海洋生物体内の放射性セシウム濃度の数値モデル解析―東京湾における福島第一原発事故由来の放射性セシウム―

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タイトル別名
  • Numerical model analysis of radioactive cesium concentrations in marine organism—For radiocesium activity concentrations in the Tokyo Bay after the Fukushima Daiichi Nuclear Power Station accident—
  • カイヨウ セイブツタイナイ ノ ホウシャセイ セシウム ノウド ノ スウチ モデル カイセキ : トウキョウワン ニ オケル フクシマ ダイイチ ゲンパツ ジコ ユライ ノ ホウシャセイ セシウム

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抄録

We used a numerical model (the bioaccumulation model) to analyze the radioactivity concentrations of radioactive cesium in organisms living in sea areas, focusing specifically on Japanese whiting (Sillago japonica) in Tokyo Bay. The radioactivity concentrations of radioactive cesium in Japanese whiting in the period between March 11, 2011 and August 31, 2013 were spatiotemporally analyzed using the model. The concentration of 134Cs in Japanese whiting obtained using the model was 0.18 Bq · kg–1 on August 20, 2011, and this concentration then gradually decreased. The concentration of 137Cs in the whiting was 0.36 Bq · kg–1 on April 25, 2013, and this concentration remained essentially unchanged afterwards. These two tendencies agreed with the experimental measurements obtained in the present study. Therefore, the model is useful for spatiotemporal analysis of radioactivity concentrations of radioactive cesium in Japanese whiting living in Tokyo Bay. The committed effective dose—calculated based on the radioactivity concentration of 137Cs in Japanese whiting obtained using the model—was 0.03 mSv, which is smaller than the allowable internal exposure dose due to food consumption specified by the Ministry of Health, Labour and Welfare.

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