Impact of iodine chemistry on coastal ozone levels at the Gulf of Mexico
Katie Tuite1, Jochen Stutz2, Nathaniel Brockway2, Santo F Colosimo3, Jui Yi Tsai1, Katja Grossmann2, Sergio Luiz Alvarez4, James H Flynn III5, Matthew Erickson6, Vanessa Caicedo7, Robert J Griffin8, Henry William Wallace IV9, Ben Schulze9, Rebecca J Sheesley10, Sascha Usenko11, Greg Yarwood12 and Uarporn Nopmongcol13, (1)University of California Los Angeles, Los Angeles, CA, United States, (2)University of California Los Angeles, Department of Atmospheric and Oceanic Sciences, Los Angeles, CA, United States, (3)University of California Los Angeles, Atmospheric and Oceanic Sciences, Los Angeles, United States, (4)University of Houston, Houston, United States, (5)University of Houston, Earth & Atmospheric Sciences, Houston, United States, (6)University of Houston, Houston, TX, United States, (7)CU CIRES / NOAA GML, Boulder, United States, (8)Rice University, Department of Civil and Environmental Engineering, Houston, TX, United States, (9)Rice University, Civil and Environmental Engineering, Houston, TX, United States, (10)Baylor University, Environmental Sciences, Waco, TX, United States, (11)Baylor University, Institute of Ecological, Earth, and Environmental Sciences, Waco, TX, United States, (12)Ramboll, Novato, CA, United States, (13)ENVIRON International Corporation Novato, Novato, CA, United States