首页> 外文期刊>Contributions to Mineralogy and Petrology >Fluid-rock interaction and evolution of a high-pressure/low-temperature vein system in eclogite from New Caledonia: insights into intraslab fluid flow processes
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Fluid-rock interaction and evolution of a high-pressure/low-temperature vein system in eclogite from New Caledonia: insights into intraslab fluid flow processes

机译:新喀里多尼亚的榴辉岩中流体-岩石相互作用和高压/低温静脉系统的演化:对板内流体流动过程的见解

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A complex high-pressure/low-temperature vein system that cross-cuts eclogitic host rocks of the Pouebo Eclogite Melange (northern New Caledonia) records the prograde blueschist-to-eclogite transition and associated formation of garnet-quartz-phengite veins. Geothermobarometry (Grt-Cpx-Ph, Zr-in-rutile) and pseudosection calculations indicate peak metamorphic conditions of ca. 540 degrees C and 1.9-2.2 GPa. Petrological and geochemical observations as well as pseudosection modelling suggest that the main vein network is formed by dehydration processes that collected internally derived fluids related to the breakdown of hydrous phases (amphibole, chlorite, epidote) during prograde metamorphism. The lower solid volume of the newly formed phases and the associated increase in pore fluid pressure lead to the formation of veins that allowed for accumulation and channelized evacuation of these fluids. Such veins do not show meta-somatic alteration selvages because the fluid-rock system had been in chemical equilibrium. A second vein type (transport veins) records the superimposed influx of external fluids with slightly different composition that most likely are related to similar dehydration reactions in other parts of the subducting slab. Due to the source-rock-imposed compositional differences, these fluids are not in equilibrium with the infiltrated rock volume and induce the formation of distinct metasomatic selvages by dissolution-precipitation processes. Mass-balance calculations show that Ca, Na and Li are added to the selvage by the external fluid. LILE and to a lesser extend also HREE are mobilized and removed from the selvage. The LREE are predominantly buffered by newly formed minerals (e.g. epidote). Petrological evidence implies that the studied vein system formed while the sample was still part of a coherent subducting slab. Rb-Sr geochronology indicates that this occurred at 38.2 +/- 0.3 Ma. This age is ca. 6 myr younger than the hitherto presumed peak metamorphic age, suggesting a more complex and protracted metamorphic history for the PEM.
机译:一个复杂的高压/低温静脉系统,横切了Pouebo榴辉岩混杂岩(新喀里多尼亚北部)的潮铁基质岩石,记录了从蓝晶岩到榴辉岩的过渡以及石榴石-石英-辉石脉的形成。地热大气压力法(Grt-Cpx-Ph,金红石中的Zr)和伪截面计算表明ca的峰值变质条件。 540摄氏度和1.9-2.2 GPa。岩石学和地球化学观测以及伪剖面建模表明,主静脉网是由脱水过程形成的,该过程收集了与变质过程中与水相(闪石,绿泥石,附子)的分解有关的内部衍生流体。新形成的相的较低的固体体积和相应的孔隙流体压力的增加导致形成静脉,这些静脉允许这些流体的积累和通道化抽空。由于流体-岩石系统已经处于化学平衡状态,因此这些静脉没有显示出元体变化的边缘。第二种静脉类型(运输静脉)记录了成分略有不同的外部流体的叠加涌入,这很可能与俯冲板中其他部分的类似脱水反应有关。由于烃源岩施加的成分差异,这些流体与入渗岩石量不平衡,并通过溶解沉淀过程诱导形成独特的交代布质。质量平衡计算表明,Ca,Na和Li通过外部流体添加到了布边中。 LILE和较小范​​围内的HREE也被动员并从布边移出。 LREE主要被新形成的矿物质(例如,附子)缓冲。岩石学证据表明,所研究的静脉系统是在样品仍为连贯俯冲板的一部分时形成的。 Rb-Sr地球年代学表明这发生在38.2 +/- 0.3 Ma。这个年龄是比迄今推测的高峰变质年龄年轻6岁,表明PEM的变质史更加复杂和持久。

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