TY - JOUR
T1 - Simulating dissolved organic carbon dynamics at the Swedish Integrated Monitoring sites with the Integrated Catchments Model for Carbon, INCA-C
AU - Futter, Martyn
AU - Löfgren, Stefan
AU - Köhler, Stephan
AU - Lundin, Lars
AU - Bringmark, Lage
AU - Moldan, Filip
PY - 2011
Y1 - 2011
N2 - Surface water concentrations of dissolved organic carbon ([DOC]) are changing throughout the northern hemisphere due to changes in climate, land use and acid deposition. However, the relative importance of these drivers is unclear. Here, we use the Integrated Catchments model for Carbon (INCA-C) to simulate long-term (1996-2008) streamwater [DOC] at the four Swedish integrated monitoring (IM) sites. These are unmanaged headwater catchments with old-growth forests and no major changes in land use. Daily, seasonal and long-term variations in streamwater [DOC] driven by runoff, seasonal temperature and atmospheric sulfate (SO4 2-) deposition were observed at all sites. Using INCA-C, it was possible to reproduce observed patterns of variability in streamwater [DOC] at the four IM sites. Runoff was found to be the main short-term control on [DOC]. Seasonal patterns in [DOC] were controlled primarily by soil temperature. Measured SO4 2- deposition explained some of the long-term [DOC] variability at all sites.
AB - Surface water concentrations of dissolved organic carbon ([DOC]) are changing throughout the northern hemisphere due to changes in climate, land use and acid deposition. However, the relative importance of these drivers is unclear. Here, we use the Integrated Catchments model for Carbon (INCA-C) to simulate long-term (1996-2008) streamwater [DOC] at the four Swedish integrated monitoring (IM) sites. These are unmanaged headwater catchments with old-growth forests and no major changes in land use. Daily, seasonal and long-term variations in streamwater [DOC] driven by runoff, seasonal temperature and atmospheric sulfate (SO4 2-) deposition were observed at all sites. Using INCA-C, it was possible to reproduce observed patterns of variability in streamwater [DOC] at the four IM sites. Runoff was found to be the main short-term control on [DOC]. Seasonal patterns in [DOC] were controlled primarily by soil temperature. Measured SO4 2- deposition explained some of the long-term [DOC] variability at all sites.
KW - Dissolved organic carbon
KW - INCA
KW - Integrated Monitoring
KW - Forest biogeochemistry
KW - Dissolved organic carbon
KW - INCA
KW - Integrated Monitoring
KW - Forest biogeochemistry
UR - https://res.slu.se/id/publ/39224
U2 - 10.1007/s13280-011-0203-z
DO - 10.1007/s13280-011-0203-z
M3 - Journal article
C2 - 22201005
SN - 0044-7447
VL - 40
SP - 906
EP - 919
JO - AMBIO: A Journal of the Human Environment
JF - AMBIO: A Journal of the Human Environment
IS - 8
ER -