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Escaping radioactivity from coal-fired power plants (CPPs) due to coal burning and the associated hazards: a review
Authors:Constantin Papastefanou
Institution:Aristotle University of Thessaloniki, Atomic & Nuclear Physics Laboratory, Thessaloniki 54124, Greece
Abstract:Coal, like most materials found in nature, contains trace quantities of the naturally occurring primordial radionuclides, i.e. of 40K and of 238U, 232Th and their decay products. Therefore, the combustion of coal results in the released into the environment of some natural radioactivity (1.48 TBq y−1), the major part of which (99 %) escapes as very fine particles, while the rest in fly ash. The activity concentrations of natural radionuclides measured in coals originated from coal mines in Greece varied from 117 to 435 Bq kg−1 for 238U, from 44 to 255 Bq kg−1 for 226Ra, from 59 to 205 Bq kg−1 for 210Pb, from 9 to 41 Bq kg−1 for 228Ra (232Th) and from 59 to 227 Bq kg−1 for 40K. Fly ash escapes from the stacks of coal-fired power plants in a percentage of 3-1% of the total fly ash, in the better case. The natural radionuclide concentrations measured in fly ash produced and retained or escaped from coal-fired power plants in Greece varied from 263 to 950 Bq kg−1 for 238U, from 142 to 605 Bq kg−1 for 226Ra, from 133 to 428 Bq kg−1 for 210Pb, from 27 to 68 Bq kg−1 for 228Ra (232Th) and from 204 to 382 Bq kg−1 for 40K. About 5% of the total ash produced in the coal-fired power plants is used as substitute of cement in concrete for the construction of dwellings, and may affect indoor radiation doses from external irradiation and the inhalation of radon decay products (internal irradiation) is the most significant. The resulting normalized collective effective doses were 6 and 0.5 man-Sv (GW a)−1 for typical old and modern coal-fired power plants, respectively.
Keywords:Escaping radioactivity  Uranium-238  Radium-226  Lead-210  Thorium-232  Radium-228  Potassium-40  Radiation hazards  Coal-fired power plants  Coal  Fly ash  Atmospheric dispersion
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