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Burnett, W.C.; Chin, P.; Deetae, S.; Panik, P.
International Business Machines Corp., Armonk, NY (USA)1988
International Business Machines Corp., Armonk, NY (USA)1988
AbstractAbstract
[en] The purpose of this research was to determine the conditions under which uranium decay-series isotopes are released from phosphate rock into the environment. Particular attention was given to the behavior of radium, radon, and polonium. The emphasis was justified because of several documented cases citing elevated concentrations of these radioelements occurring in Florida ground waters. When it became clear that polonium was occasionally present at exceedingly high concentrations in shallow ground waters, the scope of the project was expanded to include a study of the distribution of Po-210 in the surficial aquifer of west central Florida. Studies of a series of phosphate rock samples representing various degrees of chemical weathering show that almost all uranium-series radionuclides display higher activities in weathered samples compared to fresh material. Most samples display a Pb-210/Ra-226 activity ratio less than secular equilibrium because of Rn-222 leakage. An unexpected result was the deficiency of Po-210, relative to Pb-210 in several samples. This implies that polonium, under certain conditions, may be more mobile than lead. Many wells in central Florida contain high concentrations of Po-210. Characteristics which high-polonium groundwaters have in common include low pH, presence of sulfide, and at least moderately high radon
Primary Subject
Source
Jan 1988; 181 p; Available from NTIS, PC A09/MF A01
Record Type
Report
Literature Type
Progress Report
Report Number
Country of publication
ALPHA DECAY RADIOISOTOPES, CARBON 14 DECAY RADIOISOTOPES, DAYS LIVING RADIOISOTOPES, DEVELOPED COUNTRIES, ENVIRONMENTAL TRANSPORT, EVEN-EVEN NUCLEI, HEAVY ION DECAY RADIOISOTOPES, HEAVY NUCLEI, HYDROGEN COMPOUNDS, ISOTOPES, MASS TRANSFER, NORTH AMERICA, NUCLEI, OXYGEN COMPOUNDS, POLAR SOLVENTS, POLLUTION, POLONIUM ISOTOPES, RADIOISOTOPES, RADIUM ISOTOPES, RADON ISOTOPES, ROCKS, SEDIMENTARY ROCKS, SOLVENTS, USA, WATER, YEARS LIVING RADIOISOTOPES
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