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Tracing surface seawater mixing and nutrient transport by^(222)Rn on the northern coast of Beibu Gulf,China
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作者 Hao Wang Qiangqiang Zhong +5 位作者 fule zhang Suiyuan Chen Hongyan Bao Jing Lin Dekun Huang Tao Yu 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2023年第8期87-98,共12页
The transport and diffusion of substances in seawater are limited by the mixing motion of water bodies,while the main forms of mixing in offshore water bodies are advection and eddy diffusion.The eddy diffusion proces... The transport and diffusion of substances in seawater are limited by the mixing motion of water bodies,while the main forms of mixing in offshore water bodies are advection and eddy diffusion.The eddy diffusion process of water indicates the possible transport direction of dissolved substances.However,the complex environment in the coastal zone makes it difficult to quantitatively assess the water diffusion process.^(222)Rn is a useful tool to trace the diffusion process of water bodies.However,studies on the^(222)Rn distribution and its behavior in the Beibu Gulf are scarce.In this study,the activity distribution characteristics of^(222)Rn in surface seawater of the Guangxi shelf area of the Beibu Gulf were measured.Based on the one-dimensional,steady-state model,the vorticity diffusion coefficient of^(222)Rn in the horizontal direction was calculated as(0.42−2.13)×10^(8) m^(2)/d,and the offshore fluxes of^(222)Rn under the influence of water mixing were calculated as 2.00×10^(12) Bq/d.Correspondingly,the horizontal transport fluxes of silicate,phosphate,nitrite and nitrate were 6.28×10^(−3)mol/(m^(2)·d),0.10×10^(−3)mol/(m^(2)·d),0.20×10^(−3)mol/(m^(2)·d)and 4.15×10^(−3)mol/(m^(2)·d),respectively.These results indicate that the study of eddy current diffusion in offshore marine water facilitates a deeper understanding of the water mixing process and nutrient transport and migration. 展开更多
关键词 ^(222)Rn water mixing NUTRIENTS vorticity diffusion coefficient horizontal transport flux
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福岛核污染水中的人工放射性核素及其在海洋环境中的迁移转化行为
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作者 张福乐 王锦龙 +2 位作者 黄德坤 于涛 杜金洲 《地球科学进展》 CAS CSCD 北大核心 2024年第1期23-33,共11页
2023年8月24日,日本政府启动福岛核污染水排海,这将进一步增加对海洋生态环境的辐射风险。分析了福岛核污染水中主要人工放射性核素的浓度,估算了其在福岛核污染水中的储量。根据东京电力公司公布的数据发现,截至2023年3月,福岛核污染... 2023年8月24日,日本政府启动福岛核污染水排海,这将进一步增加对海洋生态环境的辐射风险。分析了福岛核污染水中主要人工放射性核素的浓度,估算了其在福岛核污染水中的储量。根据东京电力公司公布的数据发现,截至2023年3月,福岛核污染水储罐中^(3)H的浓度为1.9×10^(5)~25.0×10^(5) Bq/L,明显超出日本法律允许的^(3)H的最大排放浓度(6×10^(4) Bq/L);部分核污染水储罐中^(90)Sr和^(129)I的浓度也高于日本法律允许的^(90)Sr和^(129)I的最大排放浓度(30 Bq/L和9 Bq/L)。经估算,在排海前福岛核污染水中^(3)H和^(129)I的储量分别为0.9 PBq和6.2×10^(9) Bq,这与核事故阶段^(3)H和^(129)I泄漏到海洋中的量(0.1~1.0 PBq和6.9×10^(9) Bq)相当。此外,进一步对福岛核污染水中典型放射性核素(如^(3)H、^(14)C、^(60)Co、^(90)Sr、^(129)I、^(134,137)Cs和^(239,240)Pu等)在海洋环境中的迁移转化行为进行了论述,重点介绍了福岛放射性核素在太平洋海域的迁移路径,及其在海洋沉积物上的吸附和海洋生物中的富集行为。期望为中国应对福岛核污染水排海提供一定的科学依据和见解。 展开更多
关键词 福岛核污染水 人工放射性核素 洋流输运 沉积物吸附 生物富集
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