首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >The Vorontsovskoe Au-Hg-As ore deposit (Northern Urals, Russia): Geological setting, ore mineralogy, geochemistry, geochronology and genetic model
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The Vorontsovskoe Au-Hg-As ore deposit (Northern Urals, Russia): Geological setting, ore mineralogy, geochemistry, geochronology and genetic model

机译:Vorontsovskoe Au-hg-as矿床(北乌拉尔,俄罗斯):地质环境,矿石矿物学,地球化学,地理学和遗传模型

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The large Vorontsovskoe Au-Hg-As deposit in the Urals is located in the exocontact of the Early Devonian Auerbah gabbro-diorite-granodiorite massif, which intrudes volcano-sedimentary rocks. The orebodies are confined to a tectonic contact of calcareous and tuffaceous rocks. They are composed of 6 types of disseminated ores, but the main reserves of gold are associated with the following ore types: gold-pyrite-arsenopyrite in altered tuffaceous rocks, pyrite-realgar ores in limestone breccia with a carbonate-volcanogenic cement, and gold-oxide clay from regolith with residual gold. Early ore associations have been formed at 450-300 C-omicron, whereas the late ores have been formed at lower temperature of 260-110 C-omicron. We propose a model for the genesis of the Vorontsovskoe deposit based on synchronicity of mineralization with the formation of the Auerbah volcano plutonic complex. The Ar-Ar age of hydromica from the gold-arsenopyrite association is 391.1 +/- 4.9 Ma, which coincides with the age of igneous rocks of the Auerbah complex. The main sources of water and carbon dioxide were composed of the fluid derived from the magma chamber and the metamorphic water equilibrated with carbonate sedimentary rocks. Magmatic fluid dominated during the development of skarns, jasperoids and quartz veins, whereas metamorphic water was dominant during quartz-sericite alteration of volcano sedimentary rocks and calcareous breccias. The bulk of the sulfur was supplied by a deep magma reservoir, however this source prevailed only during skarn ore formation. The mixing between deep-sourced sulfur and sedimentary or biogenic sulfur was established for other ore types. Gold and other ore components were possibly introduced during the volcanic and intrusive activity and also extracted from host sedimentary rocks. (C) 2016 Elsevier B.V. All rights reserved.
机译:乌拉尔矿床的大型Vorontsovskoe Au-Hg是苏必利郡的外国人,侵入了火山沉积岩的德文翁·奥尔巴朱博 - 迪尔蒂岩 - 细菌岩的外贸。矿体被局限于钙质和凝灰岩岩石的构造接触。它们由6种传播矿石组成,但黄金的主要储备与以下矿石类型有关:金黄岩石岩石中的黄金矿 - 砷黄铁矿,石灰石Breccia中的碳酸盐 - 活塞和金与剩余金子的氧化盐粘土。早期的矿体关联成立在450-300c-Omicron,而晚期已经在较低温度为260-110 c-omicrron。我们提出了一种基于矿化的矿化的同步性的vorontsovskoe沉积的模型,形成奥尔巴海富力复合物的形成。来自金 - 砷吡啶结合的水中的AR-AR年龄为391.1 +/- 4.9 mA,它与奥尔巴复合物的火岩的年龄一致。水和二氧化碳的主要来源由衍生自岩浆室的流体和与碳酸盐沉积岩平衡的变质水组成。在矽卡岩,Jasperoids和石英静脉的开发期间主导的岩浆液,而变质水在火山沉积岩石和钙质布切卡的石英霉素改变过程中占主导地位。大部分硫磺由深岩浆储层供应,但是该来源仅在矽卡岩矿石形成期间盛行。为其他矿石建立深源硫和沉积或生物硫之间的混合。在火山和侵入性活动期间可能引入金和其他矿石组分,并从宿主沉积岩中提取。 (c)2016年Elsevier B.v.保留所有权利。

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