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Recent sedimentation and mass accumulation rates based on 210Pb along the Peru-Chile continental margin

  • P. Muñoz
  • , C. B. Lange
  • , D. Gutiérrez
  • , D. Hebbeln
  • , M. A. Salamanca
  • , L. Dezileau
  • , J. L. Reyss
  • , L. K. Benninger
  • Universidad Católica del Norte
  • Ctro. Invest. Oceanografica El P.
  • Universidad de Concepción
  • Direcció N de Investigaciones Oceanográ Ficas, Instituto Del Mar Del Perú (IMARPE)
  • University of Bremen
  • 1er Et., Univ. Montpellier 2, Pl. E.
  • LEGOS, UMR 5566, IRD
  • University of North Carolina at Chapel Hill

Research output: Contribution to journalArticlepeer-review

63 Scopus citations

Abstract

The concentrations of the natural radionuclide 210Pb were measured in sediment samples collected with a multicorer, boxcorer, and gravity corers along the Chilean continental margin (20-45°S) in order to estimate sedimentation rate (SR) and mass accumulation rate. This database was compared with previously obtained results from central Peru (Callao). 210Pb activities decreased exponentially with core depth and profiles showed a deepening of the 210Pb in excess (unsupported) in the sediments from north to south (∼6-18 cm sediment depth off Peru and northern Chile vs. 8-35 cm off central and southern Chile. An onshore-offshore decrease of surface activities was observed off central Peru whereas the reverse was true for surface activities along the Chilean margin. SRs increased from north (0.04-0.17 cm yr -1) to south (0.09-0.29 cm yr -1). Across the shelf, higher rates were observed at deeper sites, especially at those close to submarine canyons, except off central Peru, where SRs showed similar values through the slope area. Off northern Chile and central Peru, SRs seem to reflect the export of particles over the shelf and redistribution processes such as slumps and lateral transport. In contrast, SRs in central and southern Chile seem to be controlled by several additional factors that modulate the settling particles, such as onshore precipitation and river runoff. In addition, the more complex topography of the southern Chile margin allows for settling or winnowing areas.

Original languageEnglish
Pages (from-to)2523-2541
Number of pages19
JournalDeep-Sea Research Part II: Topical Studies in Oceanography
Volume51
Issue number20-21
DOIs
StatePublished - Oct 2004
Externally publishedYes

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