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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Morphological ripening of fluid inclusions and coupled zone-refining in quartz crystals revealed by cathodoluminescence imaging: Implications for CL-petrography, fluid inclusion analysis and trace-element geothermometry
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Morphological ripening of fluid inclusions and coupled zone-refining in quartz crystals revealed by cathodoluminescence imaging: Implications for CL-petrography, fluid inclusion analysis and trace-element geothermometry

机译:阴极发光成像揭示石英晶体中流体包裹体的形态成熟和耦合区带细化:对CL岩石学,流体包裹体分析和微量元素地热法的启示

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摘要

Cathodoluminescence (CL) studies have previously shown that some secondary fluid inclusions in luminescent quartz are surrounded by dark, non-luminescent patches, resulting from fracture-sealing by late, trace-element-poor quartz. This finding has led to the tacit generalization that all dark CL patches indicate influx of low temperature, late-stage fluids. In this study we have examined natural and synthetic hydrothermal quartz crystals using CL imaging supplemented by in-situ elemental analysis. The results lead us to propose that all natural, liquid-water-bearing inclusions in quartz, whether trapped on former crystal growth surfaces (i.e., of primary origin) or in healed fractures (i.e., of pseudosecondary or secondary origin), are surrounded by three-dimensional, non-luminescent patches. Cross-cutting relations show that the patches form after entrapment of the fluid inclusions and therefore they are not diagnostic of the timing of fluid entrapment. Instead, the dark patches reveal the mechanism by which fluid inclusions spontaneously approach morphological equilibrium and purify their host quartz over geological time.
机译:阴极发光(CL)研究以前表明,发光石英中的一些次生流体包裹体被暗的,不发光的斑块包围,这是由于后期的微量元素贫乏的石英对裂缝进行密封所致。这一发现导致了默认的普遍性,即所有深色的CL色块均表明低温后期流体大量涌入。在这项研究中,我们使用CL成像和原位元素分析对天然和合成热液石英晶体进行了研究。结果使我们提出,石英中所有天然的,含水的水包裹体,无论是被捕获在以前的晶体生长表面上(即,主要起源)还是在已愈合的裂缝中(即,假次级或次要起源)都被包围。三维非发光贴片。横切关系表明,补片在包裹流体夹杂物之后形成,因此它们不能诊断包裹流体的时间。相反,深色补丁揭示了流体包裹体自发地达到形态平衡并在地质时间内净化其宿主石英的机制。

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