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Ahonen, L.; Blomqvist, R.; Ervanne, H.; Suksi, J.; Jaakkola, T.
The Palmottu Analogue Project, Progress Report 1993. The behaviour of natural radionuclides in and around uranium deposits, Nr. 71994
The Palmottu Analogue Project, Progress Report 1993. The behaviour of natural radionuclides in and around uranium deposits, Nr. 71994
AbstractAbstract
[en] Occurrence of uranium in surficial formations in the vicinity of an underground U deposit was studied. Several water samples from the Lake Palmottu and nearby springs, three lake sediment cores and three peat cores were collected for the study. Uranium concentrations in the water samples varied from 1.4 to 6.9 mBq/l, reflecting the average concentration of near-surface waters in Finland. In some samples, however, the 234U/238U activity ratio and water chemistry suggest a partial mixing with deeper groundwaters. In the lake sediments, uranium concentrations increases from 53 Bq/kg in surface layer to five fold in the bottom layers deposited 9000 years ago. In peat cores large variations in uranium concentrations can be observed: from tens of Bq/kg to over 20 kBq/kg of peat ash. The large variation also in the 234U/238U activity ratio, from 0.79 to l.91, tends to indicate uranium migration to the peat from more than one uranium source. (orig.) (19 refs., 5 figs., 1 tab.)
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Ruskeeniemi, T.; Blomqvist, R. (Geological Survey of Finland, Espoo (Finland)); Suksi, J. (Helsinki Univ. (Finland). Dept. of Radiochemistry); Niini, H. (Helsinki Univ. of Technology, Espoo (Finland). Lab. of Engineering Geology and Geophysics) (eds.); Geological Survey of Finland, Espoo (Finland); 97 p; ISBN 951-690-542-0;
; 1994; p. 89-97

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Report
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ACTINIDE NUCLEI, ACTINIDES, ALPHA DECAY RADIOISOTOPES, ELEMENTS, ENERGY SOURCES, ENVIRONMENTAL TRANSPORT, EVEN-EVEN NUCLEI, FOSSIL FUELS, FUELS, GEOLOGIC DEPOSITS, HEAVY ION DECAY RADIOISOTOPES, HEAVY NUCLEI, ISOTOPES, MAGNESIUM 28 DECAY RADIOISOTOPES, MANAGEMENT, MASS TRANSFER, METALS, NEON 24 DECAY RADIOISOTOPES, NUCLEI, RADIOISOTOPES, SPONTANEOUS FISSION RADIOISOTOPES, URANIUM ISOTOPES, WASTE DISPOSAL, WASTE MANAGEMENT, YEARS LIVING RADIOISOTOPES
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