Abstract

This study aims to analyze the principal factors affecting the interaction of 137Cs, 60Co and 89Sr with coastal sediments and their importance for migration of these ions in surface water. The second goal is to assess the acceptability of radiological consequences of proposed routine discharges of nuclear installations for radioactive materials into surface water as well as to confirm the suitability of the site to select and to establish limits for radioactive discharge into water. Uptake of the investigated ions by Mediterranean Sea bottom sediment samples have been studied as a function of liquid to solid ratio (V/m) and contact time using batch technique. The suspended sediment concentration, different discharge rates of radionuclides and the distance between the source point in the sea and the beach were investigated. The obtained results show that Kd of Cs+, Co2+ and Sr2+is 20, 32 and 10 l/g, respectively. The lowest effective dose is for 89Sr, while the highest effective dose is for 137Cs, at the same distances. A mathematical model for the migration of the investigated isotopes in surface water was constructed to predict the concentration of these ions for both different distances and time periods.

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