西藏冈底斯带东嘎英安岩的成岩过程、氧化态和挥发物含量:对斑岩型铜矿化的影响

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Liqiang Zhang, Xilian Chen, Shaohao Zou, Deru Xu, Xuena Wang, Hua Wang
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引用次数: 0

摘要

西藏的冈底斯带经历了侏罗纪的俯冲和新生代的大陆碰撞过程,是全球著名的岩浆岩和斑岩铜矿床地区。该地区已发现大量侏罗纪侵入体。除了谢通门大型矿床中的石英闪长岩斑岩之外,该矿床带中其他侏罗纪侵入体的铜矿化潜力尚不清楚。本研究介绍了锆石U-Pb定年和微量元素、磷灰石主要元素和微量元素,以及已公布的位于冈底斯带中部的东嘎黑云母的全岩地球化学和同位素数据,旨在揭示该侵入体的岩石成因、氧化态、挥发物含量和铜矿化潜力。Dongga辉长岩的锆石U-Pb年龄为179.4 ± 0.9 Ma。它显示出较高的全岩 V/Sc 值(8.76-14.6)、相对较低的磷灰石 CeN/CeN* 比值(1.04-1.28)、较高的锆石 (Eu/Eu*)N 值(平均 0.44)、较高的 Ce4+/Ce3+ 值(205-1896)和较高的 ∆FMQ 值(1.3-3.7),这些共同表明岩浆氧富集度较高。Dongga 辉绿岩具有闪石表晶、相对较高的全岩 Sr/Y 比值(20.3-58.9)和较低的锆石 Ti 温度(502-740 °C),反映了岩浆水含量较高。根据磷灰石 SO3 含量估算的岩浆硫含量(0.002-0.024 wt%)表明岩浆硫含量较高。结合之前的研究和收集到的 Sr-Nd-Hf 同位素,东嘎碳酸盐岩来源于与新特提斯洋板块俯冲有关的幼生下地壳。与谢通门含矿斑岩相比,东嘎黑云母在岩浆来源、构造背景、岩浆氧化还原状态、挥发成分等方面与谢通门含矿斑岩具有显著的相似性,表明东嘎黑云母具有较高的斑岩型铜矿成矿潜力,为今后的成矿勘查提供了重要的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Petrogenesis, oxidation state and volatile content of Dongga tonalite in the Gangdese belt, Xizang: Implication for porphyry Cu mineralization

The Gangdese belt in Xizang has experienced both Jurassic subduction and Cenozoic continental collision processes, making it a globally renowned region for magmatic rocks and porphyry copper deposits. Numerous Jurassic intrusions have been identified in the belt. Apart from the quartz diorite porphyry in the large Xietongmen deposit, the Cu mineralization potential of other Jurassic intrusions in this belt remains unclear. This study presents zircon U–Pb dating and trace elements, apatite major and trace elements as well as published whole-rock geochemical and isotopic data of the Dongga tonalite in the central part of the Gangdese belt, aiming to reveal the petrogenesis, oxidation state, volatile content, and Cu mineralization potential of this intrusion. The Dongga tonalite has a zircon U–Pb age of 179.4 ± 0.9 Ma. It exhibits high whole-rock V/Sc values (8.76–14.6), relatively low apatite CeN/CeN* ratios (1.04–1.28), elevated zircon (Eu/Eu*)N values (an average of 0.44), high Ce4+/Ce3+ values (205–1896), and high ∆FMQ values (1.3–3.7), collectively suggesting a high magmatic oxygen fugacity. The Dongga tonalite features amphibole phenocrysts, relatively high whole-rock Sr/Y ratios (20.3–58.9), and lower zircon Ti temperatures (502–740 °C), reflecting a high magmatic water content. Estimation of magmatic sulfur content (0.002–0.024 wt%) based on apatite SO3 contents indicates an enriched magma sulfur content. Combined with previous studies and the collected Sr–Nd–Hf isotopes, the Dongga tonalite is derived from juvenile lower crust related with subduction of the NeoTethys oceanic slab. When compared with Xietongmen ore-bearing porphyries, the Dongga tonalite exhibits remarkable similarities with the Xietongmen ore-bearing porphyries in terms of magma source, tectonic background, magmatic redox state, and volatile components, which indicates that the Dongga tonalite has a high porphyry Cu mineralization potential, and therefore, provides important guidance for the future mineralization exploration.

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来源期刊
Acta Geochimica
Acta Geochimica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
2.80
自引率
6.20%
发文量
1134
期刊介绍: Acta Geochimica serves as the international forum for essential research on geochemistry, the science that uses the tools and principles of chemistry to explain the mechanisms behind major geological systems such as the Earth‘s crust, its oceans and the entire Solar System, as well as a number of processes including mantle convection, the formation of planets and the origins of granite and basalt. The journal focuses on, but is not limited to the following aspects: • Cosmochemistry • Mantle Geochemistry • Ore-deposit Geochemistry • Organic Geochemistry • Environmental Geochemistry • Computational Geochemistry • Isotope Geochemistry • NanoGeochemistry All research articles published in this journal have undergone rigorous peer review. In addition to original research articles, Acta Geochimica publishes reviews and short communications, aiming to rapidly disseminate the research results of timely interest, and comprehensive reviews of emerging topics in all the areas of geochemistry.
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