Temporal variability of 137Cs concentrations in coastal sediments off Fukushima

生物群 环境科学 沉积物 放射性核素 污染 海水 福岛核事故 水文学(农业) 放射性污染 微粒 海洋学 核电站 地质学 生态学 古生物学 核物理学 岩土工程 物理 生物 量子力学
作者
Shotaro Suzuki,Yosuke Amano,Masahiro Enomoto,Akira Matsumoto,Yoshiaki Morioka,Kazuyuki Sakuma,Tadahiko Tsuruta,Hideki Kaeriyama,Hikaru Miura,Daisuke Tsumune,Kyoichi Kamiyama,Toshihiro Wada,Hyoe Takata
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:831: 154670-154670 被引量:3
标识
DOI:10.1016/j.scitotenv.2022.154670
摘要

Large amounts of radiocesium were released into marine environments following the Fukushima Daiichi Nuclear Power Plant accident in March 2011. Released radiocesium influenced not only marine environment but also marine biota in Fukushima. Since marine biota as fisheries products is important for Japanese market, it is important to assess the distribution of radiocesium in coastal environment off Fukushima for safety concerns of radioactive contamination. Radiocesium concentrations in sediments are important for understanding fishing ground conditions and for proving the safety of fisheries products in Fukushima. In this study, monthly monitoring data collected from May 2011 to March 2020 were analyzed to describe the temporal variability of 137Cs concentrations in coastal sediments off Fukushima (total of 3647 samples from eight lines at depths of 7-125 m off Fukushima, and three sites in Matsukawa-ura Lagoon). The 137Cs concentration in sediment showed a decreasing trend, but our nonlinear model fitting suggested that this rate of decrease had slowed down. Additionally, 137Cs concentrations were up to 4.08 times greater in shallow sampling sites (7, 10, 20 m depth) following heavy rainfall events (before five months vs. after five months), such as typhoons. These observations were consistent with increasing input from particulate 137Cs fluxes from rivers and increasing dissolved 137Cs concentrations in seawater. Finally, our numerical modeling suggested that riverine 137Cs input could maintain 137Cs concentrations in coastal sediment. These results indicate that riverine 137Cs input following heavy rainfall events is the main factor for maintaining 137Cs concentrations in coastal sediments near the Fukushima Daiichi Nuclear Power Plant.
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