Tang Ziwei, Dai Zhongran, Gong Mi, Chen Hong, Zhou Xiayu, Wang Yating, Jiang Cong, Yu Wanying, Li Le
College of Public Health, Hengyang Medical School, University of South China, Hengyang, 421001, Hunan, People's Republic of China.
Hengyang Key Laboratory for Comprehensive Prevention and Control of Uranium Contamination and its Health Hazards, University of South China, Hengyang, 421001, Hunan, People's Republic of China.
Environ Sci Pollut Res Int. 2023 Mar;30(14):40478-40489. doi: 10.1007/s11356-022-25124-9. Epub 2023 Jan 7.
Uranium (U) is an important strategic resource as well as a heavy metal element with both chemical and radiotoxicity. At present, the rapid and efficient removal of uranium from wastewater remains a huge challenge for environmental protection and ecological security. In this paper, phosphate-modified biochar supporting nano zero-valent iron (PBC/nZVI) was triumphantly prepared and fully characterized. The introduction of polyphosphate can greatly increase the specific surface area of biochar pores, and then the zero-valent iron can be evenly distributed on the surface of material, thus leading to excellent removal performance of the PBC/nZVI for U(VI). The theoretical maximum U(VI) removal capacity of PBC/nZVI was up to 967.53 mg/g at pH 5. The results of adsorption kinetics, isotherm, and thermodynamics showed that the adsorption of uranium by PBC/nZVI was a monolayer physical adsorption and endothermic reaction. And the PBC/nZVI has favorable selectivity toward uranium against the interference of coexisting metal ions. Further mechanism studies show that the excellent uranium removal performance of PBC/nZVI is mainly attributed to the synergistic effect of physical adsorption and chemical reduction. This work proves that the PBC/nZVI has a wide application prospect in the field of uranium wastewater treatment.
铀(U)是一种重要的战略资源,也是一种兼具化学毒性和辐射毒性的重金属元素。目前,从废水中快速高效去除铀对环境保护和生态安全而言仍然是一个巨大挑战。本文成功制备了负载纳米零价铁的磷酸盐改性生物炭(PBC/nZVI)并对其进行了全面表征。聚磷酸盐的引入可大幅增加生物炭孔隙的比表面积,进而使零价铁能均匀分布于材料表面,从而使PBC/nZVI对U(VI)具有优异的去除性能。在pH为5时,PBC/nZVI对U(VI)的理论最大去除容量高达967.53 mg/g。吸附动力学、等温线及热力学结果表明,PBC/nZVI对铀的吸附为单层物理吸附且是吸热反应。并且PBC/nZVI对铀具有良好的选择性,可抵抗共存金属离子的干扰。进一步的机理研究表明,PBC/nZVI优异的铀去除性能主要归因于物理吸附和化学还原的协同作用。这项工作证明PBC/nZVI在铀废水处理领域具有广阔的应用前景。