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Technical analysis of low-concentration airborne <sup>134</sup>Cs, <sup>137</sup>Cs, <sup>103</sup>Ru and other radionuclides in Northern Europe in June 2020
Author(s) -
Shilian Wang,
Liqun Qi,
Y. B. Zhao,
Xinjun Zhang,
Yuanqing Fan,
Xiaoming Wang,
Huaimao Jia,
Zhanying Chen,
Shujiang Liu,
Yu-Cheng Chang,
Jianfang Shi
Publication year - 2020
Publication title -
wuli xuebao
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.199
H-Index - 47
ISSN - 1000-3290
DOI - 10.7498/aps.69.20201397
Subject(s) - physics , radiochemistry , chemistry
On 22 June 2020, the trace amount of 134 Cs, 137 Cs and 103 Ru in the atmosphere were detected by RN63 radionuclide station (in Sweden) of the International Monitoring System (IMS) for the Comprehensive Nuclear-Test-Ban Treaty (CTBT). Finland and Estonia declared the observation of these radionuclides and 141 Ce, 95 Zr and 95 Nb respectively from 14 to 22 June 2020. Regarding the source term of the detection, various views all over the world were expressed on the networks. In this paper, these radionuclides and their activity concentrations are analyzed, and the nature of the detective event is determined through the analysis of these monitored data and the historical monitored data of each station. In addition, the release time of these radionuclide is estimated, and possible source term regions are obtained by using an atmospheric transport model. The results show that the activity ratio of 134 Cs to 137 Cs is about 1.10, which can exclude the possibility that the radionuclides detected come from nuclear test or nuclear explosion. The detection of 131 I and 133 I at the IMS RN61 station may be related to the small defection of reactor fuel assembly, and correlated temporally with the detection of 133 Xe at the IMS RN49 station. Preliminary conclusions indicate that the 134 Cs, 137 Cs and 103 Ru are likely to be related to the release of improper handling of reactor maintenance or fresh spent fuel transfer in Northern Europe region. Furthermore, due to the activity concentration is only μBq/m 3 order of these radionuclides, it has no effect on public health.

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