ISSN 1009-6248CN 61-1149/P Bimonthly

Supervisor:China Geological Survey

Sponsored by:XI'an Center of China Geological Survey
Geological Society of China

    • The Core Journals of China
    • The Key Magazine of China Technology
    • CSCD Included Journals
    • Scopus Included Journals
Advance Search
QIN Zhijun,WANG Xingwei,ZHOU Bao,et al. Geochronology and Geodynamic Setting of the Shuangmiaoguan Gold Deposit, Dabie Orogen[J]. Northwestern Geology,2024,57(1):207−218. doi: 10.12401/j.nwg.2023125
Citation: QIN Zhijun,WANG Xingwei,ZHOU Bao,et al. Geochronology and Geodynamic Setting of the Shuangmiaoguan Gold Deposit, Dabie Orogen[J]. Northwestern Geology,2024,57(1):207−218. doi: 10.12401/j.nwg.2023125

Geochronology and Geodynamic Setting of the Shuangmiaoguan Gold Deposit, Dabie Orogen

More Information
  • Received Date: December 09, 2022
  • Revised Date: October 14, 2023
  • Available Online: July 19, 2023
  • The Shuangmiaoguan gold deposit from the Macheng City, Hubei Province is in the Dabie orogenic belt. Significant prospecting progress for this gold deposit has been achieved in recent years. However, the ore−forming age and geodynamic setting of this deposit remain unclear. The Neoproterozoic gneissic monzogranite and meta−gabbro are pervasive in the mining area. Eleven gold orebodies have been discovered in the NE, NNE and NNW−trending faults. The field investigations show that the intrusions of K−feldspar granite and granite porphyry in the north of Shuangmiaoguan gold deposit were cut by NE−trending ore−bearing faults, and the diorite dikes from the middle section of gold deposit interpenetrate across the ore bodies.suggests. Zircon U−Pb ages of the K−feldspar granite, granitic porphyry and diorite dikes are (133.6±1.1) Ma, (127.9±1.6) Ma and (126.6±1.3) Ma, respectively. Additionallly, field investigations show that the intrusions of K−feldspar granite and granite porphyry in the north of Shuangmiaoguan gold deposit were cut by ore−bearing faults, and the diorite dikes from the middle section of gold deposit interpenetrate across the ore bodies. This suggests that the Shuangmiaoguan gold deposit should be formed between 128 and 126 Ma. This time is broadly similar to that time of gold mineralization of the Xiaoqinling, Xiong’ershan and Tongbai gold districts. These deposits were coeval with the early Cretaceous widespread gold mineralization. They should be the result of tectonism and Magmatism arised from lithosphere destruction in the eastern China.

  • 柴明春. 桐柏地区古-中生代多金属矿床成矿作用研究[D]. 武汉: 中国地质大学, 2021

    CHAI Mingchun. The Paleozoic-Mesozoic metallogenesis in the Tongbai area, Central China[D]. Wuhan: China University of Geosciences, 2021.
    曹正琦, 蔡逸涛, 周向辉, 等. 西大别大悟地区闪长玢岩岩石地球化学特征及其构造意义[J]. 西北地质, 2023, 56(4): 318−328.

    CAO Zhengqi, CAI Yitao, ZHOU Xianghui, et al. Geochemical Characteristics of Diorite Porphyrite in Dawu Area, Western Dabie and Its Tectonic Significance[J]. Northwestern Geology, 2023, 56(4): 318−328.
    杜文洋, 刘嘉, 付乐兵, 等. 大别造山带中段双庙关-西张店地区含金构造演化与金矿成矿制约成果报告[R].湖北省地质调查院, 2022.
    高峰, 裴先治, 李瑞保, 等. 东秦岭商丹地区武关岩群斜长角闪片岩LA-ICP-MS锆石U-Pb年龄及其地质意义[J]. 西北地质, 2017, 50(01): 198-211 doi: 10.3969/j.issn.1009-6248.2017.01.017

    GAO Feng, PEI Xianzhi, LI Ruibao, et al. LA-ICP-MS Zircon U-Pb Ages of the Plagioclase-Amphibole Schist from the Wuguan Group in Shangdan Area, East Qingling, and Its Geological Significance [J]. Northwestern Geology, 2017, 50(01): 198-211. doi: 10.3969/j.issn.1009-6248.2017.01.017
    金伟衎. 豫西西峡-桐柏金矿床地质与地球化学特征及找矿意义[D]. 武汉: 中国地质大学, 2021

    JIN Weikan. Geological-geochemical characteristics and prospecting significance of gold deposits in Xixia-Tongbai district, Western Henan [D]. Wuhan: China University of Geosciences, 2021.
    梁涛, 卢仁, 杨楠, 等. 河南省西峡县高庄金矿Rb-Sr等时线年龄和H、O、S、Pb同位素特征: 北秦岭板内造山成矿作用的识别[J]. 中国地质, 2020, 47(02): 406-425

