HR: 0800h
AN: V51B-0565 [Abstracts]
TI: The Origin of EM1 Signatures in Basalts From Tristan da Cunha and Gough
AU: * Stracke, A
EM: stracke@mpch-mainz.mpg.de
AF: Max-Planck-Institut fuer Chemie, Postfach 3060, Mainz, 55020
Germany
AU: Willbold, M
AF: Max-Planck-Institut fuer Chemie, Postfach 3060, Mainz, 55020
Germany
AU: Hemond, C
AF: UBO-CNRS UMR 6538 Domaines oceaniques IUEM, Place Nicolas Copernic, Plouzane, 29280
France
AB:
A long-standing hypothesis is that enriched mantle 1 (EM-1)-type ocean island basalt (OIB) sources contain pelagic sediments.
Pelagic sediments range in composition from clays to calcareous or siliceous oozes and encompass a wide range of chemical
compositions [1]. For geochemical purposes the use of the term pelagic sediments is often restricted to a special group of
pelagic sediments with distinctive enrichment of Rare Earth Elements (REE). The geochemical composition of such REE-enriched
pelagic sediments, however, is by no means representative of the geochemical composition of pelagic sediments in general.
The extremely high REE/non-REE element ratios in REE-enriched pelagic sediments (e.g. high Lu/Hf, Sm/Hf, La/Nb, La/Th, Eu/Ti,
and Gd/Ti ratios) translate into high $^{176}$Hf/$^{177}$Hf ratios for given $^{143}$Nd/$^{144}$Nd ratios with time. OIB
sources containing this special variety of REE-enriched pelagic sediment should therefore plot above the oceanic basalt array
and mixing arrays with these sources are expected to have a shallow slope in a Hf-Nd isotope diagram.
Here we present new Hf-Nd isotope and trace element data for EM-1-type OIB from Tristan da Cunha and Gough in the South
Atlantic Ocean. The samples from Tristan have a small range in Hf-Nd isotopic composition and plot within the oceanic basalt
array in a Hf-Nd isotope diagram. Samples from Gough form a trend with a slope slightly steeper than that of the ocean
basalt array in a Hf-Nd isotope diagram. OIB in general have a very restricted range in Gd/Ti and Sm/Hf ratios, and high
La/Nb are associated with low Lu/Hf ratios. In detail, samples from Tristan and Gough have the lowest Lu/Hf and highest
La/Nb ratios. Thus from the combined Hf-Nd isotope and trace element composition of basalts from Tristan and Gough
involvement of this special variety of (REE-enriched) pelagic sediments can be excluded. Similar observations are made, and
thus similar arguments hold, for other EM-1-type localities (Walvis ridge [2] and Pitcairn island [3]).
Due to the considerable spread in geochemical composition of pelagic or any other group of sediments (e.g. marine sediments
with a higher proportion of terrigenous components), it is difficult to attribute characteristic elemental or isotopic
signatures to certain groups of sediment. Moreover, subducting sediments are complex mixtures of different types of sediment
[1]. Thus it is difficult to find unique evidence either in favor of or against the involvement of sediments in general at
Tristan and Gough, or any other individual OIB locality. Also, it appears highly unlikely that sub-arc processing has an
equalizing effect on the composition of different subducting sediments [4]. Associating the similar isotopic characteristics
of certain OIB groups and/or mantle-end-members (e.g. EM-1) to recycled sediments is therefore also problematic.
[1] Plank, T. and C. H. Langmuir, Chem. Geol., 145, 325-394, 1998.
[2] Salters, V. J. M. and X. Li, Geochim. Cosmochim. Acta, 68, A554, 2004.
[3] Eisele, J., M. Sharma, J. G. Galer, J. Blichert-Toft, C. W. Devey and A. W. Hofmann, Earth Plan. Sci. Lett., 196,
197-212, 2002.
[4] Johnson, M. C. and T. Plank, Geochem., Geophys., Geosys., 1, pp. 29, 1999.
DE: 1025 Composition of the mantle
DE: 1040 Isotopic composition/chemistry
DE: 1065 Trace elements (3670)
DE: 1010 Chemical evolution
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2004 AGU Fall Meeting