Literature DB >> 27584863

Efficient Removal and Recovery of Uranium by a Layered Organic-Inorganic Hybrid Thiostannate.

Mei-Ling Feng1,2, Debajit Sarma2, Xing-Hui Qi1, Ke-Zhao Du1, Xiao-Ying Huang1, Mercouri G Kanatzidis2.   

Abstract

Uranium is important in the nuclear fuel cycle both as an energy source and as radioactive waste. It is of vital importance to recover uranium from nuclear waste solutions for further treatment and disposal. Herein we present the first chalcogenide example, (Me2NH2)1.33(Me3NH)0.67Sn3S7·1.25H2O (FJSM-SnS), in which organic amine cations can be used for selective UO2(2+) ion-exchange. The UO2(2+)-exchange kinetics perfectly conforms to pseudo-second-order reaction, which is observed for the first time in a chalcogenide ion-exchanger. This reveals the chemical adsorption process and its ion-exchange mechanism. FJSM-SnS has excellent pH stability in both strongly acidic and basic environments (pH = 2.1-11), with a maximum uranium-exchange capacity of 338.43 mg/g. It can efficiently capture UO2(2+) ions in the presence of high concentrations of Na(+), Ca(2+), or HCO3(-) (the highest distribution coefficient Kd value reached 4.28 × 10(4) mL/g). The material is also very effective in removing of trace levels of U in the presence of excess Na(+) (the relative amounts of U removed are close to 100%). The UO2(2+)···S(2-) interactions are the basis for the high selectivity. Importantly, the uranyl ion in the exchanged products could be easily eluted with an environmentally friendly method, by treating the UO2(2+)-laden materials with a concentrated KCl solution. These advantages coupled with the very high loading capacity, low cost, environmentally friendly nature, and facile synthesis make FJSM-SnS a new promising remediation material for removal of radioactive U from nuclear waste solutions.

Entities:  

Year:  2016        PMID: 27584863     DOI: 10.1021/jacs.6b07351

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


  18 in total

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Authors:  Mathias S Hvid; Henrik S Jeppesen; Matteo Miola; Paolo Lamagni; Ren Su; Kirsten M Ø Jensen; Nina Lock
Journal:  IUCrJ       Date:  2019-07-05       Impact factor: 4.769

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8.  A versatile MOF-based trap for heavy metal ion capture and dispersion.

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9.  Bio-inspired nano-traps for uranium extraction from seawater and recovery from nuclear waste.

Authors:  Qi Sun; Briana Aguila; Jason Perman; Aleksandr S Ivanov; Vyacheslav S Bryantsev; Lyndsey D Earl; Carter W Abney; Lukasz Wojtas; Shengqian Ma
Journal:  Nat Commun       Date:  2018-04-24       Impact factor: 14.919

10.  Spectroscopic Study of the Salicyladazine Derivative⁻UO22+ Complex and Its Immobilization to Mesoporosorous Silica.

Authors:  Sujin Park; Jaehyeon Park; Ji Ha Lee; Myong Yong Choi; Jong Hwa Jung
Journal:  Nanomaterials (Basel)       Date:  2019-05-02       Impact factor: 5.076

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