HR: 0800h
AN: V51B-1483 [Abstracts]
TI: Importance of Silica Activity to the Serpentinization Processes: Insights From Microrodingites in IODP
Hole U1309D.
AU: * Frost, B R
EM: rfrost@uwyo.edu
AF: Dept. of Geology and Geophysics, U of Wyoming, Laramie, WY 82071
United States
AU: Beard, J S
EM: jbeard@vmnh.net
AF: Va. Museum of Natural History, Va. Museum of Natural History, Martinsville, VA 24112
United States
AU: Abratis, M
EM: michael.abratis@uni-jena.de
AF: Inst. for Geosciences, U. of Jena, Jena, 07749
Germany
AU: Andreani, M
EM: andreani@ipgp.jussieu.fr
AF: Lab. De. Geosciences, Inst. Physique de Globe de Paris, Pariz, 75252
France
AU: Delacour, A
EM: adelie.delacour@erdw.ethz.ch
AF: Dept. of Earth Sciences, ETH, Zurich, 8092
Switzerland
AU: Drouin, M
EM: marion.drouin@dstu.univ-montp2.fr
AF: Lab. De. Tectonophysique, Univ. Montpellier, Montpellier, 34095
France
AU: Fryer, P
EM: pfryer@hawaii.edu
AF: School of Ocean and Earth Science and Technology, U. of Hawaii, Honolulu, HI 96822
United States
AU: McCaig, A
EM: andrew@earth.leeds.ac.uk
AF: Earth Sciences, U. of Leeds, Leeds, LS2 9JT
United Kingdom
AU: Nozaka, T
EM: nozaka@cc.okayama-u.ac.jp
AF: Dept. of Earth Sci, Okayama University, Okayama, 700-8530
Japan
AU: Ohara, Y
EM: ohara@jodc.go.jp
AF: Ocean Research Laboratory, Hydrographic and Oceanographic Department of Japan, Tokyo, 104-0045
Japan
AB:
Observation of small-scale alteration of olivine-rich troctolites from IODP hole U1309D has given us fresh insights into the
processes of sea-floor serpentinization. Fresh troctolites are locally cut by mm-scale hydration veins. Where these veins
cut olivine they contain serpentine, but where they cut plagioclase they contain prehnite ñ hydrogrossular. Chlorite always
lies between the relict olivine and relict plagioclase. The alteration of plagioclase to prehnite + hydrogrossular is common
in rodingites and is usually ascribed to Ca-metasomatism from associated serpentinite. We contend that the
"micro-rodingites" in hole U1309D could not have formed due to Ca-metasomatism because the only calcic phase in the rock is
plagioclase and in the micro-rodingites it has reacted to form phases that are even richer in CaO. Instead we postulate that
they were caused by desilication of plagioclase in response to serpentinization of adjacent olivine. Possible net reactions
are:
(1) 4 anorthite + 5 olivine + 10 H2O = 2 prehnite + 2 chlorite + silica, (2)
5 serpentine + 9 prehnite = 6 grossular + 3 chlorite + 10 silica + 7 H2O
Silica released by these reactions was used to produce serpentine by the reactions: (3) silica + 3 olivine + 4 H2O = 2
serpentine, (4) 2 silica + 3 brucite = serpentine + H2O
Without a source for silica, olivine will hydrate to brucite + serpentine. The silica activity of this assemblage is
extremely low (log a(SiO2) ~ -2.5 to -4, depending on temperature) and this has a major effect on the serpentinization
process. Many of the distinctive features of serpentinites can be attributed to low silica activity. In addition to the
formation of rodingites, this includes the extremely low oxygen fugacity of serpentinites and the associated formation
magnetite and awaruite (FeNi3).
DE: 1012 Reactions and phase equilibria (3612, 8412)
DE: 1034 Hydrothermal systems (0450, 3017, 3616, 4832, 8135, 8424)
DE: 1039 Alteration and weathering processes (3617)
DE: 3612 Reactions and phase equilibria (1012, 8412)
DE: 3660 Metamorphic petrology
SC: Volcanology, Geochemistry, Petrology [V]
MN: Fall Meeting 2005