Department of Mechanical Engineering, University of Wisconsin Milwaukee, Milwaukee, WI, USA.
U.S. Department of Agriculture, Agricultural Research Service, National Center for Agricultural Utilization Research, Bio-oils Research Unit, 1815 N. University Street, Peoria, IL 61604, USA.
Waste Manag. 2023 Feb 15;157:1-7. doi: 10.1016/j.wasman.2022.12.003. Epub 2022 Dec 10.
Recycling spent lithium iron phosphate (LFP) cathodes in an economically sustainable way remains a great challenge due to their low-value elemental composition. Thus, both low-cost technology together with a high-value product are critical for the recovery of the LFP materials. In this study, the commercially mature ion-exchange (IX) method was explored to recover Li from LFP material for the first time. The feasibility of Li-H and Li-K IX reactions using strong and weak acid cation exchange resins was systematically investigated from the thermodynamic and kinetic perspectives. Different organic and inorganic acids were explored to obtain the feeding solution. The IX efficiency was greatly affected by the pH of the feeding solutions. Oxalic acid leaching solution with mild pH value and low iron impurity were determined to be the optimal feeding solution for IX reaction. The kinetics of IX and regeneration reaction were fast, and the resins can be reused several times without loss of IX capacity. Along with the P element remaining in the leaching solution, the Li-K IX reaction delivered a potential product of multi-elemental fertilizer. This simple and economical technology provides a practical recycling strategy for the spent LFP batteries.
由于其低价值的元素组成,以经济可持续的方式回收废旧磷酸铁锂(LFP)正极仍然是一个巨大的挑战。因此,低成本技术和高价值产品对于 LFP 材料的回收都至关重要。在这项研究中,首次探索了商业上成熟的离子交换(IX)方法来从 LFP 材料中回收 Li。从热力学和动力学的角度系统研究了 Li-H 和 Li-K IX 反应中强酸和弱酸阳离子交换树脂的可行性。探索了不同的有机和无机酸来获得进料溶液。IX 效率受进料溶液 pH 值的影响很大。确定具有温和 pH 值和低铁杂质的草酸浸出液是 IX 反应的最佳进料溶液。IX 和再生反应的动力学很快,树脂可以重复使用几次而不会损失 IX 容量。随着浸出液中 P 元素的保留,Li-K IX 反应提供了一种潜在的多元素肥料产品。这种简单经济的技术为废旧 LFP 电池提供了实用的回收策略。