Analyses of lake La Thuile sediment core


Autoria(s): Bajard, Manon; Sabatier, Pierre; David, Fernand; Develle, Anne-Lise; Reyss, Jean-Louis; Fanget, Bernard; Malet, Emmanuel; Arnaud, Daniel; Augustin, Laurent; Crouzet, Christian; Arnaud, Fabien
Cobertura

LATITUDE: 45.530000 * LONGITUDE: 6.056700 * DATE/TIME START: 2010-04-25T00:00:00 * DATE/TIME END: 2013-05-22T12:25:30

Data(s)

30/11/2015

Resumo

Lake La Thuile, in the Northern French Prealps (874 m a.s.l.), provides an 18 m long sedimentary sequence spanning the entire Lateglacial/Holocene period. The high resolution multi-proxy (sedimentological, palynological, geochemical) analysis of the uppermost 6.2 meters reveals the Holocene dynamics of erosion in the catchment in response to landscape modifications. The mountain belt is at relevant altitude to study past human activities and the watershed is sufficiently disconnected from large valleys to capture a local sedimentary signal. From 12,000 to 10,000 cal. BP (10 to 8 ka cal. BC), the onset of hardwood species triggered a drop in erosion following the Lateglacial/Holocene transition. From 10,000 to 4500 cal. BP (8 to 2.5 ka cal. BC), the forest became denser and favored slope stabilization while erosion processes were very weak. A first erosive phase was initiated at ca . 4500 cal. BP without evidence of human presence in the catchment. Then, the forest declined at approximately 3000 cal. BP, suggesting the first human influence on the landscape. Two other erosive phases are related to anthropic activities: approximately 2500 cal. BP (550 cal. BC) during the Roman period and after 1600 cal. BP (350 cal. AD) with a substantial accentuation in the Middle Ages. In contrast, the lower erosion produced during the Little Ice Age, when climate deteriorations are generally considered to result in an increased erosion signal in this region, suggests that anthropic activities dominated the erosive processes and completely masked the natural effects of climate on erosion in the late Holocene.

Formato

application/zip, 6 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.855428

doi:10.1594/PANGAEA.855428

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Bajard, Manon; Sabatier, Pierre; David, Fernand; Develle, Anne-Lise; Reyss, Jean-Louis; Fanget, Bernard; Malet, Emmanuel; Arnaud, Daniel; Augustin, Laurent; Crouzet, Christian; Arnaud, Fabien (2015): Erosion record in Lake La Thuile sediments (Prealps, France): Evidence of montane landscape dynamics throughout the Holocene. The Holocene, accepted, doi:10.1177/0959683615609750

Palavras-Chave #-; 0.06 µm; 0.07 µm; 0.08 µm; 0.09 µm; 0.11 µm; 0.13 µm; 0.15 µm; 0.17 µm; 0.2 µm; 0.23 µm; 0.27 µm; 0.31 µm; 0.36 µm; 0.42 µm; 0.49 µm; 0.58 µm; 0.67 µm; 0.78 µm; 0.91 µm; 1.06 µm; 1.24 µm; 1.44 µm; 1.68 µm; 1.95 µm; 10.48 µm; 103.58 µm; 12.21 µm; 120.67 µm; 137Cs; 137Cs std dev; 14.22 µm; 140.58 µm; 16.57 µm; 163.77 µm; 19.31 µm; 190.8 µm; 2.28 µm; 2.65 µm; 210Pb; 210Pb std dev; 210Pb xs; 210Pb xs std dev; 22.49 µm; 222.28 µm; 226Ra; 226Ra std dev; 241Am; 241Am std dev; 258.95 µm; 26.2 µm; 3.09 µm; 3.6 µm; 30.53 µm; 301.68 µm; 35.56 µm; 351.46 µm; 4.19 µm; 4.88 µm; 409.45 µm; 41.43 µm; 43; 477.01 µm; 48.27 µm; 5.69 µm; 555.71 µm; 56.23 µm; 6.63 µm; 647.41 µm; 65.51 µm; 7.72 µm; 754.23 µm; 76.32 µm; 878.67 µm; 88.91 µm; 9 µm; Age; AGE; Age, 14C AMS; Age, 14C calibrated; Age, dated; Age, dated material; Age, dated standard deviation; Age dated; Age std dev; Al count; Aluminium, area, total counts; Americium 241; Americium 241, standard deviation; at 550°C; at 950°C; Bi count; Bismuth, area, total counts; BP; Br count; Bromine, area, total counts; Ca/Ti; CaCO3=f(Ca), correlation with LOI 950°C; Ca count; Caesium 137; Caesium 137, standard deviation; cal. BP; Calcium, area, total counts; Calcium/Titanium ratio; Calendar years, maximum/old; Calendar years, minimum/young; Cal yrs max; Cal yrs min; Chloride, area, total counts; Chromium, area, total counts; Cl count; Comment; Copper, area, total counts; Core; Cr count; Cu count; Date/Time; DATE/TIME; Dated material; Decl; Declination; Depth; Depth, bottom/max; Depth, reference; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth in sediment core with the top of sediment at 0 m; Depth of sample in XRF depth (fixed 0); Depth ref; Depth top; Facies; Facies name/code; Fe count; File name; Fraction; Fraction, non-carbonate; Ga count; Gallium, area, total counts; Geocode - measurement date; Grain size, Mastersizer 2000G, Malvern Instrument Inc.; Hole number; Iron, area, total counts; K count; Label; Lab label; Laboratory code/label; Lead, area, total counts; Lead 210; Lead 210, standard deviation; Lead 210 excess; Lead 210 excess, standard deviation; LOI; Loss on ignition; Manganese, area, total counts; mcd, depth when several section (long core); Mn count; MO=f(Br), correlation with LOI 550 °C; Mo count; Molybdenum, area, total counts; Nb count; NCF; Niobium, area, total counts; Non Carbonate Ignition Residue; Pb count; PC; P count; Phosphorus, area, total counts; Piston corer; Potassium, area, total counts; Poz = Poznan Radiocarbon Laboratory (Poland); SacA = Laboratoire de Mesure C14, ARTEMIS, CEA Saclay (France); Prob; Probability; probability of the calibrated date; Radium 226; Radium 226, standard deviation; Raw data adress in the instrument computer; Rb count; Reference declination (Donadini et al. 2009); Replicate; Replicate number; Rh count; Rhodium, area, total counts; Rubidium, area, total counts; Sample code/label; Sample ID; S count; Sect; Section; Section number; Si/Ti; Si count; Silicon, area, total counts; Silicon/Titanium ratio; Size fraction; Sr count; Strontium, area, total counts; Sulfur, area, total counts; THU10-Mastercore; Ti count; Titanium, area, total counts; Voltage 10 kV, Intensity 1 mA, LiveTime 10 s, Step 5 mm, measured Area (Crosscore*Downcore 15*5, no filter; Voltage 30 kV, Intensity 0.75 mA, LiveTime 30 s, Step 5 mm, measured Area (Crosscore*Downcore) 15*5, Pd-Thin filter; X-ray fluorescence Avaatech core scanner (XRF); Y count; Yttrium, area, total counts; Zinc, area, total counts; Zirconium, area, total counts; Zn count; Zr count
Tipo

Dataset