Hydrometallurgy and Corrosion, Department of Chemical and Metallurgical Engineering (CMET), School of Chemical Engineering, Aalto University, Espoo 02150, Finland.
Hydrometallurgy and Corrosion, Department of Chemical and Metallurgical Engineering (CMET), School of Chemical Engineering, Aalto University, Espoo 02150, Finland; Institute of Engineering Research, Jiangxi University of Science and Technology, Ganzhou 341000, China.
Waste Manag. 2019 Jul 15;95:604-611. doi: 10.1016/j.wasman.2019.06.048. Epub 2019 Jul 4.
Industrially produced spent lithium-ion batteries (LIBs) waste contain not only strategic metals such as cobalt and lithium but also impurity elements like copper, aluminum and iron. The current work investigates the distribution of the metallic impurity elements in LIBs waste, and their influence on the acid dissolution of target active materials. The results demonstrate that the presence of these, naturally reductive, impurity elements (e.g. Cu, Al, and Fe) can substantially promote the dissolution of active materials. Through the addition of Cu and Al-rich larger size fractions, the extraction efficiencies of Co and Li increased up to over 99%, to leave a leach residue that is rich in graphite. By this method, the use of high cost reductants like hydrogen peroxide or ascorbic acid could be avoided. More importantly, additional Co and Li associated with the Cu and Al electrode materials could be also recovered. This novel approach contributes not only to improved reduction efficiency in LIBs waste leaching, but also to improved total recovery of Co and Li from LIBs waste, even from the larger particle size fractions, which are typically lost from circulation.
工业生产的废旧锂离子电池 (LIBs) 废物不仅含有钴和锂等战略金属,还含有铜、铝和铁等杂质元素。本工作研究了 LIBs 废物中金属杂质元素的分布及其对目标活性材料酸浸的影响。结果表明,这些天然还原的杂质元素(如 Cu、Al 和 Fe)的存在可以显著促进活性材料的溶解。通过添加富含 Cu 和 Al 的较大粒径级分,可以将 Co 和 Li 的浸出效率提高到 99%以上,得到富含石墨的浸出残渣。通过这种方法,可以避免使用过氧化氢或抗坏血酸等昂贵的还原剂。更重要的是,还可以回收与 Cu 和 Al 电极材料相关的额外的 Co 和 Li。这种新方法不仅有助于提高 LIBs 废物浸出中的还原效率,而且有助于提高 Co 和 Li 从 LIBs 废物中的总回收率,即使是从通常在循环中损失的较大粒径级分。