4.5 Article

Sources and physicochemical characteristics of fluids along a subduction-zone megathrust: A geochemical approach using syn-tectonic mineral veins in the Mugi melange, Shimanto accretionary complex

Journal

GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS
Volume 13, Issue -, Pages -

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2012GC004137

Keywords

Sr isotope; carbon and oxygen isotopes; mineral vein; rare earth elements; seismogenic zone; subduction zone

Funding

  1. Japan Society for the Promotion of Science
  2. Plate Dynamic Program of the Japan Agency for Marine-Earth Science Technology
  3. 21st Century Center of Excellence Program of the University of Tokyo
  4. MEXT
  5. Grants-in-Aid for Scientific Research [24107702, 23244099, 23300322, 21107005] Funding Source: KAKEN

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The Mugi melange in the Shimanto accretionary complex, southwest Japan, records faulting and fluid flow patterns at the updip limit of the seismogenic region of the Nankai subduction zone. To characterize the origin and behavior of syn-tectonic fluids, we investigated the carbon, oxygen, and strontium isotopic compositions, and rare earth element (REE) patterns of syn-tectonic calcite within veins along fault zones in the melange, as well as the Sr isotopic compositions and REE patterns of surrounding host rocks. With the exception of intra-basalt veins formed prior to subduction, the delta C-13 values of veins range from -10 parts per thousand to -19 parts per thousand, suggesting a mixed carbon source (i.e., marine carbonate and organic matter). The vein-forming fluids have positive oxygen isotopic compositions (+2 parts per thousand to + 9 parts per thousand (SMOW)) and high Sr-87/Sr-86 values (0.70794-0.70850), suggesting that the source was rock-buffered fluids affected both by terrigenous sediments and altered oceanic crust. The veins found in filling the fault zone associated with tectonic underplating have different REE patterns to those of the other veins, implying a difference in physicochemical processes affecting the fault zone near the subduction megathrust.

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