印度西部变质卡亚德沉积喷出型锌铅矿床中的硫化物再移动:从出现方式、纹理、热液蜕变特征和微量元素化学性质看证据

IF 5.5 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Economic Geology Pub Date : 2024-06-01 DOI:10.5382/econgeo.5075
Eileena Das, Dipak C Pal, D. Upadhyay, Aparajita Tripathi, Vijendra Kashyap, Kastoor Meena
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引用次数: 0

摘要

卡亚德锌铅矿床位于印度西部新生代阿拉瓦利-德里褶皱带,主要特征是闪锌矿和方铅矿以及黄铁矿和黄铜矿。矿化物以散粒矿石形式出现在石英岩中,以散粒/层状和块状矿石形式出现在石英云母片岩中,以及伟晶岩和石英脉中。层状矿石与区域片岩和褶皱相一致,而块状锌铅矿则是在普遍构造结构形成之后才出现的,在褶皱铰链处堆积。块状矿石的特点是纹理不规则,闪锌矿基质中的方铅矿和黄铜矿呈不连续的斑点状,界面角较小,硫化物和硫化物(如黄铁矿、古蒙德石、银四面体矿和辉钼矿)呈不连续的互生。硫化物的地球化学分析显示,硫化物的微包裹体中含有Ag、Sb、Cu、Tl和As,这些元素被认为是低熔性亲铝元素(LMCEs)。热液蚀变在层状矿石和块状矿石中微不足道,但在铁-铜±锌-铅和锌-铅±铁-铜矿脉周围却很突出。这些矿脉中的蚀变组合显示出普遍的 K + Na ± Fe 蚀变,后来又被辅助的 Ca ± Na 蚀变所覆盖。我们认为,这些层状/解理矿石是在戊辛基盆地内形成的联合成因沉积-吸水(SedEx)矿石。相反,块状矿石的纹理特征、矿物成分、缺乏相关的热液蚀变以及明显的构造对其成矿的影响,都表明它们是通过塑性流动和硫化物部分熔融而重新移动的。根据变质主岩的钛-硼酸盐地热测定法得出的温度估计值高达 650°C,表明区域变质过程中的中下闪长岩面条件。石英云母片岩中的黄铁矿脱硫成黄铁矿的过程促进了这些温度下的熔化,而由于银、锑和砷等低熔点元素的存在,熔点降低也为熔化提供了帮助。
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Sulfide Remobilization in the Metamorphosed Kayad Sedimentary Exhalative Zn-Pb Deposit, Western India: Evidence from Mode of Occurrence, Texture, Hydrothermal Alteration Features, and Trace Element Chemistry
The Kayad Zn-Pb deposit, situated within the Proterozoic Aravalli-Delhi fold belt in western India, is primarily characterized by sphalerite and galena along with pyrrhotite and chalcopyrite. The mineralization occurs as disseminated ores in quartzite, disseminated/laminated and massive ores in quartz-mica schist, and in pegmatite and quartz veins. The laminated ores conform to the regional schistosity and folding, whereas the massive Zn-Pb ores postdate the pervasive tectonic fabric, accumulating at the fold hinges. The massive ore is characterized by durchbewegung texture, discrete blebs of galena and chalcopyrite in a sphalerite matrix with low interfacial angles, and discrete intergrowths of sulfides and sulfosalts such as pyrargyrite, gudmundite, Ag-tetrahedrite, and breithauptite. Geochemical analyses of sulfides reveal microinclusions of sulfosalts comprising Ag, Sb, Cu, Tl, and As, which are regarded as low-melting chalcophile elements (LMCEs). Hydrothermal alteration is insignificant in the laminated and massive ores but prominent around Fe-Cu ± Zn-Pb and Zn-Pb ± Fe-Cu veins. The alteration assemblages in these veins evince a pervasive K + Na ± Fe alteration, later overprinted by a subsidiary Ca ± Na alteration. We interpret the laminated/disseminated ores to be of syndiagenetic sedimentary-exhalative (SedEx) origin formed within an euxinic basin. Conversely, the textural features, mineralogical composition, lack of associated hydrothermal alterations, and evident structural influence on the emplacement of the massive ores suggest they have been remobilized both via plastic flow and by sulfide partial melting. Temperature estimates of up to 650°C, derived from Ti-in-biotite geothermometry of the metamorphosed host rocks, indicate lower-middle amphibolite facies conditions during regional metamorphism. The initiation of melting at these temperatures was promoted by the desulfurization of pyrite to pyrrhotite in quartz-mica schist, aided by melting point depression due to the presence of LMCEs like Ag, Sb, and As.
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来源期刊
Economic Geology
Economic Geology 地学-地球化学与地球物理
CiteScore
10.00
自引率
6.90%
发文量
120
审稿时长
6 months
期刊介绍: The journal, now published semi-quarterly, was first published in 1905 by the Economic Geology Publishing Company (PUBCO), a not-for-profit company established for the purpose of publishing a periodical devoted to economic geology. On the founding of SEG in 1920, a cooperative arrangement between PUBCO and SEG made the journal the official organ of the Society, and PUBCO agreed to carry the Society''s name on the front cover under the heading "Bulletin of the Society of Economic Geologists". PUBCO and SEG continued to operate as cooperating but separate entities until 2001, when the Board of Directors of PUBCO and the Council of SEG, by unanimous consent, approved a formal agreement of merger. The former activities of the PUBCO Board of Directors are now carried out by a Publications Board, a new self-governing unit within SEG.
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