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一种用于从海水中超高效快速回收铀的离子交联超分子水凝胶。

An Ion-Crosslinked Supramolecular Hydrogel for Ultrahigh and Fast Uranium Recovery from Seawater.

作者信息

Yan Bingjie, Ma Chunxin, Gao Jinxiang, Yuan Yihui, Wang Ning

机构信息

State Key Laboratory of Marine Resource Utilization in South China Sea, Hainan University, Haikou, 570228, P. R. China.

出版信息

Adv Mater. 2020 Mar;32(10):e1906615. doi: 10.1002/adma.201906615. Epub 2020 Jan 29.

Abstract

Large-scale uranium extraction from seawater is a crucial but challenging part of nuclear power generation. In this study, a new ion-crosslinked supramolecular Zn -poly(amidoxime) (PAO) hydrogel that can super-efficiently adsorb uranium from seawater is explored. By simply mixing two solutions of zinc chloride and PAO, a supramolecular Zn -PAO hydrogel is achieved via the interaction between zinc cations and amidoxime anions. In contrast with existing amidoxime-functionalized hydrogel-based adsorbents having low PAO contents and fiber-based adsorbents with weak hydrophilicity, the PAOs can be directly crosslinked using a small quantity of superhydrophilic zinc ion. Thus, a supramolecular hydrogel is formed, having both a high content of well-dispersed PAOs and good hydrophilicity. Relative to reported adsorbents, this low-cost hydrogel membrane exhibits outstanding uranium adsorption performance, reaching 1188 mg g of M /M in 32 ppm uranium-spiked water. More importantly, after immersion in natural seawater for only 4 weeks, the uranium extraction capacity of the Zn -PAO hydrogel membrane reaches 9.23 mg g of M /M . This work can provide a general strategy for designing a new type of supramolecular hydrogel, crosslinked by various bivalent/multivalent cation-crosslinkers and even many other superhydrophilic supramolecular crosslinkers, for the high-efficient and massive extraction of uranium from seawater.

摘要

从海水中大规模提取铀是核能发电的关键但具有挑战性的环节。在本研究中,探索了一种新型的离子交联超分子锌-聚偕胺肟(PAO)水凝胶,它能够从海水中超高效地吸附铀。通过简单混合氯化锌和PAO的两种溶液,锌阳离子与偕胺肟阴离子之间的相互作用形成了超分子锌-PAO水凝胶。与现有PAO含量低的偕胺肟功能化水凝胶基吸附剂以及亲水性弱的纤维基吸附剂相比,PAO可以使用少量超亲水锌离子直接交联。因此,形成了一种超分子水凝胶,它既具有高含量且分散良好的PAO,又具有良好的亲水性。相对于已报道的吸附剂,这种低成本的水凝胶膜表现出出色的铀吸附性能,在含32 ppm加标铀的水中达到1188 mg g的M /M 。更重要的是,在天然海水中仅浸泡4周后,锌-PAO水凝胶膜的铀提取能力就达到9.23 mg g的M /M 。这项工作可为设计一种新型超分子水凝胶提供通用策略,该水凝胶由各种二价/多价阳离子交联剂甚至许多其他超亲水超分子交联剂交联而成,用于从海水中高效大量提取铀。

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