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昆明冶金职业大学学报 ›› 2026, Vol. 42 ›› Issue (3): 39-.DOI: 10.3969/j.issn.1009-0479.2026.03.006

• 环境保护与化工技术 • 上一篇    下一篇

固定床与移动床吸附法在盐湖提锂中的工艺对比与优化#br#

  

  1. (1.昆明冶金职业大学环境与化工学院,云南昆明650033;
    2.中国人民解放军火箭军工程大学导弹工程学院,陕西西安710025)
  • 出版日期:2026-08-31 发布日期:2026-09-01
  • 作者简介:浮艳菲(1996-),女,河南新乡人,工程师,工程硕士,主要从事吸附材料和盐湖提锂研究。

Comparison and Optimization of Fixed‑Bed and Moving‑Bed Adsorption Methods in Lithium Extraction from Salt Lakes

  1. (1. Faculty of Environmental and Chemical Engineering, Kunming Metallurgy University, Kunming 650033, China;
    2. Missile Engineering College, Rocket Force University of Engineering, Xi’an 710025, China)
  • Online:2026-08-31 Published:2026-09-01

摘要: 本文围绕盐湖提锂技术展开研究,重点分析吸附法用于高镁锂比盐湖提锂的技术优势,对比铝系、锰系、钛系三类吸附材料的结构特征与吸附性能,明确铝系吸附剂在现阶段工业化应用中的主导优势。从运行效率、吸附剂利用率、经济成本三个维度,系统对比固定床与移动床两种吸附工艺的工程应用效果。以青海某盐湖工业化提锂项目为工程案例,设计并验证固定床‑移动床串联耦合工艺。结果表明,该串联工艺可将锂回收率提升至 91.5%,实现锂资源高效回收,为同类型盐湖提锂工艺优化提供参考方案。

关键词: 盐湖提锂, 吸附法, 固定床, 移动床, 工艺优化

Abstract: This paper focuses on the lithium extraction technology in salt lakes, emphasizes the technical advantages of adsorption method in the treatment of lithium extraction from salt lake with high magnesium‑lithium ratio, compares in detail the structural characteristics and performance differences of three types of adsorbent materials, aluminum‑based, manganese‑based and titanium‑based, and clarifies the dominant position of the aluminum adsorbent in the current industrialized application. At the same time, the study systematically compares the engineering performance of fixed‑bed and moving‑bed adsorption processes from the perspectives of operational efficiency, adsorbent utilization, and economic feasibility. Finally, the tandem synergistic process of fixed‑bed and moving‑bed was designed and validated using an industrial lithium extraction project in a salt lake in Qinghai Province as an example, and the experimental results showed that the coupled system significantly increased the lithium recovery to 91.5%, which provided a new way of thinking for the optimization of the process while realizing the high efficiency of resource utilization.

Key words: lithium extraction from salt lakes, adsorption method, fixed?bed, moving?bed, process optimization

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