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Enhanced acid treatment to extract lithium from lepidolite with a fluorine-based chemical method

机译:提高酸处理,用氟基化学法从锂唑酯中提取锂

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摘要

Lepidolite has recently become valued as an important lithium ore resource due to the rapidly increasing demand for lithium (Li) for lithium-ion batteries (LIBs). However, existing processes to extract Li from lepidolite are still difficult and uneconomical, since the amount of lithium contained is typically low. Here, a fluorine based chemical method was proposed to enhance the lithium extraction and utilize the 2-4% F from lepidolite. Additionally, a mixture of hydrofluoric and sulfuric acid (HF/H2SO4) was employed to theoretically investigate the reaction mechanism of the fluorine-based chemical method, since HF molecules are main reaction forms in the reaction. The results showed that the HF/ore ratio played a dominant role in the acid treatment, especially in the generation of fluorides. The added H2SO4 slightly accelerated the dissolution and affected the coordination equilibrium between Al3+ and F-. The dissolution conditions were also optimized that 98% of Li and 90% of Rb and Cs were efficiently converted into lixivium as sulfates using an ore/HF/H2SO4 ratio of 1:2:3.5 (g/mL/mL) at 85 degrees C for 3 h. Lepidolite was selectively dissolved over quartz, resulting in the relatively selective leaching of Li over Si and leaving amorphous Si O rich layers and K2SiF6 in the residue, which will be beneficial for the downstream processes of purification and separation. This investigation leads to advances in the understanding of the dissolution behavior with this fluorine-based chemical method and reflects the application potential of introducing fluorine to utilize lepidolite.
机译:由于锂离子电池(LIBS)的锂(LI)的需求迅速增加,Lepidolite最近被视为重要的锂矿石资源。然而,从锂岩石中提取锂的现有方法仍然困难和不经济,因为所含锂的量通常是低的。这里,提出了一种氟基化学方法以增强锂萃取并利用锂钛矿2-4%F.另外,使用氢氟酸和硫酸(HF / H 2 SO 4)的混合物,从理论上研究了氟基化学方法的反应机理,因为HF分子是反应中的主要反应形式。结果表明,HF /矿石比在酸处理中起显性作用,特别是在氟化物的产生中。加入的H 2 SO 4略微加速溶解并影响Al 3 +和F-之间的配位平衡。还优化了溶解条件,其中使用85℃的矿石/ HF / H 2 SO 4比为硫酸盐,98%的Li和90%的RB和Cs被有效地转化为硫酸盐作为硫酸盐。 3小时。 Lepidolite被选择性地溶解在石英上,导致锂过度锂的相对选择性的浸出,并在残留物中将无定形Si O和K2SIF6留下,这将有利于纯化和分离的下游过程。该调查导致了解通过这种氟基化学方法对溶出行为的理解进步,并反映出氟的应用潜力利用锂岩。

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