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Radiocesium derived from the Fukushima Daiichi Nuclear Power Plant accident in seabed sediments: initial deposition and inventories

机译:福岛第一核电站事故在海底沉积物中产生的放射性铯:初始沉积量和存量

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Since the accident at Fukushima Daiichi Nuclear Power Plant (1FNPP), significant levels of anthropogenic radionuclides have been detected in seabed sediments off the east coast of Japan, in this paper, the approximate amount of accident-derived radiocesium in seabed sediments off Fukushima, Miyagi and ibaraki prefectures was estimated from a sediment integration algorithm. As of October 2011, about half a year after the accident, the total amount of sedimentary ~(134)Cs was 0.20 ± 0.06 PBq (decay corrected to March 11, 2011) and more than 90% of the radiocesium was accumulated in the regions shallower than 200 m depth. The large inventory in the coastal sediments was attributed to effective adsorption of dissolved radiocesium onto suspended particles and directly to sediments in the early post-accident stage. Although rivers are also an important source to supply radiocesium to the coastal regions, this flux was much lower than that of the above-mentioned process within half a year after the accident.
机译:自福岛第一核电站发生事故以来,在日本东海岸附近的海底沉积物中发现了大量的人为放射性核素。在本文中,宫城县福岛附近的海底沉积物中大约有事故源的放射性铯。茨城县是根据沉积物整合算法估算的。截至2011年10月,大约在事故发生后半年,沉积的〜(134)Cs总量为0.20±0.06 PBq(衰减至2011年3月11日),并且该地区累积了90%以上的放射性铯深度小于200 m。沿海沉积物中的大量存量归因于溶解后的放射性铯有效吸附到悬浮颗粒上,并直接归因于事故发生后早期的沉积物。尽管河流也是向沿海地区提供放射性铯的重要来源,但在事故发生后的半年内,这种流量远低于上述过程的流量。

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