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福岛核事故后福岛县森林环境中周围剂量率的时间变化。

Temporal changes of the ambient dose rate in the forest environments of Fukushima Prefecture following the Fukushima reactor accident.

机构信息

Center for Research in Isotopes and Environmental Dynamics, University of Tsukuba, Japan.

Center for Research in Isotopes and Environmental Dynamics, University of Tsukuba, Japan.

出版信息

J Environ Radioact. 2018 Oct;193-194:20-26. doi: 10.1016/j.jenvrad.2018.08.009. Epub 2018 Sep 1.

Abstract

Approximately 70% of the total land area affected by the fallout from the Fukushima accident is forested, and therefore monitoring of the ambient dose rate in forest environments is essential to ensure that the population and natural habitats of these areas are protected from radiological hazards. However, there are little available data on the ambient dose rate for forest environments. This study investigated temporal changes in the ambient dose rate in different forest environments of Fukushima Prefecture. We conducted repeated measurements of the ambient dose rate in 2014 and 2016 at the same measurement points as those used by the Ministry of Agriculture, Fishery and Forestry of Japan (MAFF) in 2011. The measurements revealed that the decreasing trend in the ambient dose rate varied among the different forest types and time periods. The ambient dose rate in EGC decreased slower than that induced by the physical decay of radiocesium for the period of 2011-2014. However, such slow declining trend of ambient dose rate was likely followed by quick reduction during the following years (2014-2016 and 2011-2016). On the other hand, in MBL and DBF forests, the ambient dose rate decreased 10-20% faster than that induced solely by physical decay of radiocesium for the observation period 2011-2016.

摘要

福岛事故沉降物影响的土地总面积中,约有 70%为森林覆盖,因此监测森林环境中的本底剂量率对于确保这些地区的人口和自然栖息地免受辐射危害至关重要。然而,关于森林环境中的本底剂量率,可用的数据很少。本研究调查了福岛县不同森林环境中的本底剂量率的时间变化。我们在 2014 年和 2016 年在与日本农林水产省(MAFF)在 2011 年相同的测量点上重复测量了本底剂量率。测量结果表明,不同森林类型和时间段的本底剂量率下降趋势不同。2011-2014 年期间,EGC 的本底剂量率下降速度比放射性铯的物理衰变所诱导的速度慢。然而,在随后的几年(2014-2016 年和 2011-2016 年),这种本底剂量率的缓慢下降趋势可能会迅速减少。另一方面,在 2011-2016 年期间,MBL 和 DBF 森林中的本底剂量率比仅由放射性铯的物理衰变所诱导的本底剂量率下降快 10-20%。

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