巨型地热系统中的活性金属沉积

IF 2.2 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Terra Nova Pub Date : 2023-04-19 DOI:10.1111/ter.12656
Chuang Zhang, A. Richard, Weilin Hao
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引用次数: 1

摘要

成矿模型对矿产勘探至关重要。然而,关于热液型矿床(如U型和W型矿脉矿床)的起源存在争议。活动地热系统中金属肥沃流体的形成、迁移、加热和成分控制为成矿流体的形成提供了见解。藏南亚东-羊八井-那曲(YYN)地热带流体的金属含量相对较高,该地区的盐湖也发现了类似的富集作用。这项研究分析了Beng和YYN断层系统沿线地热泉和井以及区域盐湖和河流的水样中的主要离子和微量金属含量以及稳定的(O,H)同位素。结果表明,金属富集的地热卤水来源于班戈盐湖。这项研究强调了盐湖水蒸发在金属富集卤水形成中的作用,以及U和W在热液条件下的对比行为。
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Active metal deposition in a giant geothermal system
Metallogenic models are vital to mineral exploration. However, there is debate concerning the origin of hydrothermal‐type ore deposits such as vein‐type U and W deposits. The formation, migration, heating and controls on the composition of metal‐fertile fluids in active geothermal systems provide insights into the formation of ore‐forming fluids. Fluid’s metal contents are relatively high in the Yadong–Yangbajing–Naqu (YYN) geothermal belt of South Tibet, and a similar association of enrichment has been found in saline lakes of the region. This study analysed major ions and trace metal contents together with stable (O, H) isotopes of water samples from geothermal springs and wells and regional saline lakes and rivers along the Beng and YYN fault systems. Results demonstrate that metal‐fertile geothermal brines, were sourced from the Bangor saline lake. This study highlights the role of evaporation of saline lake water in the formation of metal‐fertile brines and the contrasting behaviors of U and W in hydrothermal conditions.
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来源期刊
Terra Nova
Terra Nova 地学-地球科学综合
CiteScore
4.80
自引率
8.30%
发文量
59
审稿时长
2.3 months
期刊介绍: Terra Nova publishes short, innovative and provocative papers of interest to a wide readership and covering the broadest spectrum of the Solid Earth and Planetary Sciences. Terra Nova encompasses geology, geophysics and geochemistry, and extends to the fluid envelopes (atmosphere, ocean, environment) whenever coupling with the Solid Earth is involved.
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