The AeroCom evaluation and intercomparison of organic aerosol in global models
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Tsigaridis, K.
Beukes, J.P.
Tiitta, P.
Van Zyl, P.G.
Daskalakis, N.
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EGU
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Abstract
This paper evaluates the current status of global
modeling of the organic aerosol (OA) in the troposphere and
analyzes the differences between models as well as between
models and observations. Thirty-one global chemistry transport
models (CTMs) and general circulation models (GCMs)
have participated in this intercomparison, in the framework
of AeroCom phase II. The simulation of OA varies greatly
between models in terms of the magnitude of primary emissions,
secondary OA (SOA) formation, the number of OA
species used (2 to 62), the complexity of OA parameterizations
(gas-particle partitioning, chemical aging, multiphase
chemistry, aerosol microphysics), and the OA physical,
chemical and optical properties. The diversity of the
global OA simulation results has increased since earlier AeroCom
experiments, mainly due to the increasing complexity
of the SOA parameterization in models, and the implementation
of new, highly uncertain, OA sources. Diversity of over
one order of magnitude exists in the modeled vertical distribution
of OA concentrations that deserves a dedicated future
study. Furthermore, although the OA/OC ratio depends
on OA sources and atmospheric processing, and is important
for model evaluation against OA and OC observations, it is
resolved only by a few global models...
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Tsigaridis, K. et al. 2014. The AeroCom evaluation and intercomparison of organic aerosol in global models. Atmospheric chemistry and physics, 14:10845-10895. [https://doi.org/10.5194/acp-14-10845-2014]
