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Hydrothermal synthesis, structure and sorption performance to cesium and strontium ions of nanostructured magnetic zeolite composites

Artur Dran'kov,Oleg Shichalin,Evgeniy Papynov,Alexey Nomerovskii,Vitaliy Mayorov, Vladimir Pechnikov,Andrei Ivanets, Igor Buravlev, Sofiya Yarusova, Alexey Zavjalov, Aleksey Ognev, Valeriya Balybina, Aleksey Lembikov,Ivan Tananaev,Nikolay Shapkin

Nuclear Engineering and Technology(2022)

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摘要
The problem of water contamination by long-living cesium and strontium radionuclides is an urgent environmental issue. The development of facile and efficient technologies based on nanostructured adsorbents is a perspective for selective radionuclides removal. In this regard, current work aimed to obtain the nanostructured magnetic zeolite composites with high adsorption performance to cesium and strontium ions. The optimal conditions of hydrothermal synthesis were established based on XRD, SEMEDX, N2 adsorption-desorption, VSM, and batch adsorption experiment data. The role of chemical composition, textural characteristics, and surface morphology was demonstrated. The monolayer ionexchange mechanism was proposed based on adsorption isotherm modeling. The highest Langmuir adsorption capacity of 229.6 and 105.1 mg/g towards cesium and strontium ions was reached for composite obtained at 90 degrees C hydrothermal treatment. It was shown that magnetic characteristics of zeolite composites allowing to separate spent adsorbents by a magnet from aqueous solutions. (c) 2021 Korean Nuclear Society, Published by Elsevier Korea LLC. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
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关键词
Zeolite adsorbents,Magnetic composites,Hydrothermal synthesis,Cesium and strontium radionuclides,Water treatment
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