Journalartikel

The mangrove ecosystem of the Cienaga Grande de Santa Marta (Colombia): Observations on regeneration and trace metals in sediment


AutorenlistePerdomo, L; Ensminger, I; Espinosa, LF; Elster, C; Wallner-Kersanach, M; Schnetter, ML

Jahr der Veröffentlichung1999

Seiten393-403

ZeitschriftMarine Pollution Bulletin

Bandnummer37

Heftnummer8-12

ISSN0025-326X

eISSN1879-3363

VerlagElsevier


Abstract
Alteration of water flows and consequent hypersalinization caused the death of nearly 70% of mangroves at the Cienaga Grande de Santa Marta, Colombia. Efforts to rehabilitate the ecosystem have been made through the construction of freshwater channels. Mangrove recovery was observed along a freshwater channel and at a small lagoon behind the beach ridge. Factors identified in this study influencing mangrove regeneration are: salinity of surface water, duration and height of flooding, leaching property of soils, dispersal of propagules and presence of fertile trees. Besides mangrove regeneration, a notable extension of freshwater plants was observed in the channel. Trace metal concentrations in sediments from the Magdalena River and its area of influence were investigated before the complete opening of the first channel. A relative comparison indicated that the highest concentrations of Cd, Cu, Ni and Zn were above international recommended limits. However, metal concentrations found in sediments at Clarin Channel did not affect the mangrove recovery. (C) 1999 Elsevier Science Ltd. All rights reserved.



Zitierstile

Harvard-ZitierstilPerdomo, L., Ensminger, I., Espinosa, L., Elster, C., Wallner-Kersanach, M. and Schnetter, M. (1999) The mangrove ecosystem of the Cienaga Grande de Santa Marta (Colombia): Observations on regeneration and trace metals in sediment, Marine Pollution Bulletin, 37(8-12), pp. 393-403

APA-ZitierstilPerdomo, L., Ensminger, I., Espinosa, L., Elster, C., Wallner-Kersanach, M., & Schnetter, M. (1999). The mangrove ecosystem of the Cienaga Grande de Santa Marta (Colombia): Observations on regeneration and trace metals in sediment. Marine Pollution Bulletin. 37(8-12), 393-403.



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