吸附
吸附
铀
海水
萃取(化学)
自愈水凝胶
光热治疗
化学工程
材料科学
化学
人工海水
离子强度
高分子化学
纳米技术
色谱法
水溶液
有机化学
冶金
工程类
地质学
海洋学
作者
Tao Liu,Zuji Xie,Mengwei Chen,Shuai Tang,Yinjiang Liu,Jie Wang,Ruoqian Zhang,Hui Wang,Xi Guo,Anping Gu,Yihui Yuan,Ning Wang
标识
DOI:10.1016/j.cej.2021.133182
摘要
The efficient development of selective adsorbents for uranium extraction from seawater is necessary for their potential application in nuclear power generation. The amidoxime-based adsorbents have been recognized as the potential candidates, whereas they still suffer from a much higher affinity towards V(V) present in the seawater over U(VI), leading to the extremely limited commercial use. In this work, we develop a novel mussel-inspired photothermal polyamidoxime (PAO) hydrogel adsorbent, in which polydopamine (PDA) chains are linked to PAO (PDA-PAO) via Michael addition. Dual-crosslinked [email protected] hydrogel structure is constructed by noncovalent bonds between the catechol of PDA chains (e.g. π-π stacking and hydrogen bonds) as well as ionic coordination of Fe3+. PDA contributes to the improved hydrophilicity and high photothermal conversion efficiency. As a result, after immersing in real seawater for 6 weeks, light-irradiated [email protected] hydrogel delivers high uranium sorption capacity (12.67 mg-U/g-Ads) together with high U/V mass ratios (1.17), which are superior to currently available hydrogel adsorbents. Meanwhile, Fe3+ coordination endows [email protected] hydrogel with excellent tensile strength and self-recovery ability, which are of great significance to withstand the harsh conditions of ocean environment for practical applications. The results presented here reveal that [email protected] hydrogel holds tremendous potential for practical applications in the uranium-selective extraction from seawater.
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