用于量化 H2O-NaCl 体系中异质夹带和夹带后改性引起的流体夹杂物特性变化的数值模型

IF 3.6 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Chemical Geology Pub Date : 2024-05-28 DOI:10.1016/j.chemgeo.2024.122190
Wei Mao , Thomas Ulrich , Hong Zhong
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引用次数: 0

摘要

热液系统的原始地质条件可利用流体包裹体来重建,这通常要求流体包裹体捕获单一的均质相,并且在捕获后不发生质量和体积变化(Roedder 规则)。然而,在流体包裹体研究中经常会发现异质夹带和夹带后的改性,这使得从流体包裹体数据中恢复主要流体性质具有挑战性或不可能。在这项研究中,我们构建了一个专门的工具 FlincPro,用于计算 H2O-NaCl 体系中理想和非理想的流体包裹体特性(这里的理想是指符合罗德规则的流体包裹体)。该软件开发了多个模块,用于量化由异质夹带、体积收缩/膨胀和失水引起的流体包裹体特性的变化。我们发现,与液体末段相比,蒸汽末段流体的成分受异质夹带的影响更大,因为后者的盐度和密度可能要高出几个数量级。被困在海绿石液面上的含海绿石流体包裹体的均质压力和温度会随着海绿石的加入而急剧增加,但均质行为不会改变。体积收缩/膨胀是改变均化行为的有效方法,尤其是对于高盐度流体包裹体。对于含海绿石的流体包裹体来说,如果没有额外的体积收缩,失水不太可能导致均化行为从蒸汽消失的完全均化转变为海绿石溶解的完全均化。低盐度和低密度流体包裹体的总均化温度在水的临界温度附近,受诱捕后变化的影响最小。因此,对流体包裹体形成的解释取决于更多的参数,例如岩石学观察、流体包裹体组合的密度和成分变化以及地质信息,而不仅仅是微测温数据。
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A numerical model for the quantification of fluid inclusion property variations caused by heterogeneous entrapment and post-entrapment modifications in the H2O-NaCl system

The primary geological conditions for hydrothermal systems can be reconstructed using fluid inclusions, which generally requires that fluid inclusions trapped a single homogeneous phase and experienced no mass and volume changes after entrapment (Roedder's Rules). However, heterogeneous entrapment and post-entrapment modifications have been frequently identified in fluid inclusion studies, making the recovery of primary fluid properties from fluid inclusion data challenging or impossible. In this study, we constructed a specific tool, FlincPro, for the calculations of ideal and nonideal Fluid inclusion Properties in the H2O-NaCl system (ideal here refers to fluid inclusions that adhere to Roedder's Rules). Multiple modules have been developed to quantify the variations of fluid inclusion properties caused by heterogeneous entrapment, volume contraction/expansion, and water loss. The developed software illustrates possibilities in the variation of fluid inclusions in a specific assemblage with the input of a certain starting point.

We found that compositions of the vapor endmember fluid are more significantly affected by heterogeneous entrapment than the liquid endmember, as the latter may have several orders of magnitude higher salinity and density. Homogenization pressure and temperature of halite-bearing fluid inclusions trapped on the halite liquidus will increase sharply with the addition of halite, but the homogenization behavior will not be changed. Volume contraction/expansion are effective ways to change the homogenization behaviors, especially for high salinity fluid inclusions. Water loss is not likely to cause the homogenization behavior change from total homogenization by vapor disappearance to total homogenization by halite dissolution for a halite-bearing fluid inclusion without additional volume contraction. Low-salinity and low-density fluid inclusions with total homogenization temperature around the critical temperature of water are least affected by post-entrapment modifications. Therefore, the interpretation of fluid inclusions formation depends on more parameters, e.g., petrographic observations, density and composition variations in fluid inclusion assemblages, and geological information, than only microthermometric data.

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来源期刊
Chemical Geology
Chemical Geology 地学-地球化学与地球物理
CiteScore
7.20
自引率
10.30%
发文量
374
审稿时长
3.6 months
期刊介绍: Chemical Geology is an international journal that publishes original research papers on isotopic and elemental geochemistry, geochronology and cosmochemistry. The Journal focuses on chemical processes in igneous, metamorphic, and sedimentary petrology, low- and high-temperature aqueous solutions, biogeochemistry, the environment and cosmochemistry. Papers that are field, experimentally, or computationally based are appropriate if they are of broad international interest. The Journal generally does not publish papers that are primarily of regional or local interest, or which are primarily focused on remediation and applied geochemistry. The Journal also welcomes innovative papers dealing with significant analytical advances that are of wide interest in the community and extend significantly beyond the scope of what would be included in the methods section of a standard research paper.
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