4.7 Article

Coordinated profiling of stratospheric intrusions and transported pollution by the Tropospheric Ozone Lidar Network (TOLNet) and NASA Alpha Jet experiment (AJAX): Observations and comparison to HYSPLIT, RAQMS, and FLEXPART

期刊

ATMOSPHERIC ENVIRONMENT
卷 174, 期 -, 页码 1-14

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.atmosenv.2017.11.031

关键词

Background ozone; Stratospheric intrusion; Long-range transport; NAAQS; Lidar; Exceptional events

资金

  1. NOAA Climate Program Office, Atmospheric Chemistry, Carbon Cycle, and Climate (AC4) Program
  2. NASA [NNL13AA08I]
  3. Clark County Department of Air Quality [CBE 602948-13]
  4. NOAA GOES-R Program Office
  5. NASA Atmospheric Modeling and Analysis Program
  6. NASA Applied Science Program
  7. Ames Research Center Director's funds
  8. H211, LLC
  9. TOLNet

向作者/读者索取更多资源

Ground-based lidars and ozonesondes belonging to the NASA-supported Tropospheric Ozone Lidar Network (TOLNet) are used in conjunction with the NASA Alpha Jet Atmospheric eXperiment (AJAX) to investigate the transport of stratospheric ozone and entrained pollution into the lower troposphere above the United States on May 24-25, 2013. TOLNet and AJAX measurements made in California, Nevada, and Alabama are compared to tropospheric ozone retrievals from the Atmospheric Infrared Sounder (AIRS), to back trajectories from the NOAA Air Resources Laboratory (ARL) Hybrid Single Particle Lagrangian Integrated Trajectory (HYSPLIT) model, and to analyses from the NOAA/NESDIS Real-time Air Quality Modeling System (RAQMS) and FLEXPART particle dispersion model. The measurements and model analyses show much deeper descent of ozone-rich upper tropospheric/lower stratospheric air above the Desert Southwest than above the Southeast, and comparisons to surface measurements from regulatory monitors reporting to the U.S. EPA Air Quality System (AQS) suggest that there was a much greater surface impact in the Southwest including exceedances of the 2008 National Ambient Air Quality Standard (NAAQS) of 0.075 ppm in both Southern California and Nevada. Our analysis demonstrates the potential benefits to be gained by supplementing the existing surface ozone network with coordinated upper air observations by TOLNet.

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