High concentration of ultrafine particles in the Amazon free troposphere produced by organic new particle formation

Author:

Zhao Bin,Shrivastava ManishORCID,Donahue Neil M.ORCID,Gordon HamishORCID,Schervish Meredith,Shilling John E.,Zaveri Rahul A.ORCID,Wang Jian,Andreae Meinrat O.ORCID,Zhao Chun,Gaudet BrianORCID,Liu Ying,Fan JiwenORCID,Fast Jerome D.

Abstract

The large concentrations of ultrafine particles consistently observed at high altitudes over the tropics represent one of the world’s largest aerosol reservoirs, which may be providing a globally important source of cloud condensation nuclei. However, the sources and chemical processes contributing to the formation of these particles remain unclear. Here we investigate new particle formation (NPF) mechanisms in the Amazon free troposphere by integrating insights from laboratory measurements, chemical transport modeling, and field measurements. To account for organic NPF, we develop a comprehensive model representation of the temperature-dependent formation chemistry and thermodynamics of extremely low volatility organic compounds as well as their roles in NPF processes. We find that pure-organic NPF driven by natural biogenic emissions dominates in the uppermost troposphere above 13 km and accounts for 65 to 83% of the column total NPF rate under relatively pristine conditions, while ternary NPF involving organics and sulfuric acid dominates between 8 and 13 km. The large organic NPF rates at high altitudes mainly result from decreased volatility of organics and increased NPF efficiency at low temperatures, somewhat counterbalanced by a reduced chemical formation rate of extremely low volatility organic compounds. These findings imply a key role of naturally occurring organic NPF in high-altitude preindustrial environments and will help better quantify anthropogenic aerosol forcing from preindustrial times to the present day.

Funder

U.S. Department of Energy

National Aeronautics and Space Administration

National Natural Science Foundation of China

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Reference59 articles.

1. IPCC , Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, (Cambridge University Press, Cambridge, UK, 2013).

2. Improving our fundamental understanding of the role of aerosol−cloud interactions in the climate system

3. Causes and importance of new particle formation in the present-day and preindustrial atmospheres;Gordon;J. Geophys. Res. Atmos.,2017

4. Simulation of particle size distribution with a global aerosol model: Contribution of nucleation to aerosol and CCN number concentrations;Yu;Atmos. Chem. Phys.,2009

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