固山花岗岩基性包裹体硫化物地球化学特征:同生基性岩浆在胶东大型金矿成因中的作用

IF 3.9 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Geological Society of America Bulletin Pub Date : 2023-09-12 DOI:10.1130/b36866.1
Kadio Aka D. Koua, Huashan Sun, Zhanke Li, Huan Li, Jianwei Li, Hui Yang, Zhongzheng Yuan
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引用次数: 0

摘要

研究揭示了深部成矿流体和成矿金属在胶东早白垩世大型金矿床形成中的关键作用。然而,成矿物质是如何被运送到地壳浅层的仍不清楚。本文研究了固山花岗岩基性微颗粒包体(MMEs)中黄铁矿的微量元素和硫同位素,以评价基性包体的同步成矿作用在成矿物质输运中的作用。锆石U-Pb测年和辉钼矿Re-Os测年表明,钾蚀变孤山花岗岩的岩浆热液事件发生在约120 Ma,与胶东金矿化发生在同一时期。黄铁矿的结构和地球化学组成表明,古山MMEs中的黄铁矿颗粒是在岩浆混合过程中或混合后不久形成的氘热液成因。古山MMEs中黄铁矿元素(Co、Cu、Ni、Zn、As、Ag、Au、Pb、Bi)的分布和硫同位素(4.14‰~ 8.8‰)数据与胶东金省谢家闪长岩侵入体(DI)及其他矿石的分布基本一致,表明黄铁矿具有共同的来源。黄铁矿的共同成因,结合前人的研究成果,表明成矿流体和成矿物质来源于交代岩石圈地幔,而不是由古太平洋板块俯冲沉积物直接释放出来的。岩石圈地幔是古太平洋板块俯冲后水、硫和挥发物的储藏库。研究结果表明,源自约120 Ma交代岩石圈地幔的弧形基性岩浆是将金等成矿成分从深部地幔输送到地壳浅层的中介,并在岩浆混合过程中将金及与矿有关的物质注入到渭德山花岗岩套中。由此可见,魏德山花岗岩套可能起到了将金不断转移到地壳浅层断裂沉淀的关键作用。因此,该区今后的研究或深钻勘探重点应放在魏德山花岗质套上,而不是谢家底。
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Geochemistry of sulfide in mafic enclaves from Gushan granite: Implications for the role of contemporaneous mafic magma in the genesis of the large-scale Jiaodong gold province, eastern China
Studies have revealed the key role of deep-seated, ore-forming fluids and metals in the generation of the Early Cretaceous large-scale gold deposits in the Jiaodong gold province of eastern China. However, how the ore-forming materials were transported to shallow crustal levels remains unclear. Here, we investigate trace elements and sulfur isotopes of pyrite within mafic microgranular enclaves (MMEs) of Gushan granite to evaluate the role of the syn-mineralization of mafic enclaves in the transportation of ore-forming materials. Zircon U-Pb and molybdenite Re-Os dating indicate that the magmatic-hydrothermal event in the potassic-altered Gushan granite occurred at ca. 120 Ma, which is contemporaneous with the Jiaodong gold mineralization. The texture and geochemical compositions of pyrite indicate that pyrite grains hosted by Gushan MMEs are of deuteric hydrothermal origin and precipitated during or shortly after magma mixing. The distribution of elements (i.e., Co, Cu, Ni, Zn, As, Ag, Au, Pb, and Bi) and the sulfur isotope (4.14‰−8.8‰) data for pyrites from Gushan MMEs are quite identical to those of the Xiejia diorite intrusion (DI) and other ores from the Jiaodong gold province, which indicates a common source of these pyrites. The common origin of the pyrites, combined with evidence from previous work, suggest that the ore-forming fluids and materials originated from the metasomatized lithospheric mantle, which was the repository of water, sulfur, and volatiles from the subducted Paleo-Pacific plate, rather than by direct release from the subducted sediments of the Paleo-Pacific plate. Our results collectively show that the arc-like mafic magmas derived from the metasomatized lithospheric mantle at ca. 120 Ma were the intermediary that transported the gold and other ore-forming components from the deep mantle to the shallow crustal levels where gold and ore-related material were injected into the Weideshan granitic suite during magma mixing. Thus, the Weideshan granitic suite may have played a critical role by continuously transferring gold to the shallow crustal faults where it precipitated. Therefore, future research or deep-drilling exploration programs in the area should emphasize the Weideshan granitic suite rather than the Xiejia DI.
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来源期刊
Geological Society of America Bulletin
Geological Society of America Bulletin 地学-地球科学综合
CiteScore
9.30
自引率
8.20%
发文量
159
审稿时长
4-8 weeks
期刊介绍: The GSA Bulletin is the Society''s premier scholarly journal, published continuously since 1890. Its first editor was William John (WJ) McGee, who was responsible for establishing much of its original style and format. Fully refereed, each bimonthly issue includes 16-20 papers focusing on the most definitive, timely, and classic-style research in all earth-science disciplines. The Bulletin welcomes most contributions that are data-rich, mature studies of broad interest (i.e., of interest to more than one sub-discipline of earth science) and of lasting, archival quality. These include (but are not limited to) studies related to tectonics, structural geology, geochemistry, geophysics, hydrogeology, marine geology, paleoclimatology, planetary geology, quaternary geology/geomorphology, sedimentary geology, stratigraphy, and volcanology. The journal is committed to further developing both the scope of its content and its international profile so that it publishes the most current earth science research that will be of wide interest to geoscientists.
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