Publication
Title
Short-term mudflat dynamics drive long-1 term cyclic salt marsh dynamics
Author
Abstract
Our study aims to enhance process understanding of the long-term (decadal and longer) cyclic marsh dynamics by identifying the mechanisms that translate large-scale physical forcing in the system into vegetation change, in particular (i) the initiation of lateral erosion on an expanding marsh, and (ii) the control of seedling establishment in front of an eroding marsh-cliff. Short-term sediment dynamics (i.e., seasonal and shorter changes in sediment elevation) at the mudflat causes variation in mudflat elevation over time (dzTF). The resulting difference in elevation between the tidal flat and adjacent marsh (DZ) initiates lateral marsh erosion. Marsh erosion rate was found to depend on sediment type and to increase with increasing DZ and hydrodynamic exposure. Laboratory and field experiments revealed that seedling establishment was negatively impacted by an increasing dzTF. As the amplitude of dzTF increases towards the channel, expanding marshes become more prone to lateral erosion the further they extend on a tidal flat, and the chance for seedlings to establish increases with the distance that marsh has eroded back towards the land. This processbased understanding, showing the role of sediment dynamics as explanatory factor for marsh cyclicity, is important for protecting and restoring valuable marsh ecosystems. Overall, our experiments emphasize the need for understanding the connections between neighbouring ecosystems such as mudflat and salt marsh
Language
English
Source (journal)
Limnology and oceanography. - Lawrence, Kan., 1956, currens
Publication
Hoboken : Wiley-blackwell , 2016
ISSN
0024-3590 [print]
1939-5590 [online]
DOI
10.1002/LNO.10374
Volume/pages
61 :6 (2016) , p. 2261-2275
ISI
000387749500022
Full text (Publisher's DOI)
Full text (open access)
Full text (publisher's version - intranet only)
UAntwerpen
Faculty/Department
Research group
Publication type
Subject
Affiliation
Publications with a UAntwerp address
External links
Web of Science
Record
Identifier
Creation 10.12.2016
Last edited 09.10.2023
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