2019Unpublished venueOpen access

Wintertime aerosol dominated by solid fuel burning emissions across Ireland: insight into the spatial and chemical variation of submicron aerosol

Chunshui Lin, Darius Čeburnis, Ru‐Jin Huang, Wei Xu, Teresa Spohn, Damien Martin, P. A. Buckley, John Wenger, Stig Hellebust, Matteo Rinaldi, M. C. Facchini, Colin O’Dowd, Jurgita Ovadnevaitė

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Abstract

Abstract. To get an insight into the spatial and chemical variation of the submicron aerosol, a nationwide characterization of wintertime PM1 was performed using an Aerosol Chemical Speciation Monitor (ACSM) and Aethalometer at four representative sites across Ireland. Dublin, the capital city of Ireland, was the most polluted area with an average PM1 concentration of 8.6 μg m−3, ranging from

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Abstract. To get an insight into the spatial and chemical variation of the submicron aerosol, a nationwide characterization of wintertime PM1 was performed using an Aerosol Chemical Speciation Monitor (ACSM) and Aethalometer at four representative sites across Ireland. Dublin, the capital city of Ireland, was the most polluted area with an average PM1 concentration of 8.6 μg m−3, ranging from

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Available abstract

Abstract. To get an insight into the spatial and chemical variation of the submicron aerosol, a nationwide characterization of wintertime PM1 was performed using an Aerosol Chemical Speciation Monitor (ACSM) and Aethalometer at four representative sites across Ireland. Dublin, the capital city of Ireland, was the most polluted area with an average PM1 concentration of 8.6 μg m−3, ranging from

Key concepts: Aerosol, Aethalometer, Environmental science, Atmospheric sciences, Spatial variability, Chemical transport model, Meteorology, Geography

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Wintertime aerosol dominated by solid fuel burning emissions across Ireland: insight into the spatial and chemical variation of submicron aerosol — Research Paper | ScholarLens