铝电解废旧阴极炭块综合回收利用研究进展
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作者单位:

1.中南大学 冶金与环境学院, 湖南 长沙 410083 ;2.中南大学 低碳有色冶金国家工程研究中心, 湖南 长沙 410083 ;3.贵州师范大学 材料与建筑工程学院, 贵州 贵阳 550025 ;4.湖南第一师范学院 物理与化学学院, 湖南 长沙 410083

作者简介:

周流舟(2000—),贵州兴义人,博士研究生,研究方向为铝冶炼及炭素。

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中图分类号:

TF821

基金项目:

国家自然科学基金项目(52174338&52374421);湖南省自然科学基金项目(2022JJ20086);湖南省优秀青年项目(23B0841);中南大学创新驱动项目(2023CXQD005);中国科协青年人才托举工程(No.YESS20210258);贵州省科学技术基金项目(黔科合基础-ZK[2022]一般321);贵州省教育厅高校科技创新团队(黔教技[2023]05号)


Research progress on comprehensive recovery and utilization of spent carbon cathode in aluminum electrolysis
Author:
Affiliation:

1.School of Metallurgy and Environment, Central South University, Changsha 410083 , China ;2.National Engineering Research Center for Low-carbon Non-Ferrous Metallurgy, Central South University, Changsha 410083 , China ;3.School of Materials and Architectural Engineering, Guizhou Normal University, Guiyang 550025 , China ;4.School of Physics and Chemistry, Hunan First Normal University, Changsha 410083 , China

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    摘要:

    铝电解槽大修时产生的废旧阴极炭块已被列为危险固体废弃物,但其还蕴含丰富的C、F、Al等有价组分,回收价值高,必须对其进行合理处置。通过无害化处理和资源化利用有利于降低铝电解行业的环境污染性、推动铝电解行业绿色高效循环发展。本文阐述了废旧阴极炭块的排放规律和资源环境属性,并以火法处理工艺和湿法处理工艺为着力点,综述了废旧阴极炭块的综合回收利用方法,具体介绍了微波辅助高温焙烧法、真空焙烧法、超高温石墨化法等火法处理工艺;浮选法、化学浸出法、水浸法等湿法处理工艺。火法处理工艺具有单位处理量大、工艺流程简单的优势,但其在焙烧过程中伴随大量碳质材料的燃烧与烟气的产生;湿法处理工艺回收碳材料纯度高、处理量大、资源利用率高,但需要处理复杂的酸碱废液的二次污染问题。未来废旧阴极炭块的无害化处理不仅要解决污染问题,还要回收其中有价组分并制备多领域应用产品,以实现无污染、低成本、低能耗和高价值的回收目标。

    Abstract:

    The spent carbon cathode(SCC) generated during the overhaul of aluminum reduction cell has been classified as hazardous solid waste, which contains C, F, Al and other valuable components with high recovery value,so it must be disposed of reasonably. Harmless treatment and resource utilization can reduce environmental pollution in the aluminum electrolysis industry, fostering its green and efficient circular development. This paper examines the emission patterns and resource-environmental characteristics of spent carbon cathode, with a focus on both pyrometallurgical and hydrometallurgical treatment methods. It reviews the comprehensive recycling approaches, highlighting pyrometallurgical processes such as microwave-assisted high-temperature roasting, vacuum roasting, and ultra-high-temperature graphitization, as well as hydrometallurgical methods like flotation, chemical leaching, and water leaching. Pyrometallurgical processes offer high processing capacity and simple flow but result in the combustion of significant carbon materials and flue gas emissions during roasting. In contrast, hydrometallurgical processes provide high-purity carbon recovery, large treatment capacity, and efficient resource utilization, though they face secondary pollution from managing complex acid-alkali wastewater. Future the harmless treatment of SCC should focus not only on pollution control but also on recovering valuable components and producing multi-purpose products to achieve a pollution-free, low-cost, low-energy, and high-value recycling outcome.

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引用本文

周流舟, 肖劲, 姚桢, 等. 铝电解废旧阴极炭块综合回收利用研究进展[J].中国有色冶金,2025,54(2):1-8.

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  • 收稿日期:2024-08-16
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  • 在线发布日期: 2025-12-18
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