Huang Ying, Zhang Yu, Yu Changlin, Naz Ahmad, Kong Linjun, Su Minhua, Chen Diyun
School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China; School of Chemical Engineering, Guangdong University of Petrochemical Technology, Maoming 525000, Guangdong, China.
School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China.
Environ Res. 2025 Feb 1;266:120470. doi: 10.1016/j.envres.2024.120470. Epub 2024 Nov 27.
The efficient removal of uranium (U(Ⅵ)) from nuclear wastewater presents a significant challenge due to the high concentrations of uranium and various interfering ions. In this study, we developed and used metal-organic framework hydrogel (MOFH) as a highly efficient adsorbent for uranium removal. The MOFH, synthesized with ferrocyanides and functional groups (Fe(Ⅱ)-CN-Fe(Ⅲ), OH, -COOH, and -NH), exhibited good chemical stability, large separation capacity, and high selectivity. The hydrogel's three-dimensional network, crosslinked with chitosan and alginic acid, significantly enhanced uranium removal. Even in the presence of high concentrations of coexisting cations and organic matter, the MOFH maintained a high removal rate (>95%) and distribution coefficient (K), and thus demonstrated strong resistance to interference from coexisting ions and showed great applicability in complex wastewater. The study also explored the MOFH's potential in treating uranium-contaminated wastewater from a smelting mine, showing effective uranium removal with minimal impact on other wastewater components. This research contributes to the development of novel adsorption materials and the understanding of their removal mechanisms, offering a comprehensive solution for the efficient removal of uranium from aqueous systems.
由于核废水中铀的高浓度以及各种干扰离子的存在,高效去除铀(U(Ⅵ))是一项重大挑战。在本研究中,我们开发并使用金属有机框架水凝胶(MOFH)作为一种高效的铀去除吸附剂。用亚铁氰化物和官能团(Fe(Ⅱ)-CN-Fe(Ⅲ)、OH、-COOH和-NH)合成的MOFH表现出良好的化学稳定性、大的分离容量和高选择性。与壳聚糖和海藻酸交联的水凝胶三维网络显著提高了铀的去除率。即使在存在高浓度共存阳离子和有机物的情况下,MOFH仍保持高去除率(>95%)和分配系数(K),因此表现出对共存离子干扰的强抗性,并在复杂废水中显示出很大的适用性。该研究还探索了MOFH在处理冶炼矿含铀废水方面的潜力,显示出在对其他废水成分影响最小的情况下有效去除铀。这项研究有助于新型吸附材料的开发及其去除机制的理解,为从水体系中高效去除铀提供了一个全面的解决方案。