Due to its high solubility, radioactivity and toxicity, the separation of selenium from spent fuel reprocessing waste and industrial wastewater has attracted much attention. In this study, a novel adsorbent FeOOH@SiO2 with particle size of ~100 mu m was successfully prepared by loading FeOOH on micron-sized silica with emulsion methods. FeOOH@SiO2 with good acid resistance, gamma-irradiation and thermal stability exhibits excellent adsorption abilities for Se(IV) and Se(VI) including fast adsorption kinetics, great adsorption capacities (11.0 mg/ g for Se(IV) and 6.04 mg/g for Se(VI)) and preferable adsorption selectivity. It is worth noting that FeOOH@SiO2 can still remove nearly 90 % of Se(IV) and 80 % of Se(VI) even in 3 mol/L HNO3 system. Combined with the observations from X-ray photoelectron spectroscopic characterization and surface potential measurement, the adsorption mechanism caused with electrostatic attraction and the formation of inner complexes for Se(IV), and reduction reaction and partial formation of outer complexes for Se(VI) can be deduced. After 4 adsorption-desorption cycles, FeOOH@SiO2 still exhibits satisfactory reusability. Dynamic column experiments also demonstrated that FeOOH@SiO2 exhibited excellent removal capabilities towards Se(IV) and Se(VI) from real water samples. The present work demonstrates that FeOOH@SiO2 has great potential application for 79Se removal in highly acidic nuclear waste.
机构:
Institute of Process Engineering, Chinese Academy of Sciences
Department of Chemical Engineering, The University ofInstitute of Process Engineering, Chinese Academy of Sciences
Guoping Hu
Yue Wu
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Department of Chemical Engineering, The University ofInstitute of Process Engineering, Chinese Academy of Sciences
Yue Wu
Desheng Chen
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Institute of Process Engineering, Chinese Academy of SciencesInstitute of Process Engineering, Chinese Academy of Sciences
Desheng Chen
Yong Wang
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Institute of Process Engineering, Chinese Academy of SciencesInstitute of Process Engineering, Chinese Academy of Sciences
Yong Wang
Tao Qi
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Institute of Process Engineering, Chinese Academy of SciencesInstitute of Process Engineering, Chinese Academy of Sciences
Tao Qi
Lina Wang
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Institute of Process Engineering, Chinese Academy of SciencesInstitute of Process Engineering, Chinese Academy of Sciences
机构:
Univ Massachusetts, Dept Food Sci, Amherst, MA 01003 USAUniv Massachusetts, Dept Food Sci, Amherst, MA 01003 USA
Zhang, Zhiyun
Guo, Huiyuan
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Univ Massachusetts, Stockbridge Sch Agr, Amherst, MA 01003 USAUniv Massachusetts, Dept Food Sci, Amherst, MA 01003 USA
Guo, Huiyuan
Ma, Chuanxin
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Connecticut Agr Expt Stn, Dept Analyt Chem, New Haven, CT 06504 USAUniv Massachusetts, Dept Food Sci, Amherst, MA 01003 USA
Ma, Chuanxin
Xia, Ming
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Univ Massachusetts, Dept Food Sci, Amherst, MA 01003 USA
Zhejiang Chinese Med Univ, Coll Pharm, Hangzhou 310053, Zhejiang, Peoples R ChinaUniv Massachusetts, Dept Food Sci, Amherst, MA 01003 USA
Xia, Ming
White, Jason C.
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Connecticut Agr Expt Stn, Dept Analyt Chem, New Haven, CT 06504 USAUniv Massachusetts, Dept Food Sci, Amherst, MA 01003 USA
White, Jason C.
Xing, Baoshan
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Univ Massachusetts, Stockbridge Sch Agr, Amherst, MA 01003 USAUniv Massachusetts, Dept Food Sci, Amherst, MA 01003 USA
Xing, Baoshan
He, Lili
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Univ Massachusetts, Dept Food Sci, Amherst, MA 01003 USAUniv Massachusetts, Dept Food Sci, Amherst, MA 01003 USA