Vapor-pressure pathways initiate but hydrolysis products dominate the aerosol estimated from organic nitrates

Description

The data includes (1) one zip file of CMAQ code used for simulations in the manuscript and (2) a link to field data (total alkyl nitrates) used for evaluation. See S-T13-TNO2ANsPNsTDLIF_CTR_20130601_RE.ict at the link for measurement information. For other information, please contact the corresponding authors Havala Pye (pye.havala@epa.gov) and Ron Cohen. This dataset is associated with the following publication: Zare, A., K. Fahey, G. Sarwar, R. Cohen, and H. Pye. Vapor-Pressure Pathways Initiate but Hydrolysis Products Dominate the Aerosol Estimated from Organic Nitrates. ACS Earth and Space Chemistry. American Chemical Society, Washington, DC, USA, 3(8): 1426-1437, (2019).

Resources

Name Format Description Link
57 BLD_CMAQv52_newstruc_Aqcloud_Feb2019_V2-20190625T183020Z.zip https://pasteur.epa.gov/uploads/10.23719/1503432/BLD_CMAQv52_newstruc_Aqcloud_Feb2019_V2-20190625T183020Z.zip
0 https://esrl.noaa.gov/csd/groups/csd7/measurements/2013senex/

Tags

  • monoterpenes
  • soa
  • biogenic-voc
  • cmaq
  • isoprene
  • soas
  • pm2-5-air-quality-modeling
  • hydrolysis
  • sas
  • semivolatile-organic-compounds-svocs
  • alkyl-nitrates
  • organic-nitrates
  • community-multi-scale-air-quality-cmaq-model
  • pm2-5

Topics

Categories