Journal
HYDROBIOLOGIA
Volume 803, Issue 1, Pages 105-120Publisher
SPRINGER
DOI: 10.1007/s10750-017-3225-0
Keywords
Mangrove; Salt marsh; Coastal management; Wave attenuation; Erosion prevention; Ecosystem service value
Categories
Funding
- National Aeronautics and Space Administration (NASA) Climate and Biological Response Program [NNX11AO 94G, NNX12AF55G]
- National Aeronautics and Space Administration (NASA) New Investigator Program [NNX16 AN04G]
- National Science Foundation Macrosystems Biology Program [EF 1065821]
- University of California, Los Angeles Graduate Summer Research Mentorship Program
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The ecosystem services afforded by coastal wetlands are threatened by climate change and other anthropogenic stressors. The Kennedy Space Center and Merritt Island National Wildlife Refuge in east central Florida offer a representative site for investigating how changes to vegetation distribution interact with management to impact coastal protection. Here, salt marshes are converting to mangroves, and mosquito impoundment structures are being modified. The resulting changes to vegetation composition and topography influence coastal protection services in wetlands. We used a model-based assessment of wave attenuation and erosion to compare vegetation (mangrove, salt marsh) and impoundment state (intact, graded). Our findings suggest that the habitat needed to attenuate 90% of wave height is significantly larger for salt marshes than mangroves. Erosion prevention was significantly higher (470%) in scenarios with mangroves than in salt marshes. Intact berms attenuated waves over shorter distances, but did not significantly reduce erosion. Differences in coastal protection were driven more by vegetation than by impoundment state. Overall, our findings reveal that mangroves provide more coastal protection services, and therefore more coastal protection value, than salt marshes in east central Florida. Other coastal regions undergoing similar habitat conversion may also benefit from increased coastal protection in the future.
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