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【175 Energy & Environmental Science】Interfacial solar evaporation-driven lithium extraction from salt-lake brines for battery-grade Li2CO3 production
来源:龚江研究员个人网站 发布日期:2025-10-07
作者:Wenqian Xing, Kai Feng, Shihao Ding, Xinle Zhang, Haolan Xu*, Jiang Gong*, Jinping Qu, Ran Niu*
关键字:Interfacial solar evaporation, lithium extraction
论文来源:期刊
具体来源:Energy & Environmental Science
发表时间:2025年

Wenqian Xing, Kai Feng, Shihao Ding, Xinle Zhang, Haolan Xu*, Jiang Gong*, Jinping Qu, Ran Niu*

Interfacial solar evaporation-driven lithium extraction from salt-lake brines for battery-grade Li2CO3 production

Energy & Environmental Science (2025) Accept (IF2025 = 30.8)

The rising demand for lithium, essential for energy storage, has heightened the need for efficient extraction methods from salt-lake brines, as current techniques are inefficient and energy-intensive. Here we present a facile, durable and energy-efficient approach for lithium extraction using a solar evaporation-driven ion pump. The evaporation system, composed of a porous hydrogel matrix embedded with lithium-ion sieves and featuring directional salt crystallization function, effectively separates lithium ion from other cations and accelerates lithium diffusion toward adsorption sites. Consequently, lithium adsorption kinetics (saturation time decreased from 8 h to 5 h), selectivity (from 64.7 to 413.4) and capacity (from 10.7 to 24.7 mg g-1 in salt-lake brine) are all significantly enhanced. Additionally, the designed evaporator enables zero-liquid discharge brine evaporation, ensuring long-term stable performance for freshwater production, which is used for subsequent lithium elution and battery grade Li2CO3 production. Thus, a closed-loop system is achieved, enabling sustainable cycles of lithium extraction, freshwater generation, lithium elution, absorbent regeneration, and water reuse.

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