School of Chemical Engineering and the Environment, Beijing Institute of Technology, Beijing 100081, China.
J Hazard Mater. 2010 Apr 15;176(1-3):288-93. doi: 10.1016/j.jhazmat.2009.11.026. Epub 2009 Nov 11.
In this work, a hydrometallurgical process based on leaching is applied to recover cobalt and lithium from spent lithium ion batteries (LIBs). Citric acid and hydrogen peroxide are introduced as leaching reagents and the leaching of cobalt and lithium with a solution containing C(6)H(8)O(7) x H(2)O is investigated. When both C(6)H(8)O(7) x H(2)O and H(2)O(2) are used an effective recovery of Li and Co as their respective citrates is possible. The leachate is characterized by scanning electron micrography (SEM) and X-ray diffraction (XRD). The proposed procedure includes the mechanical separation of metal-containing particles and a chemical leaching process. Conditions for achieving a recovery of more than 90% Co and nearly 100% Li are achieved experimentally by varying the concentrations of leachant, time and temperature of the reaction as well as the starting solid-to-liquid ratio. Leaching with 1.25 M citric acid, 1.0 vol.% hydrogen peroxide and a S:L of 20 g L(-1) with agitation at 300 rpm in a batch extractor results in a highly efficient recovery of the metals within 30 min of the processing time at 90 degrees C. This hydrometallurgical process is found to be simple, environmentally friendly and adequate for the recovery of valuable metals from spent LIBs.
在这项工作中,采用浸出的湿法冶金工艺从废旧锂离子电池(LIB)中回收钴和锂。引入柠檬酸和过氧化氢作为浸出试剂,研究了含有 C(6)H(8)O(7) x H(2)O 的溶液对钴和锂的浸出。当同时使用 C(6)H(8)O(7) x H(2)O 和 H(2)O(2)时,可以有效地回收它们各自的柠檬酸钴和柠檬酸锂。浸出液通过扫描电子显微镜(SEM)和 X 射线衍射(XRD)进行了表征。该方法包括金属颗粒的机械分离和化学浸出过程。通过改变浸出剂浓度、反应时间和温度以及固液比,实验达到了钴回收率超过 90%和锂回收率接近 100%的条件。在批式萃取器中以 300 rpm 的搅拌速度,用 1.25 M 柠檬酸、1.0 体积%过氧化氢和固液比为 20 g L(-1)浸出 30 min,可在 90°C 的处理时间内实现金属的高效回收。该湿法冶金工艺简单、环保,适用于从废旧 LIB 中回收有价值的金属。