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Ages and Hf isotopes of detrital zircons from the Permian strata in the engbatu area(Inner Mongolia) and tectonic implications
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  • 英文篇名:Ages and Hf isotopes of detrital zircons from the Permian strata in the engbatu area(Inner Mongolia) and tectonic implications
  • 作者:Bing ; Xu ; Guochun ; Zhao ; Jianhua ; Li ; Dongxing ; Liu ; Bo ; Wang ; Yigui ; Han ; Paul ; R. ; Eizenh?fer ; Xiaoran ; Zhang ; Wenzhu ; Hou ; Qian ; Liu
  • 英文作者:Bing Xu;Guochun Zhao;Jianhua Li;Dongxing Liu;Bo Wang;Yigui Han;Paul R. Eizenh?fer;Xiaoran Zhang;Wenzhu Hou;Qian Liu;State Key Laboratory of Continental Dynamics, Department of Geology, Northwest University;Department of Earth Sciences, The University of Hong Kong;Institute of Geomechanics, Chinese Academy of Geological Sciences;Department of Geology and Environmental Science, University of Pittsburgh;
  • 英文关键词:Detrital zircon;;U-Pb dating;;Hf isotope;;Central Asian Orogenic Belt;;Subduction;;Back-arc basin
  • 中文刊名:Geoscience Frontiers
  • 英文刊名:地学前缘(英文版)
  • 机构:State Key Laboratory of Continental Dynamics, Department of Geology, Northwest University;Department of Earth Sciences, The University of Hong Kong;Institute of Geomechanics, Chinese Academy of Geological Sciences;Department of Geology and Environmental Science, University of Pittsburgh;
  • 出版日期:2019-01-15
  • 出版单位:Geoscience Frontiers
  • 年:2019
  • 期:01
  • 基金:financially supported by the National Natural Science Foundation of China (Grant Nos. 41730213, 41190075, 41190070);; the Hong Kong Research Grants Council General Research Fund (17301915);; the HKU Seed Funding Programme for Basic Research (201611159210)
  • 语种:英文;
  • 页:199-216
  • 页数:18
  • CN:11-5920/P
  • ISSN:1674-9871
  • 分类号:P534.46;P597.3
摘要
The Central Asian Orogenic Belt(CAOB) was built up through protracted accretion and collision of a variety of terranes/micro-continents during Neoproterozoice Mesozoic time. To understand potential links among Paleozoic subduction and accretionary processes that were operative during the development of the southeastern CAOB, we conducted a combined U-Pb and Hf-isotope analysis of detrital zircons from previously defined Devonian, Carboniferous and Early Permian strata in the Bengbatu area,Inner Mongolia. Detrital zircons from(meta-) sandstones in these strata commonly yield major Paleozoic age populations at ca. 300-261 Ma, 351-300 Ma and 517-419 Ma, and also give several Precambrian ages that range from 2687 Ma to 544 Ma. The youngest ages redefine the deposition of all these strata to be in the Middle Permian(Wordiane Capitanian) or later, much younger than previously considered.These ages, coupled with regional magmatic records, support an interpretation of most surrounding areas as possible detritus sources, including the Mongolian arcs to the north, the Northern Accretionary Orogen to the south, and the intervening Erenhote Hegenshan Ophiolite Belt. Zircons with magmatic ages of ca. 500-350 Ma and ca. 300-261 Ma display a large range of εHf(t) values(-13.97 to +15.31),whereas ca. 350-300 Ma zircons are dominated by positive εHf(t) values(+0.14 to +16.00). These results support the occurrence of two significant shifts of the zircon εHf(t) values, which has tectonic implications for the understanding of the Carboniferouse Permian evolution of the southeastern CAOB. A marked shift from mixed to positive zircon εHf(t) values at 350 -330 Ma likely manifests the incipient opening of the Hegenshan Ocean, due to the slab rollback of the subducting Paleo-Asian Oceanic lithosphere. Another shift from positive to mixed zircon εHf(t) values at ca. 300 Ma likely corresponds to a tectonic switch from syn-orogenic subduction-related to post-orogenic extensional setting, genetically related to the tectonic collapse of a formerly overthickened crust.
