Abstract
To address lithium extraction from clay-type lithium ore from the Qaidam Basin, this study identified key controlling factors through particle fractionation, acid-leaching–roasting experiments, and mineral characterization. The results demonstrate that particle size optimization enriched the lithium to 87.65 ppm, where a 74% leaching rate was achieved with 65 ppm extraction, which established intermediate-sized samples as optimal. During acid leaching, adsorbed lithium ions with a phyllosilicate interlayer were released via the ion exchange process instead of mineral dissolution, as verified by the Li-O/S-O peak shifts in the FTIR spectra. The roasting induced hydroxyl elimination, carbonate decomposition, and silicate restructuring but triggered lithium encapsulation via mineral phase reorganization, which caused a sharp leaching rate decline. Effective lithium extraction requires integrated particle size screening, acid-leaching optimization, and roasting-induced phase encapsulation disruption. This study established theoretical foundations for clay-type lithium ore exploitation.
Author supplied keywords
Cite
CITATION STYLE
Zhang, X., Zhao, J., Li, Y., An, D., Cheng, H., Ma, Y., & Song, H. (2025). Mineral Phase Transformation and Leaching Behavior During the Roasting–Acid–Leaching Process of Clay-Type Lithium Ore in the Qaidam Basin. Minerals, 15(8). https://doi.org/10.3390/min15080777
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.