Fan Bailin, Chen Xiangping, Zhou Tao, Zhang Jinxia, Xu Bao
College of Chemistry and Chemical Engineering, Central South University, Changsha, China.
College of Chemistry and Chemical Engineering, Central South University, Changsha, China
Waste Manag Res. 2016 May;34(5):474-81. doi: 10.1177/0734242X16634454. Epub 2016 Mar 7.
In this work, an eco-friendly and hydrometallurgical process for the recovery of cobalt and lithium from spent lithium-ion batteries has been proposed, which includes pretreatment, citric acid leaching, selective chemical precipitation and circulatory leaching. After pretreatment (manual dismantling, N-methyl pyrrolidone immersion and calcination), Cu and Al foils are recycled directly and the cathode active materials are separated from the cathode efficiently. Then, the obtained cathode active materials (waste LiCoO2) was firstly leached with 1.25 mol l(-1) citric acid and 1 vol.% H2O2 solution. Then cobalt was precipitated using oxalic acid (H2C2O4) under a molar ratio of 1:1.05 (H2C2O4: Co(2+)). After filtration, the filtrate (containing Li(+)) and H2O2 was employed as a leaching agent and the optimum conditions are studied in detail. The leaching efficiencies can reach as high as 98% for Li and 90.2% for Co, respectively, using filter liquor as leaching reagent under conditions of leaching temperature of 90°C, 0.9 vol.% H2O2 and a solid-to-liquid ratio of 60 ml g(-1) for 35 min. After three bouts of circulatory leaching, more than 90% Li and 80% Co can be leached under the same leaching conditions. In this way, Li and Co can be recovered efficiently and waste liquor re-utilization is achievable with this hydrometallurgical process, which may promise both economic and environmental benefits.
在本研究中,提出了一种从废旧锂离子电池中回收钴和锂的环保型湿法冶金工艺,该工艺包括预处理、柠檬酸浸出、选择性化学沉淀和循环浸出。预处理(人工拆解、N-甲基吡咯烷酮浸泡和煅烧)后,铜箔和铝箔直接回收,正极活性材料从正极中有效分离出来。然后,首先用1.25 mol·l⁻¹柠檬酸和1 vol.%过氧化氢溶液浸出所得的正极活性材料(废LiCoO₂)。然后使用草酸(H₂C₂O₄)以1:1.05(H₂C₂O₄:Co²⁺)的摩尔比沉淀钴。过滤后,将滤液(含Li⁺)和过氧化氢用作浸出剂,并详细研究了最佳条件。在浸出温度为90°C、过氧化氢含量为0.9 vol.%、固液比为60 ml g⁻¹的条件下,使用过滤后的溶液作为浸出试剂,浸出35分钟,锂和钴的浸出效率分别可高达98%和90.2%。经过三轮循环浸出,在相同浸出条件下,锂的浸出率超过90%,钴的浸出率超过80%。通过这种方式,锂和钴可以得到有效回收,并且这种湿法冶金工艺可以实现废液的再利用,这可能带来经济和环境效益。