An Optimized Quantification Method for Marine Radioactivity Measurements: Application in the Southern Caspian Sea Using the KATERINA Underwater γ-Spectrometer

Author:

Tsabaris Christos1ORCID,Androulakaki Effrossyni G.1,Alexakis Stylianos1

Affiliation:

1. Hellenic Center for Marine Research, Institute of Oceanography, 46.7 Km Athens-Sounio Ave, 19013 Anavyssos, Greece

Abstract

The underwater gamma-ray spectrometer KATERINA was calibrated in a special tank and then demonstrated in the Southern Caspian Sea to determine the radioactivity levels in seawater as well as in the sediment. The simulated marine efficiency of the in situ detection system was validated analyzing the high energetic (1764 keV of 214Bi and 2614 keV of 208Tl) gamma-ray peaks using their known activity concentration as determined from the low energy emissions. The analysis of the in situ gamma-ray spectra in a short acquisition time period provided quantitative data for 226Ra and 232Th progenies as well as for 40K. A satisfactory analysis was performed for quantifying the observed energy peaks in the seawater and sediment measurements acquired at the south coast of the Caspian Sea. The spectrum in the water tank was also analyzed using full spectrum analysis methods, and the reproduced spectrum was in a very good agreement with the experimental spectrum giving as an output the activity concentrations of the observed radionuclides.

Publisher

MDPI AG

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

Reference34 articles.

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3. Distribution of activity concentration and dose rates in selected coastal areas on western and eastern Black Sea;Tsabaris;J. Radioanal. Nucl. Chem.,2019

4. Determination of selected natural radionuclide concentrations in southwestern Caspian groundwater using liquid scintillation counting;Jowzaee;Radiat. Prot. Dosim.,2013

5. Underwater in situ measurements of radionuclides in selected submarine groundwater springs, Mediterranean sea;Tsabaris;Radiat. Prot. Dosim.,2010

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