HR: 0800h
AN: PP51E-1359 [Abstracts]
TI: A Glimpse at Late Mesozoic to Early Tertiary Offshore Stratigraphy from Wilkes Land, East Antarctica:
Results of Strategic Dredging of the Mertz-Ninnis Trough
AU: * Schrum, H
EM: hschrum@hamilton.edu
AF: Hamilton College, 198 College Hill Rd, Clinton, NY 13323
United States
AU: Domack, E
AF: Hamilton College, 198 College Hill Rd, Clinton, NY 13323
United States
AU: DeSantis, L
AF: Istituto Nazionale di Oceanografia e di Geofisica Sperimentale, OGS Borg Grotta Gigante
42/c I-34010, Sgonico, I-34010
Italy
AU: Leventer, A
AF: Colgate University, 13 Oak Drive, Hamilton, NY 13346
United States
AU: McMullen, K
AF: Hamilton College, 198 College Hill Rd, Clinton, NY 13323
United States
AU: Escutia, C
AF: Instituto Andaluz de Ciencias de la Tierra, CSIC-Univ. Granada, Fuentenueva s/n, Granada, 18002
Spain
AB:
As early as 1912 Sir Douglas Mawson demonstrated that pre-glacial sedimentary successions could be recovered by seafloor
dredging of erosional troughs found offshore, East Antarctica. Since then, little systematic dredging has been undertaken in
Antarctica despite indications of outcropping strata exposed along seaward flanks of glacially excavated troughs and the dire
need to resolve the nature of preglacial and synglacial strata in this region. During cruise {\it NB Palmer 01-01}, three
dredges were collected in echelon along the seaward flank of the Mertz-Ninnis Trough, parallel to the Mertz Ice Tongue, in
water depths of 900 to 450 m. We combine biostratigraphic (palynologic) and lithologic analyses on sedimentary clasts with
multi- and single-channel seismic reflection data collected by the WEGA cruise in 2000. 1359 pebble to cobble sized clasts
were collected from three dredges. Of these 15% to 43%, within each dredge, were of sedimentary character, including
carbonaceous sandstones with plant macrofossils, black sulfide-rich mudstones, siltstones, lignites, red quartz arenites,
arkoses, and diamictites in various states of lithification. Palynomorphs were separated from these sedimentary rocks. We
examined eleven individual lithologies, nine of which yielded useful palynological detritus. Of these samples, five yielded
palynomorphs distinctive to the Paleogene (i.e. {\it Nothofagus flemingii, Tricolporites spp., Proteacidites spp.}); two
samples contained only Lower Cretaceous palynomorphs, while three samples provided no stratigraphically useful palynomorph
kerogen. We combine these results with multi-channel seismic and multibeam swath mapping to demonstrate that dredged
materials represent seafloor outcrop or shallow subcrop of strata beneath a thin glacial till. Our stratigraphic model for
these samples is consistent with 62 km of multichannel seismic reflection data (WEGA line W02) showing seaward dipping strata
onlapping the basement to the southwest and partly infilling a rifted basin of late Cretaceous age. Seaward dipping
reflectors above the syn-rift strata represent post-rift deposits ranging from Paleogene to Quaternary. Included within this
stratigraphy are lithified diamictites containing Mesozoic palynomorphs in addition to palynomorphs of Early Tertiary age
(including dinoflagellates). Seaward dipping reflectors in the deep axis of the Mertz-Ninnis Trough were not sampled directly
by our dredges, but are believed to be Lower Cretaceous siltstones by extrapolation to core DF-79-38, 100 km along strike to
the southeast (Domack et al., 1980). Furthermore, the thermal maturity of the lignite samples recovered in our collections
suggests that the coal is of Early Tertiary age, as are numerous organic-rich mudstones, which contain Paleogene
palynomorphs. These results indicate that sedimentary strata in this portion of the Wilkes Land Margin contain significantly
thick (greater than 2.7 km) post-rift (drift phase) marine sequences of both pre- and synglacial character. Strategic
dredging is a promising methodology by which to sample stratigraphic succession in a cost effective manner along the East
Antarctic margin in the absence of, or preparation for, International Ocean Drilling Projects on the shelf.
Domack, E. W., Fairchild, W. W., and Anderson, J. B. (1980) Lower Cretaceous sediment from the East Antarctic continental
shelf, {\it Nature, 287}, 625-626.
DE: 4207 Arctic and Antarctic oceanography
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2004 AGU Fall Meeting