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Sorption of Np, Pu, Am, Sr, Cs on the Mineral Phases of the Rocks of the Nizhnekansky Granitoid Massif under Conditions of Underground Repositories for Radioactive Wastes

The sorption properties of mineral phases that constitute the rocks of the Yeniseysky area of the Nizhnekansky granitoid massif toward Np, Pu, Am, Sr, and Cs were studied under conditions of underground radioactive waste disposal. As a result of sorption experiments, sorption kinetic curves were obt...

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Published in:Radiochemistry (New York, N.Y.) N.Y.), 2022-12, Vol.64 (6), p.740-749
Main Authors: Rodionova, A. A., Petrov, V. G., Vlasova, I. E.
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Vlasova, I. E.
description The sorption properties of mineral phases that constitute the rocks of the Yeniseysky area of the Nizhnekansky granitoid massif toward Np, Pu, Am, Sr, and Cs were studied under conditions of underground radioactive waste disposal. As a result of sorption experiments, sorption kinetic curves were obtained, and the distribution coefficients ( K d ) of radionuclides on mineral phases were determined. The resulting data made it possible to evaluate the differences in the sorption properties of minerals towards the studied radionuclides. For each radionuclide, with the exception of americium, it was possible to establish the most effective mineral phases in terms of sorption: for Np(V)—hydroxyapatite and calcite, for Pu(V)—hydroxyapatite and magnetite, for Sr(II)—biotite and hydroxyapatite, for Cs(I)—biotite and muscovite. Americium was sorbed quantitatively on all mineral phases, except for biotite and quartz.
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ispartof Radiochemistry (New York, N.Y.), 2022-12, Vol.64 (6), p.740-749
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language eng
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source Springer Nature
subjects Americium
Biotite
Calcite
Chemistry
Chemistry and Materials Science
Chemistry/Food Science
Hydroxyapatite
Massifs
Mica
Muscovite
Neptunium
Nuclear Chemistry
Phases
Plutonium
Radioactive waste disposal
Radioisotopes
Rocks
Sorption
Strontium
title Sorption of Np, Pu, Am, Sr, Cs on the Mineral Phases of the Rocks of the Nizhnekansky Granitoid Massif under Conditions of Underground Repositories for Radioactive Wastes
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