Neodymium isotope constraints on provenance, dispersal, and climate-driven supply of Zambezi sediments along the Mozambique Margin during the past ∼45,000 years

2016
Marine sediments deposited off the Zambezi River that drains a considerable part of the southeast African continent provide continuous records of the continental climaticand environmental conditions. Here we present time series of neodymium (Nd) isotope signaturesof the detrital sediment fraction during the past ~45,000 years, to reconstruct climate-driven changes in the provenance of clays deposited along the Mozambique Margin. Coherent with the surface current regime, the Nd isotope distribution in surface sediments reveals mixing of the alongshore flowing Zambezi suspension load with sediments supplied by smaller rivers located further north. To reconstruct past changes in sediment provenances, Nd isotope signaturesof clays that are not significantly fractionated during weathering processes have been obtained from core 64PE304-80, which was recovered just north of the Zambezi mouth at 1329 m water depth. Distinctly unradiogenic clay signatures (ENd values <214.2) are found during the Last Glacial Maximum, Heinrich Stadial1, and Younger Dryas. In contrast, the Nd isotope record shows higher, more radiogenic isotope signaturesduring Marine Isotope Stage3 and between ~15 and ~5 ka BP, the latter coinciding with the timing of the northern hemisphereAfrican Humid Period. The clay-sized sediment fraction with the least radiogenic Nd isotope signatureswas deposited during the Holocene, when the adjacent Mozambique Shelf became completely flooded. In general, the contribution of the distinctly unradiogenic Zambezi suspension load has followed the intensity of precession-forced monsoonal precipitation and enhanced during periods of increased southern hemisphere insolation and high-latitude northern hemisphericclimate variability.
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