Kahl M, Pavón S, Bertau M
Institut of Chemical Technology, TU Bergakademie Freiberg, Leipziger Straße 29, 09599, Freiberg, Germany.
Chemphyschem. 2021 Mar 17;22(6):577-584. doi: 10.1002/cphc.202000867. Epub 2021 Feb 23.
Production waste of primary lithium batteries constitutes a considerable secondary lithium feedstock. Although the recycling of lithium batteries is a widely studied field of research, the metallic residues of non-rechargeable lithium battery production are disposed of as waste without further recycling. The risks of handling metallic Li on a large scale typically prevent the metal from being recycled. A way out of this situation is to handle Li in an aqueous solution, from where it can be isolated as Li CO . However, the challenge in hydrometallurgical treatment lies in the high energy release during dissolution and generation of H . To reduce these process-related risks, the Li sheet metal punching residues underwent oxidative thermal treatment from 300 to 400 °C prior to dissolution in water. Converting Li metal to Li O in this initial process step results in an energy release reduction of ∼70 %. The optimal oxidation conditions have been determined by experimental design varying three factors: temperature, Li metal sheet thickness, and residence time. With 96.9±2.6 % almost the entire Li amount is converted to Li O, after 2.5 h treatment at 400 °C for a Li sheet thickness of 1.99 mm. Final precipitation with CO yields 85.5±3.0 % Li CO . Using pure Li sheets, the product Li CO is obtained in battery-grade quality (>99.5 %). Non-precipitated Li is recirculated into the process on the stage of dissolving Li O, thus avoiding loss of material.
一次锂电池的生产废料构成了可观的二次锂原料。尽管锂电池回收是一个得到广泛研究的领域,但不可充电锂电池生产中的金属残渣却作为废料被处置,未进行进一步回收利用。大规模处理金属锂的风险通常阻碍了这种金属的回收。摆脱这种局面的一种方法是在水溶液中处理锂,然后从中以碳酸锂的形式分离出来。然而,湿法冶金处理中的挑战在于溶解过程中以及氢气产生过程中的高能量释放。为降低这些与工艺相关的风险,锂金属冲压残渣在溶解于水之前先在300至400°C下进行了氧化热处理。在这个初始工艺步骤中将锂金属转化为氧化锂可使能量释放减少约70%。通过实验设计改变温度、锂金属片厚度和停留时间这三个因素确定了最佳氧化条件。对于厚度为1.99毫米的锂片,在400°C下处理2.5小时后,几乎96.9±2.6%的锂全部转化为氧化锂。用二氧化碳进行最终沉淀可得到85.5±3.0%的碳酸锂。使用纯锂片时,得到的碳酸锂产品质量达到电池级(>99.5%)。未沉淀的锂在氧化锂溶解阶段再循环回工艺中,从而避免了材料损失。