Аннотация:
The use of hydroxyapatite obtained by enzymatic synthesis (HAPE) as a carrier of radionuclides (yttrium-90, copper(II) as a prototype of 64Cu and 67Cu and ruthenium-103 as a prototype of 97Ru) is considered. The processes of sorption and desorption of ions in different solutions are compared. The sorption of copper and yttrium on HAPE is almost irreversible, in contrast to the sorption of ruthenium, for which the reverse process depends on the medium.
Образец цитирования:
V. K. Dolgova, A. V. Gopin, A. L. Nikolaev, A. P. Orlov, T. P. Trofimova, M. A. Orlova, “Enzymatic hydroxyapatite as a carrier for yttrium-90 and copper and ruthenium radionuclides”, Mendeleev Commun., 32:2 (2022), 281–282
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/mendc640
https://www.mathnet.ru/rus/mendc/v32/i2/p281
Эта публикация цитируется в следующих 5 статьяx:
Ivan N. Chernykh, Varvara K. Dolgova, Alexander V. Gopin, Alexander V. Severin, Andrey N. Kharlanov, Alexander L. Nikolaev, “Using enzymatic synthesis of hydroxyapatite as a technique to develop materials for biomedical applications”, Ceramics International, 50:6 (2024), 9149
A. V. Severin, D. O. Lapshin, V. Yu. Yaryshev, S. V. Maksimov, T. P. Trofimova, M. A. Orlova, “Features of physicochemical properties of the hydroxyapatite—ruthenium system depending on the stage of metal ion introduction into the cocrystallization process”, Russ Chem Bull, 73:4 (2024), 828
Wenjun Wu, Jianlong Wang, “Adsorption removal of uranium from aqueous solution by hydroxyapatite: Recent advances and prospects”, Annals of Nuclear Energy, 206 (2024), 110609
María del Carmen De Lama-Odría, Luis J. del Valle, Jordi Puiggalí, “Lanthanides-Substituted Hydroxyapatite for Biomedical Applications”, IJMS, 24:4 (2023), 3446
A. V. Gopin, V. K. Dolgova, A. V. Severin, E. A. Logutenkova, “Features of sorption binding of Y3+ ions with hydroxyapatite of various textural organization”, Russ Chem Bull, 72:7 (2023), 1505