HR: 0800h
AN: PP41B-0552 [Abstracts]
TI: Evolution Of The Peru And Equatorial Upwellings Throughout The Last 800 Ka. The Coccolithophore Point Of View.
AU: Alvarez, C
EM: carmen.alvarez@ucv.es
AF: Departamento de Geologia, Universidad de Salamanca, Salamanca, Sal 37008, Spain
AU: Alvarez, C
EM: carmen.alvarez@ucv.es
AF: Facultad de Ciencias Experimentales, Universidad Catolica de Valencia, Valencia, Val
46003, Spain
AU: * Flores, J
EM: flores@usal.es
AF: Departamento de Geologia, Universidad de Salamanca, Salamanca, Sal 37008, Spain
AU: Sierro, F J
EM: sierro@usal.es
AF: Departamento de Geologia, Universidad de Salamanca, Salamanca, Sal 37008, Spain
AU: Molina-Cruz, A
AF: Instituto de Ciencias del Mar y Limnologia, Universidad Nacional Autonoma de Mexico,
Mexico D.F., Mex 04510, Mexico
AB:
Here we present the paleoenvironmental study of ODP Sites 1237 and 1238 from the Southeast Pacific ocean.
These Sites are located under the Peru and Equatorial upwelling respectively and are mainly affected by the Peru
System Currents and Equatorial Countercurrent. In both Sites the coccolithophore assemblage is dominated by
"small" Gephyrocapsa, Gephyrocapsa oceanica and Florisphaera profunda because both areas were under the
influence of similar paleoenvironmental conditions. Nevertheless, the abundance of the different taxa shows
significant and specific differences between both sites. The relative abundance of the coccolith species, coccolith
accumulation rate (NAR) and productivity (N ratio) absolute values indicate that the Equatorial assemblage was
more productive than that from Peru and allowed us to identify three intervals dated by the identification of
calibrated biostratigraphic events and paleomagnetic data. Interval I (0.86-0.45 Ma) and interval III (0.22-0 Ma),
which are characterized by high abundance of Florisphaera profunda in relation to the "small" Gephyrocapsa,
were related to weak upwelling and weak Trade Winds. These environmental conditions fit with those prevailing
today during "El Nino" events. Interval II (0.45-0.22 Ma), characterized by dominant Gephyrocapsa caribbeanica
and very abundant "small" Gephyrocapsa and Gephyrocapsa oceanica, was related with well defined upwelling
and enhanced Trade Winds, the same features developed during "La Nina" events today.
UR: http://oceano.usal.es
DE: 4900 PALEOCEANOGRAPHY (0473, 3344)
DE: 4944 Micropaleontology (0459, 3030)
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2007 Fall Meeting