基于gis的伊朗Muteh矿区金矿潜力填图及其新成矿概念

Farid Javadnejad, B. Waldron, F. Alinia
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引用次数: 1

摘要

Muteh金矿是伊朗的一个主要金矿,位于Sanadaj-Sirjan成矿带。Muteh的金矿沉积以前被解释为前寒武纪,但新的研究表明,矿床可能更年轻,是始新世晚期。因此,晚始新世及晚始新世以上的地质单位年龄可能是金矿的找矿目标。本研究的重点是建立穆特赫地区金矿化预测模型。根据新的金矿化概念,木特金矿床金矿赋存的有利条件是:(1)接近花岗岩/浅花岗岩侵入体作为热源,(2)存在羟基蚀变矿物,(3)接近东北向的构造/断裂,(4)存在地球化学金异常,(5)金矿探路元素共生,(6)存在重矿物特征。本研究利用区域地质图圈定了潜在热源。在ETM+卫星数据上应用Crosta方法提取羟基蚀变矿物,并利用ETM+与DEM数据融合解释构造特征。利用水系沉积物资料进行因子分析,揭示成矿相关地球化学异常。利用基于知识的证据地图模糊逻辑叠加进行制图。根据不同类别的证据图在金势制图中的有利程度,对其进行模糊评分。对地质勘查数据进行模糊综合,最终得到金矿成矿势图,研究区有利成矿面积为4.4%。利用模糊逻辑方法对已知的金矿环境进行匹配,识别出一个新的潜在金矿远景区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GIS-Based Gold Potential Mapping in the Muteh Deposit Area, Iran, with Respect to a New Mineralization Concept
The Muteh deposit is a major Iranian gold mine that is located in the Sanadaj-Sirjan metallogenic zone. Gold deposition in Muteh has been previously interpreted to be Precambrian in age, but new studies propose the deposits may be younger and of late Eocene age. Therefore, geologic unit ages of and older than late Eocene are likely exploration targets for gold deposits. The focus of this study is to build a predictive model for mapping gold mineralization in the Muteh region. Based on the new gold mineralization concept in the Muteh deposits, the following conditions appear to be favorable for gold occurrence: (1) proximity to granite/leucogranite intrusive bodies as heat source, (2) presence of hydroxyl alteration minerals, (3) proximity to northeast oriented lineaments/faults, (4) presence of geochemical gold anomalies, (5) co-occurrence of gold pathfinder elements, and (6) presence of heavy mineral signatures. For this study, the potential heat sources were delineated from regional geological maps. The hydroxyl alteration minerals were extracted by applying the Crosta method on ETM+ satellite data, and the fusion of the ETM+ and DEM data was used to interpret structural features. The factor analysis on stream sediment data were utilized to reveal mineralization related geochemical anomalies. Mapping was carried out using a knowledge-based fuzzy logic overlay of evidential maps. Fuzzy scoring was assigned to different classes of evidential maps based on their favor ability in gold potential mapping. The final gold deposition potential map generated from fuzzy integration of geo-exploration dataset suggests 4.4% of the study area is favorable for gold mineralization. Known gold depositional environments were matched using the fuzzy logic approach, and one new potential gold prospect was identified.
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