TY - JOUR
T1 - Melting of dehydrated oceanic crust from the stagnant slab and of the hydrated mantle transition zone
T2 - Constraints from Cenozoic alkaline basalts in eastern China
AU - Sakuyama, Tetsuya
AU - Tian, Wei
AU - Kimura, Jun Ichi
AU - Fukao, Yoshio
AU - Hirahara, Yuka
AU - Takahashi, Toshiro
AU - Senda, Ryoko
AU - Chang, Qing
AU - Miyazaki, Takashi
AU - Obayashi, Masayuki
AU - Kawabata, Hiroshi
AU - Tatsumi, Yoshiyuki
N1 - Funding Information:
We thank M. Chen for the support provided during our fieldwork. We would also like to acknowledge the help of Laurie Reisberg, Sebastien Pilet, and an anonymous reviewer, for their constructive reviews. Part of this work was supported by funds from the Ministry of Education, Science, and Culture of Japan ( 21840067 and 23740398 ).
PY - 2013/11/14
Y1 - 2013/11/14
N2 - The feasibility of oceanic igneous crust melting in stagnant slabs has previously been proposed from experimental petrological research. However, geochemical evidence for such melting has not yet been found from igneous rocks. We present evidence to suggest that melts from the igneous layer in the stagnant Pacific slab contributed to the source composition of basalts erupted in eastern China. Fe-rich (> 13 wt%), Si-poor (< 43 wt%) basalts occur only above the leading edge of the stagnant Pacific slab in eastern China, ~. 2000. km west of the Pacific Plate trench. The source of these basalts has Nd-Hf and Sr-Nd-Pb isotopic compositions akin to those of the igneous layer in the Pacific slab, and their extremely low Rb and Pb contents suggest that their source material was modified by subduction processes. Together with forward modeling calculation on trace elements and isotope compositions, these geochemical characteristics imply that they received a contribution from fluid released from hydrated transition zone and dehydrated carbonate-bearing oceanic crust in the stagnant slab, without a long time-integrated ingrowth of Sr-Nd-Hf-Pb isotope systems, almost at the leading edge of the stagnant Pacific slab.
AB - The feasibility of oceanic igneous crust melting in stagnant slabs has previously been proposed from experimental petrological research. However, geochemical evidence for such melting has not yet been found from igneous rocks. We present evidence to suggest that melts from the igneous layer in the stagnant Pacific slab contributed to the source composition of basalts erupted in eastern China. Fe-rich (> 13 wt%), Si-poor (< 43 wt%) basalts occur only above the leading edge of the stagnant Pacific slab in eastern China, ~. 2000. km west of the Pacific Plate trench. The source of these basalts has Nd-Hf and Sr-Nd-Pb isotopic compositions akin to those of the igneous layer in the Pacific slab, and their extremely low Rb and Pb contents suggest that their source material was modified by subduction processes. Together with forward modeling calculation on trace elements and isotope compositions, these geochemical characteristics imply that they received a contribution from fluid released from hydrated transition zone and dehydrated carbonate-bearing oceanic crust in the stagnant slab, without a long time-integrated ingrowth of Sr-Nd-Hf-Pb isotope systems, almost at the leading edge of the stagnant Pacific slab.
UR - https://www.scopus.com/pages/publications/84886624322
UR - https://www.scopus.com/pages/publications/84886624322#tab=citedBy
U2 - 10.1016/j.chemgeo.2013.09.012
DO - 10.1016/j.chemgeo.2013.09.012
M3 - Article
AN - SCOPUS:84886624322
SN - 0009-2541
VL - 359
SP - 32
EP - 48
JO - Chemical Geology
JF - Chemical Geology
ER -