2021 Vol. 54, No. 2
Article Contents

LI Yuanbai, YANG Xinjie, WANG Yanyun, WANG Lei, LI Shucai. 2021. Discussion on Genetic Types and Prospecting Markers of Graphite Deposits in Ulan Area of Inner Mongolia. Northwestern Geology, 54(2): 227-238. doi: 10.19751/j.cnki.61-1149/p.2021.02.020
Citation: LI Yuanbai, YANG Xinjie, WANG Yanyun, WANG Lei, LI Shucai. 2021. Discussion on Genetic Types and Prospecting Markers of Graphite Deposits in Ulan Area of Inner Mongolia. Northwestern Geology, 54(2): 227-238. doi: 10.19751/j.cnki.61-1149/p.2021.02.020

Discussion on Genetic Types and Prospecting Markers of Graphite Deposits in Ulan Area of Inner Mongolia

More Information
  • On the basis of field investigation, this paper used 13C isotope analysis and differential thermal analysis to determine the metallogenic conditions and genetic types of Wulan crystalline graphite ore in the northern margin of Craton in North China.The average content of graphene 13C is-27.17 ‰,slightly higher than that of the organic matter 13C (-26‰).The maximum exothermal peak of graphite is 726-1 030℃,mainly between 900-1 030℃, showing that the metamorphism of the graphite ore was amphibolite facies and granulite facies.The carbon was from homologous biological organic matter.The characteristic of the deposit and that of mineral combinations deduced that the mineral-bearing structure of graphite ore was a set of typical high-temperature metamorphic aluminium-rich sedimentary rocks. The organic deposits were decomposed and recrystallized by regional metamorphism,forming graphite source beds.The heat source provided by the Hualixi intrusive body increased the flake of the graphite, thus graphite ore enriched and formed at later stage because of ductile shear.
  • 加载中
  • 姜高珍,李以科,王安建,等.内蒙古乌拉特中旗大乌淀石墨矿成因特征分析[J].地学前缘,2017, 24 (5):306-316.

    Google Scholar

    JIANG Gaozhen,LI Yike,WANG Anjian,et al. Genetic features of Dawudian graphite deposit in Urad Middle Banner,Inner Mongolia[J].Earth Science Frontiers,2017,24(5):306-316.

    Google Scholar

    兰心俨.山东南墅前寒武纪含石墨建造的特征及石墨矿床的成因研究[J].长春地质学院学报,1981(3):30-42.

    Google Scholar

    LAN Xinyan. Characteristics of Precambrian graphite-bearing formation and Genesis of graphite deposit in Nanshu, Shandong Province[J].Journal of Changchun University Earth Science,1981(3):30-42.

    Google Scholar

    李寒滨,张冰.黑龙江云山石墨矿床变质作用及其意义[J].中国非金属矿工业导刊,2014(01):45-46.

    Google Scholar

    LI Hanbin,ZHANG Bing.Metamorphism and Its Significance of Yunshan Graphite in Heilongjing[J]. China Non-Metallic Minerals Industry,2014(01):45-46.

    Google Scholar

    李超,王登红,赵鸿,等.中国石墨矿床成矿规律概要[J].矿床地质,2015,34(06):1223-1236.

    Google Scholar

    LI Chao,WANG Denghong,ZHAO Hong,et al. Minerogenetic regularity of graphite deposits in China[J]. Deposit Geology,2015,34(06):1223-1236.

    Google Scholar

    张清平,田成胜.湖北三岔垭石墨矿地质特征及成因分析[J].中国非金属矿工业导刊,2011,(增刊):44.

    Google Scholar

    ZHANG Qingping,TIAN Chengsheng. Geological characteristics and genetic analysis of Sanchaya graphite deposits in Hubei Province[J]. China Non-Metallic Minerals Industry,2011,(s):44.

    Google Scholar

    柴静,刘树友.鸡西柳毛石墨矿床地质特征及成因浅析[J].黑龙江地质,1992, 3(2):47-55.

    Google Scholar

    CHAI Jing,LIU Shuyou.Geological characteristics and Genesis from Liumao graphite formation in Jixi[J].Heilongjiang Geology,1992, 3(2):47-55.

