2022
DOI: 10.1038/s41598-022-22842-5
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Natural attenuation processes control groundwater contamination in the Chernobyl exclusion zone: evidence from 35 years of radiological monitoring

Abstract: The Chernobyl Exclusion Zone (CEZ) contains the vast majority of radionuclides released by the accident in nuclear fuel particle form. We present and analyze groundwater measurements collected from the monitoring network in CEZ covering key aquifers over 35 years since the accident. These new data, together with a comprehensive analysis of historical data shows that 90Sr remains mobile in the subsurface environment, while groundwater concentrations of 137Cs, Pu isotopes and 241Am are relatively low, and are no… Show more

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Cited by 13 publications
(1 citation statement)
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“…137 Cs, 90 Sr, 239 Pu, and 240 Pu had maximum groundwater concentrations of 200, 3800, 7, and 7 Bq/L, respectively, as of 2001. Radioisotope fallout, discharge of highly contaminated wastewater, damage to the Sarcophagus, and cooling pond of ChNNP were the leading causes of radionuclide pollution (Bugai, 2014). However, the extent of geo-distribution and the fate of the radionuclides in that area are still relatively unknown.…”
Section: Classification Of Radioactive Waste and Sources Of Radionucl...mentioning
confidence: 99%
“…137 Cs, 90 Sr, 239 Pu, and 240 Pu had maximum groundwater concentrations of 200, 3800, 7, and 7 Bq/L, respectively, as of 2001. Radioisotope fallout, discharge of highly contaminated wastewater, damage to the Sarcophagus, and cooling pond of ChNNP were the leading causes of radionuclide pollution (Bugai, 2014). However, the extent of geo-distribution and the fate of the radionuclides in that area are still relatively unknown.…”
Section: Classification Of Radioactive Waste and Sources Of Radionucl...mentioning
confidence: 99%