Journal of Jilin University(Earth Science Edition) ›› 2017, Vol. 47 ›› Issue (5): 1442-1457.doi: 10.13278/j.cnki.jjuese.201705109

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Permian Tectonic Evolution of the Middle Section of Northern Margin of the North China Plate:Constraints from Zircon U-Pb Geochronology and Geochemistry of the Volcanic Rocks

Wang Shijie, Xu Zhongyuan, Dong Xiaojie, Du Yang, Cui Weilong, Wang Yang   

  1. College of Earth Sciences, Jilin University, Changchun 130061, China
  • Received:2017-01-06 Online:2017-09-26 Published:2017-09-26
  • Supported by:
    Supported by National Natural Science Foundation of China(41272223, 41402169) and Project of China Geological Survey (1212011220459)

Abstract: The LA-ICP-MS zircon U-Pb dating and geochemical data were obtained for the volcanic rocks of the Suzy Formation in the central region of Inner Mongolia, so as to reveal the tectonic nature of the middle section of the northern margin of North China plate in Early Permian. The zircons from the volcanic rocks in the Suzy Formation are euhedral-subhedral in shape, and display fine-scale oscillatory zoning with high Th/U ratios (0.61-1.06), implying their magmatic origin. The LA-ICP-MS zircon U-Pb age data indicate that the andesite from the Suzy Formation was formed in the Early Permian (279.0±2.1 Ma). The geochemical data indicate that the andesites belong chemically to medium-K calc-alkaline series, poor in SiO2(49.0%-55.2%) and HFSEs, rich in Al2O3 (15.7%-17.8%), Mg (Mg#=49.8-67.0), and LILEs, and display low REE abundance and flat REE pattern, similar to those from an island arc. Combined with its characteristics of High-Mg andesite, we consider that its primary magma were mainly derived from partial melting of the depleted mantle wedge alterated by the subduction of slab-derived fluid. It can be concluded that the andesite from Suzy Formation was formed under a tectonic subduction when the Paleo-Asian Ocean was not closed.

Key words: volcanic rocks, zircon U-Pb chronology, geochemistry, Early Permian, subduction, the middle section of the northern margin of the North China plate

CLC Number: 

  • P588.14
[1] Windley B F, Alexeiev D, Xiao W, et al. Tectonic Models for Accretion of the Central Asian Orogenic Belt[J]. Journal of the Geological Society, 2006, 164(12):31-47.
[2] 肖文交,舒良树,高俊,等. 中亚造山带大陆动力学过程与成矿作用[J]. 新疆地质,2008,26(1):4-8. Xiao Wenjiao, Shu Liangshu, Gao Jun, et al. Continental Dynamcis of the Central Asian Orogenic Belt and Its Metallogeny[J]. Xinjiang Geology, 2008, 26(1):4-8.
[3] Sengör A M C, Natalin B A. Paleotectonics of Asia:Fragments of a Synthesis[M]. Translated by Yin A, Harrison M. London:Cambridge University Press London, 1996:486-640.
[4] 李双林,欧阳自远. 兴蒙造山带及邻区的构造格局与构造演化[J]. 海洋地质与第四纪地质,1998,18(3):45-54. Li Shuanglin, Ouyang Ziyuan. Tectonic Framework and Evolution of Xing'anling-Mongolian Orogenic Belt(XMOB) and Its Adjacent Region[J]. Marine Geology & Quaternary Geology,1998,18(3):45-54.
[5] 张晓晖,翟明国. 华北北部古生代大陆地壳增生过程中的岩浆作用与成矿效应[J]. 岩石学报,2010,26(5):1329-1341. Zhang Xiaohui, Zhai Mingguo. Magmatism and Its Metallogenetic Effects During the Paleozoic Continental Crustal Construction in Northern North China:An Overview[J]. Acta Petrologica Sinica, 2010, 26(5):1329-1341.
[6] Chen B, Jahn B M, Tian W. Evolution of the Solonker Suture Zone:Constraints From Zircon U-Pb Ages, Hf Isotopic Ratios and Whole-Rock Nd-Sr Isotope Compositions of Subduction-and Collision-Related Magmas and Forearc Sediments[J]. Journal of Asian Earth Sciences, 2009, 34(3):245-257.
