4.2 Article

Reconstruction of the contamination of the Techa River in 1949-1951 as a result of releases from the MAYAK Production Association

Journal

RADIATION AND ENVIRONMENTAL BIOPHYSICS
Volume 51, Issue 4, Pages 349-366

Publisher

SPRINGER
DOI: 10.1007/s00411-012-0414-0

Keywords

Techa River; Liquid radioactive wastes; Radionuclide transport; Modeling

Funding

  1. US Department of Energy's Office of Domestic and International Health Studies
  2. US Environmental Protection Agency's Office of Radiation and Indoor Air
  3. Federal Medical-Biological Agency of the Russian Federation

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More accurate reconstruction of the radioactive contamination of the Techa River system in 1949-1951 has been made on the basis of refined data on the amounts and the rate of discharge of radionuclides into the Techa River from the Mayak Production Association; this has led to the development of a modified Techa River model that describes the transport of radionuclides through the up-river ponds and along the Techa River and deposition of radionuclides in the river-bottom sediments and flooded areas. The refined Techa River source-term data define more precisely the time-dependent rates of release and radionuclide composition of the releases that occurred during 1949-1951. The Techa River model takes into account the time-dependent characteristics of the releases and considers (a) the transport of radionuclides adsorbed on solid particles originally contained in the discharges or originating in the up-river ponds as a result of stirring up of contaminated bottom sediments and (b) the transport of radionuclides in soluble form. The output of the Techa River model provides concentrations of all source-term radionuclides in the river water, bottom sediments, and floodplain soils at different distances from the site of radioactive releases for the period of major contamination in 1950-1951. The outputs of the model show good agreement with historical measurements of water and sediment contamination. In addition, the river-model output for Sr-90 concentration in the river water is harmonized with retrospective estimates derived from the measurements of Sr-90 in the residents of the Techa Riverside villages. Modeled contamination of the floodplain soils by Cs-137 is shown to be in agreement with the values reconstructed from late measurements of this radionuclide. Reconstructed estimates of the Techa River contamination are being used for the quantification of internal and external doses received by residents of the Techa Riverside communities.

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