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Seasonal, diurnal and nocturnal behaviors of lower carbonyl compounds in the urban environment of Beirut, Lebanon

Seasonal, diurnal and nocturnal behaviors of lower carbonyl compounds in the urban environment of Beirut, Lebanon
Seasonal, diurnal and nocturnal behaviors of lower carbonyl compounds in the urban environment of Beirut, Lebanon
Lower carbonyl concentrations were measured for the first time in two different sampling sites (American University of Beirut (AUB) and Abdel-Aziz (AA)) in Beirut, Lebanon. Formaldehyde (C1) and acetaldehyde (C2) were the most abundant carbonyls with respective maximum concentrations of 12.2 and 5.2 ppbv at AUB and 8.6 and 5.1 ppbv at AA. Diurnal variations of carbonyls exhibited similar behaviors, suggesting related formation and decomposition routes. Morning levels of carbonyls were either equal or higher than the ones in the afternoon at the coastal site (AUB) due to atmospheric dilution. However, morning levels were mostly lower than noon levels at a three-busy street intersection (AA) due to the enhancement of photochemical activities. Vehicle emissions constituted the dominant source of carbonyls measured as confirmed by the good correlation between C1, C2 and propanal (C3) and the C1/CO and C2/CO ratios in the mornings. Seasonal variation showed the predominance of summertime photolysis and photo-oxidation reactions of aldehydes. Based on the measured formaldehyde levels, ozone and nitrous acid concentrations, morning and afternoon OH radical fluxes are computed and consequently their contribution to photochemical smog processes are assessed
low-carbonyl compounds, primary carbonyl emissions, lebanon, eastern mediterranean, oh radical fluxes, seasonal carbonyl variation
1352-2310
2459-2468
Moussa, Samar G.
bf6516d2-0d2f-4b70-a2a1-40f7ab1531db
El-Fadel, Mutassem
b22c2182-61c4-441f-9656-6f59adb3949d
Saliba, Najat A.
58fdf090-9edc-4cf5-a673-5ef022bc9b1c
Moussa, Samar G.
bf6516d2-0d2f-4b70-a2a1-40f7ab1531db
El-Fadel, Mutassem
b22c2182-61c4-441f-9656-6f59adb3949d
Saliba, Najat A.
58fdf090-9edc-4cf5-a673-5ef022bc9b1c

Moussa, Samar G., El-Fadel, Mutassem and Saliba, Najat A. (2006) Seasonal, diurnal and nocturnal behaviors of lower carbonyl compounds in the urban environment of Beirut, Lebanon. Atmospheric Environment, 40 (14), 2459-2468. (doi:10.1016/j.atmosenv.2005.12.031).

Record type: Article

Abstract

Lower carbonyl concentrations were measured for the first time in two different sampling sites (American University of Beirut (AUB) and Abdel-Aziz (AA)) in Beirut, Lebanon. Formaldehyde (C1) and acetaldehyde (C2) were the most abundant carbonyls with respective maximum concentrations of 12.2 and 5.2 ppbv at AUB and 8.6 and 5.1 ppbv at AA. Diurnal variations of carbonyls exhibited similar behaviors, suggesting related formation and decomposition routes. Morning levels of carbonyls were either equal or higher than the ones in the afternoon at the coastal site (AUB) due to atmospheric dilution. However, morning levels were mostly lower than noon levels at a three-busy street intersection (AA) due to the enhancement of photochemical activities. Vehicle emissions constituted the dominant source of carbonyls measured as confirmed by the good correlation between C1, C2 and propanal (C3) and the C1/CO and C2/CO ratios in the mornings. Seasonal variation showed the predominance of summertime photolysis and photo-oxidation reactions of aldehydes. Based on the measured formaldehyde levels, ozone and nitrous acid concentrations, morning and afternoon OH radical fluxes are computed and consequently their contribution to photochemical smog processes are assessed

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More information

Published date: May 2006
Keywords: low-carbonyl compounds, primary carbonyl emissions, lebanon, eastern mediterranean, oh radical fluxes, seasonal carbonyl variation

Identifiers

Local EPrints ID: 52959
URI: http://eprints.soton.ac.uk/id/eprint/52959
ISSN: 1352-2310
PURE UUID: dfd9b28c-aa59-4ce8-8ac5-0f714f11d136

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Date deposited: 16 Jul 2008
Last modified: 15 Mar 2024 10:39

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Contributors

Author: Samar G. Moussa
Author: Mutassem El-Fadel
Author: Najat A. Saliba

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