[7] Xu M A, Chen B, Chen J F, et al. Zircon Shrimp U-Pb Age, Geochemical, Sr-Nd Isotopic, and In-Situ Hf Isotopic Data of the Late Carboniferous-Early Permian Plutons in the Northern Margin of the North China Craton[J]. Science China Earth Science, 2013, 56(1):126-144.
[8] Xiao W J, Windley B F, Huang B C, et al. End-Permian to Mid-Triassic Termination of the Accretionary Processes of the Southern Altaids:Implications for the Geodynamic Evolution, Phanerozoic Continental Growth, and Metallogeny of Central Asia[J]. International Journal of Earth Sciences, 2009, 98(6):1189-1217.
[9] Zhao P, Chen Y, Xu B, et al. Did the Paleo-Asian Ocean Between North China Block and Mongolia Block Exist During the Late Paleozoic? First Paleomagnetic Evidence from Central-Eastern Inner Mongolia, China[J]. Journal of Geophysical Research Solid Earth, 2013, 118(5):1873.
[10] Zhang X, Wilde S A, Zhang H. Early Permian High-K Calc-Alkaline Volcanic Rocks from NW Inner Mongolia, North China:Geochemistry, Origin and Tectonic Implications[J]. Journal of the Geological Society, 2011, 168(2):525-543.
[11] 柳长峰,张浩然,於炀森,等. 内蒙古中部四子王旗地区北极各岩体锆石定年及其岩石化学特征[J]. 现代地质,2010,24(1):112-119. Liu Changfeng, Zhang Haoran, Yu Yangsen, et al. Dating and Petrochemistry of Beijige Pluton in Siziwangqi, Inner Mongolia[J]. Geoscience, 2010, 24(1):112-119.
[12] 张拴宏,赵越,刘建民,等. 华北地块北缘晚古生代:早中生代岩浆活动期次、特征及构造背景[J]. 岩石矿物学杂志,2010,29(6):824-842. Zhang Shuanhong, Zhao Yue, Liu Jianmin, et al. Geochronology, Geochemistry and Tectonic Setting of the Late Paleozoic-Early Mesozoic Magmatism in the Northern Margin of the North China Block:A Preliminary Review[J]. Acta Petrological et Mineralogica, 2010, 29(6):824-842.
[13] Tang K D. Tectonic Development of Paleozoic Fold-belts at the North Margin of the Sino-Korean Craton[J]. Plant Growth Regulation, 1990, 9(2):249-260.
[14] 邵济安. 中朝板块北缘中段地壳演化[M]. 北京:北京大学出版社,1991. Shao Ji'an. Crustal Evolution in the Middle Part of North China Plate[M]. Beijing:Peking University Press,1991.
[15] Li J Y. Permian Geodynamic Setting of Northeast China and Adjacent Regions:Closure of the Paleo-Asian Ocean and Subduction of the Paleo-Pacific Plate[J]. Journal of Asian Earth Sciences, 2006, 26(3):207-224.
[16] Xiao W J, Windley B F, Hao J, et al. Accretion Leading to Collision and the Permian Solonker Suture, Inner Mongolia, China:Termination of the Central Asian Orogenic Belt[J]. Tectonics, 2003, 22(6):288-308.
[17] Zhang X H, Zhang H F, Tang Y J, et al. Geo-chemistry of Permian Bimodal Volcanic Rocks from Central Inner Mongolia, North China:Implication for Tectonic Setting and Phanerozoic Continental Growth in Central Asian Orogenic Belt[J]. Chemical Geology, 2008,249(3/4):262-281.
[18] Jahn B M, Litvinovsky B, Zanvilevich A N, et al. Peralkaline Granitoid Magmatism in the Mongolian-Transbaikalian Belt:Evolution, Petrogenesis and Tectonic Significance[J]. Lithos, 2009, 113(3):521-539.
[19] 晨辰,张志诚,郭召杰,等. 内蒙古达茂旗满都拉地区早二叠世基性岩的年代学、地球化学及其地质意义[J]. 中国科学:D辑:地球科学,2012,42(3):343-358. Chen Chen, Zhang Zhicheng, Guo Shaojie, et al. Geochronology, Geochemistry, and Its Geological Significance of the Permian Mandula Mafic Rocks in Damaoqi, Inner Mongolia[J]. Science China:Series D:Earth Sciences, 2012, 42(3):343-358.
[20] Jian P, Liu D, Kröner A, et al. Evolution of a Permian Intraoceanic Arc-Trench System in the Solonker Suture Zone, Central Asian Orogenic Belt, China and Mongolia[J]. Lithos, 2010, 118(1):169-190.
