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Fluid inclusions hidden in coesite-bearing zircons in ultrahigh-pressure metamorphic rocks from southwestern Sulu terrane in eastern China

机译:苏鲁西南西南部超高压变质岩中含钴岩锆石中的流体包裹体

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摘要

Primary fluid inclusions, together with coesite mineral inclusions, are identified in the same zircon domains by laser Raman spectroscopy, cathodoluminescence (CL) image and micro-texture analysis in paragneiss and eclogite from the main drilling holeof Chinese Continental Scientific Drilling Project in southwestern Sulu terrane. Most fluid inclusions are characterized by CO_2 (gas)-H_2O (liquid) two-phase, a few by H_2O one-phase liquid inclusions. These features indicate that the eclogite and itscountry-rocks may be located in the "wet system" rather than in the "dry system" during UHP metamorphism. SHRIMP U-Pb dating indicates that the timing of trapping the fluid and coesite inclusions in metamorphic zircon domains is about 233.7 ± 4.3 Ma, which may represent the age of zircon growth in the stage of pressure decrease but temperature increase during the retrograde period of UHP metamorphism thus indicating the fluid activity still under the UHP conditions. The zircons further overgrew at about 213.2 ± 5.2 Ma in response to amphibolite-facies retrogression. Therefore, fluid activity in the Sulu UHP metamorphic rocks principally occurred during the exhumation of UHP slab in the Middle to Late Triassic. The present results not only provide insight into the fluid property and fluid-rock interaction mechanism in the Sulu-Dabie UHP terrane, but also present a new means to exactly identify the primary fluid inclusions preserved in zircons from the UHP metamorphic rocks.
机译:通过苏拉地球仪西南部中国大陆科学钻探项目主要钻孔中的雷尼石和榴辉岩的激光拉曼光谱,阴极发光(CL)图像和微纹理分析,在相同的锆石区域中识别出了原生流体包裹体和堇青石矿物包裹体。 。多数流体包裹体以CO_2(气)-H_2O(液态)两相为特征,少数流体包裹体以H_2O一相为特征。这些特征表明,在超高压变质过程中,榴辉岩及其国家岩石可能位于“湿系”而不是“干系”。 SHRIMP U-Pb测年表明,在变质锆石域中捕获流体和柯南岩包裹体的时机约为233.7±4.3 Ma,这可能代表了在UHP逆行期间压力降低但温度升高阶段锆石的生长年龄。因此,变质作用表明仍在超高压条件下流体活动。锆石还因角闪石相的倒退而在约213.2±5.2 Ma处长大。因此,苏鲁超高压变质岩中的流体活动主要发生在三叠纪中晚期超高压板的掘出过程中。目前的研究结果不仅提供了对苏鲁-大别超高压地层中流体性质和流体-岩石相互作用机制的认识,而且还提出了一种新的方法,可以准确地识别超高压变质岩中锆石中保留的主要流体包裹体。

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