Mélanges: Processes of Formation and Societal Significance

Serpentinite matrix mélange: Implications of mixed provenance for mélange formation
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Published:August 01, 2011
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CiteCitation
John W. Shervais, Sung Hi Choi, Warren D. Sharp, Jeffrey Ross, Marchell Zoglman-Schuman, Samuel B. Mukasa, 2011. "Serpentinite matrix mélange: Implications of mixed provenance for mélange formation", Mélanges: Processes of Formation and Societal Significance, John Wakabayashi, Yildirim Dilek
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Serpentinite matrix mélange represents a significant, if less common, component of many accretionary complexes. There are two principal hypotheses for the origin of serpentinite mélange: (1) formation on the seafloor in a fracture zone–transform fault setting, and (2) formation within a subduction zone with mixing of rocks derived from both the upper and lower plates. The first hypothesis requires that the sheared serpentinite matrix be derived from hydrated abyssal peridotites and that the block assemblage consist exclusively of oceanic rocks (abyssal peridotites, oceanic basalts, and pelagic sediments). The second hypothesis implies that the sheared serpentinite matrix is derived from hydrated...
- absolute age
- accretion
- amphibole group
- amphibolites
- Ar/Ar
- basalts
- basins
- blueschist
- California
- chain silicates
- chemical composition
- chrome spinel
- clastic rocks
- clinoamphibole
- Coast Range Ophiolite
- dates
- equilibrium
- faults
- fore-arc basins
- fracture zones
- Franciscan Complex
- harzburgite
- hornblende
- igneous rocks
- Jurassic
- marine sediments
- melange
- Mesozoic
- metaigneous rocks
- metamorphic rocks
- metasomatic rocks
- ocean floors
- oxides
- pelagic sedimentation
- peridotites
- plate tectonics
- plates
- plutonic rocks
- provenance
- pyroxene group
- sandstone
- schists
- sedimentary rocks
- sedimentation
- sediments
- serpentinite
- shear zones
- silicates
- strike-slip faults
- subduction zones
- tectonics
- transform faults
- ultramafics
- United States
- volcanic rocks
- Tehama-Colusa Melange