Behavior of radioactive cesium concentration for 13 years after FDNPP accident at Koriyama campus of Nihon University, Fukushima, Japan.

IF 0.8 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES Radiation protection dosimetry Pub Date : 2024-11-13 DOI:10.1093/rpd/ncae082
Ryoko Suzuki, Katsuhiko Okuyama, Kohei Chiba, Taiki Hashimoto, Natsumi Katsumata, Azusa Ukitsu, Khemruthai Kheamsiri, Ryohei Yamada, Naofumi Akata
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Abstract

The concentration of the radioactive cesium (134Cs and 137Cs) in soils and in atmospheric fallouts has been measured at the Koriyama campus, Nihon University, after the Fukushima Dai-ichi Nuclear Power Plant accident for 13 y, from October 2011 till September 2023 and now ongoing. The concentration of them decreased very rapidly due to decontamination activities and weathering effects, with an environmental half-life of 1.21 and 2.82 y in soils, with those of 1.58 and 2.08 y in atmospheric fallouts for 134Cs and 137Cs, respectively. The behavior of the decrease was not simple, due to particles raised from the surface soil in wooded areas that had not been thoroughly decontaminated or that had been accumulated due to the re-release of radioactive cesium by trees after decontaminated activity.

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日本福岛县日本大学郡山校区在 FDNPP 事故后 13 年的放射性铯浓度变化。
日本大学郡山校区在福岛第一核电站事故后的 13 年间(2011 年 10 月至 2023 年 9 月,目前仍在进行中),对土壤和大气降尘中的放射性铯(134Cs 和 137Cs)浓度进行了测量。由于去污活动和风化作用,它们的浓度迅速下降,在土壤中的环境半衰期分别为 1.21 年和 2.82 年,在大气降尘中 134Cs 和 137Cs 的环境半衰期分别为 1.58 年和 2.08 年。放射性铯在土壤中的半衰期分别为 1.21 年和 2.82 年,而在大气降尘中,134Cs 和 137Cs 的半衰期分别为 1.58 年和 2.08 年。放射性铯减少的情况并不简单,这是由于林区的表层土壤中的颗粒没有被彻底净化,或者由于树木在净化活动后重新释放放射性铯而积累起来的。
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来源期刊
Radiation protection dosimetry
Radiation protection dosimetry 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
1.40
自引率
10.00%
发文量
223
审稿时长
6-12 weeks
期刊介绍: Radiation Protection Dosimetry covers all aspects of personal and environmental dosimetry and monitoring, for both ionising and non-ionising radiations. This includes biological aspects, physical concepts, biophysical dosimetry, external and internal personal dosimetry and monitoring, environmental and workplace monitoring, accident dosimetry, and dosimetry related to the protection of patients. Particular emphasis is placed on papers covering the fundamentals of dosimetry; units, radiation quantities and conversion factors. Papers covering archaeological dating are included only if the fundamental measurement method or technique, such as thermoluminescence, has direct application to personal dosimetry measurements. Papers covering the dosimetric aspects of radon or other naturally occurring radioactive materials and low level radiation are included. Animal experiments and ecological sample measurements are not included unless there is a significant relevant content reason.
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