Related Experiment Video
Updated: Sep 17, 2025

Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
Supersolubility and solubility of lithium phosphate in sodium carbonate solution
Huaiyou Wang1,2, Jia Zhang1,2, Xu Liu1,2
1Key Laboratory of Green and High-end Utilization of Salt Lake Resources, Qinghai Institute of Salt Lakes, Chinese Academy of Sciences Xining 810008 PR China.
Abstract:
The tail liquid generated from lithium carbonate production in salt lake brine is termed lithium-bearing mother liquor. This mother liquor exhibits a complex composition, with the Li+ concentration typically around 1.5 g L-1, representing a significant lithium resource. Preparing lithium phosphate (Li3PO4) from this mother liquor is critical for efficient lithium recovery. However, the lack of data on the thermodynamic behavior and Li3PO4 crystallization in such complex solutions has hindered the high-efficiency recovery of lithium resources. In this study, the solubility of Li3O4 in sodium carbonate solutions was determined using the dynamic dissolution equilibrium method. The effects of temperature and sodium carbonate concentration on solubility were analyzed, and experimental data were correlated using an exponential equation. Results indicated that the solubility of Li3PO4 in pure water and sodium carbonate solutions increases with temperature and sodium carbonate concentration. The supersolubility of Li3PO4 in LiCl-Na2CO3 electrolyte solutions was measured via turbidimetric analysis, and the metastable zone width (MSZW) was determined. The supersolubility of Li3PO4 significantly decreased with rising temperature. In contrast, supersolubility initially increased and then decreased with higher Na2CO3 concentrations, with reactant concentration being the decisive factor driving the crystallization reaction. Furthermore, the MSZW narrowed at elevated temperatures. Thermodynamic functions (ΔS d, ΔH d, and ΔG d) for the dissolution process were calculated via the van't Hoff equation, confirming that Li3PO4 dissolution is a spontaneous and endothermic process. Based on solubility and supersolubility data, a novel process was developed to prepare battery-grade Li3PO4 (purity: 99.80%) from salt lake mother liquor. The results of Raman, FTIR, TG and SEM suggested that the prepared lithium phosphate was pure phase. This study provides fundamental physicochemical data and theoretical insights for the efficient separation and extraction of lithium resources from lithium precipitation mother liquor.
More Related Videos
06:561,3,5-Triphenylbenzene and Corannulene as Electron Receptors for Lithium Solvated Electron Solutions
Published on: October 10, 2016
11:04Synthesis of Ionic Liquid Based Electrolytes, Assembly of Li-ion Batteries, and Measurements of Performance at High Temperature
Published on: December 20, 2016
Related Concept Videos
Solubility of Ionic Compounds
Solubility Equilibria
The...
Factors Affecting Solubility
Solubility Equilibria: Overview
Solubility is important in biological and environmental processes. A notable...
Ionic Strength: Effects on Chemical Equilibria
In this solution, the primary...
Precipitation of Ions
The equation that describes the equilibrium between solid calcium carbonate and its solvated ions is: