硫酸化焙烧法回收废旧三元电池中锂的研究
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中冶瑞木新能源科技有限公司, 河北 唐山 063009

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李国(1981—),男,硕士,中级工程师,主要从事废旧动力电池回收、三元前驱体制备工作。

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TF826.3;X705

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京津冀地区新能源汽车动力蓄电池回收利用试点示范项目


Study on Recovery of Lithium from Waste Ternary Battery by Sulphating Roasting
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    摘要:

    针对废旧三元动力电池黑粉中锂回收传统方法存在回收工艺流程长、锂损失率高及纯度低的问题,提出了硫酸化焙烧法优先提锂的工艺。本文分析了硫酸化焙烧法提锂的热力学可行性,研究了不同硫酸盐、浓硫酸加入量、煅烧温度、煅烧时间对提锂效果的影响。不同硫酸盐的硫酸化焙烧实验结果表明,采用浓硫酸、硫酸氢钠、硫酸铵进行硫酸化焙烧,锂收率均为95%左右;加入硫酸氢钠得到的焙烧后料较硬;加入浓硫酸得到的焙烧后料蓬松,呈蜂窝煤状;而加入硫酸铵焙烧后料为粉料,易于破碎,但会产生氨气;加入等量硫酸钠焙烧基本得不到磷酸锂,因此综合考虑选择浓硫酸进行硫酸化焙烧。浓硫酸优先提锂的最佳条件为:浓硫酸加入量为理论量的105%,煅烧温度为600℃,煅烧时间为2h。在此条件下,锂收率可高达95.2%,制备的碳酸锂和磷酸锂的杂质浓度低,纯度高。

    Abstract:

    Aiming at the problems of long recovery process, high lithium loss rate and low purity in the traditional method of lithium recovery from waste ternary power battery black powder, a process of priority extraction of lithium by sulfation roasting was proposed. In this paper, the thermodynamic feasibility of lithium extraction by sulfation roasting was analyzed. The effects of different sulfate, concentrated sulfuric acid addition, calcination temperature and calcination time on lithium extraction were studied. The results of sulfation roasting experiments of different sulfates show that the lithium yield is about 95% when concentrated sulfuric acid, sodium bisulfate and ammonium sulfate are used for sulfation roasting. The roasted material obtained by adding sodium bisulfate is harder; the roasted material obtained by adding concentrated sulfuric acid is fluffy and honeycomb-like; the material after roasting with ammonium sulfate is powder, which is easy to break, but will produce ammonia gas. Lithium phosphate can not be obtained by roasting with the same amount of sodium sulfate, so concentrated sulfuric acid is selected for sulfation roasting. The optimum conditions for the preferential extraction of lithium are as follows: the amount of concentrated sulfuric acid is 105% of the theoretical amount, the calcination temperature is 600℃, and the calcination time is 2h. Under these conditions, the lithium yield can be as high as 95.2%. The prepared lithium carbonate and lithium phosphate have low impurity concentration and high purity.

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李国,王变,苏华.硫酸化焙烧法回收废旧三元电池中锂的研究[J].绿色矿冶,2023,39(1):80-84.

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  • 收稿日期:2022-08-10
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  • 在线发布日期: 2025-11-17
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