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New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix

(99)Tc is one of the predominant fission products of (235)U and an important component of nuclear industry wastes. The long half-life and specific activity of (99)Tc (212,000 y, 0.63 GBq g(−1)) makes Tc a hazardous material. Two principal ways were proposed for its disposal, namely, long-term storag...

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Autores principales: Volkov, Mikhail A., Novikov, Anton P., Grigoriev, Mikhail S., Kuznetsov, Vitaly V., Sitanskaia, Anastasiia V., Belova, Elena V., Afanasiev, Andrey V., Nevolin, Iurii M., German, Konstantin E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916763/
https://www.ncbi.nlm.nih.gov/pubmed/36768335
http://dx.doi.org/10.3390/ijms24032015
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author Volkov, Mikhail A.
Novikov, Anton P.
Grigoriev, Mikhail S.
Kuznetsov, Vitaly V.
Sitanskaia, Anastasiia V.
Belova, Elena V.
Afanasiev, Andrey V.
Nevolin, Iurii M.
German, Konstantin E.
author_facet Volkov, Mikhail A.
Novikov, Anton P.
Grigoriev, Mikhail S.
Kuznetsov, Vitaly V.
Sitanskaia, Anastasiia V.
Belova, Elena V.
Afanasiev, Andrey V.
Nevolin, Iurii M.
German, Konstantin E.
author_sort Volkov, Mikhail A.
collection PubMed
description (99)Tc is one of the predominant fission products of (235)U and an important component of nuclear industry wastes. The long half-life and specific activity of (99)Tc (212,000 y, 0.63 GBq g(−1)) makes Tc a hazardous material. Two principal ways were proposed for its disposal, namely, long-term storage and transmutation. Conversion to metal-like technetium matrices is highly desirable for both cases and for the second one the reasonably high Tc purity was important too. Tetramethylammonium pertechnetate (TMAP) was proposed here as a prospective precursor for matrix manufacture. It provided with very high decontamination factors from actinides (that is imperative for transmutation) by means of recrystallisation and it was based on the precise data on TMAP solubility and thermodynamics accomplished in the temperature range of 3–68 °C. The structure of solid pertechnetates were re-estimated with precise X-ray structure solution and compared to its Re and Cl analogues and tetrabutylammonium analogue as well. Differential thermal and evolved gas analysis in a flow of Ar–5% H(2) gas mixture showed that the major products of thermolysis were pure metallic technetium in solid matrix, trimethylammonium, carbon dioxide, and water in gas phase. High decontamination factors have been achieved when TMAP was used as an intermediate precursor for Tc.
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spelling pubmed-99167632023-02-11 New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix Volkov, Mikhail A. Novikov, Anton P. Grigoriev, Mikhail S. Kuznetsov, Vitaly V. Sitanskaia, Anastasiia V. Belova, Elena V. Afanasiev, Andrey V. Nevolin, Iurii M. German, Konstantin E. Int J Mol Sci Article (99)Tc is one of the predominant fission products of (235)U and an important component of nuclear industry wastes. The long half-life and specific activity of (99)Tc (212,000 y, 0.63 GBq g(−1)) makes Tc a hazardous material. Two principal ways were proposed for its disposal, namely, long-term storage and transmutation. Conversion to metal-like technetium matrices is highly desirable for both cases and for the second one the reasonably high Tc purity was important too. Tetramethylammonium pertechnetate (TMAP) was proposed here as a prospective precursor for matrix manufacture. It provided with very high decontamination factors from actinides (that is imperative for transmutation) by means of recrystallisation and it was based on the precise data on TMAP solubility and thermodynamics accomplished in the temperature range of 3–68 °C. The structure of solid pertechnetates were re-estimated with precise X-ray structure solution and compared to its Re and Cl analogues and tetrabutylammonium analogue as well. Differential thermal and evolved gas analysis in a flow of Ar–5% H(2) gas mixture showed that the major products of thermolysis were pure metallic technetium in solid matrix, trimethylammonium, carbon dioxide, and water in gas phase. High decontamination factors have been achieved when TMAP was used as an intermediate precursor for Tc. MDPI 2023-01-19 /pmc/articles/PMC9916763/ /pubmed/36768335 http://dx.doi.org/10.3390/ijms24032015 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Volkov, Mikhail A.
Novikov, Anton P.
Grigoriev, Mikhail S.
Kuznetsov, Vitaly V.
Sitanskaia, Anastasiia V.
Belova, Elena V.
Afanasiev, Andrey V.
Nevolin, Iurii M.
German, Konstantin E.
New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix
title New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix
title_full New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix
title_fullStr New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix
title_full_unstemmed New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix
title_short New Preparative Approach to Purer Technetium-99 Samples—Tetramethylammonium Pertechnetate: Deep Understanding and Application of Crystal Structure, Solubility, and Its Conversion to Technetium Zero Valent Matrix
title_sort new preparative approach to purer technetium-99 samples—tetramethylammonium pertechnetate: deep understanding and application of crystal structure, solubility, and its conversion to technetium zero valent matrix
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916763/
https://www.ncbi.nlm.nih.gov/pubmed/36768335
http://dx.doi.org/10.3390/ijms24032015
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