Author:
Akata Naofumi,Tanaka Masahiro,Iwata Chie,Kato Akemi,Nakada Miki,Kovács Tibor,Kakiuchi Hideki
Abstract
The deuterium plasma experiment was started using the Large Helical Device (LHD) at the National Institute for Fusion Science (NIFS) in March 2017 to investigate high-temperature plasma physics and the hydrogen isotope effects towards the realization of fusion energy. In order to clarify any experimental impacts on precipitation, precipitation has been collected at the NIFS site since November 2013 as a means to assess the relationship between isotope composition and chemical species in precipitation containing tritium. The tritium concentration ranged from 0.10 to 0.61 Bq L−1 and was high in spring and low in summer. The stable isotope composition and the chemical species were unchanged before and after the deuterium plasma experiment. Additionally, the tritium concentration after starting the deuterium plasma experiment was within three sigma of the average tritium concentration before the deuterium plasma experiment. These results suggested that there was no impact by tritium on the environment surrounding the fusion test facility.
Funder
National Institute for Fusion Science
Japan Society for the Promotion of Science
Subject
Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health
Reference40 articles.
1. Overview of Tritium
2. Sources and Effects of Ionizing Radiation, Volume I: Source,2000
3. Sources and Effects of Ionizing Radiation,2010
4. Tritium injection and concentration distribution in the atmosphere
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