CLUSTERS OF MINERAL DEPOSITS OF THE SOUTHERN EAST SIBERIA AND PROSPECTS FOR THEIR DEVELOPMENT: AN OVERVIEW OF THE PROBLEM

IF 0.8 Q4 GEOCHEMISTRY & GEOPHYSICS Geodynamics & Tectonophysics Pub Date : 2021-10-19 DOI:10.5800/gt-2021-12-3s-0552
Zhan V. Seminsky
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Abstract

This study aims to identify the groups of closely spaced mineral deposits located in the Southern East Siberia and to describe these clusters. The mineral resource base of this region includes the deposits of lead, zinc, tungsten, tin, molybdenum, uranium, copper, gold, lithium, tantalum, niobium, silver, fluorite, zirconium, rare-earth metals, iron, mica, precious and semi-precious stones, oil, gas, and coal. Many of these deposits contain a significant part of the explored mineral reserves of Russia. The deposits are located in the tectonic structures of the Siberian platform (Tunguska syncline, Nepa arch, Cheremkhovo and Priangarie depressions), as well as in the fold belts framing the platform from the south and southeast (Baikal-Patom, Dzhida-Vitim, etc.). These structures and belts formed under the influence of plate tectonic and plume tectonic processes. This article describes the clusters of mineral deposits of the Angara, Sayan, Baikal and Transbaikalia regions. Currently, the most developed are the clusters located in the southern part of the study area (Shilka, Argun, Yeravnino, etc.). In the northern part (Mama-Bodaibo, etc.), the clusters have been either partially developed within the existing mining areas or are at the initial stage of development. In these territories, the road infrastructure, power supply and other facilities required for mining industry are either underdeveloped or lacking. Prospects for the regional development are related to the economic development of the territories adjacent to the Baikal-Amur railroad (BAM) and hydrocarbons production in the zone near the East Siberia – Far East oil pipeline. On the Siberian platform, mineral deposits formed during the stages of formation of its basement (Aldan, Anabar, and Sharyzhalgai shields) and platform cover (Tunguska syncline, and Nepa-Botuoba anticline). Within the fold frame, ore formation was associated with subduction, spreading, collision, and plume tectonic intraplate settings. To start the development of small-size deposits and mining of technogenic raw materials, it is advisable to establish exploration and production enterprises that can operate and manage expeditions and use compact ore-dressing plants.
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东西伯利亚南部的丛集矿床及其开发前景:问题概述
本研究旨在确定位于东西伯利亚南部的紧密间隔的矿床群,并描述这些集群。区内矿产资源基础包括铅、锌、钨、锡、钼、铀、铜、金、锂、钽、铌、银、萤石、锆、稀土金属、铁、云母、宝石和半宝石、石油、天然气和煤等矿床。许多这些矿床包含了俄罗斯已探明矿产储量的很大一部分。矿床分布于西伯利亚地台的构造构造(通古斯向斜、内帕拱、切列姆霍沃和普里安加里坳陷)以及南、东南构造地台的褶皱带(贝加尔湖-帕托姆、吉达达-维提姆等)。这些构造带是在板块构造和地幔柱构造作用的影响下形成的。本文描述了安加拉、萨扬、贝加尔湖和外贝加尔湖地区的矿藏群。目前,最发达的是位于研究区南部的集群(Shilka、argn、Yeravnino等)。在北部(Mama-Bodaibo等),这些集群要么在现有矿区内部分开发,要么处于初步开发阶段。在这些领土上,采矿所需的道路基础设施、电力供应和其他设施不是不发达就是缺乏。该地区的发展前景与贝加尔湖-阿穆尔河铁路(BAM)附近地区的经济发展和东西伯利亚-远东石油管道附近地区的油气生产有关。在西伯利亚地台,矿床形成于其基底(Aldan、Anabar和Sharyzhalgai盾)和台盖(通古斯向斜和Nepa-Botuoba背斜)形成阶段。在褶皱框架内,成矿与俯冲、扩张、碰撞和柱状构造板内环境有关。开展小型矿床的开发和技术原料的开采,宜建立能经营管理考察的勘查生产企业,采用紧凑的选矿厂。
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来源期刊
Geodynamics & Tectonophysics
Geodynamics & Tectonophysics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.20
自引率
14.30%
发文量
95
审稿时长
24 weeks
期刊介绍: The purpose of the journal is facilitating awareness of the international scientific community of new data on geodynamics of continental lithosphere in a wide range of geolchronological data, as well as tectonophysics as an integral part of geodynamics, in which physico-mathematical and structural-geological concepts are applied to deal with topical problems of the evolution of structures and processes taking place simultaneously in the lithosphere. Complex geological and geophysical studies of the Earth tectonosphere have been significantly enhanced in the current decade across the world. As a result, a large number of publications are developed based on thorough analyses of paleo- and modern geodynamic processes with reference to results of properly substantiated physical experiments, field data and tectonophysical calculations. Comprehensive research of that type, followed by consolidation and generalization of research results and conclusions, conforms to the start-of-the-art of the Earth’s sciences.
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