Mapping Ancient Africa: INQUA Rome session

July 3, 2023
WDG

The Mapping Ancient Africa (MAA) project has a double session of talks and a poster session at the INQUA congress in Rome 2023. Our session will be on Wednesday 19 July.

If you are at the INQUA Rome congress please come along to our talks and posters in Session 64: Mapping Ancient Africa: Climate, Vegetation & Humans.

Part 1: 08:30-10:30

  • Giosan et al. When the desert was a lake: Providing context for Homo sapiens development in the northern Kalahari
  • Chase et al. Paleolakes and socioecological implications of glacial “greening” of the South African interior
  • Biddulph et al. Spatiotemporal variability in the initiation and development of peatlands across the central Congo Basin
  • Blinkhorn et al. Evaluating refugia in recent human evolution in Africa
  • Aureli et al. Homo sapiens behaviour and adaptation in East Africa. New evidence from an open-air site in a modern Ethiopian savannah environment: the GOT10 site
  • Dembele Climatic fluctuations during the last millenium and their impact on political history and human settlements in West Africa
  • Porchier et al. Annually resolved hydroclimate variability in the East African Rift Valley at a time critical for hominin dispersion
  • Effiom et al. Late Holocene palaeoecological studies at Lake St Lucia, KwaZulu-Natal

Part 2: 11:00-13:00

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Mapping Ancient Africa: Video of seminar 13

May 19, 2023
WDG

The thirteenth Mapping Ancient Africa seminar was delivered by Andrea Manica on the 18th May 2023. In the seminar Andrea introduced the pastclim R package and gave examples of how it can be applied to address questions related to human evolution and dispersal.

Details of this seminar can be found here. You can find more Mapping Ancient Africa seminar videos on the “Ecology of the Past” YouTube channel.

INQUAlogo

Mapping Ancient Africa: Seminar 13

May 17, 2023
WDG

The thirteenth Mapping Ancient Africa online seminar will take place on 18 May 2023 (17:00 CEST). 

The seminar will be delivered via Zoom. The link for the seminar can be obtained from the MAA Slack channel or by contacting the chair of this seminar (William Gosling). If you want to know more about the Mapping Ancient Africa project visit our web pages and please do not hesitate to get in contact if you want to get involved.

INQUAlogo

PhD: African palaeoclimatology

July 8, 2021
WDG

Location: Leibniz-Institut für Angewandte Geophysik
Team including: Thomas Wonik, Christian Zeeden, Stefanie Kaboth-Bahr, William Gosling

We are looking for a researcher with a geosciences background to explore the physical properties of the sediments recovered from Lake Bosumtwi (Ghana). The Lake Bosumtwi sediments we recovered by the International Continental Scientific Drilling Program in 2004 and have been found to span the last c. 1.07 million years (Koerbel et al., 2005). This project will examine the borehole data and relate this ongoing palaeoenvironmental studies at the site (Miller & Gosling, 2014; Miller et al., 2016).

For further details see:

Deadline for applications: 31/07/2021

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Paleo-ENSO influence on African environments and early modern humans

June 2, 2021
WDG

Kaboth-Bahr S, Gosling WD, Vogelsang R, Bahr A, Scerri EML, Asrat A, Cohen AS, Düsing W, Foerster V, Lamb HF, et al. 2021. Paleo-ENSO influence on African environments and early modern humans. Proceedings of the National Academy of Sciences 118(23):e2018277118. https://doi.org/10.1073/pnas.2018277118

New paleoclimatic perspectives on the future of terrestrial systems: bigger change, higher confidence?

June 14, 2017
WDG

Institute for Biodiversity & Ecosystem Dynamics seminar
University of Amsterdam
22 June 2017 (for details click here)

New paleoclimatic perspectives on the future of terrestrial systems: bigger change, higher confidence?
Jonathan Overpeck
The University of Arizona

Numerous assessments of future freshwater and terrestrial system change have highlighted the potential for unprecedented change in the 21st century given continued emissions of greenhouse gases (GHGs) to the atmosphere; the risk to biodiversity is also believed to be high. The basis for these assertions are strengthened by recent observed ecosystem change, as well as by a new global compilation of climate and vegetation change over the last deglaciation indicating that most, if not all, dominantly natural landscapes on the planet are at high risk of significant transformation given the projected magnitude of warming that is likely in the future absent major reductions in global GHG emissions. At the same time, new paleoclimatic results indicate that the Amazon forests may be more resilient to future change than previously thought, whereas the risk of human deforestation associated with multi-year “megadrought” might be higher than previously believed.  A growing body of literature highlight that drought and megadrought risk around the globe is going to be a bigger problem than widely thought. We know with great confidence that warming will continue as long as GHG emissions continue, and this means more drying of terrestrial systems is likely over much of the planet. As a result, droughts will become more severe, longer and frequent as long as GHG emissions are not reduced significantly. The ability of precipitation increases to mitigate the ecological and hydrological impacts of continued warming is especially diminished in the many regions of the globe where multi-decadal megadrought is likely, an assessment made more challenging by the growing realization that that state-of-the-art climate models may underestimate the risk of future megadrought. Existing global climate change assessments may thus be underestimating the challenges to terrestrial water and ecoystems under continued climate change.

Hosted by: William Gosling

Paleontologia: Cenários de Vida – Paleoclimas Volume 5Bush, M.B., de Oliveira, P.E., Raczka, M.F., Gosling, W.D., Mayle, F.E., McMichael, C.H. & Urrego, D.H. (2014) Paleoclimates of Amazonia: An ice-age view. IN: Ribeiro F. & Carvalho, I. (eds.) Paleontologia: Cenários de Vida – Paleoclimas Volume 5. Editora Interciência Ltda., Brazil, pp. 353-368. ISBN: 9788571933439

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