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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Submicron-sized fluid inclusions and distribution of hydrous components in jadeite, quartz and symplectite-forming minerals from UHP jadeite-quartzite in the Dabie Mountains, China: TEM and FTIR investigation
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Submicron-sized fluid inclusions and distribution of hydrous components in jadeite, quartz and symplectite-forming minerals from UHP jadeite-quartzite in the Dabie Mountains, China: TEM and FTIR investigation

机译:大别山超高压翡翠-石英岩中翡翠,石英和形成闪锌矿的亚微米级流体包裹体及其含水成分分布:TEM和FTIR研究

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摘要

Fluid inclusions and clusters of water molecules at nanometer-to submicron-scale in size have been investigated using transmission electron microscopy (TEM) and Fourier transform infrared spectroscopy (FTIR) in jadeite, quartz and symplectite aegirine-augite, albite, taramite and magnetite corona minerals from ultra high-pressure (UHP) jadeite-quartzite at Shuanghe, the Dabie Mountains, China. Fluid inclusions from 0.003 mu m to 0.78 mu m in size occur in jadeite and quartz crystals, and a small number of fluid inclusions from 0.001 mu m to 0.25 mu m have also been detected in symplectite-forming minerals. Most of the fluid inclusions have round or negative crystal morphology and contain aqueous fluids, but some contain CO2-rich fluids. They are usually connected to dislocations undetectable at an optical scale. The dislocations represent favorable paths for fluid leakage, accounting for non-decrepitation of most fluid inclusions when external pressure decreased at later stages, although there was partial decrepitation of some fluid inclusions unconnected to defect microstructures resulting from internal overpressure. Non-decrepitation and partial decrepitation of fluid inclusions resulted in changes of original composition and/or density. It is clear that identification of hidden re-equilibration features has significant implications for the petrological interpretation of post-peak metamorphic processes. Micro-FTIR results show that all jadeite and quartz samples contain structural water occurring as hydroxyl ions (OH-) and free water (H2O) in the form of clusters of water molecules. The H2O transformed from OH- during exhumation and could have triggered and enhanced early retrograde metamorphism of the host rocks and facilitated plastic deformation of jadeite and quartz grains by dislocation movement, and thus the H2O released during decompression might represent early-stage retrograde metamorphic fluid. The nominally anhydrous mineral (NAM) jadeite is able to transport aqueous fluids in concentrations of at least several hundred ppm water along a subduction zone to mantle depths in the form of clusters of water molecules and hydroxyl ions within crystals.
机译:使用透射电子显微镜(TEM)和傅里叶变换红外光谱(FTIR)研究了翡翠,石英和亚硒酸钠-钠长石,钠长石,钽铁矿和磁铁矿电晕中的纳米级至亚微米级大小的水分子和流体簇。中国大别山双河超高压翡翠-石英岩中的矿物。翡翠和石英晶体中出现了0.003μm至0.78μm大小的流体包裹体,并且在形成闪石的矿物中也检测到少量0.001μm至0.25μm的流体包裹体。大多数流体夹杂物具有圆形或负晶体形态,并包含水性流体,但有些包含富CO2流体。它们通常与无法在光学尺度上检测到的位错相连。位错代表了流体泄漏的有利路径,这解释了当后期外部压力降低时,大多数流体包裹体的不剥落现象,尽管有些流体包裹体的部分剥落与内部超压导致的缺陷微结构无关。流体包裹体的非剥落和部分剥落导致原始成分和/或密度的变化。显然,隐藏的重新平衡特征的识别对于峰后变质过程的岩石学解释具有重要意义。显微FTIR结果表明,所有的翡翠和石英样品均含有结构水,以氢氧根离子(OH-)和游离水(H2O)的形式出现,并以水分子簇的形式出现。 H2O在发掘过程中从OH-转变而来,可能通过位错运动触发和增强了宿主岩石的早期逆行变质作用,并促进了翡翠和石英颗粒的塑性变形,因此减压过程中释放的H2O可能代表了早期逆行变质流体。标称无水矿物(NAM)翡翠能够将浓度至少为数百ppm的水沿俯冲带输送到地幔深处,并以晶体内的水分子和羟基离子簇的形式出现。

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