        The Central Asian Orogenic Belt(CAOB) was built up through protracted accretion and collision of a variety of terranes/micro-continents during Neoproterozoice Mesozoic time. To understand potential links among Paleozoic subduction and accretionary processes that were operative during the development of the southeastern CAOB, we conducted a combined U-Pb and Hf-isotope analysis of detrital zircons from previously defined Devonian, Carboniferous and Early Permian strata in the Bengbatu area,Inner Mongolia. Detrital zircons from(meta-) sandstones in these strata commonly yield major Paleozoic age populations at ca. 300-261 Ma, 351-300 Ma and 517-419 Ma, and also give several Precambrian ages that range from 2687 Ma to 544 Ma. The youngest ages redefine the deposition of all these strata to be in the Middle Permian(Wordiane Capitanian) or later, much younger than previously considered.These ages, coupled with regional magmatic records, support an interpretation of most surrounding areas as possible detritus sources, including the Mongolian arcs to the north, the Northern Accretionary Orogen to the south, and the intervening Erenhote Hegenshan Ophiolite Belt. Zircons with magmatic ages of ca. 500-350 Ma and ca. 300-261 Ma display a large range of εHf(t) values(-13.97 to +15.31),whereas ca. 350-300 Ma zircons are dominated by positive εHf(t) values(+0.14 to +16.00). These results support the occurrence of two significant shifts of the zircon εHf(t) values, which has tectonic implications for the understanding of the Carboniferouse Permian evolution of the southeastern CAOB. A marked shift from mixed to positive zircon εHf(t) values at 350 -330 Ma likely manifests the incipient opening of the Hegenshan Ocean, due to the slab rollback of the subducting Paleo-Asian Oceanic lithosphere. Another shift from positive to mixed zircon εHf(t) values at ca. 300 Ma likely corresponds to a tectonic switch from syn-orogenic subduction-related to post-orogenic extensional setting, genetically related to the tectonic collapse of a formerly overthickened crust.
引文
Badarch, G., Gunningham, W.D., Windley, B.F., 2002. A new terrane subdivision for Mongolia:implications for the Phanerozoic crustal growth of Central Asia.Journal of Asian Earth Sciences 21, 87-110.
    Baines, A.G., Cheadle, M.J., John, B.E., Grimes, C.B., Schwartz, J.J., Wooden, J.L., 2009.SHRIMP Pb/U zircon ages constrain gabbroic crustal accretion at Atlantis Bank on the ultraslow-spreading Southwest Indian Ridge. Earth and Planetary Science Letters 287, 540-550.
    Bao, Q.Z., Zhang, C.J., Wu, Z.L., Wang, H.,Li, W., Sang, J.H., Liu, Y.S., 2007a. Zircon SHRIMP U-Pb dating of granitoids in a Late Paleozoic rift area, southeastern Inner Mongolia, and its implications. Geology in China 34, 790-798(in Chinese with English abstract).
    Bao, Q.Z., Zhang, C.J., Wu, Z.L. Wang, H., Li.W., Sang,J.H., Liu,Y.S., 2007b. SHRIMP U-Pb zircon geochronology of a Carboniferous quartz-diorite in Baiyingaole area, Inner Mongolia and its implications. Journal of Jilin University(Earth Science Edition)37,15-23(in Chinese with English abstract).
    Blight, J.H.S., Petterson, M.G., Crowley, Q.G., Cunningham, D., 2010. The Oyut Ulaan Volcanic group:stratigraphy, magmatic evolution and timing of Carboniferous arc development in Mongolia. Journal of the Geological Society167, 491-509.
    Bouvier, A., Vervoort, J.D., Patchett, P.J., 2008. The Lu-Hf and Sm-Nd isotopic composition of CHUR:constraints from unequilibrated chondrites and implications for the bulk composition of terrestrial planets. Earth and Planetary Science Letters 273, 48-57.
    Briggs, S.M., Yin, A.,Manning, C.E., Chen, Z.L.,Wang, X.F., Grove, M., 2007. Late paleozoic tectonic history of the ertix fault in the Chinese altai and its implications for the development of the central asian orogenic system. The Geological Society of America Bulletin 119, 944-960.
    Cawood, P.A., Hawkesworth, C.J., Dhuime, B., 2012. Detrital zircon record and tectonic setting. Geology 40(10), 875-878.
