卢比嘉矿区成矿作用的控制因素

IF 0.2 Q4 ENGINEERING, GEOLOGICAL Archives for Technical Sciences Pub Date : 2022-09-16 DOI:10.7251/afts.2022.1426.013m
Aleksej Miloševič, A. Grubić, R. Cvijić, Miodrag Čelebić, Boško Vuković
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引用次数: 0

摘要

柳碧加矿区成矿的控制因素主要有地层、岩性、岩浆、构造构造和超生等。留比加矿区铁矿的分布主要受石炭系Javorik复理石组Olistostrome段的扩张控制。只有这一段,无论是裸露在地表还是被上部复理石段覆盖,都含有原生菱铁矿-铁白云石铁矿。此外,矿化灰岩和灰岩-白云岩橄榄岩的浓度和位置对矿体的分布有显著影响。该区内碳酸盐岩鲕粒体的座次是不规则的,即混沌的。这些体的大小、形状和形态及其边界在原生和构造发生地都是极不均匀和多样的。并非所有的鲕粒体都是矿化的。它们可以完全、部分或最低程度矿化。由于这一切,矿体和矿床"没有连续性,孤立出现"。因此,勘探风险较大。这些主要的不规则性并不是上第四纪湖相沉积物中再沉积粉状褐铁矿的特征。西元纪侧向断裂对热液的分布以及今天矿田和矿节点内矿床和产状的分布具有重要意义。高生控制因素对氧化铁矿石的形成有重要影响。在高山构造作用中,旧的断层和节理系统被更新和创造。在这方面,最重要的是横向,开放,陡峭的西南-东北断裂。
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CONTROL FACTORS OF IRON MINERALIZATION IN THE METALLOGENY OF THE LJUBIJA ORE REGION
The control factors of mineralization in the Ljubija ore region are stratigraphic, lithological, magmatogenic, structural-tectonic and hypergenic. The distribution of iron ores in the Ljubija ore region is primarily controlled by the spread of the Olistostrome member of the Carboniferous Javorik flysch formation. Only that member, whether uncovered on the surface or overlain by an Upper flysch member, contains primary siderite-ankerite iron ores. In addition, the distribution of ore bodies is significantly affected by the concentration and location of mineralized limestone and limestone-dolomite olistoliths. The seating of carbonate olistolitic bodies in the member is irregular, that is, chaotic. The size, shape, and morphology of these bodies and their boundaries are extremely uneven and diverse, in both primary and tectonic occurrences. Not all olistolitic bodies are mineralized. Those that are can be completely, partially or minimally mineralized. Due to all this, ore bodies and deposits “have no continuity and appear in isolation”. Therefore, there is a high exploration risk. These major irregularities are not characteristic of redeposited powdered limonite ores in Plio-Quaternary lacustrine sediments. Cimmerian lateral ruptures were important for the distribution of hydrothermal solutions and today's distribution of ore deposits and occurrences within ore fields and ore nodes. The hypergenic control factor significantly influenced the forming of iron oxide ores. In the Alpine tectogenesis, old systems of faults and joints were renewed and new created. In this respect, the most significant were transverse, open, steep SW-NE ruptures.
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Archives for Technical Sciences
Archives for Technical Sciences ENGINEERING, GEOLOGICAL-
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