惰性气氛中在SiO_2αMg(α是Mg的摩尔数)系统中进行燃烧过程以及对燃烧产物进行湿法冶金处理。结果表明,燃烧合成硅(CS-Si)的金属杂质的提纯行为优于冶金级硅(MG-Si)的金属杂质的提纯行为,因为CS-Si颗粒具有独特的微孔网络结构,这使得湿法冶金处理过程非常有效。电感耦合等离子体(ICP)分析结果表明,通过开发的技术可以获得纯度大于99.99%的硅。在粒子形态的背景下讨论了CS-Si湿法冶金纯化的原理,并为多孔结构的形成提供了全面的解释。

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