Hostname: page-component-76d6cb85b7-s74w7 Total loading time: 0 Render date: 2026-07-21T23:40:25.704Z Has data issue: false hasContentIssue false

Lake-level changes and hominin occupations in the arid Turkana basin during volcanic closure of the Omo River outflows to the Indian Ocean – comment on the published paper by Boës et al. Quaternary Research (2018), Vol. 91.2, 892–909

Published online by Cambridge University Press:  23 September 2019

Mathieu Schuster*
Affiliation:
Université de Strasbourg, Centre National de la Recherche Scientifique (CNRS), Institut de Physique du Globe de Strasbourg, UMR 7516, 67084 Strasbourg, France
Alexis Nutz
Affiliation:
Centre Européen de Recherche et d'Enseignement des Géosciences de l'Environnement Aix-Marseille Université, Centre National de la Recherche Scientifique (CNRS), Institut de Recherche pour le Développement (IRD), Collège de France, Institut National de la Recherche Agronomique (INRA), 13545 Aix-en-Provence, France
*
*Corresponding author e-mail address: mschuster@unistra.fr (M. Schuster).
Rights & Permissions [Opens in a new window]

Abstract

Information

Type
Letter to the Editor
Copyright
Copyright © University of Washington. Published by Cambridge University Press, 2019 
Figure 0

Figure 1. Reconstructed first-order lake-level variation in the Turkana Depression between ca. 1.95 and 1.72 Ma: a sedimentary geology-based curve (Nutz et al., 2017) versus the inferred insolation curve (Boës et al., 2018). (A) Exposure showing “coastal sands and shells” (Nutz et al., 2017) separated from “oncolite-rich fine sands and silts” by a transgressive surface revealing a transgressive trend starting at ca. 1.76 Ma following a relative lowstand estimated between 1.78 and 1.76 Ma. (B) Offshore muds overlain by coastal sands and shells that reflect the regressive trend identified between 1.95 and 1.78 Ma. (C) The red curve shows the interpreted first-order trend of paleolake Turkana levels between1.95 and 1.72 Ma from Nutz et al. (2017). Note that second-order modulations of paleo-lake levels related to precessional cycles are not represented here. In black, the insolation curve reported from Boës et al. (2018) and their inferred evolution of lake level (from fig. 9B in Boës et al., 2018). In their study, Boës et al. argue that Lake Turkana lake levels paralleled the 100-ka insolation curve in response to greater orbitally forced monsoon-related inputs from the Omo River. Lake-level reconstruction based on the observed geological facts between 1.95 and 1.72 Ma clearly contradicts such a hypothesis, as first- order lake-level evolution does not fit with the 65°N insolation cycles. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)