Journal of Jilin University(Earth Science Edition) ›› 2018, Vol. 48 ›› Issue (2): 534-544.doi: 10.13278/j.cnki.jjuese.20170272

Previous Articles     Next Articles

Character of Blueschist and Related Metamorphic Rocks from the Toudaoqiao Area, Inner Mongolia and Its Tectonic Implication

Zhao Limin1, Liu Yongjiang1, Teng Jiayu2, Li Weimin1   

  1. 1. College of Earth Sciences, Jilin University, Changchun 130061, China;
    2. The First Geologic Survey of Jilin Province, Changchun 130033, China
  • Received:2017-09-29 Online:2018-03-26 Published:2018-03-26
  • Supported by:
    Supported by National Key Basic Research Program ("973" Program) of China(2013CB429802)and National Natural Science Foundation of China (41302175)

Abstract: A set of high pressure metamorphic rocks are exposed in the Toudaoqiao area, Inner Mongolia. In this study,the investigations on petrography and mineral chemistry are carried out, and two types of metamorphic rocks are classified to blueschist and greenschist on the basis of the mineral assemblages. The mineral assemblage of the blueschist is amphibole+epidote+albite+chlorite+quartz+hematite±phengite±calcite±titanite, and the mineral assemblage of the greenschist is chlorite+albite+quartz±amphibole±epidote±phengite±hematite. The blueschists were suffered from the epidote-blueschist facies metamorphism, with the peak metamorphic conditions of T=400-600℃, p=1.2-1.4 GPa. The greenschists were suffered from the epidote-amphibole facies metamorphism. According to the previous geochronology data, the high pressure blueschist and greenschist are related to the suture zone between Eerguna and Xing'an massifs.

Key words: Toudaoqiao area, blueschist, greenschist, high-pressure metamorphism, suture zone

CLC Number: 

  • P59
[1] Ernst W G. Tectonic History of Subduction Zones Inferred from Retrograde Blueschist p-T Path[J]. Geology, 1988, 16(12):1081-1084.
[2] 董申保. 中国蓝闪石片岩带的一般特征及其分布[J]. 地质学报,1989, 63(3):273-284. Dong Shenbao. The General Features and Distributions of the Glaucophane Schist Belts of China[J]. 1989, 16(12):1081-1084.
[3] 黑龙江省区域地质调查第二队一分队. 塔尔其幅1:20万区域地质调查报告[R]. 齐齐哈尔:黑龙江省地质局,1981:202-205. The Second Team of Regional Geological Survey of the Heilongjiang Province. 1:200000 Regional Geological Survey Report of the Tarq[R]. Qiqihaer:Bureau of Geology and Mineral Resources of Heilongjiang Province, 1981:202-205.
[4] 叶慧文,张兴洲,周裕文. 从蓝片岩及蛇绿岩特点看满洲里-绥芬河断面岩石圈结构与演化[M]//M-SGT地质课题组. 中国满洲里-绥芬河地学断面域内岩石圈结构及其演化的地质研究. 北京:地震出版社,1994:73-83. Ye Huiwen, Zhang Xingzhou, Zhou Yuwen. The Texture and Evolution of Manzhouli-Suifenhe Lithosphere:Study Based on Features of Blueschist and Ophiolites[M]//M-SGT Geology Group. Geological Studies of Lithospheric Structure and Evolution of Manzhouli-Suifenhe Geotransect, China. Beijing:Seismic Press, 1994:73-83.
[5] 张庆奎, 邵学峰, 关培彦, 等. 内蒙古苏布格塔蓝闪石片岩基本特征及成因分析[J]. 中国地质, 2014, 41(4):1205-1214. Zhang Qingkui, Shao Xuefeng, Guan Peiyan, et al. Basic Characteristics and Genetic Analysis of Glaucophane Schist in Subugeta, Inner Mongolia[J]. Geology in China, 2014, 41(4):1205-1214.
