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放射性核素形态及其在环境影响评估中的相关性。

Radionuclide speciation and its relevance in environmental impact assessments.

作者信息

Salbu B, Lind O C, Skipperud L

机构信息

Isotope Laboratory, Environment Chemistry Section, Department of Plant and Environmental Sciences, Agricultural University of Norway, P.O. Box 5028, N-1432 Aas, Norway.

出版信息

J Environ Radioact. 2004;74(1-3):233-42. doi: 10.1016/j.jenvrad.2004.01.008.

Abstract

To assess the long-term environmental impact of radioactive contamination of ecosystems, information on source terms including radionuclide speciation, mobility and biological uptake is needed. A major fraction of refractory radionuclides released from nuclear sources such as nuclear weapons tests and reactor accidents is present as radioactive particles, whilst radionuclides are also present as colloids or low molecular mass species in effluents from nuclear installations. Low molecular mass species are more mobile (lower apparent K(d)) and bioavailable (higher apparent BCF) than colloids and particles. Soils and sediments act as sinks for particles and colloids. Due to particle weathering, associated radionuclides can be remobilised over time. Thus, information on particle characteristics such as composition, particle size, crystalline structures and oxidation states influencing weathering rates and subsequent mobilisation is essential. The present article summarises current knowledge on radioactive particles released from different sources, and the relevance of radionuclide speciation for mobility and biological uptake.

摘要

为评估生态系统放射性污染的长期环境影响,需要有关源项的信息,包括放射性核素的形态、迁移性和生物摄取。从核武器试验和反应堆事故等核源释放的难熔放射性核素的主要部分以放射性颗粒的形式存在,而放射性核素也以胶体或低分子量物质的形式存在于核设施废水中。低分子量物质比胶体和颗粒更具迁移性(较低的表观K(d))和生物可利用性(较高的表观BCF)。土壤和沉积物充当颗粒和胶体的汇。由于颗粒风化,相关的放射性核素会随着时间的推移而重新迁移。因此,关于影响风化速率和随后迁移的颗粒特性(如组成、粒径、晶体结构和氧化态)的信息至关重要。本文总结了关于不同来源释放的放射性颗粒的现有知识,以及放射性核素形态对迁移性和生物摄取的相关性。

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