Zhi Keke, Duan Jinwang, Zhang Jiarui, Huang Lianting, Guo Lianghui, Wang Lulu
College of Engineering, China University of Petroleum-Beijing at Karamay, Karamay 834000, China.
State Key Laboratory of Heavy Oil Processing-Karamay Branch, Karamay 834000, China.
Polymers (Basel). 2024 Mar 18;16(6):833. doi: 10.3390/polym16060833.
Ion Imprinting Technology (IIT) is an innovative technique that produces Ion-Imprinted polymers (IIPs) capable of selectively extracting ions. IIPs exhibit strong specificity, excellent stability, and high practicality. Due to their superior characteristics, the application of IIPs for lithium resource extraction has garnered significant attention. This paper discusses the following aspects based on existing conventional processes for lithium extraction and the latest research progress in lithium IIPs: (1) a detailed exposition of existing lithium extraction processes, including comparisons and summaries; (2) classification, comparison, and summarization of the latest lithium IIPs based on different material types and methods; (3) summarization of the applications of various lithium IIPs, along with a brief description of future directions in the development of lithium IIP applications. Finally, the prospects for targeted recovery of lithium resources using lithium IIPs are presented.
离子印迹技术(IIT)是一种创新性技术,可制备能够选择性萃取离子的离子印迹聚合物(IIP)。IIP具有很强的特异性、出色的稳定性和高度的实用性。由于其卓越的特性,IIP在锂资源萃取方面的应用已备受关注。本文基于现有的传统锂萃取工艺以及锂IIP的最新研究进展,探讨了以下几个方面:(1)对现有锂萃取工艺进行详细阐述,包括比较与总结;(2)基于不同材料类型和方法对最新的锂IIP进行分类、比较和总结;(3)总结各类锂IIP的应用,并简要描述锂IIP应用发展的未来方向。最后,展望了使用锂IIP针对性回收锂资源的前景。