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在废旧锂离子电池中进行元素原位重组以回收高价值 γ-LiAlO 和 LiAlO。

In Situ Recombination of Elements in Spent Lithium-Ion Batteries to Recover High-Value γ-LiAlO and LiAlO.

机构信息

Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, School of Environmental Science and Engineering, Sun Yat-Sen University, 135 Xingang Xi Road, Guangzhou 510275, People's Republic of China.

School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, People's Republic of China.

出版信息

Environ Sci Technol. 2021 Jun 1;55(11):7643-7653. doi: 10.1021/acs.est.1c00694. Epub 2021 May 13.

Abstract

Recovering valuable materials from spent lithium-ion batteries is an important task because of the asymmetry in resource distribution, supply, and demand around the world. A lithium-ion battery is a combination system of various elements and their oxides. Current recovering technologies focus on the separation of valuable metal elements. They can inescapably bring secondary contamination and cost to the environment due to the addition of leachants and precipitants. To recover valuable materials, in situ recombination of elements in spent lithium-ion batteries can be a more economical and environment-friendly solution. Herein, we developed a technology based on in situ aluminothermic reduction and interstitial solid solution transformation to recover high-value γ-LiAlO and LiAlO under vacuum and high-temperature (1723 K) conditions. It was found that the process of LiO filling into the lattice of O-Al-O structure is an energy-reducing process, while LiAlO was an existing high-energy transition-state matter. Since there was no wastewater generated, the process brought a new environment-friendly method for recovering valuable metals from spent lithium-ion batteries. This study also provides new comprehension regarding the design for high-value products' recovery from multi-element mixed wastes on an atomic scale.

摘要

从废旧锂离子电池中回收有价值的材料是一项重要的任务,因为全球资源分布、供应和需求存在不对称性。锂离子电池是各种元素及其氧化物的组合系统。目前的回收技术侧重于有价值金属元素的分离。由于浸出剂和沉淀剂的添加,它们不可避免地会给环境带来二次污染和成本。为了回收有价值的材料,在废旧锂离子电池中进行原位元素再组合可能是一种更经济、更环保的解决方案。在这里,我们开发了一种基于原位铝热还原和间隙固溶体转变的技术,在真空和高温(1723 K)条件下回收高价值的γ-LiAlO 和 LiAlO。研究发现,LiO 填充到 O-Al-O 结构晶格中的过程是一个能量降低的过程,而 LiAlO 是一种存在的高能过渡态物质。由于没有废水产生,该工艺为从废旧锂离子电池中回收有价值的金属提供了一种新的环保方法。本研究还为从多元素混合废物中以原子尺度设计回收高价值产品提供了新的认识。

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