详细信息
Unexpected ultrafast elimination of uranium and europium from aqueous solutions with magnetic bio-CaCO3 ( SCI-EXPANDED收录) 被引量:7
文献类型:期刊文献
英文题名:Unexpected ultrafast elimination of uranium and europium from aqueous solutions with magnetic bio-CaCO3
作者:Xiong, Huiyan[1,2];Chen, Jiemin[1];Zhang, Tingting[1,2];Wang, Wenzhong[1,2];Huang, Chengcai[1];Zhu, Yuling[1];Hu, Baowei[1]
机构:[1]Shaoxing Univ, Sch Life Sci, Sch Civil Engn, Huancheng West Rd 508, Shaoxing 312000, Peoples R China;[2]Shaoxing Univ, Sch Civil Engn, Huancheng West Rd 508, Shaoxing 312000, Peoples R China
年份:2021
卷号:322
外文期刊名:JOURNAL OF MOLECULAR LIQUIDS
收录:SCI-EXPANDED(收录号:WOS:000610834000134)、、WOS
基金:This work was financially supported by the National Natural Science Foundation of China (Grant No. 21876115) and Zhejiang Natural Science (Grant No. LGF19C030001).
语种:英文
外文关键词:Magnetic bio-CaCO3; Fe3O4; Adsorption; Uranium; Europium
外文摘要:In this investigation, the magnetic bio-CaCO3 were synthesized and elimination of uranium and europium from aqueous solutions. The prepared magnetic composite underwent a series of characterization analyses, such as Transmission electron microscope (TEM), Scanning electron microscopy-energy dispersive spectroscopy (SEMEDS), X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS), which prove that the magnetic particles are successfully modified on bio-CaCO3. Surprisingly, it was found that coating the bio-CaCO3 with Fe3O4 not only increased the distance between the calcium carbonate nanosheets but also ensured the presence of Fe-O active groups on the bio-CaCO3 surface. The sorption of U(VI)/Eu(III) on the magnetic bio-CaCO3 as a function of the pH, adsorbent dose, shaking time, co-existing ions, and the temperature was investigated using batch experiments. The effect of pH was investigated showing optimum sorption at pH 5 for U(VI) and Eu(III). The adsorption kinetics is relatively fast and can reach equilibrium in 60 to 90 min, and the pseudo-second-order rate equation preferentially fits the kinetic distribution, suggesting chemisorption was involved. The maximum adsorption amounts were 122.66 mg.g(-1) for U(VI) and 130.62 mg.g(-1) for Eu(III) at pH 5.0 and 298 K. The adsorption mechanism, which was evaluated with XRD, FTIR, SEM-EDS, and XPS, demonstrated that the functional groups (O-H. -NH2, CO32- and O-Fe) and the increased hierarchical distances were primarily responsible for the improved adsorption ability. This paper highlights magnetic bio-CaCO3 as potential, eco-friendly and ultrahigh-efficiency materials for uranium and europium pollution cleanup. (C) 2020 Elsevier B.V. All rights reserved.
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