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Ammonium nitrate particles formed in upper troposphere from ground ammonia sources during Asian monsoons

  • Michael Höpfner
  • , Jörn Ungermann
  • , Stephan Borrmann
  • , Robert Wagner
  • , Reinhold Spang
  • , Martin Riese
  • , Gabriele Stiller
  • , Oliver Appel
  • , Anneke M. Batenburg
  • , Silvia Bucci
  • , Francesco Cairo
  • , Antonis Dragoneas
  • , Felix Friedl-Vallon
  • , Andreas Hünig
  • , Sören Johansson
  • , Lukas Krasauskas
  • , Bernard Legras
  • , Thomas Leisner
  • , Christoph Mahnke
  • , Ottmar Möhler
  • Sergej Molleker, Rolf Müller, Tom Neubert, Johannes Orphal, Peter Preusse, Markus Rex, Harald Saathoff, Fred Stroh, Ralf Weigel, Ingo Wohltmann
  • Institute of Meteorology and Climate Research
  • Research Centre Julich
  • Max Planck Institute for Chemistry
  • Johannes Gutenberg University
  • Bergische Universität Gesamthochschule Wuppertal
  • Sorbonne Université
  • Ev-K2-CNR Committee
  • Helmholtz Centre for Polar and Marine Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

The rise of ammonia emissions in Asia is predicted to increase radiative cooling and air pollution by forming ammonium nitrate particles in the lower troposphere. There is, however, a severe lack of knowledge about ammonia and ammoniated aerosol particles in the upper troposphere and their possible effects on the formation of clouds. Here we employ satellite observations and high-altitude aircraft measurements, combined with atmospheric trajectory simulations and cloud-chamber experiments, to demonstrate the presence of ammonium nitrate particles and also track the source of the ammonia that forms into the particles. We found that during the Asian monsoon period, solid ammonium nitrate particles are surprisingly ubiquitous in the upper troposphere from the Eastern Mediterranean to the Western Pacific—even as early as in 1997. We show that this ammonium nitrate aerosol layer is fed by convection that transports large amounts of ammonia from surface sources into the upper troposphere. Impurities of ammonium sulfate allow the crystallization of ammonium nitrate even in the conditions, such as a high relative humidity, that prevail in the upper troposphere. Solid ammonium nitrate particles in the upper troposphere play a hitherto neglected role in ice cloud formation and aerosol indirect radiative forcing.

Original languageEnglish
Pages (from-to)608-612
Number of pages5
JournalNature Geoscience
Volume12
Issue number8
DOIs
Publication statusPublished - 1 Aug 2019

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