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Assessment of Radioactivity Level in the Terrestrial and Marine Organisms in Yangjiang and Its Adjacent Areas (China)

Dados Bibliográficos

ID15514031
AutoresDongmei Li (0000-0002-9275-5886, Ministry of Natural Resources), Zhongchen Jiang (Ministry of Natural Resources), Zhao Li (0000-0002-6450-9549, Ministry of Natural Resources), Li Zhao (0009-0004-7836-6878, South China Sea Environment Monitoring Center, State Oceanic Administration (SOA), Guangzhou 510300, China), Feng Zhao (0000-0002-5568-8856, Ministry of Natural Resources), Peng Zhou (0000-0002-2499-6805, Ministry of Natural Resources, autor correspondente)
Ano2021
Volume18
Fascículo16
Páginas8767-8767
Data de publicação2021-08-19
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoInternational Journal of Environmental Research and Public Health (JOURNAL)
Identificadores do periódicoISSN: 1661-7827 • E-ISSN: 1660-4601
EditoraMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph18168767
PMID34444512
OpenAlexW3194562031
IdiomaEN
Referências citadas11

In order to assess the radioactive level in the terrestrial and marine organisms in Yangjiang and the adjacent areas, 90 Sr, gross beta and gamma-emitting radionuclides ( 238 U, 226 Ra, 228 Th, 226 Ra, 40 K, 137 Cs, 51 Cr, 55 Fe, 54 Mn, 58 Co, 60 Co and 65 Zn) were analyzed from 2011 to 2012. The annual effective doses were estimated in the high natural radioactive background areas in Yangjiang (HBRAYJ). The specific activities of 238 U, 228 Th, 226 Ra, 40 K and 137 Cs in all organisms were 51 Cr, 55 Fe, 54 Mn, 58 Co, 60 Co, 65 Zn and 110m Ag were below the minimum detectable activity. 90 Sr and gross beta specific activities were 20.0-143.0 and 0.021-0.316 Bq/kg. Results show that 228 Th was significantly higher than 238 U and 226 Ra of natural U series in organisms due to the rich-Th soils in the HBRAYJ; 228 Th, 226 Ra, 40 K, 137 Cs and 90 Sr were greatly lower than the limited concentrations in Chinese foods. The internal dose mainly contributes to natural 40 K, 226 Ra and 228 Th. It is useful to provide some basic data and assess the radiological risk from the HBRAYJ and Yangjiang nuclear power plants in future

Biology · Effective dose (radiation) · Environmental radioactivity · Internal dose · Natural radioactivity · Nuclear medicine · Nuclear physics · Physics · Radiochemistry · Radionuclide · Chemistry · Environmental Science · Medicine · Nuclear and radioactivity studies · Radioactive contamination and transfer · Radioactivity and Radon Measurements · Environmental Chemistry · Toxicology

Velocidade de citaçãohistorical
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