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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Phase relations in the CH4-H2O-NaCl system at 2 kbar, 300 to 600 degrees C as determined using synthetic fluid inclusions
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Phase relations in the CH4-H2O-NaCl system at 2 kbar, 300 to 600 degrees C as determined using synthetic fluid inclusions

机译:CH4-H2O-NaCl系统在2 kbar,300至600摄氏度下的相关系,使用合成流体包裹体确定

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摘要

Synthesis of fluid inclusions in the CH4-H2O-NaCl system was accomplished by subjecting fractured quartz or fluorite, along with known quantities of CH4, H2O, and NaCl, to a pressure of 2 kbar and temperatures of 300, 400, 500, or 600degreesC, in scaled Au capsules. Under the elevated P-T conditions, some of the fractures healed, trapping fluids as inclusions. Microthermometric measurements conducted on the fluid inclusions show that at 2 kbar and 400 to 600degreesC, there are very broad regions of fluid unmixing in the CH4-H2O-NaCl system. For those bulk fluid compositions that lie in the two-phase (i.e., immiscible fluids) field, the high-density phase is enriched in NaCl, whereas the low-density phase is enriched in CH4. For any given bulk composition, the degree of NaCl enrichment in the high-density phase increases, whereas the degree of CH4 enrichment in the low-density phase decreases, as temperature increases from 400 to 600degreesC. Our experimental constraints on the size of the two-phase field are generally consistent with results generated using the equation-of-state GEOFLUIDS (available at http://geotherm.ucsd.edu/geofluids/). However, when comparing the compositions of coexisting immiscible fluids, as determined experimentally vs. calculated using GEOFLUIDS, we find that some relatively small but probably significant differences exist between our experiments and this equation of state. Copyright (C) 2002 Elsevier Science Ltd. [References: 38]
机译:CH4-H2O-NaCl系统中流体包裹体的合成是通过使破裂的石英或萤石以及已知量的CH4,H2O和NaCl经受2 kbar的压力和300、400、500或600°C的温度完成的,在按比例缩放的金胶囊中。在升高的P-T条件下,一些裂缝愈合了,将流体包裹起来。对流体夹杂物进行的微热测量表明,在2 kbar和400至600℃下,CH4-H2O-NaCl系统中存在非常广泛的流体解混区域。对于处于两相(即不混溶流体)领域中的那些本体流体组合物,高密度相富含NaCl,而低密度相富含CH4。对于任何给定的本体组成,随着温度从400℃升高到600℃,高密度相中NaCl的富集度增加,而低密度相中CH4的富集度降低。我们对两相场大小的实验约束通常与使用状态方程GEOFLUIDS(可从http://geotherm.ucsd.edu/geofluids/获得)产生的结果一致。但是,当比较通过实验确定和使用GEOFLUIDS计算的共存的不混溶流体的组成时,我们发现我们的实验与该状态方程之间存在一些相对较小但可能存在显着差异。版权所有(C)2002 Elsevier Science Ltd. [引用:38]

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