    Chen, B., Jahn, B.M., Wilde, S., Xu, B., 2000. Two contrasting Paleozoic magmatic belts in northern Inner Mongolia, China:petrogenesis and tectonic implications. Tectonophysics 328,157-182.
    Chen, B., Jahn, B.M., Tian, W., 2009. 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. Journal of Asian Earth Sciences 34, 245-257.
    Chen, N.H.C., Zhao, G.C., Jahn, B.M., Zhou, H., Sun, M., 2017a. Geochemistry and geochronology of the delinggou intrusion:implications for the subduction of the Paleo-Asian ocean beneath the north China craton. Gondwana Research 43,178-192.
    Chen, N.H.C., Zhao, G.C., Jahn, B.M., Sun, M., Zhou, H., 2017b. U-Pb zircon ages and Hf isotopes of~2.5 Ga granitoids from the Yinshan Block, North China Craton:implications for crustal growth. Precambrian Research 303,171-182.
    Chen, Y., Zhang, Z.C., Li, K., Luo, Z.W., Tang, W.H., Li, Q.G., 2014. Geochronology,geochemistry and geological significance of the Permian bimodal volcanic rocks in Xi Ujimqin Banner, Inner Mongolia. Acta Scientiarum Naturalium Universitatis Pekinensis 50, 843-858(in Chinese with English abstract).
    Chen, Y., Zhang, Z.C., Li, K., Li, Q.G., Luo, Z.W., 2015. Provenance of the Middle Permian Zhesi Formation in central Inner Mongolia, northern China:constraints from petrography, geochemistry and detrital zircon U-Pb geochronology. Geological Journal 36(4), 274-297.
    Collins, W.J., Belousova, E.A., Kemp, A.I.S., Murphy, J.B., 2011. Two contrasting Phanerozoic orogenic systems revealed by hafnium isotope data. Nature Geoscience 4, 333-337.
    Daoudene, Y., Gapais, D., Ruffet, G., Gloaguen, E., Cocherie, A., Ledru, P., 2012. Synthinning pluton emplacement during Mesozoic extension in eastern Mongolia.Tectonics 31(3), 160-164.
    Defant, M.J., Drummond, M.S., 1990. Derivation of some modern arc magmas by melting of young subducted lithosphere. Nature 347, 662-665.
    Demoux, A., Kroner, A., Liu, D., Badarch, G., 2009. Precambrian crystalline basement in southern Mongolia as revealed by SHRIMP zircon dating. International Journal of Earth Sciences 98,1365-1380.
    Diwu, C.R.,Sun, Y., Zhang, H., Wang,Q., Guo, A.L., Fan, L.G.,2012. Episodic tectonothermal events of the western North China Craton and North Qinling Orogenic Belt in central China:constraints from detrital zircon U-Pb ages.Journal of Asian Earth Sciences 47,107-122.
    Eizenhofer, P.R., Zhao, G.C., Zhang, J., Sun, M., 2014. Final closure of the Paleo-Asian ocean along the solonker suture zone:constraints from geochronological and geochemical data of permian volcanic and sedimentary rocks. Tectonics 33,441-463.
    Eizenhofer, P.R., Zhao, G.C., Sun, M., Zhang, J., Han, Y.G., Hou, H., 2015a. Geochronological and Hf isotopic variability of detrital zircons in Palaeozoic sedimentary strata across the accretionary collision Zone between the North China Craton and the Mongolian arcs, and its tectonic implications. The Geological Society of America Bulletin 127,1422-1436.
    Eizenhofer, P.R., Zhao, G.C., Zhang, J., Han, Y.G., Hou, W.Z., Liu, D.X., Wang, B., 2015b.Geochemical characteristics of the Permian basins and their provenances across the Solonker Suture Zone:assessment of net crustal growth during the closure of the Palaeo-Asian Ocean. Lithos 224-225, 240-255.
    Fedorovskii, V.S., Khain, E.E., Vladimirov, A.G., Kargopolov, S.A., Gibsher, A.S.,Izokh, A.E., 1995. Tectonics, metamorphism, and magmatism of collisional zones of the Central Asian Caledonides. Geotectonics 29,193-212.
