马古扎尔山脉宇宙构造模型及其对莱雅岗矿化带含矿资料的处理

A. Abdullayev, O. Zokirov, G. Anna, E. Kutie, S. Akhmedov
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引用次数: 1

摘要

通过对马尔古扎山脉境内的地质找矿、地质测量、地球化学等资料的分析,发现该区的含矿岩层为志留系(砂岩、砾石、页岩),褶皱褶皱,并受一系列西北走向断裂、分裂带等的影响。这些构造呈直线状,其带的特点是存在小断裂构造、膨胀区(利亚冈矿化区)和分裂区(阿达克山区)。这些膨胀和分裂的原因,也就是金矿化的地方,还没有得到充分的研究。研究控矿断裂这些特征的重要性是由其对金矿化带的限制和主要5种矿石化学成分的地球化学晕决定的。因此,已识别的马尔古扎山脉环状构造是深部花岗岩类岩浆活动的标志,与金矿成矿有成因关系。在研究过程中,建立了东北走向的线状构造,与西北、次向断裂共同构成研究区块体构造
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COSMOSTRUCT URAL MODEL OF THE MALGUZAR MOUNTAINS FOR ORE BEARING DATA PROCESSING ON THE LAIYAGUN MINERALIZED ZONE
Analysis of geological prospecting, geological surveying, geochemical and other materials of the territory of the Malguzar Mountains allows us to note that here the ore-bearing formations are Silurian formations (sandstones, gravelstones, shales), crumpled into folds, which are complicated by a series of faults of north-west strike, zones of splitting and etc. These structures are rectilinear, their zone is characterized by the presence of small fracture structures, areas of swellings (Liyagun mineralized zone) and splits (Ardakshan area). The reason for these swelling and splitting, where gold mineralization is noted, remains not fully studied. The importance of studying these features of ore-controlling faults is determined by the confinement to their zones of gold mineralization and geochemical halos of the main 5 ore chemical components. Consequently, the identified ring structures of the Malguzar Mountains are signs of deep granitoid magmatism, with which gold ore mineralization is genetically related. In the course of the study, linear structures of northeastern striking were established, which, together with northwestern and sublatitudinal faults, form the block structure of the study area
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