[21] 童英,洪大卫,王涛,等. 中蒙边境中段花岗岩时空分布特征及构造和找矿意义[J]. 地球学报,2010,31(3):395-412. Tong Ying, Hong Dawei, Wang Tao, et al. Spatial and Temporal Distribution of Granitoids in the Middle Segment of the Sino-Mongolian Border and Its Tectonic and Metallogenic Implications[J]. Acta Geoscientia Sinica, 2010, 31(3):395-412.
[22] 孙德有,吴福元,张艳斌,等. 西拉木伦河-长春-延吉板块缝合带的最后闭合时间:来自吉林大玉山花岗岩体的证据[J]. 吉林大学学报(地球科学版),2004,34(2):174-181. Sun Deyou, Wu Fuyuan, Zhang Yanbin, et al. The Final Closing Time of the West Lamalun River-Changchun-Yanji Plate Suture Zone-Evidence from the Dayushan Granitic Pluton, Jinlin Province[J]. Journal of Jilin University(Earth Science Edition), 2004, 34(2):174-181.
[23] Liu J F, Li J Y, Chi X G, et al. A Late-Carbo-niferous to Early-Permian Subduction-Accretion Complex in Daqing Pasture, Southeastern Inner Mongolia:Evidence of Northward Subduction Beneath the Siberian Paleoplate Southern Margin[J]. Lithos, 2013, 177(2):285-296.
[24] 内蒙古自治区地质矿产局. 内蒙古自治区区域地质志[M]. 北京:地质出版社,1991. Bureau of Geology and Mineral Resources of the Mongolia Autonomous Region. Regional Geology of the Inner Mongolia Autonmous Region[M]. Beijing:Geological Publishing House,1991.
[25] 赵芝. 内蒙古大石寨地区早二叠世大石寨组火山岩的地球化学特征及其构造环境[D]. 长春:吉林大学,2008. Zhao Zhi. Geochemistry and Tectonic Setting of the Volcanic Rocks of Early Permian Dashizhai Formation in Dashizhai Area, Inner Mongolia[D]. Changchun:Jilin University,2008.
[26] 曾维顺,周建波,张兴洲,等. 内蒙古科右前旗大石寨组火山岩锆石LA-ICP-MS U-Pb年龄及其形成背景[J]. 地质通报,2011,30(2):270-277. Zeng Weishun, Zhou Jianbo, Zhang Xingzhou, et al. LA-ICP-MS Zircon U-Pb Age of the Volcanic Rocks from the Dashizhai Formation in Keyouqianqi, Inner Mongolia, China and Its Tectonic Setting[J]. Geological Bulletin of China, 2011, 30(2):270-277.
[27] 郭锋,范蔚茗,李超文,等. 早古生代古亚洲洋俯冲作用:来自内蒙古大石寨玄武岩的年代学与地球化学证据[J]. 中国科学:D辑:地球科学,2009,39(5):569-579. Guo Feng, Fan Weiming, Li Chaowen, et al. Early Paleozoic Subduction of the Paleo-Asian Ocean:Geochronological and Geochemical Evidence from the Dashizhai Basalts, Inner Mongolia[J]. Science China:Series D:Earth Sciences, 2009, 39(5):569-579.
[28] 邵济安. 大兴安岭的隆起与地球动力学背景[M]. 北京:地质出版社,2007. Shao Ji'an. Uplift and the Background of the Earth Dynamics in Daxing'an Mountains[M]. Beijing:Geological Publishing House, 2007.
[29] Xiao W J, Windley B F, Hao J. Accretion Leading to Collision and the Permian Solonker Suture, Inner Mongolia, China:Termination of the Central Asian Orogenic Belt[J]. Tectonics, 2003, 22(6):288-308.
[30] 侯可军,李延河,田有荣. LA-MC-ICP-MS锆石微区原位U-Pb定年技术[J]. 矿床地质,2009,28(4):481-492. Hou Kejun, Li Yanhe, Tian Yourong. In Situ U-Pb Zircon Dating Using Laser Ablation-Multi Ion Counting-ICP-MS[J]. Mineral Deposits, 2009, 28(4):481-492.
