HR: 0800h
AN: PP21B-1382 [Abstracts]
TI: Deglaciation to Holocene Sea-ice History Over Navarin and Pervenets Canyons of the Northern Bering Sea
Using Diatoms and Alkenones
AU: * Caissie, B E
EM: bethc@geo.umass.edu
AF: University of Massachusetts Amherst, 233 Morrill Science Center
611 N. Pleasant St., Amherst, MA 01003
United States
AU: Brigham-Grette, J
EM: juliebg@geo.umass.edu
AF: University of Massachusetts Amherst, 233 Morrill Science Center
611 N. Pleasant St., Amherst, MA 01003
United States
AU: Driscoll, N W
EM: ndriscoll@ucsd.edu
AF: Scripps Institution of Oceanography, 9500 Gilman Drive, La Jolla, CA 92093
AU: Cook, M S
EM: meacook@mit.edu
AF: Woods Hole Oceanographic Inst., 360 Woods Hole Rd., Woods Hole, MA 02543
AU: Herbert, T D
EM: timothy\_herbert@brown.edu
AF: Brown University, Box 1846, Providence, RI 02912
AB:
The presence or absence of sea-ice over the Bering Sea influences the productivity of its waters as well as the regional
climate of Beringia. Not only is the extent and distribution of sea-ice an important climate system feedback because of
changes in albedo, it also has the potential to impact oceanographic and atmospheric circulation patterns by altering ocean
stratification and impeding gas exchange between the atmosphere and ocean (Smith, et al, 2003). Understanding the history of
regional climate change and atmosphere-ice-ocean systems across the western Arctic and North Pacific requires high
resolution reconstructions of sea ice extent throughout the Bering Sea. The variability in the position of the ice edge since
the last glacial maximum (LGM) has not been mapped or analyzed in detail in the Bering Sea. While it has been hypothesized
that sea ice persisted in the eastern Bering Sea for at least 9 months per year during the LGM (Sancetta, 1983), sea-ice
today covers only the Bering continental shelf areas 2 to 5 months per year (de Vernal and Hillaire-Marcel, 2000). What is
not known are conditions during deglaciation and the Holocene when sea ice margin productivity in the Bering could have
influenced the quality of nutrient rich waters flowing to the Arctic with submergence of the Bering Strait.
This study presents preliminary results from a 1441 cm-long core extracted between Navarin and Pervenets Canyons. Future
work will expand the spatial coverage to include several sites across the Bering Sea and will result in a compilation of maps
showing the changing extent and duration of sea ice since the LGM. Down-core changes (at 500 year intervals) in diatom
assemblages are documented since the LGM in order to detect the presence or absence of sea ice. Diatom species such as {\it
Fragilariopsis grunowii}, {\it F. cylindrus},and {\it Thalassiosira gravida} are used as indicators of sea ice. These data
are compared with the U$^{K}$$_{37}$ index derived from alkenones and a $\delta$$^{18}$O record from foraminifera in order to
document changes in SST, nutrient cycling and productivity since the LGM.
DE: 9315 Arctic region
DE: 3344 Paleoclimatology
DE: 4267 Paleoceanography
DE: 3030 Micropaleontology
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2004 AGU Fall Meeting