4.8 Article

A biogenic secondary organic aerosol source of cirrus ice nucleating particles

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE RESEARCH
DOI: 10.1038/s41467-020-18424-6

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资金

  1. U.S. National Science Foundation [1660486, 1703535, AGS-1638672]
  2. NSF Postdoctoral Fellowship under AGS [1524731]
  3. National Institutes of Health (NIH) [T32ES007018]
  4. Dreyfus postdoctoral program
  5. ACTRIS-2
  6. European Commission under the Horizon 2020 Research and Innovation Framework Programme, H2020-INFRAIA-2014-2015 [654109]

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Atmospheric ice nucleating particles (INPs) influence global climate by altering cloud formation, lifetime, and precipitation efficiency. The role of secondary organic aerosol (SOA) material as a source of INPs in the ambient atmosphere has not been well defined. Here, we demonstrate the potential for biogenic SOA to activate as depositional INPs in the upper troposphere by combining field measurements with laboratory experiments. Ambient INPs were measured in a remote mountaintop location at -46 degrees C and an ice supersaturation of 30% with concentrations ranging from 0.1 to 70L(-1). Concentrations of depositional INPs were positively correlated with the mass fractions and loadings of isoprene-derived secondary organic aerosols. Compositional analysis of ice residuals showed that ambient particles with isoprene-derived SOA material can act as depositional ice nuclei. Laboratory experiments further demonstrated the ability of isoprene-derived SOA to nucleate ice under a range of atmospheric conditions. We further show that ambient concentrations of isoprene-derived SOA can be competitive with other INP sources. This demonstrates that isoprene and potentially other biogenically-derived SOA materials could influence cirrus formation and properties. Ice nucleating particles impact the global climate by altering cloud formation and properties, but the sources of these emissions are not completely characterized. Here, the authors show that secondary organic aerosols formed from the oxidation of organic gases in the atmosphere can be a source of ice nucleating particles.

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