6700 yr sedimentary record of climatic and anthropogenic signals in Lake Aydat (French Massif Central)

Author:

Lavrieux Marlène12,Disnar Jean-Robert1,Chapron Emmanuel1,Bréheret Jean-Gabriel2,Jacob Jérémy1,Miras Yannick34,Reyss Jean-Louis5,Andrieu-Ponel Valérie6,Arnaud Fabien7

Affiliation:

1. Institut des Sciences de la Terre d’Orléans, Université d’Orléans, ISTO, UMR 7327, 45071 Orlèans, France; CNRS/INSU, ISTO, UMR 7327, 45071 Orlèans, France; BRGM, ISTO, UMR 7327, BP 36009, 45060 Orlèans, BP, France

2. GéHCo (GéoHydrosystèmes Continentaux), EA 6293, Faculté des Sciences et Techniques, Université François-Rabelais de Tours, Parc Grandmont, 37200 Tours, France

3. CNRS, GEOLAB, UMR 6042, Laboratoire de Géographique physique et environnementale, 4 rue Ledru, 63057 Clermont-Ferrand Cedex 1, France

4. Clermont Université, Université Blaise Pascal, GEOLAB, Maison des Sciences de l’Homme, BP 10448, 63000 Clermont-Ferrand, France

5. Laboratoire des Sciences du Climat et de l’Environnement, UMR 8212, UVSQ/CNRS/CEA, Domaine du CNRS, 91198 Gif-sur-Yvette, France

6. Institut Méditerranéen d’Ecologie et de Paléoécologie, UMR CNRS 6116 Université Paul Cézanne, Bâtiment Villemin, BP 80, 13545 Aix en Provence Cedex 04, France

7. Environnements, Dynamiques et Territoires de la Montagne, UMR 5204, Université de Savoie, CNRS, CISM, Campus Scientifique, 73376 Le Bourget du Lac Cedex, France

Abstract

A 19 m long sedimentary record retrieved in Lake Aydat (French Massif Central) covers the last 6700 yr at a high resolution. A multiproxy approach (density, magnetic susceptibility, XRF, Rock-Eval, pollen and non-pollen palynomorph analyses and a historical archives study) was used to characterise and propose a model of sedimentation. The high deposition rate results from the combined effects of the high suspension load of the river, autochthonous production and the narrow shape of the incised fluvial valley dammed by a lava flow c. 8550 years ago. Two contrasted periods (6700±200 to 3180±90 cal. BP, and 1770±60 cal. BP to present) were characterized. The lower unit (mid Holocene) displays a fine and regular lamination and holds a single, major, flood deposit. This unit is capped by an erosive mass-wasting deposit triggered c. 1770±60 cal. BP. The upper unit (late Holocene) is made of organic-rich and fine-grained faintly laminated sediment, with numerous interbedded flood deposits and diatom blooms. The sedimentation was principally controlled by climatic forcings until c. 1100 cal. BP, accompanied by detrital events linked to human activities around the lake. Then, a more detrital input attested by numerous and recurrent flood deposits can be linked to the intensification of a persistent anthropogenic impact on the catchment. Two phases of lake eutrophication are highlighted: 1200–1130 cal. BP, as a result of increased anthropogenic pressure, and the current phase that could have started c. 150 cal. BP.

Publisher

SAGE Publications

Subject

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

Reference66 articles.

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2. Radiometric dating of sediment records in European mountain lakes

3. 7200 years of Rhône river flooding activity in Lake Le Bourget, France: a high-resolution sediment record of NW Alps hydrology

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