Sustainable Silicon and High Purity Alumina Production from Secondary Silicon and Aluminium Raw Materials through the Innovative SisAl Technology

A. Toli, G. Tsaousi, E. Balomenos, D. Panias, M. Heuer, Harald Philipson, G. Tranell
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引用次数: 4

Abstract

Calcium aluminate slag produced by the aluminothermic reduction of silica is tested as a candidate raw material for the hydrometallurgical production of pure aluminium chloride hexahydrate (ACH) through leaching with hydrochloric acid. The crystallization of ACH follows by sparging the pregnant liquor with hydrochloric gas. Almost total extraction of Al is achieved with the use of azeotropic HCl acid solution (5.9 M) at 80 °C and 1 h retention time. A pregnant liquor with approximately 20 wt% AlCl3 is produced as a base for ACH crystallization by sparging it with gaseous HCl. The ACH produced is re-dissolved and crystallized three to four times until high purity is achieved. High purity ACH acts as a precursor for producing High Purity Alumina (HPA), a high added value material used in LEDs and lithium-ion batteries and other niche applications.
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通过创新的剑麻技术,从二次硅和铝原料生产可持续硅和高纯度氧化铝
采用硅铝热还原法制备铝酸钙渣,作为湿法冶金生产纯六水氯化铝(ACH)的候选原料,进行了盐酸浸出试验。用盐酸气体喷淋孕液,使乙酰胆碱结晶。使用共沸盐酸溶液(5.9 M),在80°C和1 h的保留时间下,几乎可以完全提取铝。用气态的HCl将含有约20wt % AlCl3的怀孕液作为乙酰氨基乙烷结晶的碱。产生的乙酰胆碱再溶解和结晶三到四次,直到达到高纯度。高纯度乙酰胆碱是生产高纯度氧化铝(HPA)的前体,HPA是一种高附加值的材料,用于led和锂离子电池以及其他小众应用。
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