HR: 1340h
AN: V43B-1372 [Abstracts]
TI: Geochemical Evidence of a Metasomatized Mantle Source Beneath the West Antarctic Rift System
AU: * Rilling, S E
EM: srilling@umich.edu
AF: University of Michigan, Department of Geological Sciences, 2354 CC Little Bldg
1100 N University Ave, Ann Arbor, MI 48109, United States
AU: Mukasa, S B
EM: mukasa@umich.edu
AF: University of Michigan, Department of Geological Sciences, 2354 CC Little Bldg
1100 N University Ave, Ann Arbor, MI 48109, United States
AU: Andronikov, A V
EM: andron@umich.edu
AF: University of Michigan, Department of Geological Sciences, 2354 CC Little Bldg
1100 N University Ave, Ann Arbor, MI 48109, United States
AB:
We analyzed alkaline samples dredged from seamounts in the western Ross Sea, Antarctica, to determine their
trace element concentrations and Pb, Sr, Nd and Hf isotopic compositions aimed at characterizing source
components and melting processes. These samples yield very narrow ranges in isotopic ratios
(206Pb/204Pb = 19.279125-19.98534, 207Pb/204Pb = 15.475681 – 15.629633,
87Sr/86Sr = 0.702885 – 0.703524, 143Nd/144Nd = 0.512883 – 0.513010
176Hf/177Hf = 0.282977 – 0.283061), suggesting a homogenous mantle source. This is consistent
with previous studies of subaerial volcanism from the West Antarctic Rift System (WARS) and the associated
diffuse alkaline magmatic province of the southwest Pacific. The large geographic extent of this homogeneous
Cenozoic volcanism supports a passive rifting model and resultant decompressional melting (e.g., Wörner,
1999), rather than the mantle plume model supported by high average elevations for the Antarctic continent and
the HIMU isotopic signature observed throughout the WARS (e.g., Behrendt, 1999). Large low-velocity seismic
anomalies have been observed at 50-200 km beneath the WARS (Finn et al., 2005) and may represent a "wet"
mantle modified by subduction along the paleo-Pacific margin of Gondwana. During this 400-Myr subduction
history, infiltration of subduction related melts from the downgoing slab must have metasomatized the mantle,
with concomitant partial melting generating pyroxenite dikes and veins in the overlying mantle wedge. The lower
solidus of these pyroxenites allows generation of higher melt volumes relative to a dry peridotite source under the
same conditions. Similarities between major element concentrations (e.g., high TiO2, Na 2O) and
trace element ratios (e.g., Nb/Th) of these new samples from the Ross Sea with experimental data for garnet-
bearing pyroxenite melts (Kogiso et al., 2003, 2004) further support a metasomatized mantle source for WARS
magmatism.
DE: 1033 Intra-plate processes (3615, 8415)
DE: 1040 Radiogenic isotope geochemistry
DE: 1065 Major and trace element geochemistry
DE: 9310 Antarctica (4207)
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting