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首页> 外文期刊>Waste Management >Targeting high value metals in lithium-ion battery recycling via shredding and size-based separation
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Targeting high value metals in lithium-ion battery recycling via shredding and size-based separation

机译:通过切碎和基于尺寸的分离,针对锂离子电池回收中的高价值金属

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摘要

Development of lithium-ion battery recycling systems is a current focus of much research; however, significant research remains to optimize the process. One key area not studied is the utilization of mechanical pre-recycling steps to improve overall yield. This work proposes a pre-recycling process, including mechanical shredding and size-based sorting steps, with the goal of potential future scale-up to the industrial level. This pre-recycling process aims to achieve material segregation with a focus on the metallic portion and provide clear targets for subsequent recycling processes. The results show that contained metallic materials can be segregated into different size fractions at different levels. For example, for lithium cobalt oxide batteries, cobalt content has been improved from 35% by weight in the metallic portion before this pre-recycling process to 82% in the ultrafine (<0.5 mm) fraction and to 68% in the fine (0.5-1 mm) fraction, and been excluded in the larger pieces (>6 mm). However, size fractions across multiple battery chemistries showed significant variability in material concentration. This finding indicates that sorting by cathode before pre-treatment could reduce the uncertainty of input materials and therefore improve the purity of output streams. Thus, battery labeling systems may be an important step towards implementation of any pre-recycling process.
机译:锂离子电池回收系统的开发是当前许多研究的重点。但是,仍需进行大量研究以优化流程。未研究的关键领域之一是利用机械预回收步骤来提高总产量。这项工作提出了一个预回收过程,包括机械粉碎和基于尺寸的分拣步骤,目的是将来可能扩大到工业水平。该预回收过程旨在实现材料隔离,重点放在金属部分,并为后续的回收过程提供明确的目标。结果表明,所包含的金属材料可以在不同的水平下分离成不同的尺寸分数。例如,对于锂钴氧化物电池,钴含量已从该预回收过程之前金属部分的35%(重量)提高到超细(<0.5 mm)部分的82%,细粉(0.5部分)提高到68%。 -1毫米)部分,并排除在较大的部分(> 6毫米)中。但是,跨多个电池化学性质的尺寸分数显示出材料浓度的显着差异。该发现表明,在预处理之前通过阴极分选可以减少输入物料的不确定性,从而提高输出物流的纯度。因此,电池标签系统可能是实现任何预回收过程的重要步骤。

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