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从废旧锂离子电池的阳极中分离并回收碳粉以合成石墨烯。

Separation and recovery of carbon powder in anodes from spent lithium-ion batteries to synthesize graphene.

作者信息

Yang Li, Yang Liu, Xu Guangri, Feng Qigao, Li Yuanchao, Zhao Erqing, Ma Jingjing, Fan Shumin, Li Xiaobo

机构信息

Chemistry and Chemical Engineering, Henan Institute of Science and Technology, Xinxiang, Henan, 453003, P.R. China.

出版信息

Sci Rep. 2019 Jul 8;9(1):9823. doi: 10.1038/s41598-019-46393-4.

Abstract

Based on the structural characteristics of the anodes of lithium-ion batteries, an improved Hummers' method is proposed to recycle the anode materials of spent lithium-ion batteries into graphene. In order to effectively separate the active material from the copper foil, water was selected as an ultrasonic solvent in this experiment. In order to further verify whether lithium ions exist in the active material, carbon powder, it was digested by microwave digestion. ICP-AES was then used to analyse the solution. It was found that lithium ions were almost non-existent in the carbon powder. In order to further increase the added value of the active material, graphene oxide was obtained by an improved Hummers' method using the carbon powder. The graphene material was also reduced by adding vitamin C as a reducing agent through a chemical reduction method using graphene oxide. Meanwhile, the negative graphite, graphite oxide and graphene samples were characterized by XRD, SEM, FTIR and TEM. The conductivity of the negative graphite, graphite oxide and graphene was tested. The results show that graphene prepared by a redox method has a better layered structure, less impurities and oxygen groups in its molecular structure, wider interlayer spacing and smaller resistivity.

摘要

基于锂离子电池负极的结构特点,提出一种改进的Hummers法,将废旧锂离子电池的负极材料回收制备成石墨烯。为了有效分离活性材料与铜箔,本实验选用水作为超声溶剂。为进一步验证活性材料碳粉中是否存在锂离子,采用微波消解对其进行消解,然后用ICP-AES对溶液进行分析,发现碳粉中几乎不存在锂离子。为进一步提高活性材料的附加值,采用改进的Hummers法以碳粉为原料制备氧化石墨烯,并通过化学还原法加入维生素C作为还原剂对氧化石墨烯进行还原制备石墨烯材料。同时,采用XRD、SEM、FTIR和TEM对负极石墨、氧化石墨和石墨烯样品进行表征,并测试了负极石墨、氧化石墨和石墨烯的电导率。结果表明,通过氧化还原法制备的石墨烯具有较好的层状结构,分子结构中杂质和含氧基团较少,层间距较大,电阻率较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94ca/6614457/4d3acc81d010/41598_2019_46393_Fig1_HTML.jpg

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