Decoupling of Au and As during rapid pyrite crystallization

IF 4.6 1区 地球科学 Q1 GEOLOGY
Geology Pub Date : 2021-03-04 DOI:10.1130/G48443.1
Yafei Wu, K. Evans, Si-Yu Hu, D. Fougerouse, Mei‐Fu Zhou, L. Fisher, P. Guagliardo, Jian-wei Li
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引用次数: 26

Abstract

Gold (Au) is largely hosted by pyrite in a variety of hydrothermal systems, but the incorporation of Au into pyrite under disequilibrium conditions remains poorly understood. We integrate synchrotron X-ray fluorescence microscopy, electron backscatter diffraction, nanoscale secondary ion mass spectrometry, and laser ablation–multicollector–inductively coupled plasma–mass spectrometry to constrain the processes that sequester Au into zoned pyrite in the hydrothermal cement of breccia ores from the world-class Daqiao orogenic Au deposit, central China. Euhedral pyrite cores with oscillatory and sector zoning, variable δ34S values, and lower Au-As contents than the mantles are attributed to crystallization during oxidation of metal-depleted ore fluids with local variation in fluid conditions. The isotopically uniform colloform mantles are formed by pyrite crystallites separated by low-angle boundaries and are characterized by unusual decoupling of Au and As. Mantle formation is attributed to rapid disequilibrium precipitation from a metal-rich FeS2-supersaturated fluid. Incorporation of Au into the pyrite mantles was facilitated by abundant lattice defects produced by rapid nucleation. Gold-As–poor pyrite rims were deposited from an evolved ore fluid or other metal-depleted fluids. These results show that chemical variations recorded by fine layering within minerals can provide valuable insights into disequilibrium mass transfer and ore formation. The decoupling between Au and As in pyrite mantles indicates that As is not always a reliable proxy for Au enrichment in rapidly crystallized porous pyrite.
黄铁矿快速结晶过程中Au和As的解耦
在各种热液系统中,金(Au)主要由黄铁矿赋存,但在不平衡条件下金与黄铁矿的结合尚不清楚。利用同步加速器x射线荧光显微镜、电子背散射衍射、纳米级二次离子质谱和激光烧蚀-多收集器-电感耦合等离子体质谱,研究了中国中部世界级的大桥造山带金矿床角砾岩热液胶结中金被隔离到分带黄铁矿中的过程。自形黄铁矿岩心具有振荡和扇形分带,δ34S值变化,Au-As含量低于地幔,是在局部流体条件变化的条件下,贫金属矿石流体氧化过程中结晶形成的。同位素均匀的胶状地幔由黄铁矿晶体以低角边界分隔而成,其特征是Au和As不寻常的解耦。地幔的形成归因于富金属fes2过饱和流体的快速不平衡沉淀。快速成核过程中产生的大量晶格缺陷促进了金与黄铁矿地幔的结合。贫金黄铁矿边缘是由演化的矿石流体或其他贫金属流体沉积而成。这些结果表明,矿物内部精细分层记录的化学变化可以为不平衡传质和矿石形成提供有价值的见解。黄铁矿地幔中Au与As的解耦表明,As并不总是快速结晶多孔黄铁矿中Au富集的可靠指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geology
Geology 地学-地质学
CiteScore
10.00
自引率
3.40%
发文量
228
审稿时长
6.2 months
期刊介绍: Published since 1973, Geology features rapid publication of about 23 refereed short (four-page) papers each month. Articles cover all earth-science disciplines and include new investigations and provocative topics. Professional geologists and university-level students in the earth sciences use this widely read journal to keep up with scientific research trends. The online forum section facilitates author-reader dialog. Includes color and occasional large-format illustrations on oversized loose inserts.
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