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Elsevier, Journal of Marine Systems, (33-34), p. 289-311

DOI: 10.1016/s0924-7963(02)00063-5

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Large particulate matter in the Western Mediterranean

Journal article published in 2002 by G. Gorsky, L. Prieur, I. Taupier Letage, L. Stemmann ORCID, M. Picheral
This paper is available in a repository.
This paper is available in a repository.

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Data provided by SHERPA/RoMEO

Abstract

The relationship between mesoscale hydrodynamics and the distribution of large particulate matter (LPM, particles larger than 200 μm) in the first 1000 m of the Western Mediterranean basin was studied with a microprocessor-driven CTD-video package, the Underwater Video Profiler (UVP). Observations made during the last decade showed that, in late spring and summer, LPM concentration was high in the coastal part of the Western Mediterranean basin at the shelf break and near the continental slope (computed maximum: 149 μg C l−1 between 0 and 100 m near the Spanish coast of the Gibraltar Strait). LPM concentration decreased further offshore into the central Mediterranean Sea where, below 100 m, it remained uniformly low, ranging from 2 to 4 μg C l−1. However, a strong variability was observed in the different mesoscale structures such as the Almeria–Oran jet in the Alboran Sea or the Algerian eddies. LPM concentration was up to one order of magnitude higher in fronts and eddies than in the adjacent oligotrophic Mediterranean waters (i.e. 35 vs. 8 μg C l−1 in the Alboran Sea or 16 vs. 3 μg C l−1 in a small shear cyclonic eddy).Our observations suggest that LPM spatial heterogeneity generated by the upper layer mesoscale hydrodynamics extends into deeper layers. Consequently, the superficial mesoscale dynamics may significantly contribute to the biogeochemical cycling between the upper and meso-pelagic layers.