Selective extraction of lithium from the clay-type lithium ore by a novel process of blank roasting and CaO-aided alkaline leaching

IF 4.9 2区 工程技术 Q1 ENGINEERING, CHEMICAL
Shuai Zhao , Fancheng Meng , Yahui Liu , Jian Zhang , Yongchao Wang , Xile Tian , Xiaoxia Li , Desheng Chen , Lina Wang , Tao Qi
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引用次数: 0

Abstract

With the explosive demand for lithium and the depletion of high-quality lithium resources, the extraction and utilization of lithium from clay-type lithium ore have become increasingly significant. In this research, a clay-type lithium ore composed of diaspore, goethite, kaolinite, illite, and cookeite (LiAl4(AlSi3O10)(OH)8) was used, and lithium mainly situated in the structure of cookeite. To destroy the cookeite structure and selectively extract lithium from it, a novel and green process of blank roasting and CaO-aided alkaline leaching was proposed. After roasting at 800 °C and leaching with CaO/roasting powder mass ratio of 0.35 and NaOH concentration of 3 g/L at 100°C, the leaching efficiency of Li could be 82.84 %, while those of Al, Si, Mg, and Fe were only 0.030 %, 0.013 %, 0 %, and 0 %, respectively. Li2CO3 with a purity of 99.85 % was precipitated after the purification of the leaching solution by a solvent extraction method. In the view of structural transformation, cookeite was decomposed and transformed into LiAlSi2O6 in roasting, which was then disrupted by OH and released lithium in CaO-aided alkaline leaching, along with the formation of solid Ca3Al2O6·6H2O and Ca3Al2SiO4(OH)8. Thermodynamic equilibrium calculation results indicate that adding CaO and NaOH and maintaining the pH at 12.6 ∼ 12.9 can immobilize Al and Si and inhibit the leaching of Mg, Fe and Ca, which is the key for the efficient and selective extraction of lithium.

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来源期刊
Minerals Engineering
Minerals Engineering 工程技术-工程:化工
CiteScore
8.70
自引率
18.80%
发文量
519
审稿时长
81 days
期刊介绍: The purpose of the journal is to provide for the rapid publication of topical papers featuring the latest developments in the allied fields of mineral processing and extractive metallurgy. Its wide ranging coverage of research and practical (operating) topics includes physical separation methods, such as comminution, flotation concentration and dewatering, chemical methods such as bio-, hydro-, and electro-metallurgy, analytical techniques, process control, simulation and instrumentation, and mineralogical aspects of processing. Environmental issues, particularly those pertaining to sustainable development, will also be strongly covered.
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