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Synergistic Recovery of Valuable Metals from Spent Nickel-Metal Hydride Batteries and Lithium-Ion Batteries

机译:来自废镍 - 金属氢化物电池和锂离子电池的有价值金属的协同恢复

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This research presents a sustainable approach for the simultaneous recycling of spent lithium-ion batteries (LIBs) and nickel-metal hydride batteries (NiMHs). First, dissolution of LIBs and NiMHs were found to be mutually co-promoted, resulting in above 98% extraction of Li, Co, Ni, and rare-earth elements (REEs) without the need for any oxidant or reductant additions. After leaching, >97% of REEs were recovered as a REEs-alkali double sulfate precipitate with the addition of NaOH and Na2SO4 precipitants. This REEs-free solution was then further processed to separate and recover the battery metals present: Mn, Co, Ni, and Li. The resultant residual solution (rich in NaOH and Na2SO4) was redirected to the REEs precipitation step, decreasing both the need of precipitants (e.g., Na2SO4) as well as the costs related to the treatment of the high-NaMoreover, the Li remaining in the waste solution can be circulated back into the main waste solution can be circulated back into the main process, resulting in an exceptionally high Li recovery of >93% in the form of high-purity Li3PO4 (99.95%). This is a marked improvement over the previously reported Li recovery levels of 60-80%. Overall, this newly developed process has considerable environmental and economic advantages for the recovery of valuable metals from mixed LIBs and NiMHs wastes.
机译:该研究提出了一种可持续的方法,可持续地回收锂离子电池(LIBS)和镍氢电池(NimHs)。首先,发现LiBs和NiMHs的溶解是相互共同促进的,导致Li,Co,Ni和稀土元素(REES)的98%提取而无需任何氧化剂或还原剂添加。在浸出后,用加入NaOH和Na 2 SO 4沉淀剂,回收> 97%的REES作为REES-alkali双硫酸盐沉淀物。然后进一步加工该REES的解决方案以分离并回收存在的电池金属:Mn,Co,Ni和Li。将所得残余溶液(富含NaOH和Na 2 SO 4)重定向到Rees沉淀步骤,降低沉淀剂的需要(例如,Na2SO4)以及与高Namoreover的治疗有关的成本,李仍然存在废溶液可以循环回到主要废物溶液中可以循环回到主要过程中,导致高纯度Li3PO4(99.95%)的形式特别高的锂回收> 93%。这是先前报告的李恢复水平60-80%的显着改善。总体而言,这种新开发的过程具有相当大的环境和经济优势,可以从混合LIBS和NIMHS废物中恢复有价值的金属。

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