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Spatial variations and development of land use regression models of levoglucosan in four European study areas.

Authors :
Jedynska, A.
Hoek, G.
Wang, M.
Eeftens, M.
Cyrys, J.
Beelen, R.
Cirach, M.
De Nazelle, A.
Nystad, W.
Makarem Akhlaghi, H.
Meliefste, K.
Nieuwenhuijsen, M.
de Hoogh, K.
Brunekreef, B.
Kooter, I. M.
Source :
Atmospheric Chemistry & Physics Discussions; 2014, Vol. 14 Issue 9, p13491-13527, 37p
Publication Year :
2014

Abstract

Relatively little is known about long term effects of wood smoke on population health. A wood burning marker -- levoglucosan -- was measured using a highly standardized sampling and measurement method in four study areas across Europe (Oslo, the Netherlands, Munich/Augsburg, Catalonia) to assess within and between study area spatial variation. Levoglucosan was analyzed in addition to other components: PM<subscript>2.5</subscript>, PM<subscript>2.5</subscript> absorbance, PM<subscript>10</subscript>, polycyclic aromatic hydrocarbons (PAH), nitrogen oxides (NO<subscript>x</subscript>), elemental and organic carbon (EC/OC), hopanes, steranes and elemental composition. Measurements were conducted at street, urban and regional background sites. Three two-week samples were taken per site and the annual average concentrations of pollutants were calculated using continuous measurements at one background site as a reference. Land use regression (LUR) models were developed to explain the spatial variation of levoglucosan using standardized procedures. Much larger within than between study area contrast in levoglucosan concentration was found. Spatial variation patterns differed substantially from other measured pollutants including PM<subscript>2.5</subscript>, NO<subscript>x</subscript> and EC. Levoglucosan had the highest spatial correlation with ΣPAH (r = 0.65) and the lowest with traffic markers -- NO<subscript>x</subscript>, Σhopanes/steranes (r = -0.22). The correlation of levoglucosan with potassium (K), which is also used as a wood burning marker, was moderate to low (median r = 0.33). Levoglucosan concentrations in the cold (heating) period were between 3 and 20 times higher compared to the warm period. The contribution of wood-smoke calculated based on levoglucosan measurements and previous European emission data to OC and PM<subscript>2.5</subscript> mass were 13 to 28% and 3 to 9% respectively in the full year. Larger contributions were calculated for the cold period. The median model R² of the LUR models was 60 %. In Catalonia the model R² was the highest (71 %). The LUR models included population and natural land related variables but no traffic associated variables. In conclusion, substantial spatial variability was found in levoglucosan concentrations particularly within study areas.Wood smoke contributed substantially to especially wintertime PM<subscript>2.5</subscript> OC and mass. The low to moderate correlation with PM<subscript>2.5</subscript> mass and traffic markers offers the potential to assess health effects of wood smoke separate from traffic-related air pollution. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16807367
Volume :
14
Issue :
9
Database :
Complementary Index
Journal :
Atmospheric Chemistry & Physics Discussions
Publication Type :
Academic Journal
Accession number :
97235402
Full Text :
https://doi.org/10.5194/acpd-14-13491-2014