解读中国西北部南天山金矿床的来源:铅同位素系统学的启示

IF 2.7 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of Asian Earth Sciences Pub Date : 2024-05-28 DOI:10.1016/j.jseaes.2024.106199
Guoxiong Ma , Xiaobo Zhao , Chunji Xue , Reimar Seltmann , Alla Dolgopolova , Zhen Liao , Tao Zou , Renke Wang
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引用次数: 0

摘要

天山蕴藏着众多巨大的世界级原生金矿床,是世界上最大的黄金矿区之一。然而,金的来源仍不明确。在此,我们对中国西北部南天山的前寒武纪基底、新元古代岩浆岩岩体和下古生界岩序进行了全面的铅同位素研究。这些数据与主要金矿床和共生花岗岩及地幔相关岩石的现有铅同位素数据集进行了比较,以追踪金的来源并确定潜在储层的相对贡献。主要金矿床的含金硫化物具有相对均匀的铅同位素比值,与区域共生花岗岩和地幔相关岩石有显著差异。相反,含金硫化物的铅同位素特征与古新生代变质岩的铅同位素特征相当,显示出明确的线性关系。二元混合模型显示,古生代新近沉积岩可能贡献了 70% 至 90% 的铅和其他金属来源。综合该地区主要金矿床的地球化学和同位素特征,我们提出,这可能是南天山洋俯冲过程中深部地壳变质挥发过程中古金档案的肥化作用。在南天山洋最终闭合之后,与塔里木地块和哈萨克斯坦-伊犁地块汞齐化相关的大面积花岗岩喷出过程中的区域构造抬升和热效应,调动了受精古金储层的深部根系,从而形成了赋存于南天山断层系统中的金矿床。
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Deciphering sources of lode gold deposits in the South Tianshan, NW China: Insights from Pb isotope systematics

The Tianshan hosts numerous giant and world-class lode gold deposits, forming one of the world’s largest gold provinces. However, the sources of gold remain equivocal. Herein, we present a comprehensive Pb isotopic investigation of the Precambrian basement, Neoproterozoic mafic dykes, and the Lower Paleozoic sequences of the South Tianshan in NW China. These data were compared with existing Pb isotope datasets from major lode gold deposits and coeval granitoid and mantle-related rocks, to trace the sources of gold and constrain the relative contributions from potential reservoirs. Gold-bearing sulfides from major lode gold deposits have relatively uniform Pb isotopic ratios, which are significantly different from regional coeval granitoid and mantle-related rocks. Conversely, the Pb isotopic characteristics from gold-bearing sulfides are comparable to those from the Paleoproterozoic metasedimentary rocks, showing well-defined linear relations. Binary mixing modeling shows that the Paleoproterozoic metasedimentary rocks might have contributed 70% to 90% for the source of Pb and, by inference other metals. Integrating geochemical and isotopic features from major lode gold deposits in the region, we propose that it invokes fertilization of ancient Au archives during metamorphic volatilization in the deep crust during subduction of the South Tianshan Ocean. Following the final closure of the South Tianshan Ocean, the regional tectonic uplift and thermal effect during widespread granitoids emplacement associated with the amalgamation of the Tarim with Kazakhstan-Yili terranes, mobilizing the deep roots of the fertilized ancient Au reservoirs, leading to the formation of the gold deposit hosted in fault systems of the South Tianshan.

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来源期刊
Journal of Asian Earth Sciences
Journal of Asian Earth Sciences 地学-地球科学综合
CiteScore
5.90
自引率
10.00%
发文量
324
审稿时长
71 days
期刊介绍: Journal of Asian Earth Sciences has an open access mirror journal Journal of Asian Earth Sciences: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The Journal of Asian Earth Sciences is an international interdisciplinary journal devoted to all aspects of research related to the solid Earth Sciences of Asia. The Journal publishes high quality, peer-reviewed scientific papers on the regional geology, tectonics, geochemistry and geophysics of Asia. It will be devoted primarily to research papers but short communications relating to new developments of broad interest, reviews and book reviews will also be included. Papers must have international appeal and should present work of more than local significance. The scope includes deep processes of the Asian continent and its adjacent oceans; seismology and earthquakes; orogeny, magmatism, metamorphism and volcanism; growth, deformation and destruction of the Asian crust; crust-mantle interaction; evolution of life (early life, biostratigraphy, biogeography and mass-extinction); fluids, fluxes and reservoirs of mineral and energy resources; surface processes (weathering, erosion, transport and deposition of sediments) and resulting geomorphology; and the response of the Earth to global climate change as viewed within the Asian continent and surrounding oceans.
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