Full catalog/FIREXAQ_TraceGas_AircraftInSitu_N48_Data
FIREXAQ_TraceGas_AircraftInSitu_N48_Data·v1·dataset

Smoky air gases measured from a research plane (FIREX-AQ)

FIREX-AQ NOAA-CHEM Twin Otter In Situ Trace Gas Data
atmosphere NASA LARC_CLOUD Level 2 ICARTT
In plain English

What it measures. Direct measurements of trace gases inside wildfire smoke plumes, sampled in the air as a research plane flew through them, with a focus on nighttime smoke chemistry.

How it's made. Collected by chemical instruments aboard the NOAA-CHEM Twin Otter aircraft during the FIREX-AQ wildfire campaign in summer 2019.

How & where you'd use it. Helps scientists understand how wildfire smoke changes chemically as it ages, informing air-quality and health research.

What's measured

ATMOSPHERE › ATMOSPHERIC CHEMISTRY › CARBON AND HYDROCARBON COMPOUNDS › ATMOSPHERIC CARBON DIOXIDEATMOSPHERE › ATMOSPHERIC CHEMISTRY › CARBON AND HYDROCARBON COMPOUNDS › ATMOSPHERIC CARBON MONOXIDEATMOSPHERE › ATMOSPHERIC CHEMISTRY › CARBON AND HYDROCARBON COMPOUNDS › NON-METHANE HYDROCARBONS/VOLATILE ORGANIC COMPOUNDSATMOSPHERE › ATMOSPHERIC CHEMISTRY › CARBON AND HYDROCARBON COMPOUNDS › METHANEATMOSPHERE › ATMOSPHERIC CHEMISTRY › OXYGEN COMPOUNDS › ATMOSPHERIC OZONEATMOSPHERE › ATMOSPHERIC CHEMISTRY › TRACE GASES/TRACE SPECIESATMOSPHERE › ATMOSPHERIC CHEMISTRY › NITROGEN COMPOUNDS › NITROGEN DIOXIDEATMOSPHERE › ATMOSPHERIC CHEMISTRY › NITROGEN COMPOUNDS › NITRIC OXIDEATMOSPHERE › ATMOSPHERIC WATER VAPORATMOSPHERE › ATMOSPHERIC CHEMISTRY › CARBON AND HYDROCARBON COMPOUNDSATMOSPHERE › ATMOSPHERIC CHEMISTRY › NITROGEN COMPOUNDS › NITROGEN OXIDESATMOSPHERE › ATMOSPHERIC CHEMISTRY › NITROGEN COMPOUNDSATMOSPHERE › ATMOSPHERIC CHEMISTRY › SULFUR COMPOUNDS

Coverage & cadence

  • Time span2019-07-29 → 2019-09-06
  • Measured byNOAA Twin Otter (CHEMILUMINESCENCE, GC-MS, Picarro G2401, CIMS)
  • Processing levelLevel 2
  • FormatsICARTT
  • StatusCOMPLETE

What you can do with it

  • Map air pollutants — NO₂, aerosols, ozone
  • Track greenhouse gases and Earth's energy budget
  • Feed weather and air-quality analysis
Official description

FIREXAQ_TraceGas_AircraftInSitu_N48_Data are in situ trace gas data collected onboard the NOAA-CHEM Twin Otter during FIREX-AQ. This product features data collected by chemiluminescence, and the PIcarro, CIMS, and GC-ToF-MS instrumentation. Data collection for this product is complete. Completed during summer 2019, FIREX-AQ utilized a combination of instrumented airplanes, satellites, and ground-based instrumentation. Detailed fire plume sampling was carried out by the NASA DC-8 aircraft, which had a comprehensive instrument payload capable of measuring over 200 trace gas species, as well as aerosol microphysical, optical, and chemical properties. The DC-8 aircraft completed 23 science flights, including 15 flights from Boise, Idaho and 8 flights from Salina, Kansas. NASA’s ER-2 completed 11 flights, partially in support of the FIREX-AQ effort. The ER-2 payload was made up of 8 satellite analog instruments and provided critical fire information, including fire temperature, fire plume heights, and vegetation/soil albedo information. NOAA provided the NOAA-CHEM Twin Otter and the NOAA-MET Twin Otter aircraft to measure chemical processing in the lofted plumes of Western wildfires. The NOAA-CHEM Twin Otter focused on nighttime plume chemistry, from which data is archived at the NASA Atmospheric Science Data Center (ASDC). The NOAA-MET Twin Otter collected measurements of air movements at fire boundaries with the goal of understanding the local weather impacts of fires and the movement patterns of fires. NOAA-MET Twin Otter data will be archived at the ASDC in the future. Additionally, a ground-based station in McCall, Idaho and several mobile laboratories provided in-situ measurements of aerosol microphysical and optical properties, aerosol chemical compositions, and trace gas species. The Fire Influence on Regional to Global Environments and Air Quality (FIREX-AQ) campaign was a NOAA/NASA interagency intensive study of North American fires to gain an understanding on the integrated impact of the fire emissions on the tropospheric chemistry and composition and to assess the satellite’s capability for detecting fires and estimating fire emissions. The overarching goal of FIREX-AQ was to provide measurements of trace gas and aerosol emissions for wildfires and prescribed fires in great detail, relate them to fuel and fire conditions at the point of emission, characterize the conditions relating to plume rise, and follow plumes downwind to understand chemical transformation and air quality impacts.

Get the data

firexaq_tracegas_aircraftinsitu_n48_data_access.py
import earthaccess
earthaccess.login(strategy="netrc")          # free Earthdata Login

results = earthaccess.search_data(
    short_name="FIREXAQ_TraceGas_AircraftInSitu_N48_Data",
    version="1",
    bounding_box=(-122.5, 37.2, -121.8, 37.9),  # your area (W,S,E,N)
    temporal=("2024-01-01", "2024-12-31"),       # your dates
)
files = earthaccess.open(results)   # stream straight from LARC_CLOUD
Browsing CMR needs no login. Downloading or streaming bytes needs a free Earthdata Login + the earthaccess package.