We investigated the space-time dynamics of N pollution in a Mediterranean gulf (Gulf of Gaeta) by means of ?N variation in seaweed fronds (Ulva lactuca) previously collected from an unpolluted habitat. We used a comprehensive deployment grid that enabled the generation of isotopic seascapes (isoseascapes) describing the topography of N pollution in coastal waters and identifying N input hotspots and their pathways of dispersion at sea. The ?N values of U. lactuca increased during 48 h of exposure to the gulf waters, indicating anthropogenic N inputs from wastewater-derived sources. Comparison of the isoseascapes between two years differing in terms of rainfall identified coastal and offshore areas that were vulnerable to freshwater-transported nutrients, consistent with terrestrial hydromorphology and sea surface-water circulation. Isoseacapes were robust enough to reduce deployment effort, representing a powerful tool for monitoring and management strategies and useful for Environmental Protection Agencies, the main target audience of applied ecological research.

Space-time monitoring of coastal pollution in the Gulf of Gaeta, Italy, using ?15N values of Ulva lactuca, landscape hydromorphology, and Bayesian Kriging modelling

Rossi D;
2018

Abstract

We investigated the space-time dynamics of N pollution in a Mediterranean gulf (Gulf of Gaeta) by means of ?N variation in seaweed fronds (Ulva lactuca) previously collected from an unpolluted habitat. We used a comprehensive deployment grid that enabled the generation of isotopic seascapes (isoseascapes) describing the topography of N pollution in coastal waters and identifying N input hotspots and their pathways of dispersion at sea. The ?N values of U. lactuca increased during 48 h of exposure to the gulf waters, indicating anthropogenic N inputs from wastewater-derived sources. Comparison of the isoseascapes between two years differing in terms of rainfall identified coastal and offshore areas that were vulnerable to freshwater-transported nutrients, consistent with terrestrial hydromorphology and sea surface-water circulation. Isoseacapes were robust enough to reduce deployment effort, representing a powerful tool for monitoring and management strategies and useful for Environmental Protection Agencies, the main target audience of applied ecological research.
2018
Istituto di Ricerca Sulle Acque - IRSA
Inglese
126
479
487
http://www.scopus.com/record/display.url?eid=2-s2.0-85037337665&origin=inward
Bayesian Kriging
Coastal management
Isoseascapes
River input
Urbanisation
Water pollution
1
info:eu-repo/semantics/article
262
Rossi L.; Calizza E.; Careddu G.; Rossi D.; Orlandi L.; JonaLasinio G.; Aguzzi L.; Costantini M.L.
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/408116
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