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首页> 外文期刊>Mineralogical Magazine >CL for characterizing quartz and trapped fluid inclusions in mesothermal quartz veins: Muruntau Au ore deposit, Uzbekistan
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CL for characterizing quartz and trapped fluid inclusions in mesothermal quartz veins: Muruntau Au ore deposit, Uzbekistan

机译:CL用于表征中温石英脉中的石英和夹杂的流体包裹体:乌兹别克斯坦Muruntau金矿床

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Combined cathodoluminescence (CL) and transmitted light microscopy were used to characterize quartz from flat and steeply dipping quartz veins and from veinlets in banded host rocks from the giant Muruntau Au quartz vein deposit, Kyzyl Kum Desert, western Uzbekistan. The CL examinations were carried out using a 'hot-cathode' CL microscope linked to a highly sensitive digital video camera. The multi-stage deformed flat quartz veins and the steeply dipping hydrothermal formations at Muruntau are characterized by quartz with different CL colours, internal structures and degree of secondary alteration. Primary growth zoning of quartz, indiscernible in conventional polarized light was found to occur only in steeply dipping veins. The bulk of the high-grade Au mineralized 'central' quartz veins is dominated by one generation of hydrothermal quartz: intense brecciation of these veins is indicated by the occurrence of fragments of zoned quartz crystals. Primary growth zoning in quartz may be revealed not only by variations in the intensity of blue CL and: or by primary fluid inclusions arranged within the zones, but also by secondary inclusions and recrystallization phenomena developed along boundary surfaces between the zones. Using the results from CL imaging and microstructural analysis of the quartz, fluid inclusions investigated earlier were assigned to genetic types; the evidence of probably primary inclusions is of considerable importance for further studies of the geochemical conditions during vein formation. Considering geological and mineralogical data, CL studies of vein quartz may help to reveal the history of precipitation, deformation and recrystallization processes in the Muruntau Au ore field.
机译:组合的阴极发光(CL)和透射光显微镜用于表征来自平坦且陡峭的石英脉的石英以及乌兹别克斯坦Kyzyl Kum Desert巨型Muruntau Au石英脉矿床的带状宿主岩中的细矿脉。使用连接到高灵敏度数码摄像机的“热阴极” CL显微镜进行CL检查。 Muruntau的多级变形扁平石英脉和陡倾的热液地层的特征是石英具有不同的CL颜色,内部结构和二次蚀变程度。发现仅在陡倾静脉中才发生了常规偏振光中难以区分的石英初生生长区带。一大批金矿化的“中央”石英脉主要由一代热液石英所控制:这些石英脉的强烈断裂表现为带状石英晶体碎片的出现。石英中的主要生长区带不仅可以通过蓝色CL强度的变化和:或通过区域内排列的主要流体包裹体来揭示,而且还可以通过沿区域之间边界表面形成的次要包裹体和再结晶现象来揭示。利用CL成像和石英显微结构分析的结果,将先前研究的流体包裹体归为遗传类型。对于进一步研究静脉形成过程中的地球化学条件,可能存在主要夹杂物的证据非常重要。考虑到地质和矿物学数据,脉石英的CL研究可能有助于揭示Muruntau Au矿场中降水,变形和重结晶过程的历史。

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