Chemistry and grain-size distribution of terrigenous sediments deposited at Site GeoB9501


Autoria(s): Mulitza, Stefan; Heslop, David; Pittauerová, Daniela; Fischer, Helmut W; Meyer, Inka; Stuut, Jan-Berend W; Zabel, Matthias; Mollenhauer, Gesine; Collins, James A; Kuhnert, Henning; Schulz, Michael
Cobertura

MEDIAN LATITUDE: 16.840227 * MEDIAN LONGITUDE: -16.732756 * SOUTH-BOUND LATITUDE: 16.839660 * WEST-BOUND LONGITUDE: -16.732830 * NORTH-BOUND LATITUDE: 16.840660 * EAST-BOUND LONGITUDE: -16.732660 * DATE/TIME START: 2005-06-12T20:01:00 * DATE/TIME END: 2005-06-12T21:10:00

Data(s)

08/07/2010

Resumo

The Sahara Desert is the largest source of mineral dust in the world. Emissions of African dust increased sharply in the early 1970s, a change that has been attributed mainly to drought in the Sahara/Sahel region caused by changes in the global distribution of sea surface temperature. The human contribution to land degradation and dust mobilization in this region remains poorly understood, owing to the paucity of data that would allow the identification of long-term trends in desertification. Direct measurements of airborne African dust concentrations only became available in the mid-1960s from a station on Barbados and subsequently from satellite imagery since the late 1970s: they do not cover the onset of commercial agriculture in the Sahel region ~170 years ago. Here we construct a 3,200-year record of dust deposition off northwest Africa by investigating the chemistry and grain-size distribution of terrigenous sediments deposited at a marine site located directly under the West African dust plume. With the help of our dust record and a proxy record for West African precipitation we find that, on the century scale, dust deposition is related to precipitation in tropical West Africa until the seventeenth century. At the beginning of the nineteenth century, a sharp increase in dust deposition parallels the advent of commercial agriculture in the Sahel region. Our findings suggest that human-induced dust emissions from the Sahel region have contributed to the atmospheric dust load for about 200 years.

Formato

application/zip, 15 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.742939

doi:10.1594/PANGAEA.742939

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Mulitza, Stefan; Heslop, David; Pittauerová, Daniela; Fischer, Helmut W; Meyer, Inka; Stuut, Jan-Berend W; Zabel, Matthias; Mollenhauer, Gesine; Collins, James A; Kuhnert, Henning; Schulz, Michael (2010): Increase in African dust flux at the onset of commercial agriculture in the Sahel region. Nature, 466, 226-228, doi:10.1038/nature09213