[31] Liu Yongsheng, Hu Zhaochu, Zong Keqing, et al. Reappraisement and Refinement of Zircon U-Pb Isotope and Trace Element Analyses by LA-ICP-MS[J]. Chinese Science Bulletin, 2010, 55(15):1535-1546.
[32] Ludwig K R. User Manual for Isoplot/Ex(Rev.2.49):A Geochronological Toolkit for Microsoft Excel[J]. Berkeley Geochronology Center Special Publication, 2001, 4:1-56.
[33] 李怀坤,耿建珍,郝爽,等. 用激光烧蚀多接收器等离子体质谱仪(LA-MC-ICPMS)测定锆石U-Pb同位素年龄的研究[J]. 矿物学报,2009,29(增刊1):600-601. Li Huaikun, Geng Jianzhen, Hao Shuang, et al. Study on the Determination of Zircon U-Pb Isotopic Age by LA-MC-ICPMAS[J]. Acta Mineralogica Sinica, 2009, 29(Sup.1):600-601.
[34] Belousova E, Griffin W, O'Reilly S Y, et al. Igneous Zircon:Trace Element Composition as an Indicator of Source Rock Type[J]. Contributions to Mineralogy & Petrology, 2002, 143(5):602-622.
[35] Hanchar J M, Miller C F. Zircon Zonation Patterns as Revealed by Cathodoluminescence and Backscattered Electron Images:Implications for Interpretation of Complex Crustal Histories[J]. Chemical Geology, 1993, 110(1):1-13.
[36] Le Bas M J, Le Maitre R W. A Chemical Classi-fication of Volcanic Rocks Based on the Total Alkali-silica Diagram[J]. Journal of Petrology, 1986, 27(3):745-750.
[37] Peccerillo A, Taylor S R. Geochemistry of Eocene Calc-alkaline Volcanic Rocks from the Kastamonu Area, Northern Turkey[J]. Contributions to Mineralogy & Petrology, 1975, 58(1):63-81.
[38] Boynton W V. Chapter 3:Cosmochemistry of the Rare Earth Elements:Meteorite Studies[J]. Developments in Geochemistry, 1984, 2(2):63-114.
[39] Sun S S, Mcdonough W F. Chemical and Isotopic Systematics of Oceanic Basalts; Implications for Mantle Composition and Processes[J]. Geological Society London Special Publications, 1989, 42(1):313-345.
[40] 王挽琼,刘正宏,王兴安,等. 内蒙古乌拉特中旗海西期黑云母二长花岗岩锆石SHRIMP U-Pb年龄及其地质意义[J]. 吉林大学学报(地球科学版),2012,42(6):1771-1782. Wang Wanqiong, Liu Zhenghong, Wang Xing'an, et al. SHRIMP U-Pb Dating of the Zircon form the Hercynian Biotite Monzonitic Granites in Urad Zhongqi, Inner Mongolia, and Its Geological Significance[J]. Journal of Jilin University(Earth Science Edition), 2012, 42(6):1771-1782.
[41] 范宏瑞,胡芳芳,杨奎锋,等. 内蒙古白云鄂博地区晚古生代闪长质-花岗质岩石年代学框架及其地质意义[J]. 岩石学报,2009,25(11):2933-2938. Fan Hongrui, Hu Fangfang, Yang Kuifeng, et al. Geochronology Framework of Late Paleozoic Diortitic-Granitic Plutons in the Bayan Obo Area, Inner Mongolia, and Tectonic Significance[J]. Acta Pertrologica Sinca, 2009, 25(11):2933-2938.
[42] 冯丽霞,张志诚,韩宝福,等. 内蒙古达茂旗花岗岩类LA-ICP-MS锆石U-Pb年龄及其地质意义[J]. 地质通报,2013,32(11):1737-1748. Feng Lixia, Zhang Zhicheng, Han Baofu, et al. LA-ICP-MS Zircon U-Pb Ages of Granitoids in Darhan Muminggan Joint Banner, Inner Mongolia, and Their Geological Significance[J]. Geological Bulletin of China, 2013, 32(11):1737-1748.
[43] 王挽琼,徐仲元,刘正宏,等. 华北板块北缘中段早中二叠世的构造属性:来自花岗岩类锆石U-Pb年代学及地球化学的制约[J]. 岩石学报,2013,29(9):2987-3003. Wang Wanqiong, Xu Zhongyuan, Liu Zhenghong, et al. Early-Middle Permian Tectonic Evolution of the Central-Northern Margin of the North China Craton:Constraints from Zircon U-Pb Ages and Geochemistry of the Granitoids[J]. Acta Petrologica Sinica, 2013, 29(9):2987-3003.
