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Solid-liquid distribution coefficients (Kd-s) of geological deposits at the Chernobyl Nuclear Power Plant site with respect to Sr, Cs and Pu radionuclides: A short review

Journal

CHEMOSPHERE
Volume 242, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2019.125175

Keywords

Sorption distribution coefficient; Chernobyl accident; Strontium-90; Cesium-137; Plutonium-239/240; Groundwater contamination

Funding

  1. EC [U4.01/10C+D+F]
  2. Institute of Geological Sciences of the National Academy of Sciences of the Ukraine [III-11-14]
  3. UK Natural Environment Research Council iCLEAR project [NE/R009619/1]
  4. NERC [NE/R009619/1] Funding Source: UKRI

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A review is presented of data on solid-liquid distribution coefficients (Kd-s) of the main radiologically important radionuclides of the Chernobyl release within geological deposits at the Chernobyl Nuclear Power Plant (ChNPP) Site. The Kd values for Sr, Cs and Pu for Quaternary sandy deposits that form sedimentary cover at Chernobyl fall within the range of parameters reported in international sorption databases. In agreement with general knowledge on radionuclide geochemical behavior and affinity to soils, Kd-s increase in the sequence: Sr < Cs < Pu. Alluvial and fluvioglacial sandy deposits are characterized by larger Kd values then deposits of eolian genesis due to higher content of clay minerals in fine fractions. For Sr, laboratory batch tests have given Kd values that are in a reasonable agreement with in situ measurements. At the same time, the Sr-90 Kd-s obtained from groundwater transport model calibrations were noticeably lower than experimentally determined values, thus showing potential limitations of the Kd-approach. Monitoring data on mobility of Sr-90, Cs-137 and Pu-239,Pu-240 in groundwater in the Chernobyl zone on a whole are consistent with the radionuclide Kd-s summarized in this article. The highest concentrations in groundwater (based on data for 2012-2014) were observed for Sr-90, while orders of magnitude lower concentrations were observed for Cs-137 and Pu-239,Pu-240. At the same time, detection of Cs-137 and Pu-239,Pu-240 in groundwater at sites with a relatively deep groundwater table suggests the possibility of facilitated transport of small amounts of these radionuclides in the form of non-retarded colloids or complexes. (C) 2019 Elsevier Ltd. All rights reserved.

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