Improvements in the Quantification of End-Member Vapor Compositions in Fluid Inclusion Boiling Assemblages and Implications for Metal Transport by Low-Density Fluids

IF 5.5 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Economic Geology Pub Date : 2024-05-01 DOI:10.5382/econgeo.5059
Wei Mao, Ziqi Jiang, Thomas Ulrich, Hong Zhong, Linbo Shang
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Abstract

Under conditions typically found in the Earth’s crust, there is a large pressure-temperature-composition range in the H2O-NaCl system where fluids may separate into a low-salinity vapor end member and a high-salinity liquid end member. However, heterogeneous trapping is common during the formation of fluid inclusions in an immiscible fluid system, violating the fundamental assumption of homogeneous entrapment for fluid inclusion microthermometry. This has profound consequences on the composition of these fluid phases and consequently on the formation of ore deposits from hydrothermal systems. At the same time, minor mixture of the high-salinity liquid phase with the low-salinity vapor phase cannot be distinguished from the end-member vapor-rich fluid inclusions by their bubble sizes. Precise determination of the salinities of vapor-rich fluid inclusions using microthermometry is deterred by the very small proportion of the liquid phase and the limitation of the analytical precision. All this will lead to erroneous compositional data from fluid inclusion analysis. We have quantitively calculated the variations of fluid inclusion properties caused by heterogeneous entrapment during phase separation in the H2O-NaCl system and showed that the salinity, and thereby the element contents and element/Na ratios of the vapor-rich fluid inclusions, is significantly changed in heterogeneously trapped fluid inclusions. The addition of 1 vol % of the high-salinity end member to the low-salinity end member results in a salinity change from 0.99 to 4.4 wt % NaCl equiv at the phase separation condition of 800 bar and 750°C. This will have a significant impact when it comes to determining the concentration of elements transported as chlorine complexes and typically leads to an overestimation of the mass transport capability by the vapor phase. Therefore, every effort should be taken during microthermometry to find and measure the least affected vapor-rich fluid inclusions. Our numerical calculations and synthetic fluid inclusions reveal that there is a linear relationship between the salinity and element contents for fluid inclusions at different extents of heterogeneous entrapment. Therefore, linear correction to the measured lowest vapor salinity can obtain a good approximation of the element contents in the end-member vapor phase.
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流体包裹体沸腾集合体中末端分子蒸汽成分定量的改进及其对低密度流体金属迁移的影响
在地壳中通常存在的条件下,H2O-NaCl 系统中存在很大的压力-温度-成分范围,流体可能会在此范围内分离为低盐度的蒸汽末端成分和高盐度的液体末端成分。然而,在不相溶的流体体系中形成流体包裹体的过程中,异质捕集是很常见的,这违反了流体包裹体微测温的均匀捕集基本假设。这对这些流体相的组成以及热液系统矿床的形成有着深远的影响。同时,高盐度液相与低盐度汽相的微小混合物无法通过气泡大小与最终富含汽相的流体包裹体区分开来。由于液相所占比例极小,且分析精度有限,因此无法使用微温测量法精确测定富含蒸汽的流体包裹体的盐度。所有这些都会导致流体包裹体分析得出错误的成分数据。我们定量计算了 H2O-NaCl 体系相分离过程中异质夹杂导致的流体包裹体性质变化,结果表明,在异质夹杂的流体包裹体中,盐度以及富含蒸气的流体包裹体中的元素含量和元素/Na 比值发生了显著变化。在 800 巴和 750 摄氏度的相分离条件下,向低盐度末端构件中添加 1 体积%的高盐度末端构件会导致盐度从 0.99 到 4.4 重量%的 NaCl 当量。这将对确定以氯络合物形式运输的元素浓度产生重大影响,通常会导致高估气相的质量运输能力。因此,在微测温过程中,应尽力寻找并测量受影响最小的富含蒸汽的流体包裹体。我们的数值计算和合成流体包裹体显示,在不同的异质夹杂程度下,流体包裹体的盐度和元素含量之间存在线性关系。因此,对测量到的最低蒸汽盐度进行线性修正,可以很好地近似得到末段蒸汽相中的元素含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Economic Geology
Economic Geology 地学-地球化学与地球物理
CiteScore
10.00
自引率
6.90%
发文量
120
审稿时长
6 months
期刊介绍: The journal, now published semi-quarterly, was first published in 1905 by the Economic Geology Publishing Company (PUBCO), a not-for-profit company established for the purpose of publishing a periodical devoted to economic geology. On the founding of SEG in 1920, a cooperative arrangement between PUBCO and SEG made the journal the official organ of the Society, and PUBCO agreed to carry the Society''s name on the front cover under the heading "Bulletin of the Society of Economic Geologists". PUBCO and SEG continued to operate as cooperating but separate entities until 2001, when the Board of Directors of PUBCO and the Council of SEG, by unanimous consent, approved a formal agreement of merger. The former activities of the PUBCO Board of Directors are now carried out by a Publications Board, a new self-governing unit within SEG.
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