[44] Zhang S H, Zhao Y, Kröner A, et al. Early Permian Plutons from the Northern North China Block:Constraints on Continental Arc Evolution and Convergent Margin Magmatism Related to the Central Asian Orogenic Belt[J]. International Journal of Earth Sciences, 2009, 98(6):1441-1467.
[45] 赵庆英. 内蒙古大青山地区晚古生代-早中生代花岗岩成因及其形成构造环境[D]. 长春:吉林大学,2010. Zhao Qingying. Origin and Tectonic Setting of Late Paleozoic-Early Mesozoic Granites in Daqingshan District, Inner Mongolia[D]. Changchun:Jilin University, 2010.
[46] 刘建峰,迟效国,张兴洲,等. 内蒙古西乌旗南部石炭纪石英闪长岩地球化学特征及其构造意义[J]. 地质学报,2009,83(3):365-376. Liu Jianfeng, Chi Xiaoguo, Zhang Xingzhou, et al. Geochemical Characteristic of Carboniferous Quartz-Diorite in the Southern Xiwuqi Area, Inner Mongolia and Its Tectonic Significance[J]. Acta Geologica Sinica, 2009, 83(3):365-376.
[47] 唐功建,王强. 高镁安山岩及其地球动力学意义[J]. 岩石学报,2010,26(8):2495-2512. Tang Gongjian, Wang Qiang. High-Mg Andesites and Their Geodynamic Implications[J]. Acta Petrologica Sinica, 2010, 26(8):2495-2512.
[48] Rapp R P, Watson E B. Dehydration Melting of Metabasalt at 8-32 kbar:Implications for Continental Growth and Crust-Mantle Recycling[J]. Journal of Petrology, 1995, 36(4):891-931.
[49] Rapp R P, Shimizu N, Norman M D, et al. Reaction Between Slab-Derived Melts and Peridotite in the Mantle Wedge:Experimental Constraints at 3.8 GPa[J]. Chemical Geology, 1999, 160(4):335-356.
[50] Frey F A, Prinz M. Ultramafic Inclusions From San Carlos, Arizona:Petrologic and Geochemical Data Bearing on Their Petrogenesis[J]. Earth & Planetary Science Letters, 1978, 38(1):129-176.
[51] Bea F, Arzamastsev A, Montero P, et al. Anomalous Alkaline Rocks of Soustov, Kola:Evidence of Mantle-Derived Metasomatic Fluids Affecting Crustal Materials[J]. Contributions to Mineralogy & Petrology, 2001, 140(5):554-566.
[52] Taylor S R, Mclennan S M. The Continental Crust:Its Composition and Evolution, an Examination of the Geochemical Record Preserved in Sedimentary Rocks[M]. Blackwell:Blackwell Scientific Pub, 1985.
[53] Dungan M A, Lindstrom M M, Mcmillan N J, et al. Open System Magmatic Evolution of the Taos Plateau Volcanic Field, Northern New Mexico:1:The Petrology and Geochemistry of the Servilleta Basalt[J]. Journal of Geophysical Research Solid Earth, 1986, 91(B6):5999-6028.
[54] Peacock S M, Rushmer T, Thompson A B. Partial Melting of Subducting Oceanic Crust[J]. Earth & Planetary Science Letters, 1994, 121(1):227-244.
[55] Briqueu L, Bougault H, Joron J L. Quantification of Nb, Ta, Ti and V Anomalies in Magmas Associated with Subduction Zones:Petrogenetic Implications[J]. Earth & Planetary Science Letters, 1984, 68(2):297-308.
[56] 赵振华,王强,熊小林. 俯冲带复杂的壳幔相互作用[J]. 矿物岩石地球化学通报,2004,23(4):277-284. Zhao Zhenhua, Wang Qiang, Xiong Xiaolin. Complex Mantle-Crust Interaction in Subduction Zone[J]. Bulletin of Mineralogy, Petrology and Geochemistry, 2004, 23(4):277-284.
[57] Zhang S H, Zhao Y, Liu J M, et al. Different Sources Involved in Generation of Continental Arc Volcanism:the Carboniferous-Permian Volcanic Rocks in the Northern Margin of the North China Block[J]. Lithos, 2016,240/241/242/243:382-401.
