HR: 17:00h
AN: PP44B-05 [Abstracts]
TI: The Pleistocene Labrador Sea, northwest North Atlantic (IODP Sites 1302/03, 1305 and ODP Site 646) with highlights on warm interglacials
AU: * de Vernal, A
EM: devernal.anne@uqam.ca
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: Hillaire-Marcel, C
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: McKay, J
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: Romero, O
AF: Instituto Andaluz de Ciencias de la Tierra (IACT-CSIC), Universidad de Granada, Granada, 18002, Spain
AU: Mayor, S
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: Satte, Y
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: Lamziouaq, R
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: Preda, M
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: Stevenson, R
AF: GEOTOP-Universite du Quebec a Montreal, PO Box 8888, Montreal, Qc H3C 3P8, Canada
AU: Fagel, N
AF: Departement de Geologie, Université de Liege
BAT. B18 Argiles et paléoclimats, Liege, 4000, Belgium
AB:
Sites cored during expeditions 105 and 303 off southern Greenland (IODP 1305, ODP 646) and eastern Canada
(IODP 1302/1303) are ideally located for documenting the climatic and glacial history of adjacent lands in addition
of providing information on thermohaline conditions in the northwest North Atlantic, notably with regard to
convection in the Labrador Sea. Multiproxy studies (stable isotopes, pollen, dinocysts, clay minerals, radiogenic
isotopes, U-series) in Pleistocene sequences at Sites 646 and 1305 show that different conditions prevailed
during each interglacial with respect to sea-surface conditions, deep-current, and/or terrestrial vegetation on
adjacent lands. For example, clay mineral assemblages and Nd isotopes indicate that sedimentary supplies
during the recent interglacials (marine isotope stages (MIS) 1, 5e, 7 and 9, notably) were very different than those
of previous interglacial stages, which were characterized by a sedimentary source not yet identified, possibly
related to soils developed over volcanic rocks from a largely deglaciated Eastern Greenland. Pollen analyses
also suggest that dense vegetation with distinct characteristics developed over Greenland during some
interglacials of the mid-Pleistocene when the Greenland ice sheet volume was significantly reduced. In particular,
rich pollen assemblages dominated by spruce are recovered in sediments of MIS 11, which suggest the
development of boreal forest vegetation on southern Greenland, then ice-free. In addition to analyses of long time
series, special attention was paid to the last interglacial (MIS 5e) at Sites 1302/1303 and 1305, during which
particular high sea-surface temperatures were recorded (up to 5° C warmer than present) in spite of the
absence of Labrador Sea water formation. In addition, sedimentation rates during during MIS 5e and 11, when
compared to those of MIS 1, as well as the corresponding isotopic composition of planktic and benthic
foraminifers, lead to even question the contribution of Denmark Strait Overflow Water (DSOW) during these
interglacials. The modern Atlantic meridional overturning, characterized by Labrador Sea Water formation, due to
winter cooling and convection in this basin, and by intense DSOW formation, seems mostly exclusive to the
present interglacial.
DE: 3344 Paleoclimatology (0473, 4900)
DE: 4900 PALEOCEANOGRAPHY (0473, 3344)
DE: 4944 Micropaleontology (0459, 3030)
DE: 4950 Paleoecology
DE: 4962 Thermohaline
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2007 Fall Meeting