Physics
Scientific paper
Aug 2011
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2011georl..3816405k&link_type=abstract
Geophysical Research Letters, Volume 38, Issue 16, CiteID L16405
Physics
Global Change: Remote Sensing (1855, 4337), Global Change: Sea Level Change (1222, 1225, 4304, 4556), Hydrology: Erosion, Hydrology: Plant Ecology (0476), Oceanography: General: Coastal Processes
Scientific paper
The restoration of Louisiana's coastal wetlands will be one of the largest, most costly and longest environmental remediation projects undertaken. We use Landsat data to show that freshwater diversions, a major restoration strategy, have not increased vegetation and marsh coverage in three freshwater diversions operating for ˜19 years. Two analytic methods indicate no significant changes in either relative vegetation or overall marsh area from 1984 to 2005 in zones closest to diversion inlets. After Hurricanes Katrina and Rita, these zones sustained dramatic and enduring losses in vegetation and overall marsh area, whereas the changes in similar marshes of the adjacent reference sites were relatively moderate and short-lived. We suggest that this vulnerability to storm damage reflects the introduction of nutrients in the freshwater diversions (that add insignificant amounts of additional sediments), which promotes poor rhizome and root growth in marshes where below-ground biomass historically played the dominant role in vertical accretion.
Alexis Riter J. C.
Kearney Michael S.
Turner Eugene R.
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