Palavras-Chave #(Al+Fe)/(Si+K+Ti); (Aluminium+Iron)/(Silicon+Potassium+Titanium); >10 µm; 0.412-0.375 µm; 0.452-0.412 µm; 0.496-0.452 µm; 0.545-0.496 µm; 0.598-0.545 µm; 0.656-0.598 µm; 0.721-0.656 µm; 0.791-0.721 µm; 0.868-0.791 µm; 0.948-1.041 mm; 0.953-0.868 µm; 1.041-1.143 mm; 1.047-0.953 µm; 1.143-1.255 mm; 1.149-1.047 µm; 1.255-1.377 mm; 1.261-1.149 µm; 1.377-1.512 mm; 1.384 -1.261 µm; 1.512-1.66 mm; 1.520-1.384 µm; 1.668-1.520 µm; 1.822-1.660 mm; 1.832-1.668 µm; 10.78-9.818 µm; 101.1-92.09 µm; 11.83-10.78 µm; 111.0-101.1 µm; 12.99-11.83 µm; 121.8-111.0 µm; 133.7-121.8 µm; 137Cs; 137Cs std dev; 14.26-12.99 µm; 146.8-133.7 µm; 15.65-14.26 µm; 161.2-146.8 µm; 17.18-15.65 µm; 176.8-161.2 µm; 18.86-17.18 µm; 194.2-176.8 µm; 1 sigma; 2.010-1.832 µm; 2.207-2.010 µm; 2.423-2.207 µm; 2.660-2.423 µm; 2.920-2.660 µm; 20.70-18.86 µm; 2000-1822 µm; 210Pb xs; 210Pb xs dm; 210Pb xs dm std dev; 210Pb xs std dev; 213.2-194.2 µm; 213.2-234.1 µm; 22.73-20.70 µm; 234.1-256.8 µm; 24.95-22.73 µm; 256.8-282.1 µm; 27.38-24.95 µm; 282.1-309.6 µm; 286; 2 sigma; 3.205-2.920 µm; 3.519-3.205 µm; 3.862-3.519 µm; 30.07-27.38 µm; 309.6-339.8 µm; 33.01-30.07 µm; 339.8-373.1 µm; 36.24-33.01 µm; 373.1-409.6 µm; 39.77-36.24 µm; 4.240-3.863 µm; 4.655-4.240 µm; 409.6-449.7 µm; 43.67-39.78 µm; 449.7-493.6 µm; 47.94-43.67 µm; 493.6-541.9 µm; 5.110-4.655 µm; 5.610-5.110 µm; 52.62-47.94 µm; 541.9-594.9 µm; 57.77-52.62 µm; 594.9-653 µm; 6.158-5.611 µm; 6.761-6.158 µm; 63.41-57.77 µm; 653.0-716.9 µm; 69.62-63.41 µm; 7.421-6.760 µm; 716.9-786.9 µm; 76.42-69.61 µm; 786.9-863.9 µm; 8.147-7.421 µm; 8.943-8.147 µm; 83.89-76.42 µm; 863.9-948.2 µm; 9.818-8.943 µm; 92.09-83.90 µm; Aeo flux < 95CI; Aeo flux > 95CI; Aeo flux med; Aeolian flux, lower 95CI; Aeolian flux, median; Aeolian flux, upper 95CI; Age; AGE; Age, error; Age e; Al; Al count; Al prop; Aluminium; Aluminium, area, total counts; Aluminium, proportion; Beckman Coulter Laser diffraction particle size analyzer LS 200; Ca2+; Ca count; Caesium 137; Caesium 137, standard deviation; Caesium 137 activity per mass; Calcium; Calcium, area, total counts; Calcium, proportion; Calculated; Calculated from weight/volume; Ca prop; DBD; Density, dry bulk; Depth; Depth, composite; DEPTH, sediment/rock; Depth comp; dry sediment; Event; Fe; Fe count; Fe prop; Fluv flux < 95CI; Fluv flux > 95CI; Fluv flux med; Fluvial flux, lower 95CI; Fluvial flux, median; Fluvial flux, upper 95CI; GeoB; GeoB9501-4; GeoB9501-5; Geosciences, University of Bremen; Gravity corer (Kiel type); High resolution, low background gamma spectroscopy (Canberra Inc.); Intercore correlation; Iron; Iron, area, total counts; Iron, proportion; K; K count; K prop; Label; Lead 210 excess; Lead 210 excess, standard deviation; Lead 210 excess per dry sediment mass; Lead 210 excess per dry sediment mass, standard deviation; M65/1; Mar flux < 95CI; Mar flux > 95CI; Mar flux med; Marine flux, lower 95CI; Marine flux, median; Marine flux, upper 95CI; Mauritania Canyon; Meteor (1986); MUC; MultiCorer; Pb-210; polynomial; Potassium; Potassium, area, total counts; Potassium, proportion; Prop aeo; Prop aeo max; Prop aeo min; Prop fluv; Prop fluv max; Prop fluv min; Prop mar; Prop mar max; Prop mar