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Orbital forcing of glacial/interglacial variations in chemical weathering and silicon cycling within the upper White Nile basin, East Africa: Stable-isotope and biomarker evidence from Lakes Victoria and Edward

  • Helen E. Cockerton
  • , F. Alayne Street-Perrott
  • , Philip A. Barker
  • , Melanie J. Leng
  • , Hilary J. Sloane
  • , Katherine J. Ficken

Research output: Contribution to journalArticlepeer-review

Abstract

On Quaternary time scales, the global biogeochemical cycle of silicon is interlocked with the carbon cycle through biotic enhancement of silicate weathering and uptake of dissolved silica by vascular plants and aquatic microalgae (notably diatoms, for which Si is an essential nutrient). Large tropical river systems dominate the export of Si from the continents to the oceans. Here, we investigate variations in Si cycling in the upper White Nile basin over the last 15 ka, using sediment cores from Lakes Victoria and Edward. Coupled measurements of stable O and Si isotopes on diatom separates were used to reconstruct past changes in lake hydrology and Si cycling, while the abundances of lipid biomarkers characteristic of terrestrial/emergent higher plants, submerged/floating aquatic macrophytes and freshwater algae document past ecosystem changes. During the late-glacial to mid-Holocene, 15-5.5 ka BP, orbital forcing greatly enhanced monsoon rainfall, forest cover and chemical weathering. Riverine inputs of dissolved silica from the lake catchments exceeded aquatic demand and may also have had lower Si-isotope values. Since 5.5 ka BP, increasingly dry climates and more open vegetation, reinforced by the spread of agricultural cropland over the last 3-4 ka, have reduced dissolved silica inputs into the lakes. Centennial-to millennial-scale dry episodes are also evident in the isotopic records and merit further investigation.

Original languageEnglish (US)
Pages (from-to)57-71
Number of pages15
JournalQuaternary Science Reviews
Volume130
DOIs
StatePublished - Dec 15 2015

Bibliographical note

Funding Information:
This work was supported by the UK Natural Environment Research Council through a Doctoral Training Grant (HEC) and a grant-in-kind from the NERC Isotope Geosciences Facilities Steering Committee (IP-1151-1109) for O-, H- and Si-isotope analyses (FAS-P). A Research and Exploration Grant from the National Geographic Society (FAS-P) funded fieldwork in the Nile Basin. We thank the LacCore staff for assisting efficiently with sample selection and despatch, and Tom Johnson and Jim Russell for sharing their expertise and data relating to the Lake Victoria and Edward cores. Andrea Snelling provided helpful advice on diatom extraction from difficult samples. We also thank two anonymous referees for their positive comments, which have improved the paper.

Publisher Copyright:
© 2015 The Authors.

Copyright:
Copyright 2017 Elsevier B.V., All rights reserved.

Keywords

  • Biomarkers
  • Diatoms
  • Lake Edward
  • Lake Victoria
  • Late Quaternary
  • Oxygen isotopes
  • Silicon cycle
  • Silicon isotopes
  • White Nile

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