Acorrelation between the transfer factor of radioactive cesium from soil into rice plants and the grain size distribution of paddy soil in Fukushima
Author:
Affiliation:
1. Phoenix Leader Education Program, Hiroshima University
2. Graduate School of Science, Hiroshima University
3. Natural Science Center for Basic Research and Development, Hiroshima University
Publisher
Japanese Society of Radiation Safety Management
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/rsm/15/0/15_160107/_pdf
Reference8 articles.
1. 1) Iwata, H., Shiotsu, H., Kaneko, M., and Utsunomiya, S.: Nuclear accidents in Fukushima, Japan, and exploration of effective decontamination for the 137Cs-contaminated soils, Advances in nuclear fuel Chap. 6 (2012).
2. 2) Endo, S., Kimura, S., Takatsuji, T., Nanasawa, K., Imanaka, T., Shizuma, K.: Measurement of soil concentration by radionuclides due to Fukushima Dai-ichi Nuclear Power Plant accident and associated cumulative external dose estimation, J. Environm. Radioact., 111, 18-27 (2012).
3. 3) Nikolaevsky, V. B., Lifanov, F. A., Batusov, S. S.: Improving decontamination of 137Cs contaminated soil, Atomic Energy. 114, 51-55 (2013).
4. 4) Okumura, M., Nakamura, H., Machida, M.: Mechanism of strong affinity of clay minerals to radioactive cesium: first-principles calculation study for adsorption of cesium at frayed edge sites in Muscovite, J. Phys. Jpn., 82, 033802 (2013).
5. 5) Nihei, N., Tanoi, K., Nakanishi, T. M.: Inspections of radiocesium concentration levels in rice from Fukushima Prefecture after the Fukushima Dai-ichi Nuclear Power Plant accident, Scientific Reports. 5, 8653 (2015).
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