    Ge, M.C., Zhou, W.X., Yu, Y., Sun, J.J., Bao, J.Q., Wang, S.H., 2011. Dissolution and supracrustal rocks dating of Xilin gol complex, Inner Mongolia, China. Earth Science Frontiers 18(5), 182-195(in Chinese with English abstract).
    Griffin, W.L., Belousova, E.A., Shee, S.R., Pearson, N.J., O'reilly, S.Y., 2004. Archean crustal evolution in the northern Yilgarn Craton:U-Pb and Hf-isotope evidence from detrital zircons. Precambrian Research 131, 231-282.
    Grimes, C.B., John, B.E., Cheadle, M.J., Mazdab, F.K., Wooden, J.L., Swapp, S.,Schwartz, J.J., 2009. On the occurrence, trace element geochemistry, and crystallization history of zircon from in situ ocean lithosphere. Contributions to Mineralogy and Petrology 158, 757-783.
    Han, Y.G., Zhao, G.C., Sun, M., Eizenhofer, P.R., Hou, W.Z., Zhang, X.R., Liu, D.X.,Wang, B., Zhang, G.W., 2015. Paleozoic accretionary orogenesis in the PaleoAsian Ocean:insights from detrital zircons from Silurian to Carboniferous strata at the northwestern margin of the TarimCraton. Tectonics 34,334-351.
    Han, Y.G., Zhao, G.C., Cawood, P.A., Sun, M., Eizenhofer, P.R., Hou, W.Z., Zhang, X.R.,Liu, Q., 2016a. Tarim and North China cratons linked to northern Gondwana through switching accretionary tectonics and collisional orogenesis. Geology44, 95-98.
    Han, Y.G., Zhao, G.C., Sun, M., Eizenhofer, P.R., Hou, W.Z., Zhang, X.R., Liu, Q.,Wang, B., Liu, D.X., Xu, B., 2016b. Late paleozoic subduction and collision processes during the amalgamation of the central asian orogenic belt along the south tianshan suture zone. Lithos 246-247,1-12.
    Helo, C., Hegner, E., Kroner, A., Badarch, G., Tomurtogoo, O., Windley, B.F., Dulski, P.,2006. Geochemical signature of Paleozoic accretionary complexes of the central Asian Orogenic Belt in South Mongolia:constraints on arc environments and crustal growth. Chemical Geology 227, 236-257.
    Heubeck, C., 2001. Assembly of central Asia during the middle and late Paleozoic. In:Hendrix, M.S., Davis, G.A.(Eds.), Paleozoic and Mesozoic Tectonic Evolution of Central and Eastern Asia:From Continental Assembly to Intracontinental Deformation, vol. 194. Geological Society of American Memoir, pp. 1-22.
    Hong, D.W., Huang, H.Z., Xiao, Y.J., Xu, H.M., 1994. The Permian alkaline granites in central Inner Mongolia and their geodynamic significance. Acta Geologica Sinica 68(3), 219-230.
    Hsu, K.J., Wang, Q.C., Li, L., Hao, J., 1991. Geological evolution of the Neimonides:a working hypothesis. Eclogae Geologicae Helvetiae 84(1), 1-31.
    Hu, C.S., Li, W.B., Xu, C., Zhong, R., Zhu, F., 2015. Geochemistry and zircon U-Pb-Hf isotopes of the granitoids of Baolidao and Halatu plutons in Sonidzuoqi area,Inner Mongolia:implications for petrogenesis and geodynamic setting. Journal of Asian Earth Sciences 97, 294-306.
    IMBGMR(Inner Mongolian Bureau of Geology and Mineral Resources), 1965.1:200,000 Scale Geological Map of Bengbatu. Geological Map of P.R.C.Geological Publishing House, Beijing(in Chinese).
    IMBGMR(Inner Mongolian Bureau of Geology and Mineral Resources), 1991.Regional Geology of Inner Mongolian Autonomous Region. Geological Publishing House, Beijing(in Chinese with English abstract).
    Jackson, S.E., Pearson, N.J., Griffin, W.L., Belousova, E.A., 2004. The application of laser ablation-inductively coupled plasma-mass spectrometry to in situ U-Pb zircon geochronology. Chemical Geology 211(1-2), 47-69.