[58] 董晓杰,王挽琼,沙茜,等. 华北克拉通北缘中段二叠纪苏吉火山岩及其形成机制[J]. 岩石学报,2016,32(9):2765-2779. Dong Xiaojie, Wang Wanqiong, Sha Qian, et al. Suzy Volcanic Rocks in the Northern Margin of the North China Craton and Its Formation Mechanism[J]. Acta Petrologica Sinica, 2016, 32(9):2765-2779.
[59] Chen M, Sun M, Buslov M M, et al. Crustal Melting and Magma Mixing in a Continental Arc Setting:Evidence From the Yaloman Intrusive Complex in the Gorny Altai Terrane, Central Asian Orogenic Belt[J]. Lithos, 2016,252/253:76-91.
[60] Annen C, Blundy J D, Sparks R S J. The Genesis of Intermediate and Silicic Magmas in Deep Crustal Hot Zones[J]. Journal of Petrology, 2005, 47(3):505-539.
[61] Jacob K H, Farmer G L, Buchwaldt R, et al. Deep Crustal Anatexis, Magma Mixing, and the Generation of Epizonal Plutons in the Southern Rocky Mountains, Colorado[J]. Contributions to Mineralogy & Petrology, 2015, 169(1):1-23.
[62] 邓晋福,肖庆辉,苏尚国,等. 火成岩组合与构造环境:讨论[J]. 高校地质学报,2007,13(3):392-402. Deng Jinfu, Xiao Qinghui, Su Shangguo, et al. Igneous Petrotectonic Assembalges and Tectonic Settings:A Discussion[J]. Geological Journal of China Universities, 2007, 13(3):392-402.
[63] 王挽琼. 华北板块北缘中段晚古生代构造演化:温都尔庙-集宁火成岩年代学、地球化学的制约[D]. 长春:吉林大学,2014. Wang Wanqiong. Late Paleozoic Tectonic Evolution of the Central-Northern Margin of the North China Plate:Constraints from Zircon U-Pb Ages and Geochemistry of Igneous Rocks in Ondor Sum-Jining Area[D]. Changchun:Jilin University, 2014.
[64] 李昌年. 火成岩微量元素岩石学[M]. 武汉:中国地质大学出版社,1992. Li Changnian. Trace Elements in Igneous Petrology[M]. Wuhan:China University of Geoscienses Press, 1992.
[65] Wood D A, Joron J L, Treuil M. A Re-Appraisal of the Use of Trace Elements to Classify and Discriminate Between Magma Series Erupted in Different Tectonic Settings[J]. Earth & Planetary Science Letters, 1979, 45(2):326-336.
[66] 王惠,王玉净,陈志勇,等. 内蒙古巴彦敖包二叠纪放射虫化石的发现[J]. 地层学杂志,2005,29(4):368-371. Wang Hui, Wang Yujing, Chen Zhiyong, et al. Discovery of the Permian Radiolarians from the Bayan Aobao Area, Inner Mongolia[J]. Journal of Stratigraphy, 2005, 29(4):368-371.
[67] Jia D, Hu R, Yan L, et al. Collision Belt Between the Khanka Block and the North China Block in the Yanbian Region, Northeast China[J]. Journal of Asian Earth Sciences, 2004, 23(2):211-219.
[68] 韩国卿,刘永江,温泉波,等. 西拉木伦河缝合带北侧二叠纪砂岩碎屑锆石 LA-ICP-MS U-Pb年代学及其构造意义[J]. 地球科学:中国地质大学学报,2011,36(4):687-702. Han Guoqing, Liu Yongjiang, Wen Quanbo, et al. LA-ICP-MS U-Pb Dating of Detrital Zircons from the Permian Sandstones in North Side of XarMoron River Suture Belt and Its Tectonic Implications[J]. Earth Science:Journal of China University of Geosciences, 2011, 36(4):687-702.
[69] 关庆彬,刘正宏,白新会,等. 内蒙古巴林右旗新开坝地区大石寨组火山岩形成时代及构造背景[J]. 岩石学报,2016,32(7):2029-2040. Guan Qingbin, Liu Zhenghong, Bai Xinhui, et al. Age and Tectonic Setting of Volcanic Rocks of the Dashizhai Formation from Xinkaiba, Balinyouqi Area, Inner Mongolia[J]. Acta Petrologica Sinica, 2016, 32(7):2029-2040.
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