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Extracting lithium from a lithium aluminate complex by vacuum aluminothermic reduction

机译:通过真空铝热还原从铝酸盐复合物中提取锂

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摘要

The molten salt electrolysis of LiCl‒KCl is presently the primary method of producing lithium, but it is costly and has environmental issues in addition to other disadvantages. Vacuum thermal reduction may be used extensively in the future because it offers low energy consumption, a high purity product and short cycle times. The present study investigated a novel process for the extraction of lithium from Li5AlO4 clinker by vacuum aluminothermic reduction. The Li5AlO4 clinker was prepared in ambient air using lithium hydroxide, alumina and calcium oxide. The results show that this process can proceed in conjunction with a lower ratio of raw materials to lithium (8.89:1) and provides lithium reduction rates in excess of 97%. In addition, the reduction slag consists mainly of 12CaO•7Al2O3, which can be used to produce aluminum hydroxide. Thus, this process represents a highly efficient and environmentally-friendly method of generating lithium.
机译:LiCl-Kcl的熔融盐电解目前是生产锂的主要方法,但除了其他缺点之外,还昂贵并具有环境问题。真空热还原可以在未来广泛使用,因为它提供低能耗,高纯度产品和短循环时间。本研究研究了通过真空铝热还原从Li5AlO4熟料提取锂的新方法。使用氢氧化锂,氧化铝和氧化钙在环境空气中制备Li5AlO4熟料。结果表明,该过程可以与锂(8.89:1)的原材料的较低比率结合,并提供锂减少率超过97%。此外,还原炉渣主要由12CaO•7AL2O3组成,可用于生产氢氧化铝。因此,该方法代表了产生锂的高效和环保的方法。

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