Aug 23, 2023

ICARUS Chamber Experiment: Ng Research Group_20170103_BETA-PINENE_Hydroxyl radical_Ammonium sulfate_dry


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Version: 20230823-015753

Goals:
To characterize particulate organic nitrate generated from photooxidation of b-pinene in moderate NO level and to understand its hydrolysis process.

Summary:
SOA including particulate organic nitrate formed upon UV light on by injecting 24 ppb b-pinene and 2 ppm H2O2, and keeping NO level at around 50 ppb by continuous injection.

Organization: Ng Research Group
Lab Affiliation: Georgia Institute of Technology
Chamber: Georgia Tech Environmental Chamber (Far)

Experiment Category: Condensed-phase chemical reaction, Aerosol formation
Oxidant: Hydroxyl radical
Reactants: BETA-PINENE
Reaction Type: Photooxidation, Hydrolysis
Relative Humidity: 1-3
Temperature: 25-28
Seed Name: Ammonium sulfate

DOI
https://doi.org/10.5065/rk6w-3v72
ICARUS Experiment Details
https://icarus.ucdavis.edu/experiment/490
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1 Files, 85.15 KB Total Size

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Temporal Range
2017-01-03 to 2017-01-03
Related Links
Publication - Chemical composition and hydrolysis of organic nitrate aerosol formed from hydroxyl and nitrate radical oxidation of ?-pinene and ?-pinene
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
Joo, Taekyu
Ng Research Group
tjoo6@gatech.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
Ng, Nga (Sally)
Publisher
ICARUS Community

Suggested Citation
Ng, Nga (Sally). (2023). ICARUS Chamber Experiment: Ng Research Group_20170103_BETA-PINENE_Hydroxyl radical_Ammonium sulfate_dry. Version 20230823-015753. ICARUS Community. https://doi.org/10.5065/rk6w-3v72. Accessed 11 Jan 2025.
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