SCOAPE Pandora Column Observations

Description

SCOAPE_Pandora_Data is the column NO2 and ozone data collected by Pandora spectrometers during the Satellite Coastal and Oceanic Atmospheric Pollution Experiment (SCOAPE). Pandora instruments were located on the University of Southern Mississippi’s Research Vessel (R/V) Point Sur and at the Louisiana Universities Marine Consortium (LUMCON; Cocodrie, LA). Data collection for this product is complete. The Outer Continental Shelf Lands Act (OCSLA) requires the US Department of Interior Bureau of Ocean Energy Management (BOEM) to ensure compliance with the US National Ambient Air Quality Standard (NAAQS) so that Outer Continental Shelf (OCS) oil and natural gas (ONG) exploration, development, and production do not significantly impact the air quality of any US state. In 2017, BOEM and NASA entered into an interagency agreement to begin a study to scope out the feasibility of BOEM personnel using a suite of NASA and non-NASA resources to assess how pollutants from ONG exploration, development, and production activities affect air quality. An important activity of this interagency agreement was SCOAPE, a field deployment that took place in May 2019, that aimed to assess the capability of satellite observations for monitoring offshore air quality. The outcomes of the study are documented in two BOEM reports (Duncan, 2020; Thompson, 2020). To address BOEM’s goals, the SCOAPE science team conducted surface-based remote sensing and in-situ measurements, which enabled a systematic assessment of the application of satellite observations, primarily NO2, for monitoring air quality. The SCOAPE field measurements consisted of onshore ground sites, including in the vicinity of LUMCON, as well as those from University of Southern Mississippi’s R/V Point Sur, which cruised in the Gulf of Mexico from 10-18 May 2019. Based on the 2014 and 2017 BOEM emissions inventories as well as daily air quality and meteorological forecasts, the cruise track was designed to sample both areas with large oil drilling platforms and areas with dense small natural gas facilities. The R/V Point Sur was instrumented to carry out both remote sensing and in-situ measurements of NO2 and O3 along with in-situ CH4, CO2, CO, and VOC tracers which allowed detailed characterization of airmass type and emissions. In addition, there were also measurements of multi-wavelength AOD and black carbon as well as planetary boundary layer structure and meteorological variables, including surface temperature, humidity, and winds. A ship-based spectrometer instrument provided remotely-sensed total column amounts of NO2 and O3 for direct comparison with satellite measurements. Ozonesondes and radiosondes were also launched 1-3 times daily from the R/V Point Sur to provide O3 and meteorological vertical profile observations. The ground-based observations, primarily at LUMCON, included spectrometer-measured column NO2 and O3, in-situ NO2, VOCs, and planetary boundary layer structure. A NO2sonde was also mounted on a vehicle with the goal to detect pollution onshore from offshore ONG activities during onshore flow; data were collected along coastal Louisiana from Burns Point Park to Grand Isle to the tip of the Mississippi River delta. The in-situ measurements were reported in ICARTT files or Excel files. The remote sensing data are in either HDF or netCDF files.

Resources

Name Format Description Link
33 BOEM - NASA Resources to Monitor Offshore and Coastal Air Quality https://espis.boem.gov/final%20reports/BOEM_2020-046.pdf
21 SCOAPE General Documentation https://ui.adsabs.harvard.edu/abs/2019AGUFM.A43J2972K/abstract
21 SCOAPE Data on the Sub-Orbital Order Tool (SOOT) Power User Interface (UI) https://asdc.larc.nasa.gov/soot/power-user/SCOAPE/2019
21 SCOAPE General Documentation https://ams.confex.com/ams/2020Annual/meetingapp.cgi/Paper/364468
21 Search results for publications that cite this dataset by its DOI. https://scholar.google.com/scholar?q=10.5067%2FASDC%2FSUBORBITAL%2FSCOAPE_Pandora_Data_1
21 How to Cite ASDC Data https://asdc.larc.nasa.gov/citing-data
33 SCOAPE: Satellite and Shipboard Views of Air Quality along the Louisiana Coast https://pubs.awma.org/flip/EM-Oct-2020/thompson.pdf
21 BOEM SCOAPE Overview https://airquality.gsfc.nasa.gov/bureau-ocean-energy-management-boem
21 Department of the Interior SCOAPE Summary https://eros.usgs.gov/doi-remote-sensing-activities/2019/boem/satellite-continental-and-oceanic-atmospheric-pollution-experiment-scoape
21 BOEM/NOAA MarineCadstre.gov SCOAPE Summary https://marinecadastre.gov/espis/#/search/study/100183
21 DOI Data Set Landing Page for SCOAPE_Pandora_Data_1 https://doi.org/10.5067/ASDC/SUBORBITAL/SCOAPE_Pandora_Data_1
21 Earthdata Search Client for SCOAPE_Pandora_Data_1 https://search.earthdata.nasa.gov/search/granules?p=C2342530625-LARC_ASDC
21 SCOAPE General Documentation https://ui.adsabs.harvard.edu/abs/2018AGUFM.A54D..07K/abstract
21 SCOAPE General Documentation https://ams.confex.com/ams/101ANNUAL/meetingapp.cgi/Paper/382090
21 ASDC Direct Data Download for SCOAPE_Pandora_Data_1 https://asdc.larc.nasa.gov/data/SCOAPE/Pandora_Data_1/
21 SCOAPE NASA LaRC Airborne Science Data for Atmospheric Composition Project Home Page https://www-air.larc.nasa.gov/missions/scoape/index.html
21 SCOAPE General Documentation https://ams.confex.com/ams/101ANNUAL/meetingapp.cgi/Paper/379355
33 Satellite Coastal & Oceanic Atmospheric Pollution Experiment (SCOAPE): A Feasibility Study on Using Satellite-based Data for Offshore Air Quality Monitoring https://www-air.larc.nasa.gov/missions/scoape/docs/SCOAPE_overview_lumcontrip-219.pdf

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  • atmosphere
  • atmospheric-chemistry
  • earth-science

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