Authors
Laura Cutroneo, Barbara Benedetti, Laura Caiazzo, Cinzia Crovato, Marina Di Carro, Laura Gaggero, Emanuele Magi, Sonia Manzo, Maria Rita Montereali, Luisa Parrella, Simona Schiavo, Sarah Vercelli, Marco Capello
Published in
Marine pollution bulletin. Volume 233. Issue Pt 1. Pages 120190. Aug 03, 2026. Epub Aug 03, 2026.
Abstract
Monitoring is an essential tool to understand the environment, periodically check processes in place, and highlight the occurrence of natural or human-induced changes, especially in case of anthropic environments, such as ports and their water bodies. To ensure that as much information as possible is collected, monitoring plans need to be implemented analyzing multiple matrices and parameters simultaneously. This study presents a comprehensive monitoring approach targeting physical water parameters and traditional and emerging contaminants (metals, hydrocarbons, asbestos fibers, organic micro-contaminants, pharmaceuticals, and pesticides), along with their ecotoxicological impacts in port marine environments, applied to the Port of Genoa (NW Italy). Two monitoring sites with differing characteristics regarding marine hydrodynamics, port activities, freshwater inflows, and vessel traffic were selected and compared. Organic contaminants and metals were analyzed through direct seawater measurements and passive samplers; sediments were chemically and mineralogically characterized; and ecotoxicological tests were conducted. Hydrodynamic conditions and water physical parameters were measured and correlated with chemical results. Detailed characterization of the two port sites was performed. Hydrodynamic activity was higher at Site 2, whereas higher concentrations of Fe were observed in seawater (Site 1 > Site 2), sediments (Site 1 ≫ Site 2), and DGT samplers (Site 1 > Site 2). Caffeine, cocaine, and anti-inflammatory pharmaceuticals were detected at both sites, but with higher concentration in Site 2. Slight differences in toxicity levels were observed between the two sites. The proposed monitoring approach proved effective for characterizing the port basin and revealing significative differences between the two sites.
PMID:
42546356
Bibliographic data and abstract were imported from PubMed on 04 Aug 2026.
Read full publication at:
Please sign in
to see all details.
Advertisement
Stats
- Recommendations n/a n/a positive of 0 vote(s)
- Views 4
- Comments 0