HR: 1340h
AN: OS33A-0581 [Abstracts]
TI: Soledad Basin, Baja California: a Twin to Cariaco Basin for Monitoring the Eastern Tropical Pacific
Today and the Past?
AU: Carriquiry, J
EM: jose_carriquiry@uabc.mx
AF: Instituto de Investigaciones Oceanologicas, Universidad Autonoma de Baja California, Ensenada, BC 22830
Mexico
AU: * van Geen, A
EM: avangeen@ldeo.columbia.edu
AF: Lamont-Doherty Earth Observatory, Columbia University, Palisades, NY 10964
United States
AU: Levi, C
EM: clevi@ldeo.columbia.edu
AF: Lamont-Doherty Earth Observatory, Columbia University, Palisades, NY 10964
United States
AU: Ortiz, J D
EM: jortiz@kent.edu
AF: Department of Geology, Kent State University, Kent, OH 44242
United States
AU: Zheng, Y
EM: yzheng@ldeo.columbia.edu
AF: Lamont-Doherty Earth Observatory, Columbia University, Palisades, NY 10964
United States
AU: Marchitto, T M
EM: tom.marchitto@colorado.edu
AF: Department of Geological Sciences, University of Colorado, Boulder, CO 80303
United States
AU: Dean, W E
EM: dean@usgs.gov
AF: Earth Surface Processes, US Geological Survey, Denver, CO 80225
United States
AB:
Soledad Basin, a semi-enclosed basin on the Pacific margin of southern Baja California at 25oN, is ideally located to
document past variations of ocean/atmosphere interactions responding to the Pacific Decadal Oscillation (PDO) and the El
Nino-Southern Oscillation (ENSO). This presentation focuses on the hydrography and geochemistry of the basin in the context
of a potential monitoring program that could reach the scale of current activities in Cariaco Basin.
Soledad Basin (sometimes referred to as Magdalena Basin or San Lazaro Basin) has been studied intermittently since the 1970's
although detailed studies to exploit its paleoceanographic potential have started only recently. A very flat bottom with a
maximum depth of 540 m was mapped with SeaBeam. A comparison of hydrographic profiles collected inside and outside the basin
indicates a sill depth of 290 m.
Bioturbation is currently inhibited within the basin primarily because of low oxygen concentration in adjacent source waters,
rather than oxygen consumption within the basin as is the case for Cariaco and Santa Barbara Basins. Radiocarbon dating of
planktonic foraminifera indicates a very high sedimentation rates of ~108 cm/kyr up through the end of the Bolling/Allerod 13
kyr ago (van Geen et al., Paleoceanography, v. 8, no. 4, 2003). A non-bioturbated section, characterized by sub-cm dark
brown to black, coarse, mm- to cm-scale laminations rather than by mm-scale fine laminations, extends almost continuously
from the top of a piston core to ~9 m depth, an interval dated at 10.0 ka. In addition, thin white mm-scale laminae composed
almost entirely of coccoliths packed in faecal pellets extend to a depth of ~11 m (11.3 ka). A selection of promising
results based on diffuse spectral reflectance records obtained at 1-cm resolution, planktonic Mg/Ca data, and the
acccumulation of authigenic Mo will be presented.
DE: 4267 Paleoceanography
SC: Ocean Sciences [OS]
MN: 2004 AGU Fall Meeting