伊朗东南部一个斑岩铜矿远景区地球化学特征调查和热液蚀变带遥感测图:在勘探中的综合应用

IF 1 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Fereshteh Khammar, Shahab Alborzian Joonaghani, Leila Jan Abadi, M. Boomeri, D. Lentz
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引用次数: 0

摘要

本勘探方法案例研究位于Sistan缝合带沿线,那里的花岗岩套是地幔衍生的多相侵入杂岩。该地区的特征之一是存在大面积的硫化物、富含石英的网状物和黄铁矿矿脉。地球化学研究结果表明,它仅限于钙碱性至钠玄岩系侵入体,并与活跃大陆边缘俯冲环境中形成的火山弧(I型)有关。伴生侵入杂岩具有与产铜斑岩一致的特征,由高K-adakitic Sr/Y、La/Yb、Y和Al2O3/TiO2地球化学特征支持。网状矿化包括深生矿(黄铜矿和斑铜矿),以及局部叠加的浅生矿(褐铁矿、孔雀石、针铁矿和赤铁矿)带。先进的星载热发射和反射辐射仪(ASTER)图像(可见近红外(VNIR)和短波红外(SWIR)波段)和混合调谐匹配滤波(MTMF)算法能够识别每种热液蚀变类型,尤其是在通过浓度数(C-N)分形方法创新性地对图片进行分类的情况下。四种蚀变类型是明显的,即千枚岩、泥质岩和丙基岩,以及次生(浅生)黄钾铁矾与铁帽有关,铁帽是深生黄铁矿外壳的指示物。黄铁矿蚀变包裹千枚岩和泥质岩,在黄铁矿外壳周围形成一条带;通过XRD分析证实了蚀变组合。最后,所有结果都显示了该案例研究区域内的矿化蚀变模式,该模式与伊朗和世界范围内已知的斑岩铜及相关含钼和含金系统相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of geochemical characteristics and hydrothermal alteration zone mapping supported by remote sensing of a porphyry-copper prospect, southeastern Iran: integrated applications to exploration
This exploration methodology case study is situated along the Sistan Suture Zone where the granitoid suite is a mantle-derived multiphase intrusive complex. One of the characteristics of this region is the presence of large areas of sulfide-bearing, quartz-rich stockwork and pyritic veins. Geochemical findings show it is limited to the calc-alkaline to shoshonitic series intrusions and is associated with a volcanic arc (I-type) formed within an active continental margin subduction setting. The associated intrusive complex has characteristics consistent with Cu productive porphyries, supported by high K-adakitic Sr/Y, La/Yb, Y, and Al2O3/TiO2 geochemical signatures. The stockwork mineralization includes the hypogene (chalcopyrite and bornite), with locally superimposed supergene (covellite, malachite, goethite, and hematite) zones. The Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images (visible-near infrared (VNIR) and shortwave infrared (SWIR) bands) and Mixture Tuned Matched Filtering (MTMF) algorithm, enable identification of each hydrothermal alteration type, especially where pictures were innovatively classified by a concentration-number (C-N) fractal method. Four alteration types are evident, i.e. phyllic, argillic, and propylitic, as well as secondary (supergene) jarositethat are associated with gossans, which are an indicator of the hypogene pyritic shell. The propylitic alteration envelopes the phyllic and argillic varieties, forming a belt around the pyritic shell; alteration assemblages were confirmed by XRD analysis. Finally, all results show a mineralization-alteration pattern within this case study region that is similar to those of known porphyry copper and associated molybdenum- and gold-bearing systems in this region of Iran and worldwide.
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来源期刊
Geochemistry-Exploration Environment Analysis
Geochemistry-Exploration Environment Analysis 地学-地球化学与地球物理
CiteScore
3.60
自引率
16.70%
发文量
30
审稿时长
1 months
期刊介绍: Geochemistry: Exploration, Environment, Analysis (GEEA) is a co-owned journal of the Geological Society of London and the Association of Applied Geochemists (AAG). GEEA focuses on mineral exploration using geochemistry; related fields also covered include geoanalysis, the development of methods and techniques used to analyse geochemical materials such as rocks, soils, sediments, waters and vegetation, and environmental issues associated with mining and source apportionment. GEEA is well-known for its thematic sets on hot topics and regularly publishes papers from the biennial International Applied Geochemistry Symposium (IAGS). Papers that seek to integrate geological, geochemical and geophysical methods of exploration are particularly welcome, as are those that concern geochemical mapping and those that comprise case histories. Given the many links between exploration and environmental geochemistry, the journal encourages the exchange of concepts and data; in particular, to differentiate various sources of elements. GEEA publishes research articles; discussion papers; book reviews; editorial content and thematic sets.
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