HR: 11:25h
AN: V32C-05 [Abstracts]
TI: Back arc basalts from Patagonia: sediment input in a distal subduction domain
AU: * Hesse, A
EM: ahesse@wesleyan.edu
AF: Earth and Environmental Sciences, Wesleyan University, Middletown, CT 06459, United
States
AU: Mandeville, C
EM: cmandy@amnh.org
AF: Dept. Earth and Planetary Sciences, American Museum Natural History, New York, NY
10024, United States
AU: Varekamp, J C
EM: jvarekamp@wesleyan.edu
AF: Earth and Environmental Sciences, Wesleyan University, Middletown, CT 06459, United
States
AB:
Cinder cones and lava flows from the Loncopue graben in N Patagonia (37 S) were sampled over a 180 km N-S
transect. These mainly basaltic and trachybasaltic lava flows carry olivine with Cr-Al-rich spinel inclusions, while
some more evolved flows carry clinopyroxene and plagioclase. Most of these rocks have between 5-8 percent
MgO, and show highly variable K and LIL trace element concentrations. The rocks have up to 180 ppm Ni and 250
ppm Cr. Relative trace element abundance diagrams show negative Ta-Nb anomalies in most rocks, although
their depths vary strongly. The REE patterns show LREE enrichment and most rocks have no Eu anomalies,
indicating the absence of significant plagioclase fractionation. The basalts have constant U/Th values (~0.25) that
are similar to those found in the nearby Copahue-Caviahue arc volcanics. Microprobe analyses of the main
phases show olivine with Mg # of 80-87 and up to 2600 ppm Ni. Simulations with the Melts-pMelts programs and
application of mineral-melt geothermometers suggest that most olivine phenocrysts crystallized at ~8-10 kbar
pressure at temperatures of 1170-1220 oC and with 1-3 percent H2O in the melt. The Sr isotope compositions of
9 samples show a range from 0.7033 – 0.7043, which are negatively correlated with Nd isotope ratios (0.51273-
0.51292). Surprisingly, the most MgO-rich basalt has the most radiogenic Sr isotope ratio. The Pb isotope ratios,
well outside the DMM range, correlate very poorly with either Sr isotope ratios or in Pb-Pb isotope graphs. The
lack of correlation between degree of evolution and Sr isotope ratios as well as the primitive nature of the rocks
and crystals suggest that crustal assimilation was not a major process impacting the composition of these small
magma volumes. Incompatible trace element patterns of several samples resemble those of detrital sediment
samples from the Pacific, which together with the isotopic data suggest that these magmas may carry a
subducted sediment component. Trace element concentrations and ratios do not correlate with radiogenic
isotope ratios, suggesting that more than one contaminant source impacted the mantle domain, e.g., fluids as
well as sediment melts. Isotope and trace element ratios vary considerably between cinder cones that are only
10-15 km apart, suggesting that the underlying mantle is highly heterogeneous, enriched in subducted
components in thin veins and patches. The Loncopue basalts seem to be transitional in composition between
the very voluminous S-Patagonia back-arc basalts and the Copahue-Caviahue arc rocks to the north.
DE: 3613 Subduction zone processes (1031, 3060, 8170, 8413)
DE: 3619 Magma genesis and partial melting (1037)
DE: 3640 Igneous petrology
DE: 8413 Subduction zone processes (1031, 3060, 3613, 8170)
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting