The Las Salinas palaeo-lagoon in the Sechura Desert (Peru): Evolution during the last two millennia

Author:

Christol Aurélien1,Wuscher Patrice2,Goepfert Nicolas3,Mogollón Valentin4,Béarez Philippe5,Gutiérrez Belkys6,Carré Matthieu7

Affiliation:

1. Jean Moulin University Lyon 3, Université de Lyon, France

2. Institut National de Recherches Archéologiques Préventives, France

3. CNRS-Paris1, Archéologie des Amériques, France

4. Universidad Nacional Federico Villarreal, Pérou

5. Archéozoologie, Archéobotanique: Sociétés, Pratiques et Environnements, Sorbonne Universités (MNHN, CNRS), Paris, France

6. Universidad Nacional de Trujillo, Pérou

7. Institut des Sciences et de l’Evolution de Montpellier (CNRS, UM, IRD, EPHE), France

Abstract

The Sechura Desert provides a unique example of a vast palaeo-lagoon system on the Peruvian coast that was active during the first millennium AD. Reconstruction of coastal evolution is made possible by the good resolution of the sedimentary records of the Las Salinas Noroeste coastal plain. Evidence from morphostratigraphy and sedimentary facies indicates marked environmental diversity between the 3rd and the 8th centuries AD and a wide variability of sedimentary dynamics: lagoon foreshores received alternately fine distal marine sediments and coarser continental sediments in pro-deltaic sheets. Evaporation phases periodically occurred in these foreshores causing the formation of salt crusts. After a last high water level in the 8th century AD, the lagoon ultimately dried out and remains dry today. The malacofauna and sedimentary facies indicate that marine marshes bordered by vegetation, perhaps mangrove, developed in the higher parts of these lagoons. This palaeogeography is explained by the progressive build-up of a sand bar which started at least in the middle Holocene. From the 3rd to 8th centuries AD, the lagoon had limited connection to the sea in its northern end and hosted a warm-water and productive ecosystem that was exploited by pre-Hispanic populations. Wetter conditions in the Andes and occasional El Niño rainfalls maintained the lagoon during this period. The freshwater input likely stopped in the 8th century AD, which led to the closing of the shore bar under the influence of the longshore drift rapidly followed by the drying up of the lagoon, and the abandonment of the archaeological site.

Publisher

SAGE Publications

Subject

Paleontology,Earth-Surface Processes,Ecology,Archeology,Global and Planetary Change

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