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Secondary wind transport of radioactive materials after the Fukushima accident

机译:福岛事故后放射性物质的二次风运输

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Data from the radiation monitoring network surrounding the Fukushima Dai-ichi Nuclear Power Plant (FNPP) revealed that the radiation levels generally decayed faster at a highly-contaminated area than at neighboring moderately-contaminated areas during the first month after the Fukushima nuclear accident in March, 2011. Two possible mechanisms are considered: secondary transport of radioactive dust by wind or rain, and non-uniform radionuclide ratio of contamination between radioiodine (131I) and radiocesium (134Cs and 137Cs). The composition data from soil does not favor the latter scenario, except for the local coastal region south of the FNPP, while inter-regional transport from the highly-contaminated area to the moderately-contaminated areas explains both the general difference in the decay rate in the entire area and the relatively slow decay at a high-dose rate anomaly 40 km northwest of the FNPP.
机译:来自福岛第一核电站(FNPP)周围辐射监测网络的数据显示,在3月福岛核事故发生后的第一个月,高污染区的辐射水平衰减速度通常快于邻近的中度污染区(2011年)。考虑了两种可能的机制:风或雨对放射性粉尘的二次运输,以及放射性碘(131I)和铯(134Cs和137Cs)之间污染物的放射性核素比率不均匀。除了FNPP以南的当地沿海地区外,土壤的成分数据不利于后一种情况,而从高污染地区到中度污染地区的区域间迁移解释了这两个地区衰减速率的一般差异。整个区域以及FNPP西北40 km处的高剂量率异常衰减相对较慢。

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