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ISSN

2661-3948(Online)

Article Processing Charges (APCs)

US$800

Publication Frequency

Quarterly

PDF

Published

2025-07-16

Issue

Vol 7 No 2 (2025): published

Section

Articles

Research progress on spheroidization and purification of graphite anode materials under the dual-Carbon background

Qingxiao Li

Shandong University of Petroleum and Chemical Industry

Aodi Yang

Shandong University of Petroleum and Chemical Industry

Xiaoyi Chu

Shandong University of Petroleum and Chemical Industry

Xin Chen

Shandong University of Petroleum and Chemical Industry


DOI: https://doi.org/10.59429/pest.v7i2.10384


Keywords: Graphite anode material; Spheroidization; Lithium-ion; Battery purification


Abstract

With the global promotion of carbon peak and carbon neutrality goals, lithium-ion batteries, as an important part of the new energy field, have attracted much attention in terms of their performance improvement and sustainable development. As one of the core components of lithium-ion batteries, the research progress of graphite anode material spheroidization and purification technology is of great significance to improve battery performance and reduce costs. In this paper, the research progress of spheroidization and purification technology of graphite anode materials is reviewed, including the spheroidization process, purification method and its influence on electrochemical properties, aiming to provide reference for research in related fields.


References

[1]He Peng. Flow field analysis of gas flow vortex micro powder machine and key parameters for graphite spheroidization [D]. Changsha Institute of Mining and Metallurgy, 2021. DOI:10.26984/d. cnki.gcsyy.2021.000003

[2]Teng Dailiang, Li Peng, Yuan Na, et al. Optimization of sphericalization process parameters of natural graphite [J]. Chinese Powder Technology, 2021, 27(04):70-76. DOI:10.13732/j. issn.1008-5548.2021.04.009.

[3]Wang Zebin, Wang Xianchao, Zhang Xuan, et al. Optimization of Lithium-ion Battery Performance Based on Particle Size Grading of Natural Graphite [J]. Journal of Natural Science of Heilongjiang University, 2024, 41(06):663-671. DOI:10.13482/j. issn1001-7011.2024.10.121.

[4]Liang Jiahao. Preparation and Electrochemical Performance of Lithium-ion Battery Anode Materials Based on Natural Flake Graphite Micro-powder [D]. Central South University, 2022. DOI:10.27661/d. cnki. gzhnu.2022.004662.

[5]Jiang Fang, Bin Xiaobei, Tu Bingfeng, et al. Study on the purification and preparation of microcrystalline graphite by hydrochloric acid-hydrofluoric acid method [J]. Carbon Technology, 2014, 33(05):23-25. DOI:10.14078/j. cnki.1001-3741.2014.05.025.

[6]Li Jiye, Yao Shaode. Study on the production of high carbon graphite by chlorination roasting method [J]. China Mining, 1996, (03):45-48.

[7]Zhou Kaihong, Yu Wei, Ding Xingbiao. Preliminary study on the flotation of cryptocrystalline graphite [J]. Mining Research and Development, 2012, 32(04):58-59+80. DOI:10.13827/j. cnki. kyyk.2012.04.028.

[8]Zhang Jinbin, Luo Yingtao, Yang Hongjie. Study on the purification of flake graphite by alkali-acid and high temperature chlorination combined method [J]. Carbon Technology, 2016, 35(05):56-60. DOI:10.14078/j. cnki.1001-3741.2016.05.013.

[9]Zhou Shezhu, Nie Tingting, Zhang Junyan. Research and Analysis of Graphite Purification Technology [J]. Carbon Technology, 2021, 40(05):60-62. DOI:10.14078/j. cnki.1001-3741.2021.05.011.



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