• The Core Journal of China
  • Included in Chinese Science Citation Database
  • The Key Magazine of China technology
  • Frontrunner 5000—Top Articles in Outstanding S&T Journals of China
  • Included in Scopus
  • Included in Chemical Abstracts (CA)
  • Included in Russian Abstract Journal (AJ)
Advanced Search
NIU Shu-yin, SUN Ai-qun, WANG Bao-de, LIU Jian-ming, GUO Li-jun, HU Hua-bin, XU Chuan-shi. Source of ore-forming materials and mineralization of the Dajing Cu-Sn polymetallic deposit, Inner Mongolia[J]. GEOLOGY IN CHINA, 2008, 35(4): 714-724.
Citation: NIU Shu-yin, SUN Ai-qun, WANG Bao-de, LIU Jian-ming, GUO Li-jun, HU Hua-bin, XU Chuan-shi. Source of ore-forming materials and mineralization of the Dajing Cu-Sn polymetallic deposit, Inner Mongolia[J]. GEOLOGY IN CHINA, 2008, 35(4): 714-724.

Source of ore-forming materials and mineralization of the Dajing Cu-Sn polymetallic deposit, Inner Mongolia

More Information
  • Abstract:The Dajing Cu-Sn polymetallic deposit is characterized by its large size, many associated elements, narrow and dense ore veins and high grades. However, no Yanshanian intrusions were found within the limits of the ore field, so the genesis of the deposit is in controversy. From a viewpoint of mantle branch tectonics, the deposit is situated at the core of the Da Hinggan Mountains mantle branch, and the multiple evolution of the mantle hot plume linked up the deep hydrothermal ore fluids. The ore fluids extracted some ore materials on the way, which concentrated in favorable structural fractures and formed the deposit. The orientation of ore-controlling fractures is closely related with the regional structural stress field during mineralization. The zoning of the ore-forming elements Sn, Cu, Au, Ag, Pb and Zn within the deposit should be related to mineralization and crystallization temperatures of ore materials. The mineralizations of the elements such as Sn, Cu and Au, which crystallized under higher P-T conditions, are in the center of the ore field; whereas the mineralizations of the elements such as Ag, Pb and Zn, which crystallized under lower P-T conditions, were mostly localized in the surroundings of the deposit.
  • Related Articles

    [1]SHEN Liang, ZHAO Shengjin, YU Haiyang, LIU Zhihui, ZHOU Yingshuai, ZHANG Meng, PIAO Lili. Zircon age and geochemical characteristics of Hadataolegai Formation volcanic rocks in Da Hinggan Mountains and its continental marginal arc setting[J]. GEOLOGY IN CHINA, 2020, 47(4): 1041-1055. DOI: 10.12029/gc20200410
    [2]SUN Li-xin, REN Bang-fang, WANG Ruo-hong, WANG Shu-qing, LI Yan-feng. The discovery of the oceanic island basalts in Jiageda Formation of northern Da Hinggan Mountains and its geological implications[J]. GEOLOGY IN CHINA, 2014, 41(4): 1178-1189. DOI: 10.12029/gc20140412
    [3]Shi Jianmin, Hu Xin, Ding Jishuang, Lv Shijia. Aeromagnetic anomaly characteristics and prospecting effect in the Da Hinggan Mountains of Heilongjiang Province[J]. GEOLOGY IN CHINA, 2014, 41(2): 611-620. DOI: 10.12029/gc20140222
    [4]ZHANG Wan-Yi, NIE Feng-Jun, LIU Shu-wen, ZUO Li-Yan, SHAN Liang, YAO Xiao-Feng. Characteristics and metallogenic regularities of ore deposits on the western slope of the southern section of the Da Hinggan Mountains metallogenic belt[J]. GEOLOGY IN CHINA, 2013, 40(5): 1583-1599. DOI: 10.12029/gc20130522
    [5]SUN Zhong-shi, LIU Si-chuan, ZHENG Chang-qing, TAN Lian, SUN Li, LI Juan, SHI Lu, CUI Fang-hua, FAN Si-qi. The ore-control structural features and ore-host regularity of Chaihe-Moguqi area in the Da Hinggan Mountains[J]. GEOLOGY IN CHINA, 2013, 40(2): 529-537. DOI: 10.12029/gc20130217
    [6]NIE Feng-jun, SUN Zheng-jiang, LIU Yi-fei, LV Ke-peng, ZHAO Yu-an, CAO Yi. Mesozoic multiple magmatic activities and molybdenum mineralization in the Chalukou ore district, Da Hinggan Mountains[J]. GEOLOGY IN CHINA, 2013, 40(1): 273-286. DOI: 10.12029/gc20130118
    [7]DAI Hui-min, YANG Zhong-fang, MA Zhen-dong, GONG Chuan-dong. The petrogeochemical characteristics and tectonic setting of Mesozoic intrusive rocks in Chabaqi area of the Da Hinggan Mountains[J]. GEOLOGY IN CHINA, 2013, 40(1): 232-247. DOI: 10.12029/gc20130116
    [8]WU Xin-li, MAO Jing-wen, ZHOU Zhen-hua, OU’YANG He-gen. H-O-S-Pb isotopic components of the Budunhua Cu deposit in the middle-south part of the Da Hinggan Mountains and their implications for the ore-forming process[J]. GEOLOGY IN CHINA, 2012, 39(6): 1812-1829. DOI: 10.12029/gc20120626
    [9]MENG Zhao-jun, KAN Xue-sheng, LI Xian-chen, WANG Jian-ping, ZHANG Rui-zhong, LV Ke-peng, SUN Zhen-jiang, SHI Yao-jun, ZHANG Jia-nan, WANG Hong-yan, HAN Long, ZHANG Guo-yu. The discovery and exploration process of the Chalukou giant porphyry molybdenum polymetallic deposit in forest-covered area of northeastern Da Higgnan Mountains and its geological significance[J]. GEOLOGY IN CHINA, 2011, 38(6): 1504-1517. DOI: 10.12029/gc20110611
    [10]LI Yang-chun, ZHANG Yu, JIANG Yi, HAN Yan-dong, YANG Xiao-ping. Deformation features of the Wolegen Group-complex and establishment of tectonostratigraphic units in the Huzhong area, Da Hinggan Mountains[J]. GEOLOGY IN CHINA, 2003, 30(4): 388-393. DOI: 10.12029/gc20030409
  • Cited by

    Periodical cited type(4)

    1. 韩伟,蒋兴超,王建强,李玉宏,郭望,张云鹏,陈高潮. 汉中地区构造演化及寒武系页岩气形成地质条件研究. 地质学报. 2024(06): 1829-1839 .
    2. 赵洪波,朱芝同,梁涛,赵志涛,朱迪斯,单文军,刘文武,何远信. 页岩气基础地质调查钻井技术研究进展及展望. 中国地质. 2023(02): 376-394 . 本站查看
    3. 乔建新,李金钱,王小朗,马宏民,赵强. 陕西汉中南部地区下古生界页岩气地质特征及有利区预测. 河北地质大学学报. 2021(04): 44-49 .
    4. 乔建新,李金钱,王小朗. 汉南-米仓山古隆起周缘下寒武统牛蹄塘组分布特征及生烃潜力. 辽宁化工. 2021(09): 1412-1414+1418 .

    Other cited types(2)

Catalog

    Article views (3715) PDF downloads (3806) Cited by(6)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return