Literature DB >> 25714654

Efficient uranium capture by polysulfide/layered double hydroxide composites.

Shulan Ma1,2, Lu Huang1, Lijiao Ma1, Yurina Shim2, Saiful M Islam2, Pengli Wang2, Li-Dong Zhao2,3, Shichao Wang2, Genban Sun1, Xiaojing Yang1, Mercouri G Kanatzidis2.   

Abstract

There is a need to develop highly selective and efficient materials for capturing uranium (normally as UO2(2+)) from nuclear waste and from seawater. We demonstrate the promising adsorption performance of S(x)-LDH composites (LDH is Mg/Al layered double hydroxide, [S(x)](2-) is polysulfide with x = 2, 4) for uranyl ions from a variety of aqueous solutions including seawater. We report high removal capacities (q(m) = 330 mg/g), large K(d)(U) values (10(4)-10(6) mL/g at 1-300 ppm U concentration), and high % removals (>95% at 1-100 ppm, or ∼80% for ppb level seawater) for UO2(2+) species. The S(x)-LDHs are exceptionally efficient for selectively and rapidly capturing UO2(2+) both at high (ppm) and trace (ppb) quantities from the U-containing water including seawater. The maximum adsorption coeffcient value K(d)(U) of 3.4 × 10(6) mL/g (using a V/m ratio of 1000 mL/g) observed is among the highest reported for U adsorbents. In the presence of very high concentrations of competitive ions such as Ca(2+)/Na(+), S(x)-LDH exhibits superior selectivity for UO2(2+), over previously reported sorbents. Under low U concentrations, (S4)(2-) coordinates to UO2(2+) forming anionic complexes retaining in the LDH gallery. At high U concentrations, (S4)(2-) binds to UO2(2+) to generate neutral UO2S4 salts outside the gallery, with NO3(-) entering the interlayer to form NO3-LDH. In the presence of high Cl(-) concentration, Cl(-) preferentially replaces [S4](2-) and intercalates into LDH. Detailed comparison of U removal efficiency of S(x)-LDH with various known sorbents is reported. The excellent uranium adsorption ability along with the environmentally safe, low-cost constituents points to the high potential of S(x)-LDH materials for selective uranium capture.

Entities:  

Year:  2015        PMID: 25714654     DOI: 10.1021/jacs.5b00762

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  20 in total

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5.  Complexation of Manganese with Glutarimidedioxime: Implication for Extraction Uranium from Seawater.

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Journal:  Sci Rep       Date:  2017-03-07       Impact factor: 4.379

6.  K2x Sn4-x S8-x (x = 0.65-1): a new metal sulfide for rapid and selective removal of Cs+, Sr2+ and UO22+ ions.

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Journal:  Chem Sci       Date:  2015-10-27       Impact factor: 9.825

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9.  Removal of radionuclides from acidic solution by activated carbon impregnated with methyl- and carboxy-benzotriazoles.

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Journal:  Sci Rep       Date:  2020-07-16       Impact factor: 4.379

10.  N, P, and S Codoped Graphene-Like Carbon Nanosheets for Ultrafast Uranium (VI) Capture with High Capacity.

Authors:  Zhe Chen; Wanying Chen; Dashuang Jia; Yang Liu; Anrui Zhang; Tao Wen; Jian Liu; Yuejie Ai; Weiguo Song; Xiangke Wang
Journal:  Adv Sci (Weinh)       Date:  2018-08-27       Impact factor: 16.806

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