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Determination of the composition and molar volume of H2O-CO2 fluid inclusions by microthermometry

机译:微量热法测定H2O-CO2流体包裹体的组成和摩尔体积

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H2O-CO2 fluid inclusions are common in nature but their accurate analysis by microthermometry has been hindered by insufficient characterisation of the fluid properties along the solvus (high temperature miscibility boundary) of the system. Thus some of the previous methods of calculating fluid inclusion composition (x) and molar volume (V) have relied on notoriously unreliable optical estimates of phase volume fractions. Although the T-V-x properties of the solvus can be modelled thermodynamically from equations of state, a review shows that none of the published equations are accurate enough to be useful in fluid inclusion microthermometry. Therefore, the available experimental data have been used to construct a new V-x diagram, contoured for phase transition temperatures and phase volume fractions. This diagram allows the bulk composition and molar volume of individual fluid inclusions to be determined accurately from two microthermometric measurements: the temperature of partial homogenisation of the carbonic phases (in the presence of excess aqueous liquid), and the temperature of total homogenisation. Copyright (C) 2000 Elsevier Science Ltd. [References: 63]
机译:H2O-CO2流体夹杂物在自然界中很常见,但是沿系统的固溶度(高温可混溶性边界)对流体性质的表征不足,阻碍了通过微热分析法对其进行精确分析。因此,计算流体夹杂物成分(x)和摩尔体积(V)的某些先前方法依赖于众所周知的对相体积分数的不可靠的光学估计。尽管固溶体的T-V-x特性可以根据状态方程进行热力学建模,但有评论表明,没有一个已发表的方程式足够准确,可以用于流体包裹体热计量学。因此,可用的实验数据已用于构建新的V-x图,其轮廓针对相变温度和相体积分数。该图允许从两个微量热测量中准确确定各个流体夹杂物的体积组成和摩尔体积:碳相的部分均质化温度(在存在过量含水液体的情况下)和总均质化温度。版权所有(C)2000 Elsevier Science Ltd. [参考:63]

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