Publications des scientifiques de l'IRD

Yacoub A. N., Sylvestre Florence, Moussa A., Hoelzmann P., Alexandre A., Dinies M., Chalie F., Vallet-Coulomb C., Pailles C., Darius F., Sonzogni C., Couapel Martine, Mazur J. C., Kropelin S. (2023). The African Holocene Humid Period in the Tibesti mountains (central Sahara, Chad) : climate reconstruction inferred from fossil diatoms and their oxygen isotope composition. Quaternary Science Reviews, 308, p. 108099 [17 p.]. ISSN 0277-3791.

Titre du document
The African Holocene Humid Period in the Tibesti mountains (central Sahara, Chad) : climate reconstruction inferred from fossil diatoms and their oxygen isotope composition
Année de publication
2023
Type de document
Article référencé dans le Web of Science WOS:000986027300001
Auteurs
Yacoub A. N., Sylvestre Florence, Moussa A., Hoelzmann P., Alexandre A., Dinies M., Chalie F., Vallet-Coulomb C., Pailles C., Darius F., Sonzogni C., Couapel Martine, Mazur J. C., Kropelin S.
Source
Quaternary Science Reviews, 2023, 308, p. 108099 [17 p.] ISSN 0277-3791
The climate of the African Holocene Humid Period (AHHP) is reconstructed in the Tibesti Volcanic Massif (TVM) in the central Sahara from well-preserved diatomaceous deposits in the two crater palaeolakes of Trou au Natron at Pic Tousside-;and Era Kohor at Emi Koussi. The two records cover the period from-9500 to 4500 cal yr BP. Climate and palaeoenvironmental changes during this period were inferred from diatom assemblages, interpretation of variations in their oxygen isotope composition (delta(18)Odiatom), reconstruction of lake water conductivity from diatom-based transfer functions, and estimation of the lake water balance (Evaporation/Inflow ratio, E/I). Our findings provide evidence for two distinct lacustrine episodes. During the early to mid-Holocene transition, low delta O-18-diatom values, high percentages of planktonic diatoms, low lake water conductivity and a positive water balance (E/I < 1) suggest wet conditions, which were likely related to the optimum of the AHHP. From the mid-to late Holocene transition, an aridification trend is revealed by increasing delta O-18-diatom values, high percentages of benthic diatoms and a negative water budget (E/I > 1), occurring as early as 6500 cal yr BP and intensifying after 5300 cal yr BP. Moreover, our data show on average a decrease in precipitation amounts of-35% between the peak and the end of the AHHP in the Tibesti region. This timing of the AHHP in the mountainous Tibesti is consistent with the aridification of the central Sahara recorded at lowland sites, which has mainly been related to the southward retreat of the Intertropical Convergence Zone (ITCZ) and the associated African monsoonal rainfall belt, following the gradually declining summer insolation that led to the termination of the AHHP. Our results prove the existence of Holocene lakes in the TVM craters that developed contemporaneously with the lakes of the Chadian basin and the Libyan Sahara. On a broader scale, our data share similar hydroclimatic patterns with studies from the eastern and northern Sahara.
Plan de classement
Limnologie physique / Océanographie physique [032] ; Limnologie biologique / Océanographie biologique [034] ; Géologie et formations superficielles [064]
Description Géographique
TCHAD ; SAHARA
Localisation
Fonds IRD [F B010087753]
Identifiant IRD
fdi:010087753
Contact