硝酸铀酰
铀
铀酰
萃取(化学)
硝酸
离子液体
化学
硝酸盐
可重用性
离子
无机化学
色谱法
核化学
材料科学
有机化学
冶金
催化作用
程序设计语言
软件
计算机科学
作者
Hao Chen,Guo‐Hao Zhang,Ling He,Fang Yong,Qiu‐Hong Zhu,Lei Zhang,Song Qin,Guo‐Hong Tao
标识
DOI:10.1021/acsanm.2c03169
摘要
The use of high-acidity nitric acid presents many challenges in designing extractants for uranium reprocessing. If nitrate is used as the anion in an ionic liquid (IL) extractant, the extraction efficiency and leakage behavior will improve due to the common-ion effect. However, nitrate ILs are usually hydrophilic, making their applications in uranium reprocessing difficult. In this study, nanopockets with a thermoresponsive nitrate IL Tyr(C 10 ) 2 NO 3 were designed and applied in the extraction of uranium. Tyr(C 10 ) 2 NO 3 is hydrophobic at room temperature but can homogenize with water when the temperature exceeds 80 °C. This upper critical solution temperature behavior facilitates sufficient contact between Tyr(C 10 ) 2 NO 3 and uranium, causing an extremely short equilibration time. Tyr(C 10 ) 2 NO 3 is stable in high-acidity nitric acid and shows good affinity toward uranyl ions. The extraction of uranyl using Tyr(C 10 ) 2 NO 3 exhibited remarkable extraction efficiency, excellent extraction capacity under a 4 M HNO 3 condition, and good reusability. A hierarchical assembly mechanism has been proposed to rationalize the extraction system.
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