Geological structure and mineralogy of the Mechnikovskoe gold deposit, thе Southern Urals

Q4 Earth and Planetary Sciences
I. Melekestseva, V. Zaykov, G. Tret'yakov, K. Filippova, V. A. Kotlyarov
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引用次数: 0

Abstract

Subject. The article presents the results of study of Mechnikovskoe gold deposit associated with listvenites and beresites of the Miass region of the Southern Urals.Materials and methods. Materials were sampled during the field work of 2010– 2012. The chemical composition of rocks is analyzed by methods of classical chemistry (rock-forming oxides) and ICP MS (trace elements). The mineral composition is determined on an electron microscope with EDS.Results. The deposit is composed of tectonic sheets of serpentinites, carbonatized serpentinites and listvenites (sheet I), metadiabases and plagioclase metabasalts of the Irendyk Formation and beresites and volcanosedimentary rocks and metabasalts of the Karamalytash Formation (sheet II). In the central part of the deposit, the volcanic rocks are intruded by a dike of finegrained island-arc granites. Chromites of serpentinites are characterized (on average) by high Cr# (89) and low Mg# (29) values and low contents of Al2O3 (6.94 wt %) and MgO (5.5 wt %). Gold-bearing rocks include listvenites, beresites and carbonaceous shales. The major ore mineral is pyrite; accessory minerals are Au and Ag minerals, chalcopyrite, fahlores, galena, sphalerite, pyrrhotite, cubanite, vaesite, melonite, secondary copper sulfides, barite, rutile, monazite and xenotime. Gold of the deposit contains low Ag contents (3.52 wt %) and minor amount of Cu and Hg (<1 wt % in most analyses).Conclusions. The listvenites and beresites of the deposit were formed after ultramafic and mafic rocks, respectively. The discovery of gold in various rocks indicates that gold mineralization was deposited after the formation of the geological structure of the deposit. The source of gold was most likely related to a magmatic fluid.
南乌拉尔梅奇尼科夫斯科金矿床地质构造与矿物学研究
主题。本文介绍了乌拉尔南部米亚斯地区与成矿岩和成矿岩伴生的梅奇尼科夫斯科金矿床的研究结果。材料和方法。材料取样于2010 - 2012年的野外工作中。用经典化学(造岩氧化物)和ICP - MS(微量元素)分析了岩石的化学成分。在电子显微镜下用能谱仪测定了矿物组成。矿床由蛇纹岩、炭化蛇纹岩、垂长岩构造片(片I)、伊伦戴克组变质辉绿岩、斜长石变质玄武岩和卡拉玛利塔什组变质玄武岩、火山沉积岩和变质玄武岩组成。在矿床中部,火山岩被细粒岛弧花岗岩侵入。蛇纹岩铬铁矿具有高Cr#(89)、低Mg#(29)、低Al2O3 (6.94 wt %)和低MgO (5.5 wt %)的特征。含金岩包括辉石岩、玄武岩和碳质页岩。矿石矿物主要为黄铁矿;辅矿物有金、银矿物、黄铜矿、法辉石、方铅矿、闪锌矿、磁黄铁矿、立方铁矿、威氏石、麦龙石、次生硫化铜、重晶石、金红石、独居石和xenotime。金中银含量低(3.52 wt %),铜、汞含量少(多数分析<1 wt %)。矿床的燧石岩和玄武岩分别由超镁铁质和基性岩形成。各种岩石中均有金的发现,表明金矿化是在矿床地质构造形成后发生的。金的来源很可能与岩浆流体有关。
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来源期刊
Litosfera
Litosfera Earth and Planetary Sciences-Geophysics
CiteScore
0.70
自引率
0.00%
发文量
39
审稿时长
12 weeks
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