环境科学
发电
资源回收
电
资源(消歧)
废物管理
工艺工程
资源枯竭
可再生能源
水能关系
分离器(采油)
不可再生资源
能量回收
环境工程
资源效率
热回收通风
海水
锅炉给水
淡水
工作(物理)
持续性
高效能源利用
水资源
水冷
水力发电
微咸水
环境经济学
铀
清水
水萃取
清洁能源
海水淡化
自然资源
发电站
作者
Zhen Yu,Can Ge,Zhengyi Mao,Ying Li,Sihan Tang,Kunwei Li,Fenghui Duan,Jian Lü
出处
期刊:
[Springer Science+Business Media]
日期:2026-09-01
标识
DOI:10.1038/s44221-026-00700-2
摘要
The resource and energy crisis represents one of the most pressing global challenges. In response, we propose an adsorption-coupled solar-powered seawater resource separator (ASP) to simultaneously recover fresh water, lithium and uranium, while generating green electricity. Here, by integrating multi-stage latent heat recovery and multi-field coupled effects, the extraction performance of lithium and uranium under 1 sun irradiation increases by up to 10.2 and 11.6 times, respectively, compared with dark conditions. Outdoor experiments demonstrate that ASP delivers a peak power output of 154.7 W, with a daily water collection rate of 19.82 kg m−2, alongside lithium and uranium extraction capacities of 4.50 mmol m−2 and 2.64 μmol m−2, respectively. Economic analysis indicates that ASP can maintain an annual net income exceeding US$20 m−2. Overall, this work presents an integrated strategy for coupling energy generation, water production and resource recovery, offering a promising pathway towards accelerating Sustainable Development Goals. This study presents a solar-powered multi-stage evaporation system that simultaneously produces freshwater, extracts lithium and uranium, and generates electricity, demonstrating strong technical performance and promising economic potential for sustainable resource and energy recovery.
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