HR: 0800h
AN: OS51A-0550 [Abstracts]
TI: Coccolith Chemistry as Proxy of Coccolithophorid Productivity Response to Monsoon Cycles
AU: * Andrea, B
EM: 06ab_2@williams.edu
AF: Williams College Geoscience Dept, 947 Main St, Williamstown, MA 01267
United States
AU: Arevalos, A
EM: alicia_arevalos@yahoo.com
AF: Williams College Geoscience Dept, 947 Main St, Williamstown, MA 01267
United States
AU: Zeren, S
EM: sazeren@yahoo.com
AF: Williams College Geoscience Dept, 947 Main St, Williamstown, MA 01267
United States
AU: Ziveri, P
EM: zivp@geo.vu.nl
AF: Vrije University Amsterdam, Faculty of Earth Sciences
De Boelelaan 1085, Amsterdam, 1081HV
Netherlands
AU: Shimizu, N
EM: nshimizu@whoi.edu
AF: Woods Hole Oceanographic Inst., Dept. of Geology and Geophysics, Woods Hole, MA 02543
United States
AU: Stoll, H
EM: hstoll@williams.edu
AF: Williams College Geoscience Dept, 947 Main St, Williamstown, MA 01267
United States
AU: Stoll, H
EM: hstoll@williams.edu
AF: Dept. Geologia Univ. de Oviedo, Arias de Velasco s/n, Oviedo, Ast 33006
Spain
AB:
Coccolithophorid algae are important to the marine biologic carbon pump because their coccoliths are believed to be the
dominant ballast increasing the transfer efficiency of organic carbon into the deep sea. Efforts to reconstruct
coccolithophorid production from CaCO3 accumulation are complicated by variable dissolution, hence we use sediment traps to
explore coccolith chemistry (Sr/Ca and stable isotopes) as a proxy for coccolithophorid production. In biogenically
dominated fluxes of the Arabian Sea, coccolith Sr/Ca covaries with primary productivity, coccolithophorid calcification, and
coccolith export to shallow 1000m traps. However in Bay of Bengal traps lithogenic fluxes during the southwest monsoon
dramatically increase export of all coccoliths during the southwest monsoon, although Sr/Ca and productivity of some species
is highest in Northeast monsoon. In Quaternary coccoliths from the Bay of Bengal and Arabian Sea Sr/Ca variations closely
track precessional monsoon cycles. In the Arabian Sea, strong summer monsoons drive high productivity due to increased
upwelling intensity. In contrast in the Bay of Bengal high productivity during monsoon maxima likely reflects either shifts
in chemical weathering intensity or in groundwater nitrate release due to increased vegetation and runoff.
DE: 0428 Carbon cycling (4806)
DE: 1051 Sedimentary geochemistry
DE: 1635 Oceans (1616, 3305, 4215, 4513)
DE: 4845 Nutrients and nutrient cycling (0470, 1050)
DE: 4855 Phytoplankton
SC: Ocean Sciences [OS]
MN: Fall Meeting 2005