HR: 1340h
AN: PP43A-0622 [Abstracts]
TI: Two Glacial-Interglacial Cycles of Lake-Level Change in Equatorial East Africa Documented by
High-Resolution Seismic Sequence Stratigraphy from Lake Challa (Kenya)
AU: Charlet, F
EM: francois.charlet@ugent.be
AF: Renard Centre of Marine Geology, Department of Geology-Soil Science, Ghent University, Krijgslaan 281
s.8, Ghent, B-9000
Belgium
AU: * Verschuren, D
EM: dirk.verschuren@ugent.be
AF: Limnology Research Group, Department of Biology, Ghent University, K.L. Ledeganckstraat 35, Ghent,
B-9000
Belgium
AU: Bessems, I
AF: Limnology Research Group, Department of Biology, Ghent University, K.L. Ledeganckstraat 35, Ghent,
B-9000
Belgium
AU: Olago, D
AF: Department of Geology, University of Nairobi, Nairobi, 30197
Kenya
AU: Muzuka, A
AF: Institute of Marine Sciences, University of Dar-es-Salaam, Zanzibar, Dar-es-Salaam, 668
Tanzania, United Republic of
AU: De Batist, M
AF: Renard Centre of Marine Geology, Department of Geology-Soil Science, Ghent University, Krijgslaan 281
s.8, Ghent, B-9000
Belgium
AB:
A high-resolution (3.5 kHz) reflection seismic survey of Lake Challa (Kenya-Tanzania), a 97-m deep volcanic crater lake on
the lower East slope of Mt. Kilimanjaro, revealed at least 215 meters of acoustically stratified lake deposits. Analysis of
seismic facies and onlapping features, in conjuncton with 14C-dating and sedimentology of a 3-m surface core, indicates that
the 10 major stratigraphic units (and their sub-units) recognised in the seismic sequence represent distinct phases of
lacustrine sedimentation associated with late-Quaternary lake-level fluctuations. At least the uppermost units, which
represent late-Glacial and Holocene sedimentation, seem to be mainly composed of fine-grained authigenic and aeolian detrital
mineral inputs, intercalated only at the periphery by occasional mass-flow deposits from local collapse of the inner crater
wall. Isopach mapping of each stratigraphic (sub-)unit over the dense seismic grid (mean interval 150 meter) reveals
repeating patterns of sediment distribution across the lake floor, tracing quantifiable lake-level fluctuations during the
Holocene, the late-Glacial period, the Last Glacial Maximum, and the penultimate glaciation. Extrapolation of available
radiometric ages on the uppermost units together with the inferred sequence of late-Quaternary lake-level change suggests
that the acoustically visible lacustrine infill of Lake Challa covers the two last glacial/interglacial cycles.
DE: 9305 Africa
DE: 3025 Marine seismics (0935)
DE: 1845 Limnology
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2004 AGU Fall Meeting