[6] Zhou J B, Wang B, Wilde S A, et al. Geochemistry and U-Pb Zircon Dating of the Toudaoqiao Blueschists in the Great Xing'an Range, Northeast China, and Tectonic Implications[J]. Journal of Asian Earth Sciences, 2015, 97:197-210.
[7] Miao L C, Zhang F C, Jiao S J. Age, Protoliths and Tectonic Implications of the Toudaoqiao Blueschists, Inner Mongolia, China[J]. Journal of Asian Earth Sciences, 2015, 105:360-373.
[8] Zhao L M, Takasu A, Liu Y J, et al. Blueschist from the Toudaoqiao Area, Inner Mongolia, NE China:Evidence for the Suture Between the Ergun and the Xing'an Blocks[J]. Earth Science, 2017, 28(2):241-248.
[9] Wu F Y, Zhao G C, Sun D Y, et al. The Hulan Group:Its Role in the Evolution of the Central Asian Orogenic Belt of NE China[J]. Journal of Asian Earth Sciences, 2007, 30:542-556.
[10] 黄汲清, 任纪舜, 姜春发, 等. 中国大地构造基本轮廓[J]. 地质学报, 1977, 51(2):117-135. Huang Jiqing, Ren Jishun, Jiang Chunfa, et al. An Outline of the Tectonic Characteristics of China[J]. Acta Geological Sinica, 1977, 51(2):117-135.
[11] 黄汲清,任纪舜,姜春发,等. 中国大地构造及其演化[M]. 北京:科学出版社,1980:29-47. Huang Jiqing, Ren Jishun, Jiang Chunfa, et al. Geotectonic Evolution of China[M]. Beijing:Science Press, 1980:29-47.
[12] 任纪舜,王作勋,陈炳蔚,等. 新一代中国大地构造[J]. 中国区域地质,1997, 16(3):225-248. Ren Jishun, Wang Zuoxun, Chen Bingwei, et al. A New Generation of Tectonic Map of China[J]. Regional Geology of China, 1997, 16(3):225-248.
[13] 张梅生, 彭向东, 孙晓猛. 中国东北区古生代构造古地理格局[J]. 辽宁地质, 1998(2):91-96. Zhang Meisheng, Peng Xiangdong, Sun Xiaomeng. The Paleozoic Tectonic Geographical Pattern of Northeast China[J]. Liaoning Geology, 1998(2):91-96.
[14] Badarch G, Cunningham W D, Windley B F. A New Terrane Subdivision for Mongolia:Implication for the Phanerozoic Crustal Growth of Central Asia[J]. Journal of Asian Earth Science, 2002, 21:87-110.
[15] 内蒙古自治区地质矿产局. 内蒙古自治区区域地质[M]. 北京:地质出版社,1991:7-498. Bureau of Geology and Mineral Resources of Inner Mongolia Autonomous Region. Regional Geology of the Inner Mongolia Autonomous Region[M]. Beijing:Geological Publishing House, 1991:7-498.
[16] 黑龙江省地质矿产局. 黑龙江省地质志[M].北京:地质出版社,1993:1-734. Bureau of Geology and Mineral Resources of Heilongjiang Province. Regional Geology of Heilongjiang Province[M]. Beijing:Geological Publishing House, 1993:1-734.
[17] 苗来成,刘敦一,张福勤,等. 大兴安岭韩家园子和新林地区兴华渡口群和扎兰屯群锆石SHRIMP U-P年龄[J]. 科学通报,2007, 52(5):591-601. Miao Laicheng, Liu Dunyi, Zhang Fuqin, et al. The SHRIMP U-P Ages of the Zircons from the Xinghuadukou Group and Zhalantun Group in the Hanjiayuanzi and Xinlin Area, Great Xing'an Range[J]. Chinese Science Bulletin, 2007, 52(5):591-601.
[18] Wu F Y, Sun D Y, Ge W C, et al. Geochronology of the Phanerozoic Granitoids in Northeastern China[J]. Journal of Asian Earth Science, 2011, 41(1):1-30.
