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用于从海水和含铀废水中快速回收铀的超分子负载聚偕胺肟大孔树脂。

Supramolecularly Poly(amidoxime)-Loaded Macroporous Resin for Fast Uranium Recovery from Seawater and Uranium-Containing Wastewater.

作者信息

Wen Shunxi, Sun Ye, Liu Rongrong, Chen Lin, Wang Jiawen, Peng Shuyi, Ma Chunxin, Yuan Yihui, Gong Weitao, Wang Ning

机构信息

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

State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian 116024, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 20;13(2):3246-3258. doi: 10.1021/acsami.0c21046. Epub 2021 Jan 6.

Abstract

Uranium is an extremely abundant resource in seawater that could supply nuclear fuel for over the long-term, but it is tremendously difficult to extract. Here, a new supramolecular poly(amidoxime) (PAO)-loaded macroporous resin (PLMR) adsorbent has been explored for highly efficient uranium adsorption. Through simply immersing the macroporous resin in the PAO solution, PAOs can be firmly loaded on the surface of the nanopores mainly by hydrophobic interaction, to achieve the as-prepared PLMR. Unlike existing amidoxime-based adsorbents containing many inner minimally effective PAOs, almost all the PAOs of PLMR have high uranium adsorption efficiency because they can form a PAO-layer on the nanopores with molecular-level thickness and ultrahigh specific surface area. As a result, this PLMR has highly efficient uranium adsorbing performance. The uranium adsorption capacity of the PLMR was 157 mg/g (the in the PLMR was 1039 mg/g), in 32 ppm uranium-spiked seawater for 120 h. Additionally, uranium in 1.0 L 100 ppb U-spiked both water and seawater can be removed quickly and the recovery efficiency can reach 91.1 ± 1.7% and 86.5 ± 1.9%, respectively, after being filtered by a column filled with 200 mg PLMR at 300 mL/min for 24 h. More importantly, after filtering 200 T natural seawater with 200 g PLMR for only 10 days, the uranium-uptake amount of the PLMR reached 2.14 ± 0.21 mg/g, and its average uranium adsorption speed reached 0.214 mg/(g·day) which is very fast among reported amidoxime-based adsorbents. This new adsorbent has great potential to quickly and massively recover uranium from seawater and uranium-containing wastewater. Most importantly, this work will provide a simple but general strategy to greatly enhance the uranium adsorption efficiency of amidoxime-functionalized adsorbents with ultrahigh specific surface area via supramolecular interaction, and even inspire the exploration of other adsorbents.

摘要

铀是海水中一种极为丰富的资源,可长期供应核燃料,但提取难度极大。在此,人们探索了一种新型的负载超分子聚偕胺肟(PAO)的大孔树脂(PLMR)吸附剂,用于高效吸附铀。通过将大孔树脂简单地浸入PAO溶液中,PAO主要通过疏水作用牢固地负载在纳米孔表面,从而制得PLMR。与现有的含有许多内部最小有效PAO的偕胺肟基吸附剂不同,PLMR几乎所有的PAO都具有高铀吸附效率,因为它们能在纳米孔上形成分子级厚度和超高比表面积的PAO层。因此,这种PLMR具有高效的铀吸附性能。在3ppm加标铀的海水中,PLMR对铀的吸附容量为157mg/g(PLMR中的含量为1039mg/g),吸附时间为120小时。此外,在1.0L含100ppb加标铀的水和海水中,当以300mL/min的流速通过填充有200mg PLMR的柱子过滤24小时后,铀可被快速去除,回收效率分别可达91.1±1.7%和86.5±1.9%。更重要的是,仅用200g PLMR过滤200吨天然海水10天后,PLMR的铀摄取量达到2.14±0.21mg/g,其平均铀吸附速度达到0.214mg/(g·天),这在已报道的偕胺肟基吸附剂中是非常快的。这种新型吸附剂具有从海水和含铀废水中快速大量回收铀的巨大潜力。最重要的是,这项工作将提供一种简单而通用的策略,通过超分子相互作用极大地提高具有超高比表面积的偕胺肟功能化吸附剂的铀吸附效率,甚至激发对其他吸附剂的探索。

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