    LIANG Tao, LU Ren, YANG Nan, et al. Rb-Sr isochron age and isotopic compositions of H, O, S and Pb of the Gaozhuang gold deposit, Xixia County, Henan Province: ldentification of intraplate orogenic metallogenesis in northern Qinling Mountain [J]. Geology in China, 2020, 47(02): 406-425.
    刘欢. 桐柏—大别造山带剪切带构造与年代学研究[D]. 合肥: 合肥工业大学, 2016

    LIU Huan. The structure and geochronology of the shear zones in the Tongbai-Dabie orogenic belt [D]. Hefei: Hefei University of Technology, 2016.
    刘巍, 郭震, 陈永顺, 等. 地球物理综合观测揭示秦岭—桐柏—大别复合造山带地壳及上地幔结构[J]. 地球物理学报, 2021, 64(09): 3179-3193 doi: 10.6038/cjg2021O0406

    LIU Wei, GUO Zheng, CHEN Yongshun, et al. The crustal and uppermostMantle structure of the Qinling-Tongbai-Dabie orogenic belt from integrated geophysical observations [J]. Chinese Journal of Geophysics, 2021, 64(09): 3179-3193. doi: 10.6038/cjg2021O0406
    柳永正, 张海平, 张永清, 等. 内蒙古中东部玛尼吐组火山岩形成时代及其大地构造环境[J]. 西北地质, 2023, 56(2): 46−60.

    LIU Yongzheng, ZHANG Haiping, ZHANG Yongqing, et al. Zircon U–Pb Age and Tectonic Setting of the Manitu Formation in the Middle–East Inner Mongolia, China[J]. Northwestern Geology, 2023, 56(2): 46−60.
    马昌前, 杨坤光, 明厚利, 等. 大别山中生代地壳从挤压转向伸展的时间: 花岗岩的证据[J]. 中国科学(D辑: 地球科学), 2003(09): 817-827

    MA Changqian, YANG Kunguang, MING Houli, et al. The time when the earth’s crust changed from compression to extension in Mesozoic in Dabie Mountain: The proof of granites [J]. Science in China (series D), 2003(09): 817-827.
    马宏卫. 东秦岭大别山段斑岩型钼(钨、铜)矿床地质特征[J]. 地质与勘探, 2008, 44(01): 50-54

    MA Hongwei. Geology of Porphyry Molybdenum(Tungsten Copper) Deposits in the Dabieshan, Eastern Qinling [J]. Geology and Exploration, 2008, 44(01): 50-54.
    马骁, 李玮, 杨源祯, 等. 北秦岭东部及华北南缘古生代以来花岗岩时空分布及其构造意义[J]. 地质科技情报, 2016, 35(03): 9-16

    MA Xiao, LI Wei, YANG Yuanzhen, et al. Spatial and temporal distribution of granitoids since Paleozoic in southernMargin of the North China and east part of the North Qinling, and its tectonic significance [J]. Geological Science and Technology Information, 2016, 35(03): 9-16.
    毛景文, 李晓峰, 张作衡, 等. 中国东部中生代浅成热液金矿的类型、特征及其地球动力学背景[J]. 高校地质学报, 2003, 9(04): 620-637 doi: 10.3969/j.issn.1006-7493.2003.04.014

    MAO Jingwen, LI Xiaofeng, ZHANG Zuoheng, et al. Geology, distribution, types and tectonic settings of Mesozoic epithermal gold deposits in East China [J]. Geological Journal of China Universities, 2003, 9(04): 620-637. doi: 10.3969/j.issn.1006-7493.2003.04.014
    唐克非. 华北克拉通南缘熊耳山地区金矿床时空演化、矿床成因及成矿构造背景[D]. 武汉: 中国地质大学, 2014

    TANG Kefei. Characteristics, Genesis, and geodynamic setting of representative gold deposits in the Xiong'ershan District, southernMargin of the North China Craton [D]. China University of Geosciences, 2014.
    王勇生, 白桥, 杨秉飞. 北大别单元混合岩的变形及锆石年代学特征: 对混合岩变形时间的限定[J]. 中国科学: 地球科学, 2018, 48(08): 980-996

    WANG Yongsheng, BAI Qiao, YANG Binfei. Structural characteristics and geochronology of migmatites in the North Dabie Complex unit: Timing of postcollisional deformation [J]. Science China Earth Sciences, 2018, 48(08): 980-996.
    王梓桐, 王根厚, 张维杰, 等. 阿拉善地块南缘志留纪花岗闪长岩LA-ICP-MS锆石U-Pb年龄及地球化学特征[J]. 成都理工大学学报(自然科学版), 2022, 49(5): 586−600.

