Experimental evidence of biomass burning as a source of atmospheric 137Cs, puy de Dôme (1465 m a.s.l.), France

Experimental evidence of biomass burning as a source of atmospheric 137Cs, puy de Dôme (1465 m a.s.l.), France
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生物质燃烧作为大气 137Cs 来源的实验证据,法国多姆山 (1465 m a.s.l.)

DOI:
10.1016/j.atmosenv.2010.04.017
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发表时间:
2010
影响因子:
5
通讯作者:
P. Laj
P. Laj
中科院分区:
环境科学与生态学2区
文献类型:
--
作者:
L. Bourcier;K. Sellegri;O. Masson;R. Zangrando;C. Barbante;A. Gambaro;J. Pichon;J. Boulon;P. Laj

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The presence of cesium-137 (137Cs) in the environment is mainly due to past nuclear tests and accidental reactor releases. Due to the half-life of137Cs (30.2 y), amounts of this radionuclide releases are in fact still detectable in soils, and at trace levels in the vegetation and the atmosphere. Since the middle of the 1990’s, the presence of137Cs in the atmosphere has long been attributed to the resuspension of terrestrial dust. Recently, modelling studies have demonstrated that an additional and possibly dominant source of this anthropogenic radionuclide is biomass burning. Here, we report the variations of atmospheric137Cs activity levels over a 2-year period at the puy de Dôme (1465 m a.s.l.), France in combination with measurements of the aerosol chemical composition, in particular with indicators for biomass burning (levoglucosan and potassium) and soil dust (calcium). Temporal co-variations of these chemical compounds in addition to back-trajectories are used to identify common source emissions. Significant correlation is found between these compounds. Hence, we experimentally confirm the modelling study highlighting the fact that the atmospheric137Cs is partly released by biomass burning. In addition, we observed that the correlations between the137Cs concentrations and levoglucosan and biomass burning K+differ according to the season. This is in agreement with the temporal evolution of levoglucosan concentration, which has maxima in winter and minima in summer.