A Study on the Leaching Effect and Selective Recovery of Lithium Element by Persulfate-based Oxidizing Agents from Waste LiFePO4 Cathode

Hee-Seon Kim, Dae-Weon Kim, Dae-Hwan Jang, Boram Kim, Yun Jin, B. Chae, Sangwook Lee
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引用次数: 2

Abstract

In waste lithium iron phosphate (LFP) batteries, the cathode material contains approximately 4% lithium. Recycling the constituent elements of batteries is important for resource circulation and for mitigating the environmental pollution. Li contained in the waste LFP cathode powder was selectively leached using persulfate-based oxidizing agents, such as sodium persulfate, potassium persulfate, and ammonium persulfate. Leaching efficiency and waste LFP powder properties were compared and analyzed. Pulp density was used as a variable during leaching, which was performed for 3 h under each condition. The leaching efficiency was calculated using the inductively coupled plasma (ICP) analysis of the leachate. All types of persulfate-based oxidizing agents used in this study showed a Li leaching efficiency over 92%. In particular, when leaching was performed using (NH 4 ) 2 S 2 O 8 , the highest Li leaching percentage of 93.3% was observed, under the conditions of 50 g/L pulp density and an oxidizing agent concentration of 1.1 molar ratio.
过硫酸盐基氧化剂从废LiFePO4阴极中浸出及选择性回收锂元素的研究
在废磷酸铁锂(LFP)电池中,正极材料含有约4%的锂。电池组成元素的回收利用对资源循环和减轻环境污染具有重要意义。采用过硫酸钠、过硫酸钾、过硫酸铵等过硫酸盐基氧化剂对废LFP阴极粉中的锂进行选择性浸出。对浸出效率和废LFP粉的性能进行了比较分析。浸出过程中以矿浆密度为变量,在每种条件下浸出3 h。采用电感耦合等离子体(ICP)法对浸出液进行浸出效率计算。本研究中使用的各种过硫酸盐基氧化剂的锂浸出率均在92%以上。其中,当矿浆浓度为50 g/L、氧化剂浓度为1.1摩尔比时,用(nh4) 2s2o8进行浸出时,锂浸出率最高,为93.3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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