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Hydrothermal processes at the Comstock Lode mining district, Virginia City, Nevada, United States of America.

机译:美国内华达州弗吉尼亚市的Comstock Lode采矿区的热液过程。

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摘要

The Comstock Lode mining district, just south of Reno, Nevada, hosted one of the most incredible concentrations of gold and silver ever discovered. Although the bonanzas that once drew Mark Twain, John Mackay, and thousands of miners to the Comstock district in the nineteenth century have long since been mined, this ground has provided geologists with intriguing questions for over a century.; Most unaltered igneous rocks have similar 18O to 16O ratios, represented by whole-rock δ18O values of +7 ± 1.5 ‰, but can be shifted to lower values by exchange with heated groundwaters circulating near magmatic or volcanic activity. This study uses this effect to investigate the Miocene hydrothermal system that formed the famous Comstock Lode ore bodies and produced low δ 18O values in the wall rocks.; More than 900 oxygen isotope ratio analyses on a network of surface and underground samples provide unparalleled resolution of δ18O variations in the Comstock district. This database is used to produce the first three dimensional visualizations of δ18O variation in a hydrothermal system. For example, a detailed 3-D visualization model of oxygen isotope data within a cubic kilometer block defines δ 18O isosurfaces that are conformable to the Big Bonanza, the most valuable ore body at Comstock. On a district-wide scale, patterns of 18O depletion in the hanging wall of the Comstock fault define a highly symmetrical pattern in three dimensions. This symmetry is consistent with strong fluid convection above the Comstock fault, manifested as longitudinal rolls of fluid flow that are superimposed on a typical unicellular hydrothermal system.; Normal faults perturb and offset the regional pattern of δ 18O contours produced by pervasive hydrothermal alteration. These faults are delineated by low 18O belts and high isotopic gradients perpendicular to strike, a result of increased permeabilities that promote the advection of fluids and heat. A series of cross-sections through the district shows that the Comstock, Occidental, and Coryell faults are each bound by an approximately 200 m wide, fault-parallel zone of low 18O rocks in the hanging wall. A mathematical model is developed to deconvolve the observed oxygen isotope data from sample profiles across normal faults, thereby quantifying the effects of enhanced fluid-rock interaction and post-hydrothermal displacement.
机译:内华达州里诺市以南的Comstock Lode采矿区拥有迄今发现的最令人难以置信的金银集中地之一。尽管曾经在19世纪吸引过马克·吐温,约翰·麦凯和数千名矿工到康斯托克地区的富矿已经开采了很长时间,但是这个理由已经为地质学家提供了一个多世纪的有趣问题。大多数未改变的火成岩的 18 O与 16 O比率相似,以整个岩石的δ 18 O值为+7±1.5‰表示,但可以通过与岩浆或火山活动附近循环的加热的地下水交换而降低到较低的值。本研究利用这一效应研究了中新世热液系统,该系统形成了著名的Comstock Lode矿体,并在围岩中产生了较低的δ 18 O值。在地面和地下样品网络上进行的900多种氧同位素比分析提供了Comstock地区δ 18 O变化的无与伦比的分辨率。该数据库用于产生水热系统中δ 18 O变化的前三个三维可视化。例如,一个立方公里块内的氧同位素数据的详细3-D可视化模型定义了δ 18 O等值面,这些等值面与Big Bonanza(Comstock最有价值的矿体)相符。在整个区域范围内,Comstock断层悬壁中的 18 O耗尽模式在三个维度上定义了高度对称的模式。这种对称性与康斯托克断层上方的强对流流体一致,表现为叠加在典型的单细胞热液系统上的纵向流体流动。正断层扰动并抵消了由普遍的热液蚀变产生的δ 18 O轮廓的区域格局。这些断层由低 18 带和垂直于走向的高同位素梯度来描绘,这是由于渗透率增加而促进了流体和热量的对流。贯穿该区域的一系列横截面表明,Comstock,西方和Coryell断层分别由悬壁中低<18> super> O岩石的大约200 m宽的断层平行带束缚。建立了一个数学模型,以对从正常断层样品剖面中观察到的氧同位素数据进行反卷积,从而量化了增强的流体-岩石相互作用和水热后驱替作用的效果。

著录项

  • 作者

    Singleton, Michael James.;

  • 作者单位

    Washington University.;

  • 授予单位 Washington University.;
  • 学科 Geochemistry.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 284 p.
  • 总页数 284
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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