Development of quantitative analysis method for tritium using by hydrophobic platinum catalyst

Various methods of tritium measurement have been applied depending on a chemical form of tritium. A method combined oxidation catalyst and water bubblers has been used as one of the most quantitative analysis methods for gaseous tritium. The major technical shortcoming with the conventional methods...

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Main Authors: Yuki Edao, Yasunori Iwai, Takumi Hayashi
Format: Article
Language:English
Published: Elsevier 2016-12-01
Series:Nuclear Materials and Energy
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352179115300739
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spelling doaj-bd69ca3a628840038835192da46719702020-11-24T21:28:19ZengElsevierNuclear Materials and Energy2352-17912016-12-019C27327710.1016/j.nme.2016.06.013Development of quantitative analysis method for tritium using by hydrophobic platinum catalystYuki EdaoYasunori IwaiTakumi HayashiVarious methods of tritium measurement have been applied depending on a chemical form of tritium. A method combined oxidation catalyst and water bubblers has been used as one of the most quantitative analysis methods for gaseous tritium. The major technical shortcoming with the conventional methods is the lowering of quantitative accuracy caused by adsorption of produced tritiated vapor on hydrophilic oxidation catalyst. Then, we developed an organic-based hydrophobic platinum catalyst. The catalyst enhanced its hydrophobicity to prevent absorption of water vapor on catalyst surface. In order to ensure to oxidize tritium, we additionally devised 1) the particle size of the catalyst made small to be around 1mmϕ and 2) intentional addition of hydrogen. As the result of experimental verification of the proposed method, we succeeded to achieve the high accuracy of more than 99.9% in the quantitative measurement of tritium. The developed tritium measurement system is applicable widely for various tritium measurements, estimation of tritium generation rate at TBM, tritium behavior in various materials and so on.http://www.sciencedirect.com/science/article/pii/S2352179115300739TritiumHydrophobic catalystQuantitative measurementAccuracy
collection DOAJ
language English
format Article
sources DOAJ
author Yuki Edao
Yasunori Iwai
Takumi Hayashi
spellingShingle Yuki Edao
Yasunori Iwai
Takumi Hayashi
Development of quantitative analysis method for tritium using by hydrophobic platinum catalyst
Nuclear Materials and Energy
Tritium
Hydrophobic catalyst
Quantitative measurement
Accuracy
author_facet Yuki Edao
Yasunori Iwai
Takumi Hayashi
author_sort Yuki Edao
title Development of quantitative analysis method for tritium using by hydrophobic platinum catalyst
title_short Development of quantitative analysis method for tritium using by hydrophobic platinum catalyst
title_full Development of quantitative analysis method for tritium using by hydrophobic platinum catalyst
title_fullStr Development of quantitative analysis method for tritium using by hydrophobic platinum catalyst
title_full_unstemmed Development of quantitative analysis method for tritium using by hydrophobic platinum catalyst
title_sort development of quantitative analysis method for tritium using by hydrophobic platinum catalyst
publisher Elsevier
series Nuclear Materials and Energy
issn 2352-1791
publishDate 2016-12-01
description Various methods of tritium measurement have been applied depending on a chemical form of tritium. A method combined oxidation catalyst and water bubblers has been used as one of the most quantitative analysis methods for gaseous tritium. The major technical shortcoming with the conventional methods is the lowering of quantitative accuracy caused by adsorption of produced tritiated vapor on hydrophilic oxidation catalyst. Then, we developed an organic-based hydrophobic platinum catalyst. The catalyst enhanced its hydrophobicity to prevent absorption of water vapor on catalyst surface. In order to ensure to oxidize tritium, we additionally devised 1) the particle size of the catalyst made small to be around 1mmϕ and 2) intentional addition of hydrogen. As the result of experimental verification of the proposed method, we succeeded to achieve the high accuracy of more than 99.9% in the quantitative measurement of tritium. The developed tritium measurement system is applicable widely for various tritium measurements, estimation of tritium generation rate at TBM, tritium behavior in various materials and so on.
topic Tritium
Hydrophobic catalyst
Quantitative measurement
Accuracy
url http://www.sciencedirect.com/science/article/pii/S2352179115300739
work_keys_str_mv AT yukiedao developmentofquantitativeanalysismethodfortritiumusingbyhydrophobicplatinumcatalyst
AT yasunoriiwai developmentofquantitativeanalysismethodfortritiumusingbyhydrophobicplatinumcatalyst
AT takumihayashi developmentofquantitativeanalysismethodfortritiumusingbyhydrophobicplatinumcatalyst
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