废旧三元锂离子电池多级破碎及热解预处理工艺技术研究
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中国恩菲工程技术有限公司, 北京 100038

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李明川(1975—),男,陕西西安人,工程师,大学本科,主要从事火法冶炼设计研发工作。

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TM912

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Research on multi-stage shredding and pyrolysis pre-treatment technology for spent ternary lithium-ion battery
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China ENFI Engineering Corporation, Beijing 100038 , China

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    摘要:

    本文以废旧18650三元锂离子电池为原料,通过开展多级破碎试验和热解试验,研究了破碎和热解处理过程中有价金属含量的变化以及物相组成的变化,并对预处理工艺过程中产生的HF气体和VOCs气体浓度进行测定。结果表明,通过多级破碎工艺可以从废旧电池中有效分离出塑料薄膜、铜铝粉、金属外壳以及黑粉,黑粉经热解处理时对物料中氟元素和磷元素的脱除效果并不理想。随着热解反应温度的提高,热解产物中出现了明显的镍、钴的特征峰。经“活性炭+碱吸收”装置处理后,热解尾气中HF的最大脱除率为85.94%,VOCs气体的最大脱除率为84.08%。经过热解预处理得到的热解产物可以直接送入湿法工序进一步回收锂、镍、钴、锰等有价金属元素。本研究的试验现象和结论可为工业生产的设计提供一定的参考和指导。

    Abstract:

    In this paper, using spent 18650 ternary lithium-ion batteries as raw materials, the changes of valuable metal content and phase composition during comminution and pyrolysis were investigated by carrying out multi-stage crushing process and pyrolysis process, and the concentrations of HF gas and VOCs gas generated in the pretreatment process were measured. The results show plastic film, copper and aluminum powder, metal shell and black powder can be effectively separated from waste batteries by multi-stage crushing process. The black powder has an unsatisfactory effect on the removal of fluorine and phosphorus in the materials after pyrolysis process. With the increase of pyrolysis reaction temperature, the characteristic peaks of metal nickel and metal cobalt appear in the pyrolysis products. After treatment by ‘activated carbon + alkali absorption’ device, the maximum removal rate of HF and VOCs gas from pyrolysis tail gas was 85.94% and 84.08%, respectively. The pyrolysis products obtained by pyrolysis pretreatment can be directly fed into the wet process to further recover lithium, nickel, cobalt, manganese and other valuable metal elements. The experimental phenomena and conclusions of this study can provide some reference and guidance for the design of industrial production.

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李明川.废旧三元锂离子电池多级破碎及热解预处理工艺技术研究[J].有色设备,2024,38(6):22-28

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  • 收稿日期:2024-09-06
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  • 在线发布日期: 2025-11-15
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