2024-03-29T09:05:01Zhttp://digital.csic.es/dspace-oai/requestoai:digital.csic.es:10261/1023512020-03-19T12:41:21Zcom_10261_14com_10261_8col_10261_267
DIGITAL.CSIC
author
Lara, M.
author
Peralta, G.
author
Alonso del Rosario, José Juan
author
Morris, Edward P.
author
González-Ortiz, V.
author
Rueda Márquez, J. J.
author
Pérez Lloréns, José Lucas
2014-09-23T07:44:19Z
2014-09-23T07:44:19Z
2012-11
Marine Pollution Bulletin 64(11): 2471-2479 (2012)
http://hdl.handle.net/10261/102351
10.1016/j.marpolbul.2012.07.044
An in-depth knowledge of solutes advection and turbulent diffusion is crucial to estimate dispersion area and retention time (t R) of pollutants within seagrass habitats. However, there is little knowledge on the influence of seagrass habitat fragmentation on such mechanisms. A set of dye tracer experiments and acoustic Doppler velocimeter measurements (ADV) were conducted. Solute transport conditions were compared in between fragmented (FM) vs homogeneous (HM) intertidal meadows, and in vertical gradients (canopy vs overlaying flow). Results showed the highest horizontal diffusion coefficient (K y, c.a. 10 -3m 2s -1) on FM and at the canopy-water column interface, whereas t R (2.6-5.6min) was not affected by fragmentation. It suggests that (1) FM are more vulnerable to pollution events in terms of dispersion area and (2) at low tide, advection rather than turbulent diffusion determines t R. Furthermore, Taylor's theorem is revealed as a powerful tool to analyze vertical gradients on K y within seagrass canopies. © 2012 Elsevier Ltd.
eng
closedAccess
Advection
Patchiness
Retention time
Zostera noltii
Seagrasses
Turbulent diffusion
Effects of intertidal seagrass habitat fragmentation on turbulent diffusion and retention time of solutes
artículo
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