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New isotopic evidence bearing on bonanza (Au-Ag) epithermal ore-forming processes

机译:有关富矿(Au-Ag)超热成矿过程的新同位素证据

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摘要

New Cu, S, and Pb isotope data provide evidence for a magmatic source of metal(loid)s and sulfur in epithermal Au-Ag deposits even though their ore-forming solutions are composed primarily of heated meteoric (ground) waters. The apparent isotopic discrepancy between ore metals and ore-forming solutions, and even between the ore and associated gangue minerals, indicates two different sources of epithermal ore-forming constituents: (1) a shallow geothermal system that not only provides the bulk of water for the ore-forming solutions but also major chemical constituents leached from host rocks (silica, aluminum, potassium, sodium, calcium) to make gangue minerals and (2) metals and metalloids (As, Te, Sb, etc.) and sulfur (+/- Se) derived from deeper magma bodies. Isotopic data are consistent with either vapor-phase transport of metal(loids) and sulfur and their subsequent absorption by shallow geothermal waters or formation of metallic (Au, Ag, Cu phases) nanoparticles at depth from magmatic fluids prior to encountering the geothermal system. The latter is most consistent with ore textures that indicate physical transport and aggregation of nanoparticles were significant ore-forming processes. The recognition that epithermal Au-Ag ores form in tectonic settings that produce magmas capable of releasing metal-rich fluids necessary to form these deposits can refine exploration strategies that previously often have focused on locating fossil geothermal systems.
机译:新的Cu,S和Pb同位素数据提供了超热Au-Ag矿床中金属(类)和硫的岩浆来源的证据,即使它们的成矿溶液主要由加热的陨石(地下水)组成。矿石金属与成矿溶液之间,甚至矿石与相关脉石矿物之间的明显同位素差异,表明超热成矿成分的两种不同来源:(1)浅层地热系统,不仅为形成矿石的溶液,以及从主体岩石(二氧化硅,铝,钾,钠,钙)中浸出的主要化学成分,可制成脉石矿物和(2)金属和准金属(As,Te,Sb等)和硫(+ /-Se)来自更深的岩浆体。同位素数据与金属(胶体)和硫的汽相传输及其随后被浅层地热水吸收或在遇到地热系统之前从岩浆流体深处形成金属(Au,Ag,Cu相)纳米粒子相一致。后者与矿石质地最一致,表明纳米颗粒的物理运输和聚集是重要的成矿过程。认识到超热金银矿石在构造环境中形成,产生的岩浆能够释放形成这些矿床所需的富含金属的流体,这可以改善以前通常集中于定位化石地热系统的勘探策略。

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