A crown-like ether for lithium extraction from brine

IF 8.1 1区 工程技术 Q1 ENGINEERING, CHEMICAL
Yi Deng, Yilun Sun, Bin Wang, Yu Lin, Guoliang Chai, Yinghe Zhang
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引用次数: 0

Abstract

With the rapid development of clean energy industry, the demand for lithium resources has significantly risen. It makes brine-based lithium extraction into a focal point of research field. Here, we have addressed the challenge of selectively extracting lithium from high-salinity brine by incorporating 2,2′-(propane-1,3-diylbis(oxy))diphenol (PDD) crown-like ether materials onto layered titanium carbide nanosheet substrates, leveraging charge and size sieving mechanisms. The oxygen atoms in the crown-like ether framework of PDD exhibit optimal electronegativity, facilitating the rapid adsorption of metal cations. Simultaneously, the cavity structure of the crown ether remains intact, enabling the size-selective extraction of lithium ions. Separation experiments and simulation calculations, have validated that the crown ether structures exhibit selective lithium-ion extraction through charge and size sieving effects by using sets such as Li+/Na+ and Li+/Mg2+. In simulated Longmucuo salt lake brine with a Mg2+/Li+ mass ratio of approximately 87, the retention rate of Li+ using PDD reached 23.42%, and the separation factors for Li+/Na+, Li+/Mg2+, Li+/K+ were 6.85, 3.20, and 33.69, respectively. Compared to other crown ethers (12C4, 14C4, 15C4), this specific crown-like ether demonstrates superior lithium extraction performance. This innovative approach utilizing PDD crown-like ether for efficient lithium recovery enhances the feasibility of lithium extraction from brine, contributing significantly to the sustainable development of the global lithium supply.

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来源期刊
Separation and Purification Technology
Separation and Purification Technology 工程技术-工程:化工
CiteScore
14.00
自引率
12.80%
发文量
2347
审稿时长
43 days
期刊介绍: Separation and Purification Technology is a premier journal committed to sharing innovative methods for separation and purification in chemical and environmental engineering, encompassing both homogeneous solutions and heterogeneous mixtures. Our scope includes the separation and/or purification of liquids, vapors, and gases, as well as carbon capture and separation techniques. However, it's important to note that methods solely intended for analytical purposes are not within the scope of the journal. Additionally, disciplines such as soil science, polymer science, and metallurgy fall outside the purview of Separation and Purification Technology. Join us in advancing the field of separation and purification methods for sustainable solutions in chemical and environmental engineering.
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