TY - JOUR A1 - Owen, Richard Bernhart A1 - Muiruri, Veronica M. A1 - Lowenstein, Tim K. A1 - Renaut, Robin W. A1 - Rabideaux, Nathan A1 - Luo, Shangde A1 - Deino, Alan L. A1 - Sier, Mark J. A1 - Dupont-Nivet, Guillaume A1 - McNulty, Emma P. A1 - Leet, Kennie A1 - Cohen, Andrew A1 - Campisano, Christopher A1 - Deocampo, Daniel A1 - Shen, Chuan-Chou A1 - Billingsley, Anne A1 - Mbuthia, Anthony T1 - Progressive aridification in East Africa over the last half million years and implications for human evolution JF - Proceedings of the National Academy of Sciences of the United States of America N2 - Evidence for Quaternary climate change in East Africa has been derived from outcrops on land and lake cores and from marine dust, leaf wax, and pollen records. These data have previously been used to evaluate the impact of climate change on hominin evolution, but correlations have proved to be difficult, given poor data continuity and the great distances between marine cores and terrestrial basins where fossil evidence is located. Here, we present continental coring evidence for progressive aridification since about 575 thousand years before present (ka), based on Lake Magadi (Kenya) sediments. This long-term drying trend was interrupted by many wet-dry cycles, with the greatest variability developing during times of high eccentricity-modulated precession. Intense aridification apparent in the Magadi record took place between 525 and 400 ka, with relatively persistent arid conditions after 350 ka and through to the present. Arid conditions in the Magadi Basin coincide with the Mid-Brunhes Event and overlap with mammalian extinctions in the South Kenya Rift between 500 and 400 ka. The 525 to 400 ka arid phase developed in the South Kenya Rift between the period when the last Acheulean tools are reported (at about 500 ka) and before the appearance of Middle Stone Age artifacts (by about 320 ka). Our data suggest that increasing Middle- to Late-Pleistocene aridification and environmental variability may have been drivers in the physical and cultural evolution of Homo sapiens in East Africa. KW - Quaternary KW - paleoclimate KW - paleolimnology KW - hominins KW - Lake Magadi Y1 - 2018 U6 - https://doi.org/10.1073/pnas.1801357115 SN - 0027-8424 SN - 1091-6490 VL - 115 IS - 44 SP - 11174 EP - 11179 PB - National Academy of Sciences CY - Washington ER - TY - JOUR A1 - Foerster, Verena A1 - Deocampo, Daniel M. A1 - Asrat, Asfawossen A1 - Günter, Christina A1 - Junginger, Annett A1 - Krämer, Kai Hauke A1 - Stroncik, Nicole A. A1 - Trauth, Martin H. T1 - Towards an understanding of climate proxy formation in the Chew Bahir basin, southern Ethiopian Rift JF - Palaeogeography, palaeoclimatology, palaeoecology : an international journal for the geo-sciences N2 - Deciphering paleoclimate from lake sediments is a challenge due to the complex relationship between climate parameters and sediment composition. Here we show the links between potassium (K) concentrations in the sediments of the Chew Bahir basin in the Southern Ethiopian Rift and fluctuations in the catchment precipitation/evaporation balance. Our micro-X-ray fluorescence and X-ray diffraction results suggest that the most likely process linking climate with potassium concentrations is the authigenic illitization of smectites during episodes of higher alkalinity and salinity in the closed -basin lake, due to a drier climate. Whole-rock and clay size fraction analyses suggest that illitization of the Chew Bahir clay minerals with increasing evaporation is enhanced by octahedral Al-to-Mg substitution in the clay minerals, with the resulting layer charge increase facilitating potassium-fixation. Linking mineralogy with geochemistry shows the links between hydroclimatic control, process and formation of the Chew Bahir K patterns, in the context of well-known and widely documented eastern African climate fluctuations over the last 45,000 years. These results indicate characteristic mineral alteration patterns associated with orbitally controlled wet-dry cycles such as the African Humid Period (similar to 15-5 ka) or high-latitude controlled climate events such as the Younger Dryas (similar to 12.8-11.6 ka) chronozone. Determining the impact of authigenic mineral alteration on the Chew Bahir records enables the interpretation of the previously established pXRF-derived aridity proxy K and provides a better paleohydrological understanding of complex climate proxy formation. KW - Paleoclimatology KW - Authigenic mineral transformation KW - Potassium KW - Illitization KW - Zeolites Y1 - 2018 U6 - https://doi.org/10.1016/j.palaeo.2018.04.009 SN - 0031-0182 SN - 1872-616X VL - 501 SP - 111 EP - 123 PB - Elsevier CY - Amsterdam ER -