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Advanced waterborne polyurethane/poly(ionic liquids) foam for highly efficient and selective adsorption of 99TcO4-/ReO4-

聚氨酯 吸附 离子液体 材料科学 化学工程 离子键合 选择性吸附 复合材料 高分子科学 高分子化学 化学 有机化学 催化作用 工程类 离子
作者
Jin Cao,Xuan Xie,Yani Liu,Xiaojun Shi,Lixuan Jiang,Chen Wang,Xirui Zhang,Lei Xu,Hui Peng,Zhe Zhang
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:508: 161007-161007 被引量:14
标识
DOI:10.1016/j.cej.2025.161007
摘要

• Innovative synthesis of waterborne polyurethane/poly(ionic liquids) (WPU/PILs) foam adsorbent via in situ foaming. • WPU/PILs exhibits exceptional adsorption capacity, structural stability and recoverability for 99 TcO 4 − /ReO 4 − . • The enhanced ion adsorption is primarily driven by the ion-exchange interaction between Tf 2 N - and 99 TcO 4 − /ReO 4 − . The development of high-performance adsorbents for the efficient removal of radioactive Technetium-99 ( 99 TcO 4 - ) is critical to addressing the challenges nuclear waste contamination. However, current adsorbents still face significant limitations, including low adsorption capacity, poor stability, contamination from the adsorbent itself, and difficult handling and recycling. To overcome these challenges, this study reports the successfully preparation a waterborne polyurethane/poly(ionic liquids) (WPU/PILs) foam adsorbent for selective adsorption of 99 TcO 4 - (ReO 4 - as a substitute for laboratory operation) by in-situ foaming method and its adsorption performance and underlying mechanism are comprehensively investigated. The results show that WPU/PILs-10 exhibits excellent adsorption performance with the maximum adsorption capacity of ReO 4 - up to 130.22 mg g −1 (theoretical saturated adsorption capacity of 1302.20 mg g −1 ) at pH = 7, surpassing most existing adsorbents with similar functionalities. Remarkably, WPU/PILs-10 maintains excellent recoverability and structural stability after even five adsorption–desorption cycles. Theoretical calculations and structural characterization indicate that the superior adsorption performance of WPU/PILs-10 for 99 TcO 4 - /ReO 4 - is mainly attributed to the ion-exchange interaction between Tf 2 N - in the PILs and 99 TcO 4 - /ReO 4 - . This work has the dual advantages of environmental friendliness and functional enhancement, and has potential applications in the fields of nuclear waste liquid treatment and radioactive anion adsorption.
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