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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >3D imaging of vapour and liquid inclusions from the Mole Granite,Australia,using helical fluorescence tomography
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3D imaging of vapour and liquid inclusions from the Mole Granite,Australia,using helical fluorescence tomography

机译:使用螺旋荧光层析成像技术对澳大利亚Mo鼠花岗岩中的蒸气和液体夹杂物进行3D成像

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摘要

World class Cu resources are concentrated in porphyry and epithermal ore deposits.Their formation remains partially understood,however,due to a lack of constraints on the partitioning properties of trace elements in general,and Cu in particular,between vapour and liquid phases evolved from boiling fluids at depth in the Earth's crust.Immiscible liquid and vapour fluid inclusions coexisting in a single quartz grain have been imaged in three dimensions by X-ray Fluorescence Computed Tomography (XFCT).Elemental spatial distributions confirm that Cu,and to a lesser extent As,partition into the vapour phase,whereas Mn,Fe,Zn,Br,Rb,Sr and Pb concentrate in the liquid inclusion.High resolution mapping of the vapour inclusions revealed that Cu is heterogenSously distributed at the scale of a single inclusion and is mostly concentrated as tiny daughter crystals.
机译:世界一流的铜资源集中在斑岩和超热矿石矿床中。然而,由于缺乏对一般微量元素(尤其是铜)在沸腾形成的汽液相之间的分配特性的限制,它们的形成仍被部分了解通过X射线荧光计算机断层扫描(XFCT)在三维中对单个石英颗粒中共存的不易混溶的液体和蒸气流体包裹体进行了三维成像,元素空间分布证实了Cu和较小程度的As进入气相,其中Mn,Fe,Zn,Br,Rb,Sr和Pb集中在液相夹杂物中。气相夹杂物的高分辨率图谱表明,Cu以单一夹杂物的形式分布不均一,且大部分分布浓缩成微小的子晶体。

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