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化学工业与工程 2021, Vol. 38 Issue (6) :53-64    DOI: 10.13353/j.issn.1004.9533.20213003
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盐湖提锂知识图谱分析——Citespace可视化分析
马超群, 黄海港, 何利华
中南大学冶金与环境学院, 长沙 410083
Knowledge Map Analysis of Lithium Extraction from Salt-lake Brine: A Visual Analysis Using Citespace
Ma Chaoqun, Huang Haigang, He Lihua
School of Metallurgy and Environment, Central South University, Changsha 410083, China

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摘要 随着新能源产业的快速发展,锂的需求量激增,由此盐湖提锂也越来越受到人们的重视。本论文基于WOS数据库和文献可视化分析软件Citespace,对1999—2020年盐湖提锂领域文献进行系统地分析,结果表明:该领域经过数十年的积累,正处于高速发展阶段;我国在该领域的研发实力处于领先地位,拥有强劲的研究机构,但跨机构的合作较少。目前,盐湖卤水提锂方法主要有:离子交换吸附法、膜分离法、溶剂萃取法和电化学法等,其中电化学法作为一种新兴技术受到了广泛关注,是未来极具发展潜力的提锂方法之一。
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马超群
黄海港
何利华
关键词盐湖卤水   提锂   Citespace   知识图谱     
Abstract: With the rapid development of new energy industry, the demand for lithium is surging, and thus lithium extraction from salt lake is getting more and more attention. Based on WOS database and literature analysis software Citespace, the literatures on lithium extraction from salt lakes from 1999 to 2020 was analyzed. The results show that the field is in a rapid development stage after decades of accumulation. China is in the leading position in the R&D strength and has strong research institutions, but the cross-institutional cooperation is relatively low. At present, the main methods for lithium extraction from salt lake brines are ion exchange adsorption, membrane separation, solvent extraction and electrochemical method, etc. Among them, electrochemical method has received wide attention as an emerging technology, and is one of the lithium extraction methods with great potential for future development.
Keywordssalt lake brine   extraction lithium   Citespace   knowledge map     
Received 2021-09-15;
Fund:国家自然科学基金资助项目(51934010);中南大学"创新驱动"人才计划资助项目(2020CX026)。
Corresponding Authors: 何利华,E-mail:helihua@csu.edu.cn。     Email: helihua@csu.edu.cn
About author: 马超群(1998-),硕士研究生,研究方向为盐湖提锂。
引用本文:   
马超群, 黄海港, 何利华.盐湖提锂知识图谱分析——Citespace可视化分析[J].  化学工业与工程, 2021,38(6): 53-64
Ma Chaoqun, Huang Haigang, He Lihua.Knowledge Map Analysis of Lithium Extraction from Salt-lake Brine: A Visual Analysis Using Citespace[J].  Chemcial Industry and Engineering, 2021,38(6): 53-64
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