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首页> 外文期刊>International Geology Review >Fluid Composition and Evolution Attending UHP Metamorphism: Study of Fluid Inclusions from Drill Cores, Southern Sulu Belt, Eastern China
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Fluid Composition and Evolution Attending UHP Metamorphism: Study of Fluid Inclusions from Drill Cores, Southern Sulu Belt, Eastern China

机译:UHP变质作用下的流体成分和演化:中国苏鲁南部地区钻探岩心流体包裹体研究

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摘要

Rocks from the first pre-pilot hole of the Chinese Continental Scientific Drilling Project (CCSD-PPH), 432 m), located in the eastern part of the Dabie-Sulu ultrahigh-pressure (UHP) metamorphic bell, have been subjected to a coesite-eclogite--facies metamorphic event, followed by an amphi-bolite-facies overprint. Primary fluid inclusions occur in garnet, omphacite, and apatite from eclogite: in kyanite and in topaz from quartzite; and in garnet, epidote, and apatite from paragneiss. Secondary fluid inclusions are present in all lithologies. Fluid inclusions are absent from ultramafic rocks. Based on fluid compositions and textural criteria we distinguished: (1) low-salinity aqueous-carbonic inclusions in lopaz from quartzite, which may have originated from a supracrustal protolith; (2) primary CaCl_2-NaCl-rich brine inclusions in garnet and in omphacile from eclogite and in kyanite from quartzite, representing UHP metamorphic fluids; (3) high-salinity aqueous-carbonic inclusions in quartz from eclogite and quartzite, representing amphibolite-facies fluids; (4) aqueous fluids of low- and intermediate salinily trapped as primary inclusions in garnet, epidote (or allanile) and apatite from gneiss, or as secondary inclusions, representing amphibolite-facies and later retrograde fluids; (5) carbonic inclusions are distributed along transgranular fractures in quartz from quartzite, and probably represent the latest retrograde fluid. The diversity in fluid inclusion populations and compositions from different vertical depths suggests a closed fluid system without large-scale fluid migration during UHP metamorphism. However, the common low- and medium-salinity inclusions in most rock types suggests that a water-dominated fluid from an external source infiltrated into the rock system during amphibolite-facies metamorphism, resulting in extensive retrogression of the UHP rocks.
机译:位于大别-苏鲁超高压(UHP)变质岩东部的中国大陆科学钻探项目(CCSD-PPH)的第一个先导孔(432 m)的岩石经历了科岩-榴辉岩-相变质事件,然后是两性-bolite-相叠印。主要流体包裹体存在于榴辉岩的石榴石,绿辉石和磷灰石中:蓝晶石和石英石中的黄玉;以及石榴石,石蒜和磷灰石中的paragneiss。在所有岩性中均存在次生流体包裹体。超镁铁质岩石中没有流体包裹体。根据流体成分和构造标准,我们区分:(1)石英岩中洛帕兹的低盐度碳酸盐岩夹杂物,可能来自表壳原岩; (2)石榴石,榴辉岩闪长岩和石英岩的蓝晶岩中富含CaCl_2-NaCl的卤水夹杂物,代表超高压变质液; (3)榴辉岩和石英岩中石英中的高盐度碳酸盐岩夹杂物,代表闪石岩相流体; (4)低盐度和中度盐度的含水流体,被捕获为片麻岩中的石榴石,附子(或尿囊石)和磷灰石的主要包裹体,或作为次生包裹体,代表闪石相和后来的逆行流体; (5)碳质夹杂物沿着石英岩中石英岩的沿晶裂缝分布,可能代表了最新的逆行流体。来自不同垂直深度的流体包裹体种群和组成的多样性表明,在超高压变质过程中,流体系统是封闭的,没有大规模的流体迁移。但是,大多数岩石类型中常见的低盐度和中盐度夹杂物表明,在角闪石相变质过程中,来自外部来源的水主导流体渗透到岩石系统中,导致UHP岩石大量倒退。

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