Traffic-Emitted Amines Promote New Particle Formation at Roadsides
- PMID: 40809915
- PMCID: PMC12340761
- DOI: 10.1021/acsestair.5c00119
Traffic-Emitted Amines Promote New Particle Formation at Roadsides
Abstract
New particle formation (NPF) is a major source of atmospheric aerosol particles, significantly influencing particle number concentrations in urban environments. High condensation and coagulation sinks at highly trafficked roadside sites should suppress NPF due to the low survival probability of clusters and new particles, however, observations show that roadside NPF is frequent and intense. Here, we investigate NPF at an urban background and roadside site in Central Europe using simultaneous measurements of sulfuric acid, amines, highly oxygenated organic molecules (HOMs), and particle number size distributions. We demonstrate that sulfuric acid and amines, particularly traffic-derived C2-amines, are the primary participants in particle formation. C2-amine concentrations at the roadside are enhanced by over a factor of 4 relative to the background, overcoming the effect of enhanced coagulation and condensation sinks. Using machine learning we identify a further but uncertain enhancing role of HOMs. These findings reveal the critical role of traffic emissions in urban NPF.
Keywords: NPF; aerosol; nucleation; pollution; traffic.
© 2025 The Authors. Published by American Chemical Society.
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References
-
- IPCC . Masson-Delmotte, V. ; Zhai, P. ; Pirani, A. ; et al. Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change; Cambridge University Press: Cambridge, U.K., and New York, 2021.
-
- Bousiotis D.. et al. A phenomenology of new particle formation (NPF) at 13 European sites. Atmos. Chem. Phys. 2021;21:11905–11925. doi: 10.5194/acp-21-11905-2021. - DOI
-
- Lee S. H.. et al. New Particle Formation in the Atmosphere: From Molecular Clusters to Global Climate. J. Geophys. Res.:Atmos. 2019;124:7098–7146. doi: 10.1029/2018JD029356. - DOI
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