HR: 0800h
AN: B51C-0217 [Abstracts]
TI: Analysis of Anthropogenic CO2 Signal in ICARTT Observations Using a Regional Atmospheric
Model
AU: * Campbell, E
EM: cae@engineering.uiowa.edu
AF: Center for Global and Regional Environmental Research, University of Iowa, 401 IATL, Iowa City, IA
52242
AU: Stanier, C O
EM: cstanier@engineering.uiowa.edu
AF: Center for Global and Regional Environmental Research, University of Iowa, 401 IATL, Iowa City, IA
52242
AU: Carmichael, G R
EM: gcarmich@engineering.uiowa.edu
AF: Center for Global and Regional Environmental Research, University of Iowa, 401 IATL, Iowa City, IA
52242
AU: Tang, Y H
EM: ytang@cgrer.uiowa.edu
AF: Center for Global and Regional Environmental Research, University of Iowa, 401 IATL, Iowa City, IA
52242
AU: Chai, T
EM: tchai@cgrer.uiowa.edu
AF: Center for Global and Regional Environmental Research, University of Iowa, 401 IATL, Iowa City, IA
52242
AU: Vay, S A
EM: s.a.vay@larc.nasa.gov
AF: NASA Langley Research Center, 100 NASA Road, Hampton, VA 23681
United States
AU: Choi, Y H
EM: y.choi@larc.nasa.gov
AF: Northeast States for Coordinated Air Use Management, 101 Merrimac St. 10th Floor, Boston, MA 021114
United States
AU: Woo, J
EM: jwoo@nescaum.org
AF: Northeast States for Coordinated Air Use Management, 101 Merrimac St. 10th Floor, Boston, MA 021114
United States
AU: Schnoor, J L
EM: jschnoor@engineering.uiowa.edu
AF: Center for Global and Regional Environmental Research, University of Iowa, 401 IATL, Iowa City, IA
52242
AB:
Atmospheric inversion studies of CO2 sources and sinks typically prescribe the anthropogenic component of observations as the
result of forward simulations using surface source estimates. The anthropogenic flux is prescribed as a background flux
with low uncertainty. Errors in the spatial and temporal estimates of anthropogenic emissions have been shown to result in a
bias in regional surface flux estimates. Improved information about the anthropogenic component of atmospheric CO2
observations will reduce the error in such a top-down approach to inferring surface fluxes. In this study, an analysis of
the anthropogenic component to atmospheric CO2 measurements is completed using a regional atmospheric chemistry model and its
adjoint. Observations of CO2 are made during the ICARTT (International Consortium for Atmospheric Research on Transport)
experiment during the summer of 2004 from aircraft platforms. The STEM-2K1 model and its adjoint are applied to characterize
the anthropogenic sources influencing the ICARTT observations. Source signatures are obtained using ratios between CO2 and
combustion pollutants as well as model derived airmass markers for source region, source types, and airmass age. Model
derived influence functions along with assimilated transport model results of anthropogenic tracers are used to characterize
the anthropogenic CO2 emissions in the Midwest during the summer 2004 period.
UR: http://www.cgrer.uiowa.edu/people/cae/
DE: 0315 Biosphere/atmosphere interactions (0426, 1610)
DE: 0322 Constituent sources and sinks
DE: 0345 Pollution: urban and regional (0305, 0478, 4251)
DE: 0428 Carbon cycling (4806)
SC: Biogeosciences [B]
MN: Fall Meeting 2005