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Climate-driven ecosystem succession in the Sahara: The past 6000 years
S. Kröpelin
, D. Verschuren
, A. M. Lézine
, H. Eggermont
, C. Cocquyt
, P. Francus
, J. P. Cazet
, M. Fagot
, B. Rumes
, J. M. Russell
, F. Darius
, D. J. Conley
, M. Schuster
, H. Von Suchodoletz
, D. R. Engstrom
Continental Scientific Drilling Facility
Research output
:
Contribution to journal
›
Article
›
peer-review
533
Scopus citations
Overview
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Keyphrases
Climate-driven
100%
Sahara
100%
Ecosystem Succession
100%
Hydrological Change
50%
Terrestrial Ecosystems
50%
Aquatic Ecosystems
50%
Desiccation
50%
Paleoenvironmental Reconstruction
50%
Abrupt Termination
50%
Strong Reduction
50%
Middle Holocene
50%
Natural Archives
50%
Chad
50%
Tropical Trees
50%
Grassland Cover
50%
Desert Ecosystem
50%
Insolation Forcing
50%
African Humid Period
50%
Biogeophysical Feedback
50%
African Monsoon
50%
Hyperarid Desert
50%
Green Sahara
50%
Wind Regime
50%
Dust Mobilization
50%
Regional Winds
50%
Eastern Sahara
50%
Earth and Planetary Sciences
Holocene
100%
Terrestrial Ecosystem
100%
Paleoenvironmental Reconstruction
100%
Hydrological Change
100%
Chad
100%
Grassland
100%
Aquatic Environment
100%