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Fractionation of radionuclide species in the environment

机译:环境中放射性核素种类的分级分离

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Naturally occurring and artificially produced radionuclides in the environment may be present in different physico-chemical forms (i.e., radionuclide species) varying in size (nominal molecular mass), charge properties and valence, oxidation state, structure and morphology, density, degree of complexation, etc. Low molecular mass (LMM) species are believed to be mobile and potentially bioavailable, while high molecular mass (HMM) species such as colloids, polymers, pseudocolloids and particles are considered inert. Due to time-dependent transformation processes such as mobilisation of radionuclide species from solid phases or interactions of mobile and reactive radionuclide species with components in soils and sediments, the original distribution of radionuclides deposited in ecosystems will change over time. To assess the environmental impact from radionuclide contamination, information on radionuclide species deposited, interactions within affected ecosystems and the time-dependent distribution of radionuclide species influencing mobility and biological uptake is essential. The development of speciation techniques to characterize radionuclide species in waters, soils and sediments should therefore be essential for improving the prediction power of impact and risk assessment models. The present paper reviews available fractionation techniques which can be utilised for radionuclide speciation purposes.
机译:环境中天然存在的和人工产生的放射性核素可能以不同的物理化学形式(即放射性核素种类)存在,其大小(标称分子量),电荷性质和化合价,氧化态,结构和形态,密度,络合度不同低分子量(LMM)物种被认为是可移动的并且具有潜在的生物利用度,而高分子量(HMM)物种(例如胶体,聚合物,拟胶体和颗粒)被认为是惰性的。由于时间依赖的转化过程,例如从固相中动员放射性核素物种,或者移动和反应性放射性核素物种与土壤和沉积物中的组分相互作用,因此,沉积在生态系统中的放射性核素的原始分布会随着时间变化。为了评估放射性核素污染对环境的影响,有关放射性核素种类沉积,受影响的生态系统内的相互作用以及影响移动性和生物吸收的放射性核素物种随时间变化的分布的信息至关重要。因此,发展表征水,土壤和沉积物中放射性核素物种特征的物种形成技术对于提高影响和风险评估模型的预测能力至关重要。本文概述了可用于放射性核素形成目的的可用分离技术。

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