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Initiation of radioecological monitoring of forest soils and plants at the Lithuanian border region before the start of the Belarusian nuclear power plant operation

Knowledge of the background activity concentrations of anthropogenic radionuclides before the start of operation of the new nuclear power plant in Belarus, BelNPP, is an issue of great importance for neighbouring countries. In this study, we provide the pilot characterisation of the Lithuanian part...

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Published in:Environmental monitoring and assessment 2020-10, Vol.192 (10), Article 666
Main Authors: Jefanova, Olga, Baužienė, Ieva, Lujanienė, Galina, Švedienė, Jurgita, Raudonienė, Vita, Bridžiuvienė, Danguolė, Paškevičius, Algimantas, Levinskaitė, Loreta, Žvirgždas, Jonas, Petrošius, Rimantas, Skuratovič, Žana, Mažeika, Jonas
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Language:English
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Summary:Knowledge of the background activity concentrations of anthropogenic radionuclides before the start of operation of the new nuclear power plant in Belarus, BelNPP, is an issue of great importance for neighbouring countries. In this study, we provide the pilot characterisation of the Lithuanian part of the 30-km zone of the BelNPP, emphasising the forest plants, terrestrial mosses, forest organic and mineral topsoil to describe the preoperational radioecological state of the pine forest ecosystem. Key anthropogenic radionuclides ( 14 C, 3 H, 137 Cs and 239,240 Pu) were analysed. The 14 C specific activity varied from 97.80 ± 1.30 to 102.40 ± 0.79 pMC. The 3 H specific activity in the tissue-free water tritium form varied from 13.2 ± 2.2 TU to 20.8 ± 2.3 TU, which corresponded to the 3 H level of precipitation in this region. The activity concentrations of 239,240 Pu in soil and moss samples did not exceed 1 Bq/kg and were mainly due to global fallout after nuclear tests. The 137 Cs inventory in the pine forest soils of the Lithuanian part of the BelNPP 30-km zone varied from 930 ± 70 to 1650 ± 430 Bq/m 2 . High variation of the inventory and uneven distribution in the soil profile conditioned a wide range of 137 Сs activity in terrestrial plants from 1.0 ± 0.5 to 40.5 ± 1.8 Bq/kg dry weight. The abundance of microorganisms in different seasons and soil depths do not exceed the natural levels. According to PCA loads, the number of microorganisms and variability of 137 Cs specific activity is determined by soil abiotic parameters.
ISSN:0167-6369
1573-2959
DOI:10.1007/s10661-020-08638-y