    Google Scholar

    张国新,胡霭琴,张鸿斌,等.新疆苏吉泉石墨矿床成因的碳同位素证据[J].地球化学,1996,25(4):379-386.

    Google Scholar

    ZHANG Guoxin,HU Aiqin,ZHANG Hongbin,et al. Carbon isopotic evidence for the origin of the spherical graphite in a granite-hosted graphite deposit,sujiquan Xinjing,China[J].Geochemistry,1996,25(4):379-386.

    Google Scholar

    陈毓川, 薛春纪, 王登红,等.华北陆块北缘区域矿床成矿谱系探讨[J].高校地质学报, 2003, 9 (4):520-535.

    Google Scholar

    CHEN Yuchuan, XUE Chunji, WANG Denghong,et al. A Discussion on the Regional Pedigree of the ore deposits in the Northern Margin of the North China Landamass[J].Geological Journal of China Universities, 2003, 9 (4):520-535.

    Google Scholar

    翟明国.华北克拉通的形成演化与成矿作用[J].矿床地质, 2010, 29 (1):24-36.

    Google Scholar

    ZHAI Mingguo.Tectonic evolution and metal ogenesis of North China Craton[J].Mineral Deposits, 2010, 29 (1):24-36.

    Google Scholar

    张瑞英, 张成立, 孙勇.华北克拉通~2.5Ga地壳再造事件:来自中条山TTG质片麻岩的证据[J].岩石学报, 2013, 29 (7):2265-2280.

    Google Scholar

    ZHANG Ruiying, ZHANG Chengli, SUN Yong.Crustal reworking in the North China Craton at ~2.5Ga:Evidence from zircon U-Pb ages,Hf isotopes and whole-roke geochemistry of the TTG gneisses in the Zhongtiao Mountain[J]. Acta Petrologica Sinica, 2013, 29 (7):2265-2280.

    Google Scholar

    翟明国.克拉通化与华北陆块的形成[J].中国科学:地球科学, 2011, 41 (8):1037-1046.

    Google Scholar

    ZHAI Mingguo.Cratonization and the formation of the north China Block[J].Science China:Earth Science, 2011, 41 (8):1037-1046.

    Google Scholar

    赵宗溥.中朝准地台前寒武纪地壳演化[M].北京:科学出版社, 1993.

    Google Scholar

    ZHAO Zongpu. Precambrian crustal evolution of the sino-korean paraplatform[M].Beijing:Science Press, 1993.

    Google Scholar

    翟明国.新太古代全球克拉通事件与太古宙-元古宙分界的地质涵义[J].大地构造与成矿学, 2006, 30 (4):419-421.

    Google Scholar

    ZHAI Mingguo.Geological significance of the neoarchean global craton ization event and the boundary between archent and proterozoic[J].Geotectonica et Metalbgenia, 2006, 30 (4):419-421.

    Google Scholar

    李旭平,王晗,孔凡梅.高温-超高温变质作用成因研究——来自华北克拉通西部孔兹岩带和南非Kaapvaal克拉通西南部Namaqua活动带与Bushveld变质杂岩体的启示[J].岩石学报,2019,35(2):295-311.

    Google Scholar

    LI Xuping,WANG Han,KONG Fanmei.Probe into the high temperature-ultrahigh temperature metamorphism:The enlightenment from the Western Khondalite Belt of the North China Craton and the Namaqua mobile belt and the Bushveld metamorphic complex of South Africa[J]. Acta Petrologica Sinica,2019,35(2):295-311.

    Google Scholar

    肖伟,聂凤军,刘翼飞,等.内蒙古长山壕金矿区花岗岩同位素年代学研究及地质意义[J].岩石学报,2012,28(2):535-543.

    Google Scholar

    XIAO Wei,NIE Fengjun,LIU Yifei,et al. Isotope geochronology study of the granitoid intrusions in the Changshanhao gold deposit and geological implications[J].Acta Petrologica Sinica,2012,28(2):535-543.

