Contribution of Isoprene Oxidation Products to Marine Aerosol over the North-East Atlantic

Author:

Anttila Tatu1,Langmann Baerbel2,Varghese Saji3,O'Dowd Colin3

Affiliation:

1. Finnish Meteorological Institute, Research and Development, Climate and Global Change, P.O. BOX 503, 00101 Helsinki, Finland

2. Institute of Geophysics, University of Hamburg, KlimaCampus, Bundesstrasse 55, 20146 Hamburg, Germany

3. School of Physics, Centre for Climate & Air Pollution Studies, Environmental Change Institute, National University of Ireland Galway, University Road, Galway, Ireland

Abstract

Secondary organic aerosol (SOA) formation through isoprene oxidation was investigated with the regional-scale climate model REMOTE. The applied modeling scheme includes a treatment for marine primary organic aerosol emissions, aerosol microphysics, and SOA formation through the gas/particle partitioning of semivolatile, water-soluble oxidation products. The focus was on SOA formation taking place over the North-East Atlantic during a period of high biological activity. Isoprene SOA concentrations were up to ~5 ngm3over North Atlantic in the base case model runs, and isoprene oxidation made a negligible contribution to the marine organic aerosol (OA) mass. In particular, isoprene SOA did not account for the observed water-soluble organic carbon (WSOC) concentrations over North Atlantic. The performed model calculations, together with results from recent field measurements, imply a missing source of SOA over remote marine areas unless the isoprene oxidation products are considerably less volatile than the current knowledge indicates.

Funder

Environmental Protection Agency

Publisher

Hindawi Limited

Subject

Atmospheric Science,Pollution,Geophysics

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