Two Air Quality Regimes in Total Column NO2 Over the Gulf of Mexico in May 2019: Shipboard and Satellite Views

Author:

Thompson Anne M.12ORCID,Kollonige Debra E.13ORCID,Stauffer Ryan M.1ORCID,Kotsakis Alexander E.14ORCID,Abuhassan Nader12,Lamsal Lok N.12ORCID,Swap Robert J.1,Blake Donald R.5ORCID,Townsend‐Small Amy6ORCID,Wecht Holli D.7

Affiliation:

1. Earth Sciences Division NASA/Goddard Space Flight Center Greenbelt MD USA

2. GESTAR and Joint Center for Earth Systems Technology University of Maryland, Baltimore County Baltimore MD USA

3. SSAI Lanham MD USA

4. ERT, Inc. Laurel MD USA

5. Department of Chemistry University of California Irvine Irvine CA USA

6. Department of Geology and Geography University of Cincinnati Cincinnati OH USA

7. Bureau of Ocean Energy Management Office of Environmental Programs Sterling VA USA

Abstract

AbstractThe Satellite Coastal and Oceanic Atmospheric Pollution Experiment (SCOAPE) cruise in the Gulf of Mexico was conducted in May 2019 by NASA and the Bureau of Ocean Energy Management to determine the feasibility of using satellite data to measure air quality in a region of concentrated oil and natural gas (ONG) operations. SCOAPE addressed both technological and scientific issues related to measuring NO2 columns over the outer continental shelf. Featured were nitrogen dioxide (NO2) instruments (Pandora, Teledyne API analyzer) at Cocodrie, LA (29.26°, −90.66°), and on the Research Vessel Point Sur operating off the Louisiana coast with measurements of ozone, carbon monoxide, and volatile organic compounds (VOCs). The findings: (a) all NO2 observations revealed two atmospheric regimes over the Gulf, the first influenced by tropical air in 10–14 May, the second influenced by flow from urban areas on 15–17 May; (b) comparisons of OMI v4 and TROPOMI v1.3 TC (total column) NO2 data with shipboard Pandora NO2 column observations averaged 13% agreement with the largest difference during 15–17 May (∼20%). At Cocodrie, the satellite–Pandora agreement was ∼5%. (c) Three new‐model Pandora instruments displayed a TC NO2 precision of 0.01 Dobson Units (∼5%); (d) regions of smaller, older natural gas operations showed high methane readings from leakage; elevated VOCs were also detected. Neither satellite nor spectrometer captured the magnitude of ambient NO2 variability near ONG platforms. Given an absence of regular air quality monitoring over the Gulf of Mexico, SCOAPE data constitute a baseline against which future observations can be compared.

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Environmental Science (miscellaneous)

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