Zircon Petrochronology of Au-Rich Porphyry and Epithermal Deposits in the Golden Quadrilateral (Apuseni Mountains, Romania)

IF 8.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY ACS Applied Materials & Interfaces Pub Date : 2024-06-01 DOI:10.5382/econgeo.5073
Sava Markovic, Manuel Brunner, Lukas Müller, I. Peytcheva, M. Guillong, Cyril Chelle-Michou, K. Kouzmanov, D. Gallhofer, Christoph A. Heinrich, A. von Quadt
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Abstract

The Golden Quadrilateral of the Apuseni Mountains (Romania) represents the richest Au(-Cu-Te) porphyry and epithermal district of Europe and the Western Tethyan metallogenic belt. The Au(-Cu-Te) mineralization is associated with Neogene calc-alkaline magmatism along graben structures growing during the late stages of the Alpine-Carpathian orogeny. We use zircon petrochronology to study the time-space distribution, sources, composition, and timescales of the Au(-Cu-Te)-mineralizing magmatism and explore its link to regional tectonics. Our own and published U-Pb zircon ages document ore-forming magmatic activity between ~13.61 and 7.24 Ma. In combination with available paleomagnetic data, the new zircon ages corroborate the hypothesis that the magmatism in the Golden Quadrilateral evolved in a tectonic environment dominated by major (up to 70°) crustal block rotation. Hafnium isotope composition of Neogene zircon (εHf between –2 and 10) supports the predominant origin of the magmas from a heterogeneous lithospheric mantle, which may have been fertilized during an earlier Cretaceous subduction event and possibly by concurrent Miocene subduction. Xenocrystic zircon shows involvement of crustal sources resembling European continental basement. Fertility indicators, including Eu/Eu* and oxygen fugacity based on zircon composition, show no systematic correlation with the mineralizing events and/or age. High-precision (isotope dilution-thermal ionization mass spectrometry) U-Pb zircon geochronology demonstrates that the magmatic systems exposed at district scale evolved over less than ~100 k.y. and that durations of hydrothermal mineralization pulses were even shorter.
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黄金四边形富金斑岩矿床和表生矿床的锆石岩石年代学(罗马尼亚阿普塞尼山脉)
阿普塞尼山脉(罗马尼亚)的黄金四边形是欧洲最丰富的金(-铜-碲)斑岩和热液区,也是西特提安成矿带。金(-铜-碲)矿化与阿尔卑斯-喀尔巴阡山造山运动晚期沿地堑构造生长的新元古代钙碱性岩浆活动有关。我们利用锆石岩石年代学来研究金(-Cu-Te)成矿岩浆活动的时空分布、来源、成分和时间尺度,并探索其与区域构造的联系。我们自己的和已公布的 U-Pb 锆石年龄记录了 ~13.61 至 7.24 Ma 之间的成矿岩浆活动。结合现有的古地磁数据,新的锆石年龄证实了 "黄金四边形 "的岩浆活动是在以地壳块体大旋转(达 70°)为主的构造环境中演化的这一假设。新近纪锆石的铪同位素组成(εHf介于-2和10之间)支持岩浆主要来源于异质岩石圈地幔,该地幔可能在较早的白垩纪俯冲事件中被肥沃化,也可能同时被中新世俯冲所肥沃化。异质锆石显示出类似欧洲大陆基底的地壳来源。根据锆石成分得出的肥度指标(包括 Eu/Eu* 和氧富集度)与成矿事件和/或年龄没有系统的相关性。高精度(同位素稀释-热电离质谱法)U-Pb 锆石地质年代学表明,在地区范围内暴露的岩浆系统的演化过程不到约 100 千年,热液成矿脉冲的持续时间甚至更短。
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来源期刊
ACS Applied Materials & Interfaces
ACS Applied Materials & Interfaces 工程技术-材料科学:综合
CiteScore
16.00
自引率
6.30%
发文量
4978
审稿时长
1.8 months
期刊介绍: ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.
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