Document généré le 08/08/2026 depuis l'adresse: https://www.documentation.eauetbiodiversite.fr/fr/notice/assessment-of-the-contamination-of-marine-fauna-by-chlordecone-in-guadeloupe-and-martinique-lesser-antilles-
Assessment of the contamination of marine fauna by chlordecone in Guadeloupe and Martinique (Lesser Antilles)
Titre alternatif
Producteur
Contributeur(s)
BODIGUEL Xavier,LEMOINE Soazig,BOUCHON-NAVARO Yolande,REYNAL Lionel,THOUARD Emmanuel,BOUCHON Claude
Éditeur(s)
Springer
Identifiant documentaire
29-1888
Identifiant OAI
oai:base-documentaire.pole-tropical.org:1888
Auteur(s):
DROMARD Charlotte
Mots clés
CHLORDECONE
1000 - POLLUTIONS ET EFFETS DE LA POLLUTION
CONTAMINATION BIOLOGIQUE
COMPOSE ORGANOCHLORE
FAUNE AQUATIQUE
Date de publication
01/01/2015
Date de création
Date de modification
Date d'acceptation du document
Date de dépôt légal
Langue
eng
Thème
Type de ressource
Source
Droits de réutilisation
Région
Département
Guadeloupe,Martinique
Commune
Description
Seagrass bed ecosystems occupy the most important
part of coastal shelf in the French West Indies. They also
constitute nurseries for many invertebrates and fishes harvested
by local fisheries. In Guadeloupe, coastal fish stocks are
declining meanwhile several agroecosystems revealed to be
heavily contaminated by pollutants (agricultural lands, rivers,
mangroves, seagrass beds, and coral reefs). Considering these
facts, a study of the contamination of seagrass beds (8000 ha)
of the Grand Cul-de-Sac Marin (GCSM) bay was conducted
on their sediments and marine phanerogams. The analyses
concerned six metals (Cd, Cu, Hg, Pb, V, Zn), tributyltin, 18
polycyclic aromatic hydrocarbons (PAHs), eight
polybrominated diphenyl et h e r s (PBDEs), 38
polychlorobiphenyls (PCBs), dithiocarbamates (CS2 residues),
and 225 pesticide molecules.
Overall, the level of contamination of the seagrass beds
was low for both sediments and phanerogams. Metallic trace
elements were the main pollutants but with higher concentrations
recorded in coastal sites, and their distribution can be
explained by the proximity of river mouths and current patterns.
The level of contamination was lower in plants than in
sediments.However, the level of contamination between these
two compartments was significantly correlated. The conclusion
of this study is that, unlike other coastal ecosystems of
Guadeloupe such as mangroves, the seagrass beds in the
GCSM present a low degree of pollution. The observed level
of contaminants does not seem to threaten the role of nursery
played by the seagrass beds and does not likely present a risk
for the reintroduction of manatees.
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