HR: 15:05h
AN: B23B-06 [Abstracts]
TI: Carbon Sequestration in Southeast US: Ecosystem responses to multiple stresses
AU: * Tian, H
EM: tianhan@auburn.edu
AF: School of Forestry and Wildlife Sciences, Auburn University, School of Forestry and Wildlife Sciences,
Auburn University, Auburn, AL 36849
United States
AU: Chen, H
EM: chenhua@auburn.edu
AF: School of Forestry and Wildlife Sciences, Auburn University, School of Forestry and Wildlife Sciences,
Auburn University, Auburn, AL 36849
United States
AU: Zhang, C
EM: zhangch@auburn.edu
AF: School of Forestry and Wildlife Sciences, Auburn University, School of Forestry and Wildlife Sciences,
Auburn University, Auburn, AL 36849
United States
AU: Pan, S
EM: panshuf@auburn.edu
AF: School of Forestry and Wildlife Sciences, Auburn University, School of Forestry and Wildlife Sciences,
Auburn University, Auburn, AL 36849
United States
AU: Chen, G
EM: chengu1@auburn.edu
AF: School of Forestry and Wildlife Sciences, Auburn University, School of Forestry and Wildlife Sciences,
Auburn University, Auburn, AL 36849
United States
AU: Chen, S
EM: chensiq@auburn.edu
AF: School of Forestry and Wildlife Sciences, Auburn University, School of Forestry and Wildlife Sciences,
Auburn University, Auburn, AL 36849
United States
AU: Liu, M
EM: liuml@igsnrr.ac.cn
AF: School of Forestry and Wildlife Sciences, Auburn University, School of Forestry and Wildlife Sciences,
Auburn University, Auburn, AL 36849
United States
AU: Melillo, J M
EM: jmelillo@mbl.edu
AF: The Ecosystem Center, Marine Biological Laboratory, The Ecosystem Center, Marine Biological Laboratory,
Woods Hole, MA 02543
United States
AU: Kicklighter, D
EM: dkick@mbl.edu
AF: The Ecosystem Center, Marine Biological Laboratory, The Ecosystem Center, Marine Biological Laboratory,
Woods Hole, MA 02543
United States
AU: Felzer, B
EM: bfelzer@mbl.edu
AF: The Ecosystem Center, Marine Biological Laboratory, The Ecosystem Center, Marine Biological Laboratory,
Woods Hole, MA 02543
United States
AB:
Land ecosystems in the southeast US are thought to be currently functioning as the largest carbon sink among the six major
bioclimatic regions of the conterminous United States. Inverse-and inventory-based estimates on the carbon sink do not
identify the mechanisms responsible for the carbon sink. Many of the major factors (and complex interactions) that affect
this carbon sink are operating concurrently in the southeastern ecosystems. In this study, we intend to examine how
ecosystem carbon storage has changed as a result of multiple stresses and interactions among those stresses including
land-cover change, climate variability, atmospheric composition (carbon dioxide and tropospheric ozone), precipitation
chemistry (nitrogen composition), and natural disturbances such as fire using estimates of carbon fluxes and storage from
factorial simulation experiments with the Terrestrial Ecosystem Model (TEM) in conjunction with remotely sensed and field
data. Our analysis suggests that the net carbon exchange of terrestrial ecosystems with the atmosphere in this region varied
substantially from a source of 246gC/m2 to a sink of 201 gC/m2. Forest recovery after cropland abandonment and natural
disturbances have resulted in an carbon uptake, but rapid urbanization and rising tropospheric ozone pollution have led to a
significant reduction in carbon storage in the southeast.
UR: http://www.sfws.auburn.edu/tian/
DE: 1615 Biogeochemical processes (4805)
DE: 0315 Biosphere/atmosphere interactions
DE: 0400 Biogeosciences
SC: Biogeosciences [B]
MN: 2004 AGU Fall Meeting