    Google Scholar

    孙德育,梁一鸿,张业明.内蒙武川-固阳-大佘太韧性剪切带与金矿[J].长春地质学院学报,1990(4):399-406+428.

    Google Scholar

    SUN Deyu,LIANG Yihong,ZHANG Yeming.Ductile shear zone and gold deposits in wuchuan-guyang-dashetai inner mongolia[J].Journal of Changchun University Earth Science,1990(4):399-406+428.

    Google Scholar

    邵积东.对内蒙古太古代地层划分及形成时代的重新认识[J].西部资源,2015(1):154-161.

    Google Scholar

    SHAO Jidong. A new understanding of Archean stratigraphic division and Formation Age in Inner Mongolia[J].Western Resources,2015(1):154-161.

    Google Scholar

    曹毅,聂凤军,肖伟,等.初论内蒙古长山壕金矿床的成矿时限[J].岩石学报,2014,30(7):2092-2100.

    Google Scholar

    CAO Yi,NIE Fengjun,XIAO Wei,et al. Metallogenic age of the Changshanhao gold deposit in Inner Mongolia,China[J].Acta Petrologica Sinica,2014,30(7):2092-2100.

    Google Scholar

    彭润民,翟裕生,韩雪峰,等.内蒙古狼山造山带构造演化与成矿响应[J].岩石学报,2007,23(3):679-688.

    Google Scholar

    PENG Runming,ZHAI Yusheng,HAN Xuefeng,et al. Mineralization response to the structural evolution in the Langshan orogenic belt,Inner Mongolia[J].Acta Petrologica Sinica,2007,23(3):679-688.

    Google Scholar

    翟明国,胡波,彭澎,等.华北中-新元古代的岩浆作用与多期裂谷事件[J].地学前缘,2014,21(1):100-119.

    Google Scholar

    ZHAI Mingguo,HU Bo,PENG Peng,et al. Meso-Neoproterozoic magmatic events and multi-stage rifting in the NCC[J].Earth Science Frontiers,2014,21(1):100-119.

    Google Scholar

    李树才,等.内蒙古1:5万乌兰岗幅(K49E012004)、乌兰幅(K49E013004)、角力格太幅(K49E014004)、哈台山幅(K49E015004)区域地质调查报告[R].内蒙古:国土资源实物地质资料中心,2011.

    Google Scholar

    LI Shucai,et al. Regional Geological Survey Report of wulangang sheet (K49E012004), Wulan sheet (K49E013004), Jiaoligetai sheet (K49E014004) and Hatai Mountain Sheet (K49E015004) in Inner Mongolia[R]. Inner Mongolia:Cores and Samples Center of Lang and Resources, 2011.

    Google Scholar

    陈衍景,刘丛强,陈华勇,等.中国北方石墨矿床及赋矿孔达岩系碳同位素特征及有关问题讨论[J].岩石学报,2002,16(2):233-244.

    Google Scholar

    CHEN Yanjing,LIU Congqiang,CHEN Huayong,et al. Carbon isotope geochemistry of graphite deposits and ore-bearing khondalite series in North China implications for several geoscientific problems[J].Acta Petrologica Sinica,2002,16(2):233-244.

    Google Scholar

    莫如爵.中国石墨矿床地质[M].北京:中国建筑工业出版社,1989.

    Google Scholar

    MO Rujue.Geology of graphite deposits in China[M].Beijing:China Construction Industry Press,1989.

    Google Scholar

    李光辉,黄永卫,吴润堂,等. 鸡西柳毛石墨矿碳质来源及铀、钒的富集机制[J].世界地质,2008,27(1):19-22.

    Google Scholar

    LI Guanghui,HANG Yongwei,WU Runtang,et al. Origin of carbon and concentration of uranium and vanadium from Liumao graphite formation in Jixi[J].Global Geology,2008,27(1):19-22.

    Google Scholar

    甘盛飞.内蒙古乌拉山群麻粒岩相岩石的变质温压条件[J].矿物岩石,1991(02):10-18.

