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Aluminum Extraction by Al-Si-Fe Alloy Electrolysis

机译:Al-Si-Fe合金电解提取铝

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摘要

With the rapid development of the aluminum industry, the contradiction between the supply shortage of bauxite and alumina has become more prominent. If aluminum can be extracted from the aluminum-containing waste produced by the factory, especially Al-Si-Fe alloy, the problem of insufficient aluminum resources in China can be alleviated. In this paper, metal aluminum was extracted by electrolysis with Al-Si-Fe alloy as a soluble anode in NaCl-KCl-Na_3AlF_6 low temperature melts. The liquidus temperature and conductivity of the electrolyte were measured, and the influencing factors of current efficiency during electrolysis were discussed. The results show that when the molar ratio of NaCl-KCl-Na_3AlF_6 is 0.48:0.48:0.04, the liquidus temperature of the electrolyte was relatively low and the conductivity was high. When the electrolysis experiment was conducted in the above electrolyte with a current density of 0.2 A cm"2 at 690 °C for 1.5 h, a high current efficiency of 77.6% can be reached.
机译:随着铝工业的快速发展,铝土矿和氧化铝供应短缺之间的矛盾日益突出。如果可以从工厂生产的含铝废物中提取铝,尤其是Al-Si-Fe合金,则可以缓解中国铝资源不足的问题。本文以Al-Si-Fe合金为可溶阳极,在NaCl-KCl-Na_3AlF_6低温熔体中电解提取金属铝。测量了电解液的液相线温度和电导率,并讨论了电解过程中电流效率的影响因素。结果表明,当NaCl-KCl-Na_3AlF_6的摩尔比为0.48:0.48:0.04时,电解质的液相线温度较低,电导率较高。当在690℃下以0.2Acm 2的电流密度在上述电解质中进行电解实验1.5小时时,可以达到77.6%的高电流效率。

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