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Radioactivity data analysis of 137Cs in marine sediments near severely damaged Chernobyl and Fukushima nuclear power plants

机译:严重受损的切尔诺贝利核电站和福岛核电站附近海洋沉积物中 137 Cs的放射性数据分析

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Using several accessible published data sets, we analyzed the temporal change of137Cs radioactivity (per unit mass of sample) in marine sediments and investigated the effect of the water content of sediment on the137Cs radioactivity, to understand the behavior of137Cs present in marine environments. The137Cs radioactivity in sediments decreased more slowly in the Baltic Sea (near the Chernobyl nuclear power plant) than in the ocean near the Fukushima Daiichi nuclear power plant (FDNPP). The137Cs radioactivity in the sediment near the FDNPP tended to increase as the water content increased, and the water content decreased at certain sampling sites near the FDNPP for several years. Additionally, the decrease in the water content contributed to 51.2% of the average137Cs radioactivity decrease rate for the same period. Thus, it may be necessary to monitor both the137Cs radioactivity and the water content for marine sediments to track the137Cs that was discharged from the sites of Chernobyl and Fukushima nuclear power plants where severe accidents occurred.
机译:我们使用了几个可访问的公开数据集,分析了海洋沉积物中137Cs放射性(单位质量样品)的时间变化,并研究了沉积物中水分含量对137Cs放射性的影响,以了解海洋环境中137Cs的行为。在波罗的海(切尔诺贝利核电站附近)中,沉积物中的137Cs放射性的下降要比福岛第一核电站(FDNPP)附近的海洋中的慢。随着水含量的增加,FDNPP附近沉积物中的137Cs放射性趋于增加,而FDNPP附近某些采样点的水含量降低了几年。此外,水分含量的下降占同期平均137Cs放射性下降率的51.2%。因此,可能有必要同时监测137Cs的放射性和海洋沉积物中的水分,以追踪从切尔诺贝利核电站和福岛核电站发生严重事故的地点排放的137Cs。

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