    Google Scholar

    GAN Shengfei.Metamorphic P-Tconditions of the rocks of archean (wuiashan group) granulite facies in Inner Mongolia,North China[J].Journal of Mineralogy and Petrology,1991(02):10-18.

    Google Scholar

    崔文元.地质温压计在研究华北地台北缘麻粒岩带变质作用中的应用[J].矿物岩石地球化学通讯,1989(02):108-110.

    Google Scholar

    CUI Wenyuan. Application of geothermometers in the study of granulite belt metamorphism in the northern margin of north China Platform[J]. Bulletin of Mineralogy, Petrology and Geochemistry,1989(02):108-110.

    Google Scholar

    陈衍景.23亿年地质环境突变的证据及若干问题的讨论[J].地层学杂志,1990(03):178-186.

    Google Scholar

    CHEN Yanjing. Evidence of abrupt change of geological environment in 2.3 billion years and discussion on some problems[J].Journal of Stratigraphy,1990(03):178-186.

    Google Scholar

    苑清玲,李齐白.内蒙兴和石墨矿区变质岩系的原岩恹复及石墨矿床的成因探讨[J].四川建材学院学报,1986(01):17-32.

    Google Scholar

    YUAN Qingling,LI Qibai.Recover of the original rocks of metamorphic and the geneses of graphite deposit research in Xing-he,Inner Mongolia[J].Journal of Sichuan Institute of Building Materials,1986(01):17-32.

    Google Scholar

    边敏,程林,姚敬劬.区域变质型晶质石墨矿石墨生成的热力学分析[J].矿产与地质,2018,32(1):97-100.

    Google Scholar

    BIAN Min,CHENG Lin,YAO Jingqu.Thermodynamics research of graphite forming in regional metamorphic graphite deposits[J].Mineral Resources and Geology,2018,32(1):97-100.

    Google Scholar

    袁见齐,朱上庆,翟裕生.矿床学[M].北京:地质出版社,1985.

    Google Scholar

    YUAN Jianqi,ZHU Shangqing,ZHAI Yusheng. Mineralogy[M].Beijing:Geological Publishing House,1985.

    Google Scholar

    马志鑫,罗茂金,刘喜停,等.四川南江坪河石墨矿炭质来源及成矿机制[J].地质科技情报,2018,37(3):134-139.

    Google Scholar

    MA Zhixin,LUO Maojin,LIU Xiting, et al. Carbon source and metallogenic mechanism of Pinghe graphite deposit at Nanjiang,Sichuan Province[J].Geological Science and Technology Information,2018,37(3):134-139.

    Google Scholar

    张艳飞,梁帅.内蒙古大乌淀石墨矿地质特征与成因探讨[J].地质找矿论丛,2018,33(02):205-213.

    Google Scholar

    ZHANG Yanfei,LIANG Shuai.Geological characteristics and genesis of Dawudian graphite deposit in Inner Mongolia[J].Contributions to Geology and Mineral Resources Research,2018,33(2):205-213.

    Google Scholar

    刘金中,钱祥麟,陈亚平.中国内蒙中部孔兹岩系中石墨矿的构造成因[J].大地构造与成矿学,1989(2):162-167.

    Google Scholar

    LIU Jinzhong,QIAN Xianglin,CHEN Yaping.The tectonic origin of graphite deposits in the khondalite group,the middle part of inner Mongolia,China[J]. Geotectonica et Metallogenia,1989(2):162-167.

    Google Scholar

    吴正伟,姚立.冀北龙关石墨矿区的韧性剪切带及其控矿机理[J].中国非金属矿工业导刊,2008(5):51-54.

    Google Scholar

    WU Zhengwei,YAO Li.The ductile shear zone controls the forming of longguan graphite deposit in eastern Hebei[J]. China Non-Metallic Minerals Industry,2008(5):51-54.

    Google Scholar

    彭素霞,陈向阳,陈隽璐,等.新疆东准噶尔地区石墨矿成矿特征及成因探讨[J].西北地质,2018,51(04):194-201.

    Google Scholar

    PENG Suxia,CHEN Xiangyang,CHEN Junlu, et al. Metallogenic geological characteristics and genesis of the graphite ore belt in east junggar,Xinjiang[J]. Northwestern Geology,2018,51(04):194-201.