    WANG Zitong, WANG Genhou, ZHANG Weijie, et al. LA-ICP-MS zircon U-Pb dating and geochemical characteristics of the Silurian granodiorite in the southern margin of Alxa Block, China [J]. Journal of Chengdu University of Technology (Science & Technology Edition), 2022, 49(5): 586−600.
    吴皓然, 谢玉玲, 王莹. 大别造山带汞洞冲铅锌矿床矿物学特征和铅同位素研究[J]. 地质通报, 2020, 39(Z1): 338-352

    WU Haoran, XIE Yuling, WANG Ying. Mineralogical characteristics and Pb isotopes of Gongdongchong lead-zinc polymetallic deposit, Dabie orogenic belt. Geological Bulletin of China, 2020, 39(Z1): 338-352.
    向祥辉, 肖宝珠, 张战. 桐柏山南坡金矿床(点)地质特征、成因及找矿前景[J]. 资源环境与工程, 2021, 35(06): 794-801 doi: 10.16536/j.cnki.issn.1671-1211.2021.06.005

    XIANG Yianghui, XIAO Baozhu, ZHANG Zhan. Geological characteristics, genesis and prospecting potential of gold deposit ( point) in southern slope of Tongbai Mountain [J]. Resources Environment & Engineering, 2021, 35(06): 794-801. doi: 10.16536/j.cnki.issn.1671-1211.2021.06.005
    徐江嬿, 曾小华, 刘嘉, 等. 桐柏-大别造山带麻城地区金矿成矿地质背景及空间展布特征[J]. 资源环境与工程, 2020, 34(02): 180-183

    XU Jiangyan, ZENG Xiaohua, LIU Jia, et al. Geological background and spatial distribution of gold deposits inMacheng area of Tongbai-Dabie Orogenic Belt [J]. Resources Environment & Engineering, 2020, 34(02): 180-183.
    杨济远, 李杰, 白春东, 等. 冀西北宣化盆地侏罗纪九龙山组凝灰岩形成时代、构造环境及地质意义[J]. 西北地质, 2023, 56(6): 314−328.

    YANG Jiyuan, LI Jie, BAI Chundong, et al. Formation Age, Tectonic Setting and Geological Significance of The Jurassic Jiulongshan Formation Tuff in Xuanhua Basin, Northwest Hebei[J]. Northwestern Geology, 2023, 56(6): 314−328.
    曾小华, 刘嘉, 杜文洋, 等. 湖北省麻城市两路口钨矿地质特征、成因及找矿前景探讨[J]. 资源环境与工程, 2021, 35(03): 301-307 doi: 10.16536/j.cnki.issn.1671-1211.2021.03.005

    ZENG Xiaohua, LIU Jia, DU Wenyang, et al. Discussion on geological characteristics and genesis of tungsten deposit in Lianglukou, Macheng City, Hubei Province [J]. Resources Environment & Engineering, 2021, 35(03): 301-307. doi: 10.16536/j.cnki.issn.1671-1211.2021.03.005
    曾小华, 刘嘉, 徐江嬿, 等. 湖北麻城双庙关金矿床地质特征及找矿方向[J]. 矿产勘查, 2020, 11(09): 1845-1852 doi: 10.3969/j.issn.1674-7801.2020.09.006

    ZENG Xiaohua, LIU Jia, XU Jiangyan, et al. Geological characteristics and prospecting direction of Shuangmiaoguan gold deposit, Macheng city, Hubei Province [J]. Mineral Exploration, 2020, 11(09): 1845-1852. doi: 10.3969/j.issn.1674-7801.2020.09.006
    张国伟, 董云鹏, 姚安平. 造山带与造山作用及其研究的新起点[J]. 西北地质, 2001, (01): 1-9 doi: 10.3969/j.issn.1009-6248.2001.01.001

    ZHANG Guowei, DONG Yunpeng, YAO Anping. Review on the development of studies on the tectonic and orogen process of orogenic belt, and discussing on some new key problems [J]. Northwestern Geology, 2001, (01): 1-9. doi: 10.3969/j.issn.1009-6248.2001.01.001
    张国伟, 孟庆任, 赖绍聪. 秦岭造山带的结构构造[J]. 中国科学(B辑), 1995(09): 994-1003

    ZHANG Guowei, MENG Qingren, LAI Shaocong. Structural Structure of Qinling Orogenic Belt Science [J]. Science China (B), 1995(09): 994-1003.
    张哲坤. 古太平洋俯冲对华北克拉通陆内变形及岩浆作用的制约[D]. 广州: 中国科学院大学(中国科学院广州地球化学研究所), 2020

