We previously observed that phosphonate functionalized electrospun nanofibers can uptake U(VI), making them promising materials for sensing and water treatment applications. Here, we investigate the optimal fabrication of these materials and their mechanism of U(VI) binding under the influence of environmentally relevant ions (e.g., Ca(2+) and CO32- ). We found that U(VI) uptake was greatest on polyacrylonitrile (PAN) functionalized with longer-chain phosphonate surfactants (e.g., hexa- and octadecyl phosphonate; HDPA and ODPA, respectively), which were better retained in the nanofiber after surface segregation. Subsequent uptake experiments to better understand specific solid-liquid interfacial interactions were carried out using 5 mg of HDPA-functionalized PAN mats with 10 μM U at pH 6.8 in four systems with different combinations of solutions containing 5 mM calcium (Ca(2+)) and 5 mM bicarbonate ( HCO3- ). U uptake was similar in control solutions containing no Ca(2+) and HCO3- (resulting in 19 ± 3% U uptake), and in those containing only 5 mM Ca(2+) (resulting in 20 ± 3% U uptake). A decrease in U uptake (10 ± 4% U uptake) was observed in experiments with HCO3- , indicating that UO(2)-CO(3) complexes may increase uranium solubility. Results from shell-by-shell EXAFS fitting, aqueous extractions, and surface-enhanced Raman scattering (SERS) indicate that U is bound to phosphonate as a monodentate inner sphere surface complex to one of the hydroxyls in the phosphonate functional groups. New knowledge derived from this study on material fabrication and solid-liquid interfacial interactions will help to advance technologies for use in the in-situ detection and treatment of U in water.
U(VI) binding onto electrospun polymers functionalized with phosphonate surfactants.
U(VI) 与用膦酸酯表面活性剂功能化的静电纺丝聚合物结合
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作者:Shaikh Nabil, Qian Jiajie, Kim Sewoon, Phan Hoa, Lezama-Pacheco Juan S, Ali Abdul-Mehdi S, Cwiertny David M, Forbes Tori Z, Haes Amanda J, Cerrato José M
| 期刊: | Journal of Environmental Chemical Engineering | 影响因子: | 7.200 |
| 时间: | 2022 | 起止号: | 2022 Oct |
| doi: | 10.1016/j.jece.2022.108448 | ||
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