Published September 28, 2012 | Version v1
Miscellaneous Open

Characterization of organic aerosols in Beirut, Lebanon

Description

The chemical composition of PM2.5 includes both organic and inorganic compounds. Organic compounds, which constitute a significant fraction of the PM2.5 mass, can be emitted directly as primary aerosol from sources such as fossil-fuel combustion, biomass burning, and natural biogenic emissions, or formed in the atmosphere via chemical reactions leading to secondary organic aerosol (SOA) formation. SOA, which account for 20 - 80 % of total organic aerosol, are currently a major source of uncertainty in air quality modeling. The identification and quantification of the chemical composition of the organic fraction of PM2.5 and its source apportionment are of great interest, especially in the Middle East region where data on organic aerosols are currently lacking. Lebanon, a small developing country in the Middle East region located on the eastern shore of the Mediterranean basin represents a good example for characterizing organic aerosols in this region. To address this issue, the air quality in Beirut (the capital city of Lebanon) was investigated with a focus on organic aerosols. First, an air pollutant emission inventory was developed for Lebanon with a spatial resolution of 5 km x 5 km and for Beirut with a spatial resolution of 1 km x 1 km. The results obtained show that the road transport sector is the major contributor to carbon monoxide (CO), nitrogen oxides (NOx) and non-methane volatile organic compounds (VOC) emissions, whereas fossil fuel-fired power plants and large industrial plants are the major contributors to sulfur dioxide (SO2) and primary particulate matter (PM) emissions. Then, two intensive 15-day measurement campaigns were conducted at a semi-urban site located in a Beirut suburb to characterize air pollutant concentrations. The first measurement campaign took place in July 2011 and the second in February 2012. Measurements included PM2.5, organic carbon (OC) and elemental carbon (EC) mass concentrations as well as a molecular characterization of organic aerosols. Using these data, a source apportionment of organic aerosols was conducted for summer and winter. In summer, biogenic precursors such as monoterpenes and sesquiterpenes were the major source of OC due to intensive solar radiation and high ambient temperatures that promote biogenic VOC emissions and photo-oxidation reactions. In winter, biomass burning was the major source of organic aerosols because of the intensive use of wood burning for heating. Finally, air pollutant concentrations in Beirut were simulated for July 2011 with the Polyphemus/Polair3D chemical-transport model (CTM). The emission inventory mentioned above was used as input to the model. Meteorological simulations were conducted with the Weather Research and Forecasting model (WRF) using different configurations and the configuration leading to the best agreement with the observations was used to drive the air quality simulations. The simulated air pollutant concentrations were compared to the measured concentrations collected during the summer measurement campaign. The results show that the model reproduces satisfactorily the concentrations of ozone (O3), nitrogen dioxide (NO2), carbon monoxide (CO), and the major components of PM2.5. The differences obtained between the modeled and measured air pollutants concentrations are due in part to uncertainties in input data. Future studies should address the reduction of uncertainties such as those of the emission inventory. In addition, measurement campaigns involving several sites are needed to better characterize air pollution in Beirut and provide a more complete database to evaluate simulated air pollutant concentrations

Abstract (French)

La connaissance des sources primaires (combustion des energies fossiles, combustion de la biomasse, eruptions des volcans, etc.) et secondaires (oxydation des composes organiques volatils (COV) suivie de la condensation formant des composes organiques particulaires) de l'aerosol organique ainsi que la caracterisation et la quantification de sa composition chimique restent un defit majeur, en particulier dans la region du Moyen Orient ou les etudes de caracterisation de l'aerosol organique n'existent pas jusqu'a present. Le Liban, un pays du Moyen Orient qui se situe au bord du bassin mediterraneen, represente un bon exemple pour la caracterisation des aerosols organiques dans cette region. Les travaux menes durant cette these s'inscrivent dans un objectif de l'etude de la qualite de l'air a Beyrouth (la capitale du Liban) en se concentrant plus specifiquement sur les aerosols organiques. Tout d'abord, cette these a permis le developpement d'un inventaire des emissions pour les gaz et les particules pour le Liban avec une resolution spatiale de 5 km x 5 km et pour la capitale Beyrouth avec une resolution spatiale de 1 km x 1 km. Les resultats obtenus indiquent que le transport routier est la source majoritaire responsable des emissions de monoxyde de carbone (CO), d'oxydes d'azote (NOX) et de composes organiques volatils non methaniques (COVNM), tandis que les industries et les centrales electriques sont les principaux emetteurs des emissions de dioxyde de souffre (SO2) et des particules primaires. Ensuite, afin de caracteriser les concentrations des polluants et plus specialement la fraction organique des particules, deux campagnes de mesures intensives de 15 jours chacune ont ete menees sur un site semi-urbain situe dans la banlieue de Beyrouth. Une premiere campagne estivale s'est deroulee en juillet 2011 et une deuxieme campagne hivernale en fevrier 2012. Ces campagnes, qui s'inscrivent dans le cadre du projet ECOCEM (Emission and Chemistry of Organic Carbon in East Mediterranean Beirut) ont permis une speciation moleculaire et une categorisation des sources en ete et en hiver de l'aerosol organique au site de mesures ou les campagnes ont ete menees. En ete, les precurseurs biogeniques tels que les monoterpenes et les sesquiterpenes qui aboutissent a la formation des aerosols organiques secondaires biogeniques sont la principale source a cause de l'insolation intensive et les temperatures elevees qui favorisent les emissions et les reactions de photo-oxydations. En hiver, la combustion de la biomasse est la principale source en raison de la combustion du bois dans le secteur residentiel pour le chauffage. Enfin, les concentrations ambiantes des polluants a Beyrouth ont ete simulees durant le mois de juillet 2011 a partir de donnees de l'inventaire des emissions developpe dans le cadre de cette these en utilisant le modele de chimie-transport Polyphemus/Polair3D. Les concentrations de polluants simulees avec le modele ont ete comparees aux concentrations mesurees durant la campagne estivale afin d'evaluer le modele. Les resultats obtenus revelent que le modele est capable de simuler de maniere satisfaisante les concentrations d'ozone (O3), de NOX et la plupart des composes presents dans les particules fines. Les differences entre le modele et les mesures peuvent resulter des incertitudes dans les donnees d'entree qui ont une tres grande influence sur les sorties du modele. Pour cela, une reduction des incertitudes engendrees par les donnees d'entree et plus specifiquement celles liees a l'inventaire des emissions est necessaire. Par ailleurs, des mesures chimiques sur plusieurs sites sont aussi necessaires dans le futur afin de mieux evaluer les simulations des concentrations de polluants

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Additional details

Additional titles

Original title (French)
Caracterisation des aerosols organiques a Beyrouth, Liban

Publishing Information

Imprint Pagination
173 p.
Report number
FRNC-TH--9918

Optional Information

Notes
284 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS web site for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/