[19] 周建波,张兴洲,Wilde S A. 中国东北~500 Ma泛非期孔兹岩带的确定及其意义[J]. 岩石学报,2011, 27(4):1235-1245. Zhou Jianbo, Zhang Xingzhou, Wilde S A, et al. Confirming of the Heilongjiang~500 Ma Pan African Hhondalite Belt and Its Tectonic Implications[J]. Acta Petrologica Sinica, 2011, 27(4):1235-1245.
[20] 李锦轶. 中国东北及邻区若干地质构造问题的新认识[J]. 地质论评, 1998, 44(4):339-347. Li Jinyi. Some New Ideas on Tectonics of NE China and Its Neighboring Areas[J]. Geological Review, 1998, 44(4):339-347.
[21] 李锦轶,莫申国,和政军,等. 大兴安岭北段地壳左行走滑运动的时代及其对中国东北及邻区中生代以来地壳构造演化重建的制约[J]. 地学前缘,2004, 11(3):157-168. Li Jinyi, Mo Shenguo, He Zhengjun, et al. The Timing of Crustal Sinistral Strike-Slip Movement in the Northern Great Khing an Ranges and Its Constraint on Reconstruction of the Crustal Tectonic Evolution of NE China and Adjacent Areas Since the Mesozoic[J]. Earth Science Frontiers, 2004, 11(3):157-168.
[22] 李瑞山. 新林蛇绿岩[J]. 黑龙江地质, 1991, 2(1):19-31. Li Ruishan. Xinlin Ophiolite[J]. Heilongjiang Geology, 1991, 2(1):19-31.
[23] 葛文春, 吴福元, 周长勇, 等. 大兴安岭北部塔河花岗岩体的时代及对额尔古纳地块构造归属的制约[J]. 科学通报, 2005, 50(12):1239-1247. Ge Wenchun, Wu Fuyuan, Zhou Changyong, et al. Emplacement Age of the Tahe Granite and Its Constraints on the Tectonic Nature of the Ergun Block in the Northern Part of the Da Hinggan Range[J]. Chinese Science Bulletin, 2005, 50(12):1239-1247.
[24] 刘永江,张兴洲,金巍,等.东北地区晚古生代区域构造演化[J]. 中国地质, 2010, 37(4):943-951. Liu Yongjiang, Zhang Xingzhou, Jin Wei, et al. Late Paleozoic Tectonic Evolution in Northeast[J]. Geology in China, 2010, 37(4):943-951.
[25] Leake B E, Woolley A R, Arps C E S, et al. Nomenclature of Amphiboles:Reports of the Subcommiittee on Amphiboles of the International Mineralogical Association, Commission on New Mineral and Mineral Names[J]. Mineralogical Magazine, 1997, 61:295-321.
[26] Otsuki M, Banno S. Prograde andRetrograde Meta-morphism of Hematite-Bearing Basic Schists in the Sanbagawa Belt in Central Shikoku[J]. Journal of Metamorphic Geology, 1990, 8:425-439.
[27] Evans B W. Phase Relations of Epidoe-Blueschists[J]. Lithos, 1990, 25(1/2/3):3-23.
[28] Massonne H J, Schreyer W. Phengite Geobarometry Based on the Limiting Assemblage with K-Feldspar, Phlogopite, and Quartz[J]. Contributions to Mineralogy and Petrology, 1987, 96:212-224.
[29] Holland T J B. The Experimental Determination of Activities in Disordered and Short-Range Ordered Jadeitic Pyroxenes[J]. Contributions to Mineralogy and Petrology, 1983, 82(2/3):214-220.
[30] Owen C. Magmatic Differentiation and Alteration in Isofacial Greenschists and Blueschists, Shuksan Suite, Washington:Statistical Analysis of Major Element Variation[J]. Journal of Petrology, 1989, 30:739-761.
[31] 胡道功,谭成轩,张海. 内蒙古阿里河地区中元古代蛇绿岩[J]. 中国区域地质,1995(4):334-343. Hu Daogong, Tan Chengxuan, Zhang Hai. Middle Proterozoic Ophiolites in the Alihe Area, Inner Mongolia[J]. Regional Geology of China, 1995(4):334-343.
