Cs+ and Sr2+ adsorption selectivity of zeolites in relation to radioactive decontamination

Zeolites are used as adsorbents of cationic elements in the radioactive decontamination process of water, soil and others. We determined Cs+ and Sr2+ adsorption selectivity of some zeolites to know effective zeolite species for the decontamination of radioactive Cs and Sr. A 30mL mixed solution cont...

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Veröffentlicht in:Journal of Asian Ceramic Societies 2015-09, Vol.3 (3), p.245-250
Hauptverfasser: Munthali, M.W., Johan, E., Aono, H., Matsue, N.
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Sprache:eng
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Zusammenfassung:Zeolites are used as adsorbents of cationic elements in the radioactive decontamination process of water, soil and others. We determined Cs+ and Sr2+ adsorption selectivity of some zeolites to know effective zeolite species for the decontamination of radioactive Cs and Sr. A 30mL mixed solution containing up to 15mgL−1 of non-radioactive Cs+ or Sr+ and up to 0.50M of Na+ or K+ was mixed with 0.5g of Linde-type A, Na-P1, faujasite X, faujasite Y and mordenite. Among the zeolites, mordenite had the highest Cs+ adsorption selectivity, and the selectivity had no correlation to the cation exchange capacity (CEC) of the zeolites. In contrast, Sr2+ adsorption selectivity of the zeolites positively correlated with the CEC of the zeolites; Linde-type A with the highest CEC showed the highest adsorption selectivity, and its adsorption rate was more than 99.9% even in the presence of 0.5M K+. A simulated soil decontamination experiment of Cs from a Cs-retaining vermiculite by using mordenite and that of Sr from a Sr-retaining vermiculite by using Linde-type A showed decontamination rates of more than 90%.
ISSN:2187-0764
2187-0764
DOI:10.1016/j.jascer.2015.04.002