HR: 1330h
AN: T52C-0290 [PDF]
TI: Implications of Smectite Subduction at the Costa Rican Convergent Margin
AU: * Cardace, D
EM: cardace@levee.wustl.edu
AF: Washington University in St. Louis, Department of Earth and Planetary Sciences, Campus Box 1169
One Brookings Drive, St. Louis, MO 63130 United States
AU: Morris, J D
EM: jmorris@levee.wustl.edu
AF: Washington University in St. Louis, Department of Earth and Planetary Sciences, Campus Box 1169
One Brookings Drive, St. Louis, MO 63130 United States
AU: Underwood, M B
EM: UnderwoodM@missouri.edu
AF: University of Missouri-Columbia, Department of Geological Sciences, 101 Geology Building, Columbia, MO 65211 United States
AU: Spinelli, G
EM: spinelli@ees.nmt.edu
AF: New Mexico Institute of Mining and Technology, Department of Earth and Environmental Science, 801 Leroy
Place, Socorro, NM 87801 United States
AB:
Legs 205/170 of the Ocean Drilling Program (ODP) drilled a reference section on the incoming plate and sites at the toe of
the sedimentary prism at the Costa Rican convergent margin. Complete sediment subduction has been documented, with the prism
described by Leg 205/170 shipboard scientists as a paleoslump prism. Despite sediment subduction, Costa Rican arc lava
geochemistry shows little sediment signal. Though subduction erosion has been posited as a mechanism for damping the
geochemical sediment signal, this abstract addresses whether the clay content and distribution in the subducting pile can (a)
play a role in localizing the decollement and (b) impact subduction of sediment to depth.
X-ray diffraction (XRD) analyses of bulk sediment, with biogenic silica determinations, have been carried out for samples
from the prism, through the decollement, to the underthrust sediments. Clay fractions have been isolated and silica studied
for a subset of these samples. XRD peak areas of bulk samples were transformed into relative abundances via matrix singular
value decomposition (Fisher and Underwood, 1995, Proc. ODP, Init. Repts., 156: 29-37), and adjusted following silica
determination; volcanic ash has been neglected as a sedimentary component. Average relative weight percents of dominant
minerals and biogenic silica (bSiO2) for prism toe units (Site 1040) are: P1A (silty clay, 74.8 m thick) 82 wt% clay, 5 wt%
quartz, 13 wt% plagioclase, 0 wt% calcite; P1B (silty clay, 296.4 m thick) 82.1 wt% clay, 6.0 wt% quartz, 10.4 wt%
plagioclase, 0 wt% calcite, 1.4 wt% bSiO2. Below the decollement, underthrust abundances are: U1A (clayey diatomite, 13.2
m thick) 82.7 wt% clay, 5.2 wt% quartz, 8.9 wt% plagioclase, 0 wt% calcite, 3.2 wt% bSiO2; U1B (clayey diatomite, 38.2 m
thick) 80.7 wt% clay, 4.4 wt% quartz, 6.6 wt% plagioclase, 0 wt% calcite, 8.2 wt% bSiO2; U2 (silty claystone, 57.1 m
thick) 84.8 wt% clay, 4.5 wt% quartz, 6.8 wt% plagioclase, 0 wt% calcite, 3.9 wt% bSiO2; U3A (siliceous nannofossil
chalk, 18.1 m thick) 44.1 wt% clay, 2.0 wt% quartz, 5.6 wt% plagioclase, 31.8 wt% calcite, 16.5 wt% bSiO2; U3B
(siliceous nannofossil chalk, 75.55 m thick) 1.9 wt% clay, 0 wt% quartz, 1.1 wt% plagioclase, 92.4 wt% calcite, 4.7 wt%
bSiO2; and U3C (siliceous nannofossil chalk, 80.18 m thick) 6.6 wt% clay, 6.1 wt% quartz, 4.6 wt% plagioclase, 74.1 wt%
calcite, 8.7 wt% bSiO2. XRD peak areas for clay fractions of prism samples above and in the decollement (Site
1254$\sim$Site 1040, 300-370 mbsf) were transformed into relative weight percent data with Biscaye weighting factors.
Smectites ranged from 77-93 wt%, illites ranged from 0-4 wt%, and kaolinites/chlorites ranged from 5-20 wt%. The maximum
smectite value was obtained in the lower decollement.
Bulk mineralogy data for sediments subducting at Costa Rica show that the prism and uppermost underthrust sediments are 80-93
wt% clay sized minerals. Clay mineralogy suggests that the smectite maximum occurs in the lower decollement and decreases
dramatically below. Low biogenic silica abundances persist down core, emphasizing the importance of clays to the subducting
section at Costa Rica.
DE: 3000 MARINE GEOLOGY AND GEOPHYSICS
DE: 3022 Marine sediments--processes and transport
SC: Tectonophysics [T]
MN: 2003 Fall Meeting