Aug 23, 2023

ICARUS Chamber Experiment: NCAR_20170702_nitric oxide/hydrogen peroxide_Hydroxyl radical_No Seed_CSTR_blank_170702


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Version: 20230823-015043

Goals:
Probing the steady state NO and O3 concentration that could be reached by varying the concentrations of reactants H2O2 and NO in the photooxidation experiment

Summary:
First, a given amount of H2O2 and NO is continuously injected into the chamber till the steady state is established. Second, the UV lights are on to initiate photochemistry till another steady state is established.

Organization: NCAR
Lab Affiliation: NCAR ACOM Boulder CO USA
Chamber: NCAR 3rd Floor Teflon

Experiment Category: Gas phase chemical reaction, Blank/Control
Oxidant: Hydroxyl radical
Reactants: nitric oxide, hydrogen peroxide
Reaction Type: Photooxidation
Relative Humidity: 10
Temperature: 35
Pressure: 0.8 atm

DOI
https://doi.org/10.5065/zx4f-kq20
ICARUS Experiment Details
https://icarus.ucdavis.edu/experiment/112
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1 Files, 482.42 KB Total Size

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Temporal Range
2017-07-02 to 2017-07-02
Related Links
Publication - A Steady State Continuous Flow Chamber for the Study of Daytime and Nighttime Chemistry under Atmospherically Relevant NO levels
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
, Geoff Tyndall
NCAR
tyndall@ucar.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
Orlando, John
Publisher
ICARUS Community

Suggested Citation
Orlando, John. (2023). ICARUS Chamber Experiment: NCAR_20170702_nitric oxide/hydrogen peroxide_Hydroxyl radical_No Seed_CSTR_blank_170702. Version 20230823-015043. ICARUS Community. https://doi.org/10.5065/zx4f-kq20. Accessed 18 Jun 2025.
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