与Pb-Zn-Cu-Ag-Au多金属矿床相关的热液蚀变的岩石学、光谱和磁化率研究,Sierra de Comechingones, cordoba,阿根廷

IF 0.8 4区 地球科学 Q3 GEOLOGY
María Natalia Maffini, D. F. Ducart, S. Radice, J. Coniglio, F. D'Eramo, Manuel Demartis, Lucio P. Pinotti, A. M. Silva, C. Toledo
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引用次数: 1

摘要

在阿根廷科尔多瓦山脉最南端的Comechingones变质基底上,发育一组与热液蚀变带有关的多金属铅锌铜银金脉,是晚古生代成矿期的产物。在本文中,光谱分析在SWIR(短波红外)区域的应用以及磁技术,在阿根廷这种类型的矿化中是不常见的,被证明是研究蚀变区的有效工具,也有助于建立矿产找矿和/或勘探目标。绢云母-石英组合是岩浆岩主岩的主要热液蚀变产物。它沿矿化构造的主要方向发育成狭窄而连续的蚀变带,每侧可达5米。次生和局部的蚀变角闪岩形成了碳酸盐菱铁矿-方解石组合,这些角闪岩穿插在变质层序中。在反射光谱中,Al- oh吸收特征的波长位置揭示了热液白色云母的组成变化和阳离子取代,从钾质云母(波长接近2200 nm)到八面体Al含量较低的云母(波长> 2210 nm)到辉云母。这些变化及其在蚀变区内的空间分布主要受3个主要因素控制:1)热液温度,2)pH和(或)3)流体-岩石系统中Mg-Fe/Al比值。根据光谱数据计算的结晶度指数(CI)表明,高结晶度伊利石占主导地位,且在矿化脉的近端区域结晶度指数略有增加。伊利石/蒙脱石混合层状粘土表明流体温度向远端区降低,可以作为成矿的载体。绢云母-石英和菱铁矿-方解石热液组合经常受到表生氧化作用的影响,导致蚀变区内明显的赤铁矿-针铁矿沉淀。这些矿物中Fe +3的氧化态是导致寄主岩石磁化率参数降低的主要原因。从区域的角度看,这些热液蚀变带的特征是富含中高结晶度的白色云母(CI=1,21-3,92, IK=0,21-0,23),成分从钾到腐生(Al-OH波长在2200-2215 nm之间),并与赤化带和低磁化率值(-3 SI)相关。可能被认为是未来找矿和/或寻找在Pampeanas山脉变质环境中赋存的多金属脉的潜在目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estudio petrográfico, espectral y de susceptibilidad magnética de la alteración hidrotermal asociada con depósitos polimetálicos de Pb-Zn-Cu-Ag-Au, Sierra de Comechingones, Córdoba (Argentina)
In the metamorphic basement of the Sierra de Comechingones, the southernmost extension of Sierras de Cordoba (Argentina), it is hosted a group of polymetallic Pb-Zn-Cu-Ag-Au veins associated with hydrothermal alteration zones, which are the result of a Late Paleozoic metallogenic period. In this paper, the application of spectral analysis in the SWIR (Short-Wave Infrared) region as well as magnetic techniques, unusual in Argentina for this style of mineralization, proved to be an effective tool in the study of altered areas and also useful to establish targets for mineral prospecting and/or exploration. A sericite-quartz assemblage is the main hydrothermal alteration product of the migmatic host rocks. It is developed into narrow but continuous altered zones which follow the main direction of the mineralized structures and can reach up to 5 meters to each side of the veins. Subordinately and locally, a carbonate siderite-calcite assemblage takes place as a result of altered amphibolites, which are interspersed within the metamorphic sequence. In the reflectance spectra, the wavelength position of the Al-OH absorption feature revealed compositional variations and cation substitutions in the hydrothermal white micas, ranging from potassic (wavelengths near 2200 nm) to micas with a lower octahedral Al content (wavelengths > 2210 nm) towards phengite. These variations and the spatial distribution within the altered areas are primarily controlled by three main factors: 1) hydrothermal fluid temperature, 2) pH and/or 3) Mg-Fe/Al ratio in the fluid-rock system. The crystallinity indexes (CI) calculated from the spectral data, indicate the predominance of high crystallinity illites with a slight increase of this parameter towards the proximal zones to the mineralized veins. The illite/smectite mix-layered clays indicate a fluid temperature decrease towards the distal zones and they can be used as vectors to mineralization. Both sericite-quartz and siderite-calcite hydrothermal assemblages are frequently affected by supergene oxidation processes that led to a conspicuous precipitation of hematite-goethite within the altered areas. The oxidation state of Fe +3 in these minerals is the main cause of the decrease of the magnetic susceptibility parameter in the host rocks. With a regional perspective, these hydrothermal alteration zones characterized by a high abundance of white micas of moderate to high crystallinity (CI=1,21-3,92 and IK=0,21-0,23), compositions ranging from potassic to phengitic (Al-OH wavelengths between 2200-2215 nm) and associated with hematization zones and low magnetic susceptibility values ( -3 SI), may be considered as potential targets for future prospecting and/or exploration of polymetallic veins hosted in the metamorphic environment of the Sierras Pampeanas.
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来源期刊
CiteScore
1.40
自引率
14.30%
发文量
6
审稿时长
>12 weeks
期刊介绍: Since 1945 Estudios Geologicos publishes original research works, as well as reviews, about any topic on Earth Sciences. Estudios Geologicos is published as one yearly volume, divided into two half-yearly issues. It is edited by the Spanish National Research Council (Consejo Superior de Investigaciones Científicas, CSIC) at the Instituto de Geociencias (CSIC-UCM). Estudios Geologicos provides free access to full-text articles through this electronic edition. Accepted articles appear online as "Forthcoming articles" as soon as the galley proofs have been approved by the authors and the Editor-in-Chief. No changes can be made after online publication.
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