Improving biospheric models of net ecosystem exchange in the eastern U.S. to inform top-down anthropogenic CO2 emission estimates during the growing season in the DC/ Baltimore metropolitan area
Sharon Gourdji1, Israel Lopez-Coto2, Subhomoy Ghosh1, Kimberly Mueller3, Anna Karion4, Shaun T Howe5, Ning Zeng6, Thomas Lauvaux7, Kai Wu8, Christopher A Williams9, Klaus Keller10, Dr. Yu Zhou11, Sha Feng12, Kenneth J Davis13 and James R Whetstone1, (1)National Institute of Standards and Technology Gaithersburg, Gaithersburg, MD, United States, (2)Stony Brook University, School of Marine and Atmospheric Sciences, Stony Brook, United States, (3)NIST, Gaithersburg, United States, (4)National Institute of Standards and Technology, Gaithersburg, United States, (5)University of Maryland College Park, Atmospheric and Oceanic Science, College Park, MD, United States, (6)University of Maryland, College Park, MD, United States, (7)Pennsylvania State University Main Campus, Department of Meteorology and Atmospheric Science, University Park, United States, (8)University of Edinburgh, Edinburgh, United Kingdom, (9)Clark University, Worcester, United States, (10)Dartmouth College, Thayer School of Engineering, Hanover, United States, (11)Cornell University, School of Integrative Plant Science, Ithaca, NY, United States, (12)The Pennsylvania State University, Department of Meteorology and Atmospheric Science, University Park, United States, (13)Pennsylvania State University, Department of Meteorology and Atmospheric Science, University Park, United States