重访黄铁矿中的金:利用电子背散射衍射和LA-ICP-MS分析变形过程中的再活化

IF 4.4 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Pascal Ouiya, Didier Béziat, Stefano Salvi, German Velásquez, Séta Naba, Arnaud Proietti
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引用次数: 0

摘要

在布基纳法索南部Nassara附近的一个金矿床中,金与黄铁矿在变质火山岩和变质沉积岩的矿脉网络中密切相关。通过SEM和LA-ICP-MS分析,确定了三代黄铁矿在金矿化过程中的作用。黄铁矿1 (Py1)在成矿早期形成,取代了变质玄武岩中的铁白云石等蚀变矿物。黄铁矿2 (Py2)在连续微震事件中局部微剪切带再激活的压力阴影中围绕Py1发育。与Py1不同,黄铁矿2富集As和Au。黄铁矿3 (Py3)形成较晚,与成矿无关。金在黄铁矿中以微包裹体(Py1和Py2)、裂隙充填体(主要在Py2)的形式存在,在黄铁矿结构中以不可见金的形式存在,包括纳米颗粒(主要在Py2)。结合电子背散射衍射(EBSD)和激光烧蚀-电感耦合等离子体质谱(LA-ICP-MS)分析发现,变形诱导的黄铁矿错取向促进了不可见金的再活化,随后沿亚晶界和裂缝内以胶体颗粒的形式重新沉淀,模拟可见包裹体。这些发现表明,在再活化过程中,被视为包裹体(可见或不可见)的金通常在微/纳米裂缝和亚晶界内沉淀。这突出了彻底的矿石表征对准确确定金态的关键重要性。这些见解促进了我们对矿化过程的理解,并支持开发更有效的恢复策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gold in pyrite revisited: insights into remobilization during deformation using electron backscatter diffraction and LA-ICP-MS

In a gold deposit near Nassara, southern Burkina Faso, gold occurs closely associated with pyrite within a network of veins hosted by metavolcanic and metasedimentary rocks. Using SEM and LA-ICP-MS analyses, we identified three generations of pyrite with distinct roles in gold mineralization. Pyrite 1 (Py1) formed early during mineralization, replacing alteration minerals like ankerite in metabasalt. Pyrite 2 (Py2) developed around Py1 in pressure shadows caused by localized micro-shear zone reactivation during successive micro-seismic events. Pyrite 2 is enriched in As and Au, unlike Py1. Pyrite 3 (Py3), unrelated to mineralization, formed at a later stage. Gold occurs in pyrite as micro-inclusions (in Py1 and Py2), fracture-fillings (mainly in Py2), and within the pyrite structure as invisible gold, including nanoparticles (predominantly in Py2). Combining electron backscatter diffraction (EBSD) and laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) analysis reveals that deformation-induced misorientation of pyrite facilitated the remobilization of invisible gold, which subsequently re-precipitated as colloidal particles along sub-grain boundaries and within fractures, mimicking visible inclusions. These findings demonstrate that gold perceived as inclusions (visible or invisible) often precipitates within micro/nano-fissures and sub-grain boundaries during remobilization. This highlights the critical importance of thorough ore characterization for accurately determining gold deportment. Such insights advance our understanding of mineralization processes and support the development of more efficient recovery strategies.

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来源期刊
Mineralium Deposita
Mineralium Deposita 地学-地球化学与地球物理
CiteScore
11.00
自引率
6.20%
发文量
61
审稿时长
6 months
期刊介绍: The journal Mineralium Deposita introduces new observations, principles, and interpretations from the field of economic geology, including nonmetallic mineral deposits, experimental and applied geochemistry, with emphasis on mineral deposits. It offers short and comprehensive articles, review papers, brief original papers, scientific discussions and news, as well as reports on meetings of importance to mineral research. The emphasis is on high-quality content and form for all articles and on international coverage of subject matter.
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