ICARUS Chamber Experiment: Hildebrandt Ruiz Lab_20180329_DECANE/nitric oxide_Chlorine radical_Ammonium sulfate_dry

Goals: Find SOA yield for decane + Cl under high NOx condition (NO injected). Investigate volatility behavior based on 2D thermograms. Summary: Ammonium sulfate seed (0.01M, 150 mL) was injected using an aerosol generation system. Cl2 gas and NO gas were injected from their cylinders. 81 ug/m^3 of decane was injected into a glass bulb and heated clean air was made to flow over it, carrying the volatilized decane into the chamber. After ~30 minutes (sufficient mixing time), lights were turned on for 1 hour. 68.3 ug/m^3 of SOA were formed, giving a yield of 0.84. This is Experiment #5 in the associated publication. (Awaiting addition of some timeline details from experimental sheet) Organization: Hildebrandt Ruiz Lab Lab Affiliation: University of Texas at Austin, Austin, TX, USA Chamber: LHR Chamber Experiment Category: Gas phase chemical reaction, Volatility and partitioning, Aerosol formation Oxidant: Chlorine radical Reactants: DECANE, nitric oxide Reaction Type: Photooxidation Temperature: 25 Seed Name: Ammonium sulfate

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Temporal Range

  • Begin:  2018-03-29
    End:  2018-03-29

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Resource Type dataset
Temporal Range Begin 2018-03-29
Temporal Range End 2018-03-29
Temporal Resolution N/A
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Bounding Box South Lat N/A
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Related Resource #1 : ICARUS Dataset at UC-Davis

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Resource Format ASCII
Standardized Resource Format ASCII
Asset Size 110.819 MB
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Author Hildebrandt Ruiz, Lea
Publisher NSF National Center for Atmospheric Research
Publication Date 2023-08-23
Digital Object Identifier (DOI) https://doi.org/10.5065/tg40-2z91
Alternate Identifier d789434
Resource Version N/A
Topic Category environment
Progress completed
Metadata Date 2025-10-09T01:41:06Z
Metadata Record Identifier edu.ucar.gdex::d789434
Metadata Language eng; USA
Suggested Citation Hildebrandt Ruiz, Lea. (2023). ICARUS Chamber Experiment: Hildebrandt Ruiz Lab_20180329_DECANE/nitric oxide_Chlorine radical_Ammonium sulfate_dry. NSF National Center for Atmospheric Research. https://doi.org/10.5065/tg40-2z91. Accessed 12 October 2025.

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