Production of Al-Sc Alloy by Electrolysis from Cryolite Melt Using Secondary Feedstock Material

A. Martínez, S. Senanu, H. Gudbrandsen, K. S. Osen, Anne Støre, Zhaohui Wang, O. Kjos
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引用次数: 1

Abstract

Electrolysis experiments to produce Al-Sc alloys were carried out in galvanostatic mode using a cryolitic melt with a NaF/AlF3 molar ratio of 2.2 at 980 °C, using both synthetic and waste feeds. After elucidation of the cryolite electrolyte bath chemistry when adding Sc2O3, small-laboratory scale trials allowed for the demonstration of the process and the study and for the optimisation of the electrolysis parameters. Experiments in large-scale electrolysis cells allowed us to run long-term trials in continuous operation, while the on-line monitoring of the cell off-gases ensured the environmentally benign performance of the process. The aluminium product obtained contained 0.6–2.6 wt% Sc, depending on the current density applied. The material is suited to prepare Al-Sc master alloys for 3D printing powders.
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用二次原料电解冰晶石熔体生产铝钪合金
采用NaF/AlF3摩尔比为2.2的冰晶熔体,在980℃的恒流模式下,采用合成料和废料进行了铝钪合金的电解实验。在阐明了添加Sc2O3时冰晶石电解液的化学性质后,进行了小型实验室试验,以证明该过程和研究以及电解参数的优化。大规模电解电池的实验使我们能够在连续操作中进行长期试验,而电池废气的在线监测确保了该过程的环保性能。所得到的铝产品含有0.6-2.6 wt%的Sc,这取决于所施加的电流密度。该材料适合制备用于3D打印粉末的Al-Sc母合金。
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