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Removal of impurities from metallurgical grade silicon by addition of ZnO to calcium silicate slag

机译:通过向硅酸钙渣中添加ZnO去除冶金级硅中的杂质

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摘要

Slag refining is one of the most effective methods to remove impurities from metallurgical grade silicon. In this paper, ZnO was added to a binary 50% CaO-50% SiO2 slag system with a mass ratio of 2-30% to study the impurities removal from metallurgical grade silicon. The results showed that boron was reduced from 12.94 ppmw to 2.18 ppmw by a 46% CaO-46% SiO2-8% ZnO slag system. Compared to the 50% CaO-50% SiO2 slag system, slag refining with ZnO addition showed a 20% increase in removal efficiency and a 40% increase in the distribution coefficient. After acid leaching, boron was further reduced to 1.52 ppmw with a removal efficiency of 88.25%. By a combined process of slag refining and acid leaching, impurities Al and Fe were reduced from 817 ppmw and 3800 ppmw to 1.2 ppmw and 96 ppmw with removal efficiencies of 99.8% and 97.5%, respectively. The evaporation loss of the generated metallic zinc during slag refining was greater than 99.7%. After acid leaching, the minimum zinc content in silicon was only 4 ppmw. (C) 2016 Elsevier B.V. All rights reserved.
机译:精炼炉渣是从冶金级硅中去除杂质的最有效方法之一。本文将ZnO添加到质量比为2-30%的二元50%CaO-50%SiO2炉渣系统中,以研究从冶金级硅中去除杂质的方法。结果表明,采用46%CaO-46%SiO2-8%ZnO渣系统将硼从12.94 ppmw降低到2.18 ppmw。与50%CaO-50%SiO2炉渣系统相比,添加ZnO精炼炉渣的去除效率提高了20%,分配系数提高了40%。酸浸后,硼进一步还原至1.52 ppmw,去除效率为88.25%。通过熔渣精炼和酸浸的组合过程,杂质Al和Fe从817 ppmw和3800 ppmw减少到1.2 ppmw和96 ppmw,去除效率分别为99.8%和97.5%。矿渣精炼过程中生成的金属锌的蒸发损失大于99.7%。酸浸后,硅中的最小锌含量仅为4 ppmw。 (C)2016 Elsevier B.V.保留所有权利。

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