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Fluid Inclusion and Stable Isotope Investigation of Hydrothermal Talc and Chlorite Deposits in Southwest Montana

机译:蒙大拿州西南部热液滑石和亚氯酸盐矿床的流体包裹体和稳定同位素研究

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摘要

Talc and chlorite deposits of southwest Montana formed as hydrothermal replacements of Archean and/or early Proterozoic dolomitic marble and quartzo-feldspathic gneiss. Although the hydrothermal replacement model is generally accepted, less is known about the temperature, composition, and origin of the fluids involved in talc and chlorite formation. The present study examines fluid inclusions in quartz associated with both talc and chlorite, stable hydrogen and oxygen isotopes of talc, chlorite, and quartz, and stable carbon and oxygen isotopes of carbonate minerals. The deposits being examined include the Yellowstone, Beaverhead and Willow Creek talc mines, and the Antler chlorite mine.;Fluid inclusion studies of quartz from Yellowstone show moderately high salinity of 14.3 +/-6.1 wt% NaCl eq. and a low homogenization temperature range of 110 +/-13.4 °C. All the inclusions are simple two-phase, liquid-rich fluids; the lack of CO2-clathrate or CO2(l) phases indicates a low CO2 partial pressure, which would favor talc formation at the expense of dolomite. Fluid inclusions from Antler have slightly higher homogenization temperatures of 151 +/-14.4°C but lower salinities of 11.3+/-1.5 wt% NaCl eq. These temperatures are not pressure corrected. Na/K thermometry from bulk quartz leachates give temperatures of 216 +/-43°C and 282 +/-70°C for the Yellowstone and Antler mines. Anion (Cl-Br) ratios of leachate solutions from Yellowstone and Antler have similar compositions, and plot along the seawater evaporation trend pointing to evaporated seawater as a possible fluid source. Carbonate isotopes from the Yellowstone mine show minor variation in delta13C ‰ (-2.5 to +0.9) and a wider range in delta18O ‰ (+9.2 to +27.1, VSMOW) which is consistent with other studies of dolomite associated with talc in the Ruby Range. The ranges of O-isotope compositions of talc and quartz from the Yellowstone mine are +2.7 to +3.8 ‰ and +11.1 to +15.9 ‰, respectively. The ?D values for talc range from -53.2 to -45.0. The Antler chlorite mine has a similar range of O-isotopes for chlorite and quartz of +4.0 to +7.7 ‰ and 10.7 to 10.9 ‰ respectively and ?D values in chlorite are -50.7 to -50.1 ‰. These depleted ?D values are difficult to explain without the involvement of meteoric water during the formation of hydrothermal talc and chlorite. A model is presented in which evaporated seawater, possibly sourced from the mid-Proterozoic Belt Basin, mixed with deeply circulated meteoric water to form the Montana talc and chlorite deposits.
机译:蒙大拿州西南部的滑石和绿泥石矿床形成为太古宙和/或早元古代白云岩大理石和石英长石质片麻岩的热液替代物。尽管人们普遍接受水热替代模型,但对滑石和亚氯酸盐形成过程中流体的温度,组成和来源知之甚少。本研究研究了与滑石和亚氯酸盐有关的石英中的流体包裹体,滑石,亚氯酸盐和石英的稳定氢和氧同位素以及碳酸盐矿物的稳定碳和氧同位素。被检查的矿床包括黄石,Beaverhead和Willow Creek滑石矿以及Antler绿泥石矿。来自黄石的石英流体包裹体研究显示,NaCl当量的盐度为14.3 +/- 6.1 wt%。均质温度低至110 +/- 13.4°C。所有的夹杂物都是简单的两相富液流体。缺乏二氧化碳包合物或二氧化碳(l)相表明二氧化碳分压低,这将有利于滑石的形成,但会损害白云石。来自Antler的流体包裹体的均质温度为151 +/- 14.4°C略高,但盐度为11.3 +/- 1.5 wt%NaCl eq。这些温度未经压力校正。大量石英浸出液的Na / K温度法测得的黄石矿和鹿角矿的温度分别为216 +/- 43°C和282 +/- 70°C。来自黄石和鹿角的沥滤液的阴离子(Cl-Br)比率具有相似的组成,并且沿着海水蒸发趋势绘制,指出蒸发的海水可能是流体源。来自黄石矿的碳酸盐同位素在delta13C‰(-2.5至+0.9)中显示较小的变化,而在delta18O‰(+9.2至+27.1,VSMOW)中显示较大的变化范围,这与在Ruby范围内与滑石有关的白云岩的其他研究一致。来自黄石矿的滑石和石英的O同位素组成范围分别为+2.7至+3.8‰和+11.1至+15.9‰。滑石的ΔD值在-53.2至-45.0之间。鹿茸绿泥石矿的亚氯酸盐和石英的O同位素范围相似,分别为+4.0至+7.7‰和10.7至10.9‰,绿泥石中的ΔD值为-50.7至-50.1‰。在热液滑石和亚氯酸盐的形成过程中,如果没有大气水的参与,这些损耗的ΔD值很难解释。提出了一个模型,其中可能来自中元古代带盆地的蒸发海水与深循环的陨石水混合形成蒙大拿州滑石和绿泥石矿床。

著录项

  • 作者

    Hill, Garrett.;

  • 作者单位

    Montana Tech of The University of Montana.;

  • 授予单位 Montana Tech of The University of Montana.;
  • 学科 Geochemistry.;Petrology.
  • 学位 M.S.
  • 年度 2018
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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