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Effective Half-life of Cs-134 and Cs-137 in Fukushima Prefecture When Compared to Theoretical Decay Models

机译:与理论衰减模型相比,福岛县CS-134和CS-137的有效半衰期

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On 11 March 2011, a 9.0 magnitude earthquake struck the Tohoku region of Japan. The earthquake caused a 15 m tsunami that bombarded the east coast of the island nation. Among the losses was the damage to the Fukushima Daiichi nuclear reactor that lost onsite power and was unable to cool the reactor cores. The reactors melted down and released a plume of radionuclides into the environment. Radiocesiums (Cs-134 and Cs-137) are the long-lived radionuclides of concern that were deposited along the plume and were distributed on the soil. Radiological decay models are typically used to determine the reduction in external radiation dose over time. However, these radiological decay models do not take into account physical removal by wind and water erosion, or sedimentation in soil outside expected depths. Thirty-five fixed dose-rate monitors were used to record dose rates at 1 mo intervals from the time of installation in Fukushima Prefecture in April 2012 until December 2018 and were used to estimate the effective half-life for radiocesium contamination based on external radiation dose rates. The effective half-life of cesium in the environment was calculated to be 3.2 +/- 0.5 y, compared to a theoretical half-life of 7.8 y.
机译:2011年3月11日,一场9.0级地震袭击了日本的北京地区。地震造成了15米的海啸,轰炸了岛屿的东海岸。损失中的损失是福岛达奇核反应堆失去现场能力,无法冷却反应器核心。反应器融化并释放到环境中的放射性核素。酰基铯(CS-134和CS-137)是沿着羽流沉积的长寿放射性核素,并分布在土壤上。辐射衰减模型通常用于确定外部辐射剂量随时间的降低。然而,这些放射线衰减模型不会考虑风和水侵蚀的物理去除,或者在预期深度的土壤中沉淀。三十五种固定剂量监测器用于在2012年4月到2018年4月的福岛县的安装时以1MO间隔记录剂量率,并用于估计基于外部辐射剂量的基于外部辐射剂量的无线电铯污染的有效半衰期费率。与7.8 y的理论半衰期相比,将环境中铯的有效半衰期计算为3.2 +/- 0.5 y。

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