首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >A new method for synthesizing fluid inclusions in fused silica capillaries containing organic and inorganic material
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A new method for synthesizing fluid inclusions in fused silica capillaries containing organic and inorganic material

机译:一种合成含有有机和无机材料的熔融石英毛细管中流体包裹体的新方法

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摘要

Considerable advances in our understanding of physicochernical properties of geological fluids and their roles in many geological processes have been achieved by the use of synthetic fluid inclusions. We have developed a new method to synthesize fluid inclusions containing organic and inorganic material in fused silica capillary tubing. We have used both round (0.3 mm OD and 0.05 or 0.1 mm ID) and square cross-section tubing (0.3 x 0.3 mm with 0.05 x 0.05 mm or 0.1 x 0.1 mm cavities). For micro thermometric measurements in a USGS-type heating-cooling stage, sample capsules must be less than 25 mm in length. The square-sectioned capsules have the advantage of providing images without optical distortion. However, the maximum internal pressure (P; about 100 MPa at 22 degrees C and temperature (T; about 500 degrees C) maintained by the square-sectioned capsules are less than those held by the round-sectioned capsules (about 300 MPa. at room T, and T up to 650 degrees C). The fused silica capsules can be applied to a wide range of problems of interest in fluid inclusion and hydrothertnal research, such as creating standards for the calibration of thermocouples in heating-cooling stages and frequency shifts in Raman spectrometers. The fused silica capsules can also be used as containers for hydrothermal reactions, especially for organic samples, including individual hydrocarbons, crude oils, and gases, such as cracking of C18H38 between 350 and 400 degrees C, isotopic exchanges between C18H38 and D2O and between C19D40 and H2O at similar temperatures. Results of these types of studies provide information on the kinetics of oil cracking and the changes of oil composition under thermal stress. When compared with synthesis of fluid inclusions formed by healing fractures in quartz or other minerals or by overgrowth of quartz at elevated P-T conditions, the new fused-silica method has the following advantages: (1) it is simple; (2) fluid inclusions without the presence of water can be formed; (3) synthesized inclusions are large and uniform, and they are able to tolerate high internal P; (4) it is suitable for the study of organic material; and (5) redox control is possible due to high permeability of the fused silica to hydrogen. Published by Elsevier Ltd.
机译:通过使用合成流体包裹体,我们对地质流体的物理化学特性及其在许多地质过程中的作用的理解有了长足的进步。我们已经开发出一种新方法来合成熔融石英毛细管中包含有机和无机材料的流体包裹体。我们既使用了圆形(外径0.3 mm,内径0.05或0.1 mm的管),也使用了方形横截面的管材(0.3 x 0.3 mm的管材,带0.05 x 0.05 mm或0.1 x 0.1 mm的管腔)。为了在USGS型加热-冷却台中进行微量测温,样品囊的长度必须小于25 mm。方形截面的胶囊具有提供图像而不会造成光学失真的优点。然而,由方形截面的胶囊保持的最大内部压力(P;在22℃下约100MPa;温度(T;约500℃))小于圆形截面的胶囊所保持的最大内压(约300MPa。室温,最高温度可达650摄氏度)。熔融石英胶囊可用于流体包裹体和水热技术研究中的广泛问题,例如为加热-冷却阶段和频率中的热电偶校准创建标准熔融石英囊还可以用作水热反应的容器,尤其是用于有机样品的容器,包括单个的碳氢化合物,原油和气体,例如在350至400摄氏度之间裂解C18H38,在C18H38之间进行同位素交换和D2O以及在相似温度下C19D40和H2O之间的研究这些类型的研究结果提供了有关在热应力下油裂化动力学和油成分变化的信息s。与由石英或其他矿物的裂缝愈合或在P-T高的条件下石英的过度生长形成的流体包裹体的合成相比,新的熔融石英方法具有以下优点:(1)简单; (2)可以形成没有水的流体夹杂物; (3)合成的夹杂物大而均匀,并且能够耐受较高的内部磷; (4)适用于有机材料的研究; (5)由于熔融二氧化硅对氢的高渗透性,因此可以控制氧化还原。由Elsevier Ltd.发布

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