[32] 胡道功,李洪文,刘旭光,等. 大兴安岭吉峰科马提岩Sm-Nd等时线年龄测定[J]. 地球学报,2003, 24(5):405-408. Hu Daogong, Li Hongwen, Liu Xuguang, et al. Dating of Sm-Nd Isochron Ages of the Jifeng Komatiites from the Da Hinggan Ling[J]. Acta Geoscientia Sinica, 2003, 24(5):405-408.
[33] 胡道功,郑庆道,傅俊彧,等. 大兴安岭吉峰科马提岩地球化学特征[J]. 地质力学学报, 2001, 7(2):111-115. Hu Daogong, Zheng Qingdao, Fu Junyu, et al. The Geological and Geochemical Charecteristics of the Jifeng Komatiites in the Da Hinggan Ling Mountains[J]. Journal of Geomechanics, 2001, 7(2):111-115.
[34] 李仰春,赵海滨,杨晓平,等. 大兴安岭吉峰地区中元古代科马提岩及成因类型[J]. 地质与资源,2002,11(2):76-88. Li Yangchun, Zhao Haibin, Yang Xiaoping, et al. The Mesoproterozoic Komatiites and Their Genetic Type in the Jifeng Area of Daxinganling[J]. Geology and Resources, 2002, 11(2):76-88.
[35] 佘宏全,李进文,向安平,等. 大兴安岭中北段原岩锆石U-Pb测年及其与区域构造演化关系[J]. 岩石学报,2012, 28(2):571-594. She Hongquan, Li Jinwen, Xiang Anping, et al. U-Pb Ages of the Zircons from Primary Rocks in Middle-Northern Daxinganling and Its Implications to Geotectonic Evolution[J]. Acta Petrologica Sinica, 2012, 28(2):571-594.
[36] 冯志强. 大兴安岭北段古生代构造-岩浆演化[D]. 长春:吉林大学,2015. Feng Zhiqiang. Palezoic Tectonic-Magmatic Evolution of Northern Great Xing'an Range[D]. Changchun:Jilin University, 2015.
[37] 姚婕,贺灿. 大兴安岭新林-吉峰地区蛇绿岩中超基性岩特征及其地质意义[J]. 城市地理,2016(20):78. Yao Jie, He Can. The Characteristics of Ultramafic Rocks of Ophiolite and Its Geological Significance in Xinlin-Jifeng Area, Da Xing'an Mountian[J]. Global City Geography, 2016(20):78.
[38] 张德明. 大兴安岭北部嘎仙蛇绿岩的物质组成、地球化学特征及其构造意义[J]. 黑龙江科技信息, 2017(1):127. Zhang Deming. The Material Composition, Geochemical Characteristics and Tectonic Significance of Gaxian Ophiolite in Northern Daxing'an Mountain[J]. Heilongjiang Science and Technology Information, 2017(1):127.
[39] 沙春梅. 大兴安岭鄂伦春自治旗吉峰蛇绿岩的物质组成、地球化学特征及地质意义[J]. 大科技,2016(13):127. Sha Chunmei. The Material Composition, Geochemical Character and Geological Significance of Jifeng Ophiolite in Elun Chun Autonomous Region in Daxing'an Mountain[J]. Super Science, 2016(13):127.
[40] 杜兵盈, 冯志强, 刘宇崴,等. 大兴安岭环二库新元古代变质辉长岩的厘定及其地质意义[J]. 世界地质,2017, 36(3):751-762. Du Bingying, Feng Zhiqiang, Liu Yuwei, et al. Early Neoproterozoic Meta-Gabbro (~697 Ma) from the Huanerku, the Great Xing'an Range and Its Geological Significance[J]. Global Geology, 2017, 36(3):751-762.
