首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Fluid-controlled crustal metasomatism within a high-pressure subducted melange (Mt.Hochwart,Eastern Italian Alps)
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Fluid-controlled crustal metasomatism within a high-pressure subducted melange (Mt.Hochwart,Eastern Italian Alps)

机译:Fluid-controlled地壳内的交代高压俯冲混色(Mt.Hochwart意大利阿尔卑斯山东部)

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摘要

The Nonsberg-Ultental Region of northern Italy contains a Palaeozoic melange that was partially subducted during the Variscan orogeny.This melange is constituted mainly by metapelites characterized by shale-type REE-patterns,displaying partial melting which began under high-pressure conditions.The resulting migmatites enclose minor slivers of mantle-wedge peridotites that have been incorporated into the melange during subduction.Peridotites display important large ion Hthophile elements (LILE) enrichment consequent to amphibole recrystallization contemporaneously with metapelite migmatization at P approx= 2.7 GPa and T approx= 850 °C in the garnet-peridotite field.Crustal and mantle (ultramafic) rocks of the melange display the same Sm-Nd ages of about 330 +-6 Ma,which dates both the metamorphic peak and the migmatization event.The zircon U-Pb age of the metasomatic amphibolitic contact between garnet peridotite and migmatite is identical (333.3+-2.4 Ma) within analytical errors.Therefore,metasomatism,migmatization and peak metamorphism are constrained to the same event.The presence of Cl-rich apatite and ferrokinoshitalite in the contact amphibolite,together with the trace-element patterns of peridotites,suggest that metasomatism was driven by CI- and LILE-rich fluids derived from ocean water transported into the subduction zone by sediments and crustal rocks.These fluids interacted with the crust,prompting partial melting under water oversaturated conditions and partitioning LILE from the crust itself.Peridotites,which were well below their wet solidus temperature,could not melt but they recrystalhzed in the crustal melange under garnet-facies conditions.Crustal fluids caused extensive hydration and LILE-enrichment in peridotites and severe Sm-Nd isotope disequilibrium between minerals,especially in the recrystallized peridotites.The proposed scenario suggests massive entrapment of crustal aqueous fluids at high-pressure conditions within subduction zones.
机译:Nonsberg-Ultental的意大利北部地区部分包含一个古生代混色在华力西造山运动期间俯冲。混色由metapelites主要构成特点是shale-typeREE-patterns,显示部分熔融在高压条件下开始。产生的混合岩附上的小裂片mantle-wedge橄榄岩的纳入的混色俯冲。离子Hthophile元素(LILE)浓缩顺向,角闪石再结晶同时与metapelite混合岩化2.7 P约= GPa和T约= 850°Cgarnet-peridotite字段。(铁)混色显示的岩石马同样Sm-Nd年龄约330 + 6,日期变质峰和混合岩化事件。角闪岩的石榴石橄榄岩之间的接触和混合岩马(333.3 + -2.4)是一样的分析错误。峰变质作用是相同的约束事件。ferrokinoshitalite的联系角闪岩和微量元素橄榄岩的模式,建议交代是由CI -和LILE-rich液体从海水输送到俯冲区域的沉积物和地壳岩石。与地壳,促使部分融化在水里和过饱和的条件分区LILE从地壳本身。湿固相温度,不能但它们融化recrystalhzed下地壳混色garnet-facies条件。广泛的水化和LILE-enrichment橄榄岩和严重Sm-Nd同位素矿物之间的不平衡,特别是在再结晶橄榄岩。显示巨大的地壳水截留液体在高压条件俯冲带。

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