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- W2104098603 abstract "Serpentinised spinel harzburgites to orthopyroxene-rich spinel dunites recovered during the Ocean Drilling Program (ODP) Leg 195 on top of the South Chamorro Seamount (southern sector of the Mariana forearc, West Pacific Ocean), along with additional spinel harzburgites from Conical and Torishima Seamounts (northern Mariana and Izu-Bonin forearc, respectively), previously collected during the ODP Leg 125, have been investigated to shed light on the nature and evolution of forearc mantle in the intra-oceanic supra-subduction environment. All the samples show a marked heterogeneity in terms of petrographic, mineralogical and geochemical features that suggests a complex, multistage evolution involving, at variable extent, partial melting, reactive porous flow melt migration and subsolidus metamorphic re-equilibration under decreasing T and open system conditions. Geochemical evidence of the interaction between peridotites and various melts/fluids is the ubiquitous enrichment in highly incompatible elements, such as Large Ion Lithophile Elements (LILE). As for the high-T evolution of these peridotites, a three-stages-model is proposed, involving: 1) a former depletion event, during which the IBM forearc peridotites experienced 20-25% polybaric fractional melting during adiabatic upwelling; 2) a second depletion event characterised by a marked impoverishment in modal orthopyroxene, related to the upraise migration of ultra-depleted melts; 3) a late interaction between a relatively small volume of residual melts and the refractory mantle sequence. Oxidation state of the mantle minerals meanly decreases from north (Torishima Seamount) to south (South Chamorro), according to significant different contributions coming from the subducted Pacific Plate. In particular, the absence of a marked oxidation in South Chamorro peridotites suggests that the percolating melts during Stage 2 had not significant slab-derived component. This observation lead us to conclude that a thermal anomaly in the western Pacific mantle rather than the injection of hydrous components must be the “engine” determining the extreme depletion of the oceanic forearc peridotites and the arc formation. In this frame, it is proposed that IBM peridotites during Stage 1 underwent decompression partial melting and contributed to arc volcanism as actual mantle source. Successively, they were emplaced at relatively shallow levels (Stage 2), constituting the top of a strongly refractory mantle column and being percolated by melts produced by plumbing sources of the arc volcanism." @default.
- W2104098603 created "2016-06-24" @default.
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- W2104098603 date "2006-01-07" @default.
- W2104098603 modified "2023-10-10" @default.
- W2104098603 title "PETROGENESIS OF MANTLE PERIDOTITES FROM THE IZU-BONIN-MARIANA (IBM) FOREARC" @default.
- W2104098603 cites W1493706511 @default.
- W2104098603 cites W1510566388 @default.
- W2104098603 cites W1535363067 @default.
- W2104098603 cites W1549487579 @default.
- W2104098603 cites W1585332419 @default.
- W2104098603 cites W1595468163 @default.
- W2104098603 cites W1623919485 @default.
- W2104098603 cites W1651835063 @default.
- W2104098603 cites W1768231140 @default.
- W2104098603 cites W1899813121 @default.
- W2104098603 cites W1900034279 @default.
- W2104098603 cites W1967784536 @default.
- W2104098603 cites W1970767963 @default.
- W2104098603 cites W1977457396 @default.
- W2104098603 cites W1978149141 @default.
- W2104098603 cites W1978340247 @default.
- W2104098603 cites W1985946482 @default.
- W2104098603 cites W1988055932 @default.
- W2104098603 cites W1991198036 @default.
- W2104098603 cites W2002267842 @default.
- W2104098603 cites W2004350261 @default.
- W2104098603 cites W2005692153 @default.
- W2104098603 cites W2006165768 @default.
- W2104098603 cites W2011838931 @default.
- W2104098603 cites W2016701904 @default.
- W2104098603 cites W2018122760 @default.
- W2104098603 cites W2018359597 @default.
- W2104098603 cites W2025390489 @default.
- W2104098603 cites W2027824331 @default.
- W2104098603 cites W2027862110 @default.
- W2104098603 cites W2028202848 @default.
- W2104098603 cites W2028240616 @default.
- W2104098603 cites W2030870291 @default.
- W2104098603 cites W2034030700 @default.
- W2104098603 cites W2035347372 @default.
- W2104098603 cites W2035743760 @default.
- W2104098603 cites W2036158615 @default.
- W2104098603 cites W2039535921 @default.
- W2104098603 cites W2039538655 @default.
- W2104098603 cites W2041529465 @default.
- W2104098603 cites W2042423268 @default.
- W2104098603 cites W2042822656 @default.
- W2104098603 cites W2043871449 @default.
- W2104098603 cites W2046141409 @default.
- W2104098603 cites W2060655431 @default.
- W2104098603 cites W2061998841 @default.
- W2104098603 cites W2063205632 @default.
- W2104098603 cites W2064229579 @default.
- W2104098603 cites W2065954735 @default.
- W2104098603 cites W2068365898 @default.
- W2104098603 cites W2070590123 @default.
- W2104098603 cites W2071123829 @default.
- W2104098603 cites W2071583796 @default.
- W2104098603 cites W2072844742 @default.
- W2104098603 cites W2085029394 @default.
- W2104098603 cites W2088252875 @default.
- W2104098603 cites W2094708105 @default.
- W2104098603 cites W2098069616 @default.
- W2104098603 cites W2100966007 @default.
- W2104098603 cites W2101749174 @default.
- W2104098603 cites W2104830403 @default.
- W2104098603 cites W2107685244 @default.
- W2104098603 cites W2111723075 @default.
- W2104098603 cites W2113754355 @default.
- W2104098603 cites W2113810005 @default.
- W2104098603 cites W2116895943 @default.
- W2104098603 cites W2117086485 @default.
- W2104098603 cites W2125045137 @default.
- W2104098603 cites W2125253044 @default.
- W2104098603 cites W2128321934 @default.
- W2104098603 cites W2135015385 @default.
- W2104098603 cites W2135995502 @default.
- W2104098603 cites W2144441523 @default.
- W2104098603 cites W2149170714 @default.
- W2104098603 cites W2149586799 @default.
- W2104098603 cites W2163031935 @default.
- W2104098603 cites W2164480870 @default.
- W2104098603 cites W2168672163 @default.
- W2104098603 cites W2170704854 @default.
- W2104098603 cites W2186789401 @default.
- W2104098603 cites W2263943679 @default.
- W2104098603 cites W2320819202 @default.
- W2104098603 cites W2505349190 @default.
- W2104098603 cites W2995560656 @default.
- W2104098603 doi "https://doi.org/10.4454/ofioliti.v31i2.340" @default.
- W2104098603 hasPublicationYear "2006" @default.
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