Evaluation of UKESM aerosol size and composition using ATom measurements indicates missing marine aerosol formation mechanisms

He, X.-C., N.L. Abraham, H. Ding, M.R. Russo, D.P. Grosvenor, Y. Ge, X. Wang, A.C. Jones, P. Campuzano Jost, B. Nault, A. Kupc, D. Blake, J.L. Jimenez, C.J. Williamson, J. Weber, A.T. Archibald, and H. Gordon (2026), Evaluation of UKESM aerosol size and composition using ATom measurements indicates missing marine aerosol formation mechanisms, Atmos. Chem. Phys., doi:10.5194/acp-26-3805-2026.
Abstract

Atmospheric aerosols influence climate through their interactions with radiation and clouds, yet large uncertainties remain in their simulation by global models. This study evaluates the United Kingdom Earth System Model version 1.1 (UKESM1.1) using global-scale aircraft observations from the Atmospheric Tomography (ATom) mission, focusing on aerosol lifecycle processes in the remote marine atmosphere. We assess model performance in simulating aerosol precursor vapours, number size distributions, chemical composition, and environmental conditions. Several process improvements are tested, including sulfuric acid-ammonia nucleation, ammonium nitrate scheme, methanesulfonic acid condensation, and low-temperature isoprene-derived secondary organic aerosol formation. Model biases differ significantly between the upper troposphere (UT) and the marine boundary layer (MBL). In the UT, UKESM1.1 overestimates nucleation and Aitken mode particles while underestimating accumulation mode, indicating insufficient growth. In the MBL, the model overestimates primary aerosols (e.g. seasalt) and precursor gases but underestimates nucleation and Aitken mode particles, even after incorporating updated nucleation and ammonium nitrate scheme. The persistence of low aerosol number concentrations, despite overestimated precursors, suggests missing formation pathways likely involving other species such as iodine, amines, and organic vapours.

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Research Program
Atmospheric Composition
Tropospheric Composition Program (TCP)
Mission
ATom