Distribution and ecological relevance of fine sediments in organic-enriched lagoons: The case study of the Cabras lagoon (Sardinia, Italy)

In organic-enriched sedimentary systems, like many Mediterranean coastal lagoons, a detailed analysis of sediment grain size composition and partitioning within the muds is crucial to investigate sedimentological trends related to both hydrodynamic energy and basin morphology. In these systems, sedi...

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Veröffentlicht in:Marine pollution bulletin 2008-03, Vol.56 (3), p.549-564
Hauptverfasser: Magni, P., De Falco, G., Como, S., Casu, D., Floris, A., Petrov, A.N., Castelli, A., Perilli, A.
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container_end_page 564
container_issue 3
container_start_page 549
container_title Marine pollution bulletin
container_volume 56
creator Magni, P.
De Falco, G.
Como, S.
Casu, D.
Floris, A.
Petrov, A.N.
Castelli, A.
Perilli, A.
description In organic-enriched sedimentary systems, like many Mediterranean coastal lagoons, a detailed analysis of sediment grain size composition and partitioning within the muds is crucial to investigate sedimentological trends related to both hydrodynamic energy and basin morphology. In these systems, sediment dynamics are particularly important because the partitioning and transport of fine sediments can strongly influence the redistribution and accumulation of large amounts of organic matter, and consequently the distribution of benthic assemblages and the trophic status and functioning of a lagoon. Nevertheless, studies on benthic–sediment relationships have been based mainly on a rather coarse analysis of sediment grain size features. In muddy systems, however, this approach may impede a proper evaluation of the relationships and effects of the distribution of fine sediment and organic matter on the biotic benthic components. Here we show that the distribution of sedimentary organic matter (OM) and total organic carbon (TOC) in the Cabras lagoon (Sardinia, Italy) can be explained (i.e., predicted) as a function of a nonlinear increase in the amount of the cohesive fraction of sediments (⩽8μm grain size particles) and that this fraction strongly influences the structure, composition and distribution of macrobenthic assemblages. Even in such a homogeneously muddy system, characterized by “naturally” occurring impoverished communities, impaired benthic assemblages were found at ⩽8μm, OM, TOC contents of about 77%, 11% and 3.5%, respectively. A review of studies conducted in Mediterranean coastal lagoons highlighted a lack of direct integrated analysis of sediment features and the biotic components. We suggest that, especially in organic-enriched coastal lagoons, monitoring programs should primarily investigate and consider the cohesive fraction of sediments in order to allow a better assessment of benthic–sediment relationships and ecological quality of the system.
doi_str_mv 10.1016/j.marpolbul.2007.12.004
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subjects Animal and plant ecology
Animal, plant and microbial ecology
Applied ecology
Biological and medical sciences
Brackish water ecosystems
Coastal lagoons
Ecological quality
Ecosystem
Ecotoxicology, biological effects of pollution
Environmental Monitoring - methods
Fine sediments
Fundamental and applied biological sciences. Psychology
Geography
Geologic Sediments - chemistry
Italy
Macrofauna
Marine and brackish environment
Mud
Organic Chemicals - analysis
Organic matter (OM)
Risk Assessment
Seawater - analysis
Synecology
Water Pollutants, Chemical - analysis
title Distribution and ecological relevance of fine sediments in organic-enriched lagoons: The case study of the Cabras lagoon (Sardinia, Italy)
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