HR: 1330h
AN: T52C-0298 [PDF]
TI: Sources of Low-Chloride Fluids in Sediments beneath Biological Communities on the Nankai Accretionary
Wedge off Kumano
AU: * Toki, T
EM: toki@ep.sci.hokudai.ac.jp
AF: Division of Earth and Planetary Sciences, Graduate School of Science, Hokkaido University, N10W8,
Kita-ku, Sapporo, Hokkaido, 060-0810
Japan
AU: Tsunogai, U
EM: urumu@ep.sci.hokudai.ac.jp
AF: Division of Earth and Planetary Sciences, Graduate School of Science, Hokkaido University, N10W8,
Kita-ku, Sapporo, Hokkaido, 060-0810
Japan
AU: Gamo, T
EM: gamo@ep.sci.hokudai.ac.jp
AF: Division of Earth and Planetary Sciences, Graduate School of Science, Hokkaido University, N10W8,
Kita-ku, Sapporo, Hokkaido, 060-0810
Japan
AU: Kuramoto, S
EM: s.kuramoto@jamstec.go.jp
AF: Center fro Deep Earth Exploration, Japan Marine Science and Technology Center, 2-15, Natsushima-cho,
Yokosuka, Kanagawa, 237-0061
Japan
AU: Ashi, J
EM: ashi@ori.u-tokyo.ac.jp
AF: Department of Ocean Floor GeoScience, Ocean Research Institute, the University of Tokyo, 1-15-1,
Minamidai, Nakano-ku, Tokyo, 164-8639
Japan
AB:
We report chemical and isotopic compositions of interstitial waters extracted from surface sediments inside and outside of
dense biological communities on the seafloor of the Nankai accretionary prism off Kumano. Particularly those taken within
bacterial mat at the Oomine Ridge site show the following characteristics: (1) CH$_{4}$ enrichment (more than 600 $\mu$
mol/kg), (2) chloride depletion (up to 10% depletion from bottom seawater), and (3) $\delta$ D$_{H2O}$ and
$\delta^{18}$O$_{H2O}$ depletion (more than 4$\permil$ and 0.7$\permil$ depletion, respectively), compared with bottom
seawater. The highest CH$_{4}$ value observed at the Oomine Ridge samples is compatible with that previously reported at one
of the most active seep areas within Nankai Trough, suggesting that also this site should be one of the most active seep
sites in Nankai Trough. The fluid chemistries of these samples show that the fluids of CH$_{4}$ enrichment, chloride
depletion, and low $\delta$ D$_{H2O}$ and $\delta^{18}$O$_{H2O}$ value relative to bottom seawater are ascending from deeper
zone to sediments beneath the Oomine Ridge site. Assuming simple two-component mixing of ambient seawater with fresh water of
Cl$^{-}$ = 0 mmol/kg, the estimated end-member $\delta$ D$_{H2O}$ and $\delta^{18}$O$_{H2O}$ values were -46$\pm$7$\permil$
SMOW and -6.3$\pm$0.7$\permil$ SMOW, respectively. The $\delta$ D$_{H2O}$ and $\delta^{18}$O$_{H2O}$ values coincide with
those of groundwater at nearby land area. Land-derived groundwater could be one of the possible sources for the low chloride
fluids, while we donOt have any idea for such underground lateral flow system of groundwater to the depth of ca. 2,500 m and
ca. 100 km off the Japan Islands. Alternative possible source to produce the fluid of low Cl$^{-}$, $\delta$ D$_{H2O}$ and
$\delta^{18}$O$_{H2O}$ is phase separation of seawater. Phase separation would lower Cl$^{-}$, $\delta$ D$_{H2O}$ and
$\delta^{18}$O$_{H2O}$ of vapor phase by a fractionation process during boiling, while we have no idea for a heat source to
induce phase separation at the area. Fault slips during large earthquake could possibly be result in such source of heat.
DE: 1832 Groundwater transport
DE: 4825 Geochemistry
DE: 4870 Stable isotopes
DE: 7209 Earthquake dynamics and mechanics
DE: 8150 Plate boundary--general (3040)
SC: Tectonophysics [T]
MN: 2003 Fall Meeting