[41] 邵学峰. 内蒙古塔源-头道桥拼合带西南段迈罕特乌拉蛇绿岩地球化学特征及其地质意义[J]. 世界地质,2016, 35(2):429-440. Shao Xuefeng. Geochemical Characteristics and Geological Significance of Ophiolite from Maihantewula, Southwest Section of Tayuan-Toudaoqiao Matching Belt in Inner Mongolia[J]. Global Geology, 2016, 35(2):429-440.
[42] 吕斌,王涛,童英,等. 中亚造山带东部岩浆热液矿床时空分布特征及其构造背景[J]. 吉林大学学报(地球科学版),2017, 47(2):305-343. Lü Bin, Wang Tao, Tong Ying, et al. Distribution and Tectonic Settings of Magmatic-Hydrothermal Ore Deposits in the Eastern Central Asia Orogen Belt[J]. Journal of Jilin University (Earth Science Edition), 2017, 47(2):305-343.
[1] Zhang Zhi, Guan Zhichao, Wang Shaojun. A Method of Combining Measured Spectra and ASTER TIR Image to Divide Lithology for New Tectonic Style Analysis: Based on the Blueschist in Akesu [J]. Journal of Jilin University(Earth Science Edition), 2018, 48(1): 334-342.
[2] Sun Yuewu, Ding Haisheng, Liu Huan, Zhang Dejun, Gong Fanhao, Zheng Yuejuan. Fossil Plants from the Guadalupian Yujiabeigou Formation in the North Margin of North China Plate and Their Tectonic Implications [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(5): 1268-1283.
[3] Zhou Jianbo, Shi Aiguo, Jing Yan. Combined NE China Blocks: Tectonic Evolution and Supercontinent Reconstructions [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(4): 1042-1055.
[4] Liu Yongjiang, Liu Binqiang, Feng Zhiqiang, Wen Quanbo, Li Weimin, Zhang Tiean, Li Xiaoyu, Du Bingying. SIMS Zircon U-Pb Age, Petrogeochemistry and Its Tectonic Implication of Laodaokou Diorite in the Mid-North Part of Great Xing'an Range [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(2): 482-498.
[5] Duan Zhiming, Li Guangming, Zhang Hui, Li Yingxu, Duan Yaoyao. Zircon U-Pb Age & Geochemical Characteristics of the Quartz Monzobiorite and Metallogenic Background of the Sena Gold Deposit in Duolong Metallogenic Concentrated Area, Tibet [J]. Journal of Jilin University(Earth Science Edition), 2013, 43(6): 1864-1877.
[6] ZHOU Jian-bo, ZENG Wei-shun, CAO Jia-lin, HAN Jie, GUO Xiao-dan. The Tectonic Framework and Evolution of the NE China:from~500 Ma to ~180 Ma [J]. J4, 2012, 42(5): 1298-1316.
[7] XIAO Gen-ru, GAN Wei-jun, CHEN Wei-tao, CHENG Jia. Present-Day Movement of Bangong Co-Nujiang Suture Zone,Tibetan Plateau, Inferred from GPS Measurements [J]. J4, 2010, 40(6): 1496-1502.
[8] ZHOU Jian-bo, HAN Jie, ZHANG Xing-zhou, ZENG Wei-shun. Geochemical Characteristics of the Mudanjiang Blueschists in the NE China and Its Tectonic Implications [J]. J4, 2010, 40(1): 93-103.
[9] WANG Yue, ZHANG Xing-zhou, SONG Hai-feng, ZHANG Chun-yan, XIONG Xiao-song. The Metamorphic and Deformed Characteristics of the Heilongjiang Melange in Mudanjiang Area [J]. J4, 2009, 39(6): 1066-1072.
[10] QIN Xiao-feng,XIA Bin,LI Jiang,LI Chun-quan,LU Ji-pu,XU Hua,ZHOU Fu-sheng,HU Gui-ang,LI Qian. Metamorphism of the Neoproterozoic-Early Paleozoic Metamorphic Series in the Western Segment of the Southern Altyn Tagh Tectonic Belt [J]. J4, 2007, 37(5): 856-0867.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!