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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Sb-Hg ore deposit distribution controlled by brittle structures: The case of the Selvena mining district (Monte Amiata, Tuscany, Italy)
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Sb-Hg ore deposit distribution controlled by brittle structures: The case of the Selvena mining district (Monte Amiata, Tuscany, Italy)

机译:受脆性结构控制的Sb-Hg矿床分布:以Selvena矿区为例(意大利托斯卡纳的Mont Amiata)

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This paper deals with the tectonic control on the hydrothermal system that gave rise to Sb-Hg ore deposits in the Monte Amiata area that was one of the most relevant mining district for the exploitation of mercury in Italy. The study area (Selvena mining district) is located in southern Tuscany (inner Northern Apennines) one of the most important mineralized area in the western Mediterranean region. Southern Tuscany was severely affected by Middle-Late Miocene low-angle normal faults, later dissected by Pliocene-Pleistocene faults, coeval magmatism (Late Miocene-Pleistocene) and hydrothermal activity (Pliocene-Present). The Selvena mining district is located south of Middle Pleistocene Monte Amiata volcanic complex. Our structural and kinematic study is based on the integration among fieldwork, borehole and mine data. The results highlight two Pleistocene-Holocene left-lateral transtensional shear zones linked by normal faults, defining a coeval pull-apart structure. Here, the Sb-Hg mineralization, transported by meteoric hydrothermal fluids mainly, is particularly diffuse and concentrated in the cataclasites and in damage zones of the normal faults. Furthermore, a widespread mineralization also occurs in the cataclasites of Miocene low-angle normal faults. Mine evidence suggests that ore-bearing fluids percolated through structural conduits located along the fault planes and resulting parallel to the intermediate stress axis. Geological structures and ore deposit distribution are related to a single hydrothermal circuit, with meteoric water channelled to depth through conduits parallel to the intermediate stress axis of the transcurrent shear zones; then, hydrothermal fluids mainly ascended through the almost vertical deformation zones located at the intersection between normal and strike-slip faults. Thus, hydrothermal fluids permeated also the Middle-Late Miocene cataclasites. This study shed light on the relationships between geological structures and mineralization in southern Tuscany and underlines the importance to investigate mine areas to understand hydrothermal fluids path.
机译:本文讨论了对热液系统的构造控制,该热液系统在意大利最重要的汞开采矿区之一的蒙特阿米亚塔地区产生了Sb-Hg矿床。研究区(Selvena矿区)位于托斯卡纳南部(北亚平宁山脉内),是地中海西部地区最重要的矿化区之一。托斯卡纳南部地区受到中晚中新世低角度正断层的严重影响,后来又被上新世-更新世断层,同代岩浆(晚中新世-更新世)和热液活动(上新世-现在)解剖。 Selvena矿区位于中更新世Monte Amiata火山群的南部。我们的结构和运动学研究是基于野外工作,井眼和矿山数据之间的集成。结果突出了由正断层链接的两个更新世-全新世左旋横向剪切带,定义了一个同时代的拉开结构。在这里,主要由陨石热液运移的Sb-Hg矿化特别分散并集中在分解岩和正常断层的破坏带中。此外,中新世低角度正断层的阴极也发生了广泛的矿化作用。矿山证据表明,含矿流体渗透通过沿断层平面分布的结构管道,并平行于中间应力轴。地质结构和矿床分布与单个热液循环有关,流水通过平行于横穿剪切带中应力轴的导管流向深处。然后,热液主要通过位于垂直断层与走滑断层相交处的几乎垂直的变形带上升。因此,热液也渗透到了中新世中晚期的凯里特。这项研究揭示了托斯卡纳南部的地质结构与矿化之间的关系,并强调了研究矿区以了解热液路径的重要性。

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