Current State of Research in the Field of Detritiation of Technological Water Flows: A Review
Author:
Publisher
Pleiades Publishing Ltd
Subject
General Chemical Engineering,General Chemistry
Link
https://link.springer.com/content/pdf/10.1134/S0040579521060051.pdf
Reference87 articles.
1. Fairlie, I., Tritium Hazard Report: Pollution and Radiation Risk from Canadian Nuclear Facilities, Greenpeace, 2007.
2. Golubev, A.V., Mavrin, S.V., Golubeva, V.N., Stengach, A.V., Balashov, Yu.S., Kovalenko, V.P., and Solomatin, I.I., The field experiments on the HTO washout from the atmosphere, Fusion Sci. Technol., 2015, vol. 67, pp. 254–257.
3. Hanslík, E., Marešová, D., Juranová, E., and Sedlářová, B., Comparison of balance of tritium activity in waste water from nuclear power plants and at selected monitoring sites in the Vltava River, Elbe River and Jihlava (Dyje) River catchments in the Czech Republic, J. Environ. Manage., 2017, vol. 203, pp. 1137–1142.
4. Koma, Y., Shibata, A., and Ashida, T., Radioactive contamination of several materials following the Fukushima daiichi nuclear power station accident, Nucl. Mater. Energy, 2017, vol. 10, pp. 35–41.
5. Pearson, R.J., Antoniazzi, A.B., and Nuttall, W.J., Tritium supply and use: A key issue for the development of nuclear fusion energy, Fusion Eng. Des., 2018, vol. 136, part B, pp. 1140–1148.
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