min; Proportion, aeolian; Proportion, aeolian, maximum; Proportion, aeolian, minimum; Proportion, fluvial; Proportion, fluvial, maximum; Proportion, fluvial, minimum; Proportion, marine; Proportion, marine, maximum; Proportion, marine, minimum; Range: 0 to 1; Sample code/label; Sedimentation rate per year; Sedimentation rate per year, standard deviation; Sedim rate; Sedi rate std dev; Si; Si count; Silicon; Silicon, area, total counts; Silicon, proportion; Si prop; Size fraction > 0.010 mm; Size fraction 0.412-0.375 µm; Size fraction 0.452-0.412 µm; Size fraction 0.496-0.452 µm; Size fraction 0.545-0.496 µm; Size fraction 0.598-0.545 µm; Size fraction 0.656-0.598 µm; Size fraction 0.721-0.656 µm; Size fraction 0.791-0.721 µm; Size fraction 0.868-0.791 µm; Size fraction 0.948-1.041 mm; Size fraction 0.953-0.868 µm; Size fraction 1.041-1.143 mm; Size fraction 1.047-0.953 µm; Size fraction 1.143-1.255 mm; Size fraction 1.149-1.047 µm; Size fraction 1.255-1.377 mm; Size fraction 1.261-1.149 µm; Size fraction 1.377-1.512 mm; Size fraction 1.384 -1.261 µm; Size fraction 1.512-1.660 mm; Size fraction 1.520-1.384 µm; Size fraction 1.668-1.520 µm; Size fraction 1.822-1.660 mm; Size fraction 1.832-1.668 µm; Size fraction 10.78-9.818 µm; Size fraction 101.1-92.09 µm; Size fraction 11.83-10.78 µm; Size fraction 111.0-101.1 µm; Size fraction 12.99-11.83 µm; Size fraction 121.8-111.0 µm; Size fraction 133.7-121.8 µm; Size fraction 14.26-12.99 µm; Size fraction 146.8-133.7 µm; Size fraction 15.65-14.26 µm; Size fraction 161.2-146.8 µm; Size fraction 17.18-15.65 µm; Size fraction 176.8-161.2 µm; Size fraction 18.86-17.18 µm; Size fraction 194.2-176.8 µm; Size fraction 2.000-1.822 mm; Size fraction 2.010-1.832 µm; Size fraction 2.207-2.010 µm; Size fraction 2.423-2.207 µm; Size fraction 2.660-2.423 µm; Size fraction 2.920-2.660 µm; Size fraction 20.70-18.86 µm; Size fraction 213.2-194.2 µm; Size fraction 213.2-234.1 µm; Size fraction 22.73-20.70 µm; Size fraction 234.1-256.8 µm; Size fraction 24.95-22.73 µm; Size fraction 256.8-282.1 µm; Size fraction 27.38-24.95 µm; Size fraction 282.1-309.6 µm; Size fraction 3.205-2.920 µm; Size fraction 3.519-3.205 µm; Size fraction 3.862-3.519 µm; Size fraction 30.07-27.38 µm; Size fraction 309.6-339.8 µm; Size fraction 33.01-30.07 µm; Size fraction 339.8-373.1 µm; Size fraction 36.24-33.01 µm; Size fraction 373.1-409.6 µm; Size fraction 39.77-36.24 µm; Size fraction 4.240-3.863 µm; Size fraction 4.655-4.240 µm; Size fraction 409.6-449.7 µm; Size fraction 43.67-39.78 µm; Size fraction 449.7-493.6 µm; Size fraction 47.94-43.67 µm; Size fraction 493.6-541.9 µm; Size fraction 5.110-4.655 µm; Size fraction 5.610-5.110 µm; Size fraction 52.62-47.94 µm; Size fraction 541.9-594.9 µm; Size fraction 57.77-52.62 µm; Size fraction 594.9-653.0 µm; Size fraction 6.158-5.611 µm; Size fraction 6.761-6.158 µm; Size fraction 63.41-57.77 µm; Size fraction 653.0-716.9 µm; Size fraction 69.62-63.41 µm; Size fraction 7.421-6.760 µm; Size fraction 716.9-786.9 µm; Size fraction 76.42-69.61 µm; Size fraction 786.9-863.9 µm; Size fraction 8.147-7.421 µm; Size fraction 8.943-8.147 µm; Size fraction 83.89-76.42 µm; Size fraction 863.9-948.2 µm; Size fraction 9.818-8.943 µm; Size fraction 92.09-83.90 µm; SL; Ti; Ti count; Ti prop; Titanium; Titanium, area, total counts; Titanium, proportion; X-ray fluorescence core scanner (XRF) II, Bremen
Tipo

Dataset