    Google Scholar

    马旭东,钟焱,陈雅丽,等.华北克拉通孔兹岩带内孔兹岩系沉积过程对石墨矿床成矿的控制[J].大地构造与成矿学,2019,43(06):1155-1168.

    Google Scholar

    MA Xudong,ZHONG Yan,CHEN Yali, et al. Sdimentray process controls on the graphite mineralized in the khondalite series,Western North China Craton[J].Geotectonica et Metallogenia,2019,43(06):1155-1168.

    Google Scholar

    杨学明,杨晓勇.岩石地球化学[M].合肥:中国科学技术大学出版社,2000.

    Google Scholar

    YANG Xueming,YANG Xiaoyong.Rock Geochemistry[M].Hefei:University of Science and Technology of China Publishing House,2000.

    Google Scholar

    黄伯钧,Peter R.Buseck.变质岩中碳质物质的石墨化作用[J].矿物学报,1986(4):350-353+388.

    Google Scholar

    HUANG Bojun,Peter R.Buseck.Graphitization of carbonaceous material in metamorphic rocks[J]. Acta Mineralogica Sinica,1986(4):350-353+388.

    Google Scholar

    黄伯钧,PeterR.Buseck.几种人造碳的微结构的高分辨电子显微镜研究[J].矿物学报,1986(3):211-216+291.

    Google Scholar

    HUANG Bojun,PeterR.Buseck.Microstructure of some synthetic carbons by high resolution electron microscopy[J].Acta Mineralogica Sinica,1986(3):211-216+291.

    Google Scholar

    寿立永.陕西省石墨矿成矿特征及成矿区带划分[J].西北地质,2018,51(3):185-191.

    Google Scholar

    SHOU Liyong.Metallogenic Characteristics and Mineralization Zoning of Granite Deposits in Shaanxi Province[J].Northwestern Geology,2018,51(3):185-191.

    Google Scholar

    Bai Q,Zhang S T,Wang W L,etal.Variance of graphite import-export volume and price in China for 2003-2012:a time-series analysis[J].Resources Policy,2015,44:65-70

    Google Scholar

    Liu D Y, Nutman A P, Compston W, et al. Remnants of ≥ 3800Ma crust in the Chinese part of the Sino-Korean craton[J].Geology, 1992, 20 (4):339-342.

    Google Scholar

    Zhai M G, Guo J H, Liu W J.Neoarchean to Paleoproterozoic continental evolution and tectonic history of the North China Craton:a review[J].Journal of Asian Earth Sciences, 2005, 24 (5):547-561.

    Google Scholar

    Sanyal P,Acharya B C,Bhattacharya S K,et al. Origin of graphite,andtemperature of metamorphism in Precambrian Easatem Ghats Mobile Belt,Orissa,India:a carbon isotope approach[J].Journal of Asian Earth Sciences,2009,36(2/3):252-260.

    Google Scholar

    Luo G,Junium C K, Kump L R,et al.Shallow stratification prevailed for ~1700 to ~1300 Ma ocean:evidence from organic carbon isotopes in the North China Craton[J].Earth and Planetary Science Letters,2014,400:219-232.

    Google Scholar

    Mizutani S,Satish-Kumar M,Yoshino T.Exper-imental determination of carbon isotope fractionation between graphite carbonated silicate melt under upper mantle conditionons[J].Earth and Planetary Science Letters,2014,392:86-93.

    Google Scholar

    Luque F J,Crespo-Feo E,Barrenechea J F,etal.Carbon isotopes of graphite:implications on fluid history[J].Geoscience Fronticrs,2012,3(2):197-207.

    Google Scholar

    Santosh M,Wada H,Satish-Kumar M,et al. Carbon isotopes "stratigraphy" in a single graphite crystal:implications for the crystal growth mechanism of fluid-deposited graphite[J].American Mineralogist,2003,88:1689-1696.

    Google Scholar

  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article Metrics

Article views(554) PDF downloads(26) Cited by(0)

Access History

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint