HR: 0800h
AN: U21A-0010 [Abstracts]
TI: Tungsten abundance and isotopic compositions of Ocean Island Basalts, an Oceanic Plateau, MORB samples: in search for a core-mantle interaction
AU: * TAKAMASA, A
EM: takamasa@eri.u-tokyo.ac.jp
AF: Earthquake Research Institute, The University of Tokyo, Yayoi 1-1-1,Bunkyo-ku, Tokyo, 113-
0032, Japan
AU: NAKAI, S
EM: snakai@eri.u-tokyo.ac.jp
AF: Earthquake Research Institute, The University of Tokyo, Yayoi 1-1-1,Bunkyo-ku, Tokyo, 113-
0032, Japan
AU: SAHOO, Y
EM: yuvin@eri.u-tokyo.ac.j
AF: Earthquake Research Institute, The University of Tokyo, Yayoi 1-1-1,Bunkyo-ku, Tokyo, 113-
0032, Japan
AU: HANYU, T
EM: hanyut@jamstec.go.jp
AF: Institute for Research on Earth Evolution, Japan Agency for Marine-Earth Science and
Technology, 2-15 Natsushima, Yokosuka, Kanagawa, 237-0061, Japan
AU: TEJADA, M
EM: mtejada@jamstec.go.jp
AF: Institute for Research on Earth Evolution, Japan Agency for Marine-Earth Science and
Technology, 2-15 Natsushima, Yokosuka, Kanagawa, 237-0061, Japan
AU: KUMAGAI, H
EM: kumagai@jamstec.go.jp
AF: Institute for Research on Earth Evolution, Japan Agency for Marine-Earth Science and
Technology, 2-15 Natsushima, Yokosuka, Kanagawa, 237-0061, Japan
AU: TATSUMI, Y
EM: tatsumi@jamstec.go.jp
AF: Institute for Research on Earth Evolution, Japan Agency for Marine-Earth Science and
Technology, 2-15 Natsushima, Yokosuka, Kanagawa, 237-0061, Japan
AU: UMINO, S
EM: sesumin@ipc.shizuoka.ac.jp
AF: Institute of Geosciences, Shizuoka University, Ohya 836, Shizuoka, 422-8529, Japan
AU: SANO, T
EM: sano@kahaku.go.jp
AF: The National Science Museum, 3-23-1, Hyakunin-cho, Shinjuku-ku, Tokyo, 169-0073,
Japan
AB:
Core-mantle interaction has been investigated using several geochemical tracers, which can put strong
constraints on mantle convection of the Earth. To elucidate such interactions, siderophile elements that are highly
concentrated in the metallic core rather than in the silicate mantle are the most favorable candidates to provide
geochemical evidence. Platinum-group element (PGE) abundance and Os isotopes of oceanic basalts can work
to deconvolve the contribution of core material.
Hf-W system is another tracer to elucidate core-mantle interaction. Tungsten is a moderately siderophile,
incompatible, and refractory element that partitions preferentially into the Earth's core during core formation.
Collerson et al.(2002) reported a negative anomaly of the W isotope ratio in kimberlite of South Africa, and
suggested the possibility of a core-mantle interaction. However, Scherstén et al.(2004) retested the samples of
kimberlite of South Africa and Hawaiian picrites, observing no anomalies in W isotope ratio. Whether the
inconsistent results were caused by different sample treatments or analytical difficulties in W purification remains
unclear.
In this study, we will report W abundances with isotopic compositions of OIBs, Ontong Java LIP and MORB. The
W abundances in the OIBs analyzed in this study show a large variation: OIBs(South Polynesia Island, Kilauea,
Loihi)=200-900ppb, OJPs=20-500ppb, MORB(Indian and EPR)=20-90ppb. Tungsten isotopic compositions were
measured using multi-collector ICP mass-spectrometry. We examined the reproducibility of W isotopic analyses
from 3–4 repeated measurements of four samples of OIBs and estimate the external reproducibility of isotope
analyses as 0.1-0.27 epsilon unit.
The analyzed OIBs have high tungsten abundance, but their tungsten isotopic composition shows no negative
anomalies as indicates core-mantle interaction. The samples with high W abundance from OJPs do not have
negative tungsten anomalies, either.
These results suggest four possibilities about mantle convection and core-mantle interaction. 1) These sources
of OIBs or LIPs analyzed, do not originate from CMB. 2) Negative W isotope ratio anomaly of the core has been
later diluted with the entrainment of mantle material with normal W isotope composition. 3) W does not diffuse
from outer core into mantle as has been pointed out by Humayun et al. (2004).
DE: 1025 Composition of the mantle
DE: 1040 Radiogenic isotope geochemistry
SC: Union [U]
MN: 2007 Fall Meeting