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Spatial assessment of radiocaesium in the largest lagoon in Fukushima after the TEPCO Fukushima Dai-ichi Nuclear Power Station accident

机译:东京电力公司福岛第一核电站事故发生后福岛最大泻湖中放射性铯的空间评估

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Radionuclides deposited on land by global fallouts and nuclear power station accidents spread over coastal environments through estuarine areas connecting land to ocean. In this study, we monitored activity concentration of radiocaesium in surface sediment and re-suspended particles in Matsukawa-ura lagoon, the largest lagoon in Fukushima, after the TEPCO Fukushima Dai-ichi Nuclear Power Station accident. Radiocaesium distribution in surface sediment varied spatiotemporally and irregularly due to the effect of tidal waves. The effective half-life was significantly shorter than physical half-life, suggesting some system of radiocaesium discharge in the lagoon. Sediment trap observation revealed re-suspended particles from sediment were transported to the ocean. For these reasons, it is suggested that re-suspension of particles in the lagoon and their transportation to the ocean by the seawater exchange process are important processes of radiocaesium discharge. Moreover, our results show that seawater exchange process contributes to the dispersion of radiocaesium in the ocean.
机译:全球放射性尘埃和核电站事故在陆地上沉积的放射性核素通过连接陆地和海洋的河口区域散布在沿海环境中。在这项研究中,我们监测了东京电力公司福岛第一核电站事故发生后,福岛最大的泻湖松川浦泻湖中地表沉积物和再悬浮颗粒中放射性铯的活动浓度。由于潮汐波的影响,地表沉积物中放射性铯的分布时空和不规则地变化。有效半衰期明显短于物理半衰期,表明泻湖中存在放射性铯排放系统。沉积物捕集器的观察表明,沉积物中重新悬浮的颗粒被运到海洋。由于这些原因,建议将颗粒重新悬浮在泻湖中以及通过海水交换过程将其运输到海洋是放射性铯排放的重要过程。此外,我们的结果表明,海水交换过程有助于放射性铯在海洋中的扩散。

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