Aug 23, 2023

ICARUS Chamber Experiment: Ziemann_20160721_resorcinol/Dinitrogen pentoxide_Nitrate radical_Dioctyl Sebacate_Resorcinol + NO3_2


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Version: 20230823-015124

Goals:
Determine the gas-phase and particle-phase reaction products as well as SOA yield of resorcinol + NO3 in the presence of NOx.

Summary:
400 ppb of resorcinol was added to 1 ppm of N2O5 present in the chamber. N2O5 thermally dissociated to NO3 + NO2, and NO3 reacted with resorcinol. SOA Yield was 11% assuming all resorcinol reacted.

Organization: Ziemann
Lab Affiliation: University of Colorado, Boulder, Boulder, CO, USA
Chamber: Janet (Chamber 1)

Experiment Category: Gas phase chemical reaction, Aerosol formation
Oxidant: Nitrate radical
Reactants: resorcinol, Dinitrogen pentoxide
Reaction Type: Dark oxidation
Relative Humidity: 1
Temperature: 23
Seed Name: Dioctyl Sebacate
Pressure: 630

DOI
https://doi.org/10.5065/2mwq-fc37
ICARUS Experiment Details
https://icarus.ucdavis.edu/experiment/166
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Temporal Range
2016-07-21 to 2016-07-21
Related Links
Publication - Products and Secondary Organic Aerosol Yields from the OH and NO3 Radical-Initiated Oxidation of Resorcinol
GCMD Science Keywords
  • Atmosphere > Aerosols
  • Atmosphere > Atmospheric Chemistry > Trace Gases/Trace Species
GCMD Instruments
  • In Situ/Laboratory Instruments > Chemical Meters/Analyzers
File Media Types
  • application/zip
Support Contact
DeVault, Marla
Ziemann
marla.devault@colorado.edu

Data Curator
GDEX Curator
UCAR/NCAR - GDEX
gdex@ucar.edu

Legal Constraints
Creative Commons Attribution 4.0 International License.
Access Constraints
These data are openly accessible by all registered users. Accounts are available free of charge following the registration of user information with a valid email address.
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Authors
Ziemann, Paul
Publisher
ICARUS Community

Suggested Citation
Ziemann, Paul. (2023). ICARUS Chamber Experiment: Ziemann_20160721_resorcinol/Dinitrogen pentoxide_Nitrate radical_Dioctyl Sebacate_Resorcinol + NO3_2. Version 20230823-015124. ICARUS Community. https://doi.org/10.5065/2mwq-fc37. Accessed 17 Jun 2025.
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