Efficient separation of Fe and Li from spent LiFePO4 materials and preparation of high-performance P-C/FeS anode material by cation exchange resin

阳极 材料科学 吸附 离子交换 X射线光电子能谱 电化学 锂(药物) 化学工程 浸出(土壤学) 复合数 离子交换树脂 阳离子交换容量 化学 离子 无机化学 电极 复合材料 有机化学 医学 环境科学 物理化学 土壤科学 工程类 土壤水分 内分泌学
作者
Shenglong Yang,Ying Shi,Qingyu Li,Kui Liu,Hongqiang Wang,Qichang Pan,Qiang Wu,Guangchang Yang,Yan Su
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:476: 146554-146554 被引量:7
标识
DOI:10.1016/j.cej.2023.146554
摘要

With the increased consumption of LiFePO4 batteries, the number of spent batteries has also increased sharply, and recycling LiFePO4 batteries has become an urgent task today. Herein, we propose a high-efficient strategy for separation of Fe and Li from leaching solution of spent LiFePO4 materials by cation exchange resin and a new method for preparation of high-performance anode materials. The adsorption efficiencies of Fe and Li by cation exchange resin were 99.9 % and 5.3 % under the conditions of solid–liquid ratio of 1:5, flow rate of 4 BV/h, and Fe and Li concentrations of 2.88 g/L and 0.44 g/L, respectively. High-purity Li2CO3 could be successfully produced from the effluent of resin adsorption. The Fe-saturated waste cation exchange resin was used to prepare the porous-C/FeS (P-C/FeS) composite with FeS content of 41 %, which was characterized by XRD, XPS, SEM, TEM and TGA analysis. The P-C/FeS materials exhibited remarkable electrochemical performance when using as anode materials, which could deliver a high discharge capacity of 372.8 mA g−1 after 500 cycles at 5 A/g for lithium-ion batteries, and a discharge capacity of 246.5 mAh g−1 after 500 cycles at 1.0 A/g for sodium-ion batteries. The in situ XRD analysis demonstrated the transformation reaction between Li+ and FeS. This work offers a green strategy toward the recycling of both spent lithium-ion batteries and waste cation exchange resins.
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