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

查看详情 浏览次数:1
单位[Markovic, Sava; Brunner, Manuel; Mueller, Lukas; Peytcheva, Irena; Guillong, Marcel; Chelle-Michou, Cyril; Gallhofer, Daniela; Heinrich, Christoph A.; von Quadt, Albrecht] Swiss Fed Inst Technol, Swiss Fed Inst Technol, Inst Geochem & Petrol, CH-8092 Zurich, Switzerland; [Brunner, Manuel] Amt Abfall Wasser Energie Luft, Kanton Zurich, CH-8090 Zurich, Switzerland; [Mueller, Lukas] Impergeol AG, CH-8888 St Gallen, Switzerland; [Peytcheva, Irena] Bulgarian Acad Sci, Geol Inst, Sofia, Bulgaria; [Kouzmanov, Kalin] Univ Geneva, Dept Earth Sci, CH-1205 Geneva, Switzerland; [Gallhofer, Daniela] Karl Franzens Univ Graz, Inst Earth Sci, A-8010 Graz, Austria; [Heinrich, Christoph A.] Univ Zurich, Fac Math & Nat Sci, CH-8092 Zurich, Switzerland
来源ECONOMIC GEOLOGY
出版年2024
期号4
摘要
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 similar to 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 degrees) crustal block rotation. Hafnium isotope composition of Neogene zircon (E Hf 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 similar to 100 k.y. and that durations of hydrothermal mineralization pulses were even shorter.
同主题文献

    @ 2023 版权所有 中国地质图书馆 (中国地质调查局地学文献中心)

    京ICP备 05064591号 京公网安备11010802017129号

    建议浏览器: 火狐、谷歌、微软 Edge、不支持 IE