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从废旧锂离子电池中浸出关键金属的综合评价。

Comprehensive evaluation on effective leaching of critical metals from spent lithium-ion batteries.

机构信息

Beijing Engineering Research Centre of Process Pollution Control, Division of Environment Technology and Engineering, National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Beijing Engineering Research Centre of Process Pollution Control, Division of Environment Technology and Engineering, National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Waste Manag. 2018 May;75:477-485. doi: 10.1016/j.wasman.2018.02.023. Epub 2018 Feb 17.

Abstract

Recovery of metals from spent lithium-ion batteries (LIBs) has attracted worldwide attention because of issues from both environmental impacts and resource supply. Leaching, for instance using an acidic solution, is a critical step for effective recovery of metals from spent LIBs. To achieve both high leaching efficiency and selectivity of the targeted metals, improved understanding on the interactive features of the materials and leaching solutions is highly required. However, such understanding is still limited at least caused by the variation on physiochemical properties of different leaching solutions. In this research, a comprehensive investigation and evaluation on the leaching process using acidic solutions to recycle spent LIBs is carried out. Through analyzing two important parameters, i.e. leaching speed and recovery rate of the corresponding metals, the effects of hydrogen ion concentration, acid species and concentration on these two parameters were evaluated. It was found that a leachant with organic acids may leach Co and Li from the cathode scrap and leave Al foil as metallic form with high leaching selectivity, while that with inorganic acids typically leach all metals into the solution. Inconsistency between the leaching selectivity and efficiency during spent LIBs recycling is frequently noticed. In order to achieve an optimal status with both high leaching selectivity and efficiency (especially at high solid-to-liquid ratios), it is important to manipulate the average leaching speed and recovery rate of metals to optimize the leaching conditions. Subsequently, it is found that the leaching speed is significantly dependent on the hydrogen ion concentration and the capability of releasing hydrogen ions of the acidic leachant during leaching. With this research, it is expected to improve understanding on controlling the physiochemical properties of a leaching solution and to potentially design processes for spent LIBs recycling with high industrial viability.

摘要

从废旧锂离子电池(LIBs)中回收金属引起了全球关注,因为这不仅涉及到环境影响问题,还涉及到资源供应问题。浸出(例如使用酸性溶液)是从废旧 LIBs 中有效回收金属的关键步骤。为了实现高浸出效率和目标金属的选择性,需要深入了解材料和浸出液之间的相互作用特性。然而,这种理解仍然有限,至少是由于不同浸出液的物理化学性质的变化造成的。在这项研究中,对使用酸性溶液回收废旧 LIBs 的浸出过程进行了全面的调查和评估。通过分析两个重要参数,即相应金属的浸出速度和回收率,评估了氢离子浓度、酸种类和浓度对这两个参数的影响。结果发现,有机酸浸出剂可以从阴极废料中浸出 Co 和 Li,而 Al 箔则以金属形式留下,具有高浸出选择性,而无机酸浸出剂通常将所有金属浸出到溶液中。在废旧 LIBs 回收过程中,经常会注意到浸出选择性和效率之间的不一致。为了实现高浸出选择性和效率(特别是在高固液比下)的最佳状态,重要的是要控制金属的平均浸出速度和回收率,以优化浸出条件。随后发现,浸出速度与浸出过程中氢离子浓度和酸性浸出剂释放氢离子的能力显著相关。通过这项研究,有望提高对控制浸出液物理化学性质的理解,并有可能设计出具有高工业可行性的废旧 LIBs 回收工艺。

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