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从假设的 Akkuyu 核电站事故中,放射性裂变产物和放射性在地中海生物群中的辐射效应。

Radiotoxic fission products and radiological effects in the Mediterranean Sea biota from a hypothetical accident in Akkuyu Nuclear Power Plant.

机构信息

Department of Physics, Eastern Mediterranean University, Famagusta, 99628 North Cyprus via Mersin 10, Turkey; Faculty of Engineering, Cyprus International University, Lefkosa, Mersin 10, Turkey.

Physics Department, Faculty of Science, Al-Azhar University, Assiut Branch, 71452, Egypt; Istinye University, Faculty of Engineering and Natural Sciences, Computer Engineering Department, Istanbul 34396, Turkey; Institute of Physics and Technology, Ural Federal University, Ekaterinburg, Russia.

出版信息

Mar Pollut Bull. 2023 Aug;193:115166. doi: 10.1016/j.marpolbul.2023.115166. Epub 2023 Jun 20.

Abstract

A combined hydrodynamic/radiobiological model was used to calculate the distribution and dose rate of significant radionuclides in the Mediterranean Sea marine organisms in the event of an accident at the Akkuyu Nuclear Power Plant (ANPP). The Hybrid single-particle Lagrangian integrated trajectory (HYSPLIT) model was applied to simulate the dispersion and deposition of artificial radionuclide concentrations. Environmental Risk from Ionising Contaminants: Assessment and Management (ERICA) tools were utilized to assess issues related to sea health and potential hazards in case of an accident. The scenario source term profile was derived from the Fukushima nuclear power accident. Volumetric concentrations and deposition levels of pollutants increased from 1 MBqm to 1 × 10 MBqm and from 1 × 10 MBqm to 1 × 10 MBqm after 48 h. In terms of dose rates to the various marine biotas, polychaete worms had the greatest overall dose rate and the highest contribution to total dose rates attributable to Cs radionuclide.

摘要

采用水动力/放射生物学模型计算了假设 Akkuyu 核电站(ANPP)发生事故时,地中海海洋生物中重要放射性核素的分布和剂量率。应用混合单粒子拉格朗日综合轨迹(HYSPLIT)模型模拟人工放射性核素浓度的分散和沉积。利用环境风险评估和管理工具(ERICA)评估与海健康有关的问题和潜在事故危害。情景源项剖面来自福岛核事故。污染物的体积浓度和沉积水平在 48 小时内从 1MBqm 增加到 1×10MBqm,从 1×10MBqm 增加到 1×10MBqm。就各种海洋生物群的剂量率而言,多毛环节动物的总剂量率最大,对 Cs 放射性核素总剂量率的贡献最高。

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