n-Alkane content and compound-specific d13C values of soil samples, river samples, and marine surface samples


Autoria(s): Herrmann, Nicole; Boom, Arnoud; Carr, Andrew S; Chase, Brian M; Granger, Robyn; Hahn, Annette; Zabel, Matthias; Schefuß, Enno
Cobertura

MEDIAN LATITUDE: -30.153119 * MEDIAN LONGITUDE: 19.344210 * SOUTH-BOUND LATITUDE: -33.086267 * WEST-BOUND LONGITUDE: 16.504783 * NORTH-BOUND LATITUDE: -27.009600 * EAST-BOUND LONGITUDE: 28.591150 * DATE/TIME START: 2003-01-28T18:50:00 * DATE/TIME END: 2003-01-31T12:50:00

Data(s)

13/10/2016

Resumo

Southwestern Africa's coastal marine mudbelt, a prominent Holocene sediment package, provides a valuable archive for reconstructing terrestrial palaeoclimates on the adjacent continent. While the origin of terrestrial inorganic material has been intensively studied, the sources of terrigenous organic material deposited in the mudbelt are yet unclear. In this study, plant wax derived n-alkanes and their compound-specific d13C in soils, flood deposits and suspension loads from regional fluvial systems and marine sediments are analysed to characterize the origin of terrestrial organic material in the southwest African mudbelt. Soils from different biomes in the catchments of the Orange River and small west coast rivers show on average distinct n-alkane distributions and compound-specific d13C values reflecting biome-specific vegetation types, most notably the winter rainfall associated Fynbos Biome of the southwestern Cape. In the fluvial sediment samples from the Orange River, changes in the n-alkane distributions and compound-specific d13C compositions reveal an overprint by local vegetation along the river's course. The smaller west coast rivers show distinct signals, reflecting their small catchment areas and particular vegetation communities. Marine surface sediments spanning a transect from the northern mudbelt (29°S) to St. Helena Bay (33°S) reveal subtle, but spatially coherent, changes in n-alkane distributions and compound-specific d13C, indicating the influence of Orange River sediments in the northern mudbelt, the increasing importance of terrigenous input from the adjacent western coastal biomes in the central mudbelt, and contributions from the Fynbos Biome to the southern mudbelt. These findings indicate the different sources of terrestrial organic material deposited in the mudbelt, and highlight the potential the mudbelt has to preserve evidence of environmental change from the adjacent continent.

Formato

application/zip, 4 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.865431

Idioma(s)

en

Publicador

PANGAEA

Direitos

Access constraints: access rights needed

Fonte

Supplement to: Herrmann, Nicole; Boom, Arnoud; Carr, Andrew S; Chase, Brian M; Granger, Robyn; Hahn, Annette; Zabel, Matthias; Schefuß, Enno (2016): Sources, transport and deposition of terrestrial organic material: A case study from southwestern Africa. Quaternary Science Reviews, 149, 215-229, doi:10.1016/j.quascirev.2016.07.028

Palavras-Chave #25-33; 27-33; ACL27-33; ACL n-Alkane; Biome; C19; C20; C21; C22; C23; C24; C25; C25-C33; C26; C27; C28; C29; C29 d13C; C29 d13C std dev; C30; C31; C31 d13C; C31 d13C std dev; C32; C33; C33 d13C; C33 d13C std dev; C34; C35; Calculated; Carbon Preference Index, n-Alkanes; Center for Marine Environmental Sciences; CPI27-33; CPI n-Alkanes; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; Event; GeoB; Geosciences, University of Bremen; Height; HEIGHT above ground; Height above ground, maximum; Height above ground, minimum; Height max; Height min; Label; MARUM; n-Alkane, average chain length; n-Alkane, C31/(C29+C31) ratio; n-Alkane, C33/(C29+C33) ratio; n-Alkane C19; n-Alkane C20; n-Alkane C21; n-Alkane C22; n-Alkane C23; n-Alkane C23 of total alkanes; n-Alkane C24; n-Alkane C24 of total alkanes; n-Alkane C25; n-Alkane C25 of total alkanes; n-Alkane C26; n-Alkane C26 of total alkanes; n-Alkane C27; n-Alkane C27 of total alkanes; n-Alkane C28; n-Alkane C28 of total alkanes; n-Alkane C29; n-Alkane C29, d13C; n-Alkane C29, d13C, standard deviation; n-Alkane C29 of total alkanes; n-Alkane C30; n-Alkane C30 of total alkanes; n-Alkane C31; n-Alkane C31, d13C; n-Alkane C31, d13C, standard deviation; n-Alkane C31 of total alkanes; n-Alkane C32; n-Alkane C32 of total alkanes; n-Alkane C33; n-Alkane C33, d13C; n-Alkane C33, d13C, standard deviation; n-Alkane C33 of total alkanes; n-Alkane C34; n-Alkane C34 of total alkanes; n-Alkane C35; n-Alkane C35 of total alkanes; Norm31; Norm33; River; River system; Sample code/label; Sample type; Samp type; Sum n-alkanes C25-C33; vs. VPDB
Tipo

Dataset