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April 15, 20260 citations

Radioecological monitoring of water bodies in the landscapes of the Bryansk region, Russia

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MAM.V. AvramenkoVDVladimir T. DemikhovTITatyana Ivanova

Key Points

  • The research aims to assess the activity levels of 137Cs in water, sediments, and fish in the Bryansk region.
  • Monitored 137Cs specific activity in water, bottom sediments, and fish from various water bodies in the Bryansk region from 2022 to 2025.
  • Conducted measurements of volumetric activities in river waters and stagnant lakes.
  • Analyzed samples from specific rivers including the Besed, Iput, Kamenka, Zlynka, and Dorogovsha rivers.
  • Identified that 137Cs activity in river waters was significantly lower than in stagnant water bodies.
  • Found the highest 137Cs levels in bottom sediment and water from the Besed River and Iput River.
  • Observed increasing trends of 137Cs concentration in bottom sediments over the study period, particularly in various small watercourses.

Abstract

The study examines the dynamics of 137Cs specific activity in water, bottom sediments, and fish of small watercourses and lakes in the Bryansk region during 2022–2025. The volumetric activities of the river waters were an order of magnitude or more lower than the radionuclide levels in stagnant water bodies and generally did not exceed tenths of a becquerel. The highest 137Cs activity was found in water and bottom sediment samples collected from the Besed River in the Krasnogorsk District – 0.083 Bq/L and 0.370 Bq/g, and the Iput River in the Gordeevsky District – 0.079 Bq/L and 0.426 Bq/g. New studies of small and medium-sized lotic water bodies in the southwestern districts of the Bryansk region have shown that significant concentrations of 137Cs in water and bottom sediment samples were found in the Kamenka River in the Zlynkovsky District, the Zlynka River in the Zlynkovsky District, and the Dorogovsha River in the Krasnogorsk District: shallow depths and low flow rates contribute to the accumulation capacity of abiotic components of aquatic ecosystems. A summary and analysis of the monitoring results allow concluding that there was a slight increase in the volumetric activity of 137Cs in river water and a significant decrease in lake water. The concentration of 137Cs in bottom sediments has shown an upward trend over the study period. The highest concentrations of 137Cs are observed in crucian carp caught from Lake Kozhanovskoye – 365.4 Bq/kg, which is 2.8 times higher than the permissible standards. Consumption of aquatic biomass can significantly increase the dose of internal radiation and negatively impact public health.

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Cite This Study

Avramenko et al. (2026) studied this question.

synapsesocial.com/papers/69df2b65e4eeef8a2a6b062ahttps://doi.org/10.1051/bioconf/202623100008/pdf
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Radionuclide contamination of rivers in Zhytomyr Polissia: analysis of bioaccumulation in hydrobionts2025 · 1 citations
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  3. 3Transformation of Radioactive Contamination of the Bottom Sediments in the Kaliningrad (Vistula) Lagoon Between 2011 and 20232024
  4. 4Assessment of external radiation doses for agricultural workers during work in the contaminated territory of the Bryansk region2025 · 1 citations
  5. 5137Cs deposition fluxes in bottom sediments of the Yenisei River calculated using modern methods2025