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Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis

Highly accurate, quantitative analyses of mixtures of hydrogen isotopologues—both the stable species, H(2), D(2), and HD, and the radioactive species, T(2), HT, and DT—are of great importance in fields as diverse as deuterium–tritium fusion, neutrino mass measurements using tritium β-decay, or for p...

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Autores principales: Niemes, Simon, Telle, Helmut H., Bornschein, Beate, Fasselt, Lucian, Größle, Robin, Priester, Florian, Schlösser, Magnus, Sturm, Michael, Welte, Stefan, Zeller, Genrich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8473055/
https://www.ncbi.nlm.nih.gov/pubmed/34577377
http://dx.doi.org/10.3390/s21186170
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author Niemes, Simon
Telle, Helmut H.
Bornschein, Beate
Fasselt, Lucian
Größle, Robin
Priester, Florian
Schlösser, Magnus
Sturm, Michael
Welte, Stefan
Zeller, Genrich
author_facet Niemes, Simon
Telle, Helmut H.
Bornschein, Beate
Fasselt, Lucian
Größle, Robin
Priester, Florian
Schlösser, Magnus
Sturm, Michael
Welte, Stefan
Zeller, Genrich
author_sort Niemes, Simon
collection PubMed
description Highly accurate, quantitative analyses of mixtures of hydrogen isotopologues—both the stable species, H(2), D(2), and HD, and the radioactive species, T(2), HT, and DT—are of great importance in fields as diverse as deuterium–tritium fusion, neutrino mass measurements using tritium β-decay, or for photonuclear experiments in which hydrogen–deuterium targets are used. In this publication we describe a production, handling, and analysis facility capable of fabricating well-defined gas samples, which may contain any of the stable and radioactive hydrogen isotopologues, with sub-percent accuracy for the relative species concentrations. The production is based on precise manometric gas mixing of H(2), D(2), and T(2). The heteronuclear isotopologues HD, HT, and DT are generated via controlled, in-line catalytic reaction or by β-induced self-equilibration, respectively. The analysis was carried out using an in-line intensity- and wavelength-calibrated Raman spectroscopy system. This allows for continuous monitoring of the composition of the circulating gas during the self-equilibration or catalytic evolution phases. During all procedures, effects, such as exchange reactions with wall materials, were considered with care. Together with measurement statistics, these and other systematic effects were included in the determination of composition uncertainties of the generated reference gas samples. Measurement and calibration accuracy at the level of 1% was achieved.
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spelling pubmed-84730552021-09-28 Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis Niemes, Simon Telle, Helmut H. Bornschein, Beate Fasselt, Lucian Größle, Robin Priester, Florian Schlösser, Magnus Sturm, Michael Welte, Stefan Zeller, Genrich Sensors (Basel) Article Highly accurate, quantitative analyses of mixtures of hydrogen isotopologues—both the stable species, H(2), D(2), and HD, and the radioactive species, T(2), HT, and DT—are of great importance in fields as diverse as deuterium–tritium fusion, neutrino mass measurements using tritium β-decay, or for photonuclear experiments in which hydrogen–deuterium targets are used. In this publication we describe a production, handling, and analysis facility capable of fabricating well-defined gas samples, which may contain any of the stable and radioactive hydrogen isotopologues, with sub-percent accuracy for the relative species concentrations. The production is based on precise manometric gas mixing of H(2), D(2), and T(2). The heteronuclear isotopologues HD, HT, and DT are generated via controlled, in-line catalytic reaction or by β-induced self-equilibration, respectively. The analysis was carried out using an in-line intensity- and wavelength-calibrated Raman spectroscopy system. This allows for continuous monitoring of the composition of the circulating gas during the self-equilibration or catalytic evolution phases. During all procedures, effects, such as exchange reactions with wall materials, were considered with care. Together with measurement statistics, these and other systematic effects were included in the determination of composition uncertainties of the generated reference gas samples. Measurement and calibration accuracy at the level of 1% was achieved. MDPI 2021-09-14 /pmc/articles/PMC8473055/ /pubmed/34577377 http://dx.doi.org/10.3390/s21186170 Text en © 2021 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
Niemes, Simon
Telle, Helmut H.
Bornschein, Beate
Fasselt, Lucian
Größle, Robin
Priester, Florian
Schlösser, Magnus
Sturm, Michael
Welte, Stefan
Zeller, Genrich
Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis
title Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis
title_full Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis
title_fullStr Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis
title_full_unstemmed Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis
title_short Accurate Reference Gas Mixtures Containing Tritiated Molecules: Their Production and Raman-Based Analysis
title_sort accurate reference gas mixtures containing tritiated molecules: their production and raman-based analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8473055/
https://www.ncbi.nlm.nih.gov/pubmed/34577377
http://dx.doi.org/10.3390/s21186170
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