    ZHANG Zhekun. Intracontinental deformation andMagmatism of the North China Craton induced by subduction of the paleo-Pacific plate [D]. Guangzhou: University of Chinese Academy of Sciences (Guangzhou Institute of Geochemistry, CAS), 2020.
    赵新福, 李占轲, 赵少瑞, 等. 华北克拉通南缘早白垩世区域大规模岩浆-热液成矿系统[J]. 地球科学, 2019, 44(02): 550

    ZHAO Xinfu, LI Zhanke, ZHAO Shaorui, et al. Early Cretaceous Regional-ScaleMagmatic-Hydrothermal Metallogenic System at the SouthernMargin of the North China Carton [J]. Earth Science, 2019, 44(02): 550.
    赵宇洁. 桐柏-大别混合岩的成因及其地质意义[D]. 武汉: 中国地质大学, 2021

    ZHAO Yujie. Migmatites in the Tongbai-Dabie orogen: pertogenesis and implications[D]. Wuhan: China University of Geosciences, 2021.
    朱雪丽, 董王仓, 李维成等. 陕南秦岭造山带侵入岩的控矿作用及其找矿意义[J]. 西北地质, 2021, 54(03): 163-173 doi: 10.19751/j.cnki.61-1149/p.2021.03.013

    ZHU Xueli, DONG Wangcang, LI Weicheng, et al. Ore-controlling Factors and Prospecting Significance of Intrusive Rocks in South Shaanxi Qinling Orogenic Belt [J]. Northwestern Geology, 2021, 54(03): 163-173. doi: 10.19751/j.cnki.61-1149/p.2021.03.013
    GrantMatthew L, Wilde Simon A, Wu Fuyuan, et al. The application of zircon cathodoluminescence imaging, Th–U–Pb chemistry and U–Pb ages in interpreting discreteMagmatic and high-grade metamorphic events in the North China Craton at the Archean/Proterozoic boundary[J]. Chemical Geology, 2009, 261(1-2): 155-171. doi: 10.1016/j.chemgeo.2008.11.002
    JI Wenbin, LIN Wei, Faure Michel, et al. The early Cretaceous orogen-scale Dabieshan metamorphic core complex: implications for extensional collapse of the Triassic HP–UHP orogenic belt in east-central China[J]. International Journal of Earth Sciences, 2017, 106(4): 1311-1340. doi: 10.1007/s00531-016-1311-6
    Keay Sue, Lister Gordon, Buick Ian, et al. The timing of partial melting, Barrovian metamorphism and granite intrusion in the Naxos metamorphic core complex, Cyclades, Aegean Sea, Greece[J]. Tectonophysics, 2001, 342(3-4): 275-312. doi: 10.1016/S0040-1951(01)00168-8
    LI Jianwei, BI Shijian, Selby David, et al. Giant Mesozoic gold provinces related to the destruction of the North China craton[J]. Earth and Planetary Science Letters, 2012, 349-350: 26-37. doi: 10.1016/j.jpgl.2012.06.058
    LIU Yongsheng, GAO Shan, HU Zhaochu, et al. Continental and Oceanic Crust Recycling-induced Melt-Peridotite Interactions in the Trans-North China Orogen: U-Pb Dating, Hf Isotopes and Trace Elements in Zircons fromMantle Xenoliths[J]. Journal of Petrology, 2010, 51(1-2): 537-571. doi: 10.1093/petrology/egp082
    LIU Yongsheng, HU Zhaochu, GAO Shan, et al. In situ analysis ofMajor and trace elements of anhydrous minerals by LA-ICP-MS without applying an internal standard[J]. Chemical Geology, 2008, 257(1-2): 34-43. doi: 10.1016/j.chemgeo.2008.08.004
    Rubatto D. Zircon trace element geochemistry;partitioning with garnet and the link between U-Pb ages and metamorphism[J]. Chemical geology, 2002, 184(1-2): 123-138. doi: 10.1016/S0009-2541(01)00355-2
    WANG Peng, JIAN Wei, MaO Jingwen, et al. Geochronology and fluid source constraints of the Songligou gold‐telluride deposit, western Henan Province, China: Analysis of genetic implications[J]. Resource Geology, 2019, 70(2): 169-187.
    ZONG Keqing, Klemd Reiner, YUAN Yu, et al. The assembly of Rodinia: The correlation of early Neoproterozoic (ca. 900Ma) high-grade metamorphism and continental arc formation in the southern Beishan Orogen, southern Central Asian Orogenic Belt (CAOB)[J]. Precambrian Research, 2017, 290: 32-48. doi: 10.1016/j.precamres.2016.12.010
  • Related Articles

Catalog

    Article views (171) PDF downloads (61) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return