    Jian,P., Liu, D.Y., Kroner,A., Windley, B.F., Shi, Y.R., Zhang, F.Q., Shi, G.H., Miao, L.C.,Zhang, W., Zhang, Q., Zhang, LQ., Ren, J.S., 2008. Time scale of an early to midPaleozoic orogenic cycle of the long-lived Central Asian Orogenic Belt, Inner Mongolia of China:implications for continental growth. Lithos 101, 233-259.
    Jian, P., Liu, D., Kroner, A., Windley, B.F., Shi, Y., Zhang, W., Zhang, F., Miao, L.,Zhang, L, Tomurhuu, D., 2010. Evolution of a permian intraoceanic arc-trench system in the solonker suture zone, central asian orogenic belt, China and Mongolia. Lithos 118,169-190.
    Jian, P., Kroner, A., Windley, B.F., Yuruo Shi, Y.R., Zhang, W., Zhang, L.Q., Yange, W.R.,2012. Carboniferous and Cretaceous mafic-ultramafic massifs in Inner Mongolia(China):a SHRIMP zircon and geochemical study of the previously presumed integral"Hegenshan ophiolite". Lithos 142-143, 48-66.
    Kelty, T.K., Yin, A., Dash, B., Gehrels, G.E., Ribeiro, A.E., 2008. Detrital-zircon geochronology of paleozoic sedimentary rocks in the hangay-hentey basin,north-central Mongolia:implications for the tectonic evolution of the mongolokhotsk ocean in central Asia. Tectonophysics 451, 290-311.
    Kemp, A.I.S., Hawkesworth, C.J., Collins, W.J., Gray, C.M., Blevin, P.L., EIMF, 2009.Isotopic evidence for rapid continental growth in an extensional accretionary orogen:the Tasmanides, eastern Australia. Earth and Planetary Science Letters284, 455-466.
    Koglin, N., Kostopoulos, D., Reischmann, T., 2009. The Lesvos mafic-ultramafic complex, Greece:ophiolite or incipient rift? Lithos 108, 243-261.
    Kovalenko,V.I.,Yarmoluyk, V.V., Sal'nikova, E.B., Kozlovsky, A.M., Kotov, A.B.,Kovach, V.P., Savatenkov, V.M., Vladykin, N.V., Ponomarchuk, V.A., 2006. Geology, geochronology and geodynamics of the Khan Bogd alkali granite pluton in southern Mongolia. Geotectonics 40, 450-466.
    Kroner, A., Lehmann, J., Schulmann, K., Demoux, A., Lexa, O., Tomurhuu, D.,Stipska, P., Liu, D., Wingate,M.T.D., 2010. Lithostratigraphic and geochronological constraints on the evolution of the central Asian Orogenic Belt in SW Mongolia:early Paleozoic rifting followed by late Paleozoic accretion. American Journal of Science 310, 523-574.
    Kroner, A., Demoux, A., Zack, T., Rojas-Agramonte, Y., Jian, P., Tomurhuu, D.,Barth, M., 2011. Zircon ages for a felsic volcanic rock and arc-related early Paleozoic sediments on the margin of the Baydrag microcontinent, central Asian orogenic belt, Mongolia. Journal of Asian Earth Sciences 42,1008-1017.
    Li, J.Y., 2006. Permian geodynamic setting of Northeast China and adjacent regions:closure of the Paleo-Asian Ocean and subduction of the Paleo-Pacific Plate.Journal of Asian Earth Sciences 26, 207-224.
    Li, K., Zhang, Z.C., Feng, Z.S., Li, J.F., Tang, W.H., Luo, Z.W., Chen, Y., 2015. Two-phase magmatic events during late paleozoic in the North of the central Inner Mongolia-Da hinggan orogenic belt and its tectonic significance. Acta Geologica Sinica 89, 272-288(in Chinese with English abstract).
    Li, W.G., Li, Q.F., Jiang, W.D., 1996. Multiple Classification and Correlation of the Stratigraphy of China(15):Stratigraphy(Lithostratic)of Nei Mongol Autonomous Region. China University of Geosciences Press, Wuhan(in Chinese).
    Li, X.H., Long, W.G., Li, Q.L., Liu, Y., Zheng, Y.F., Yang, Y.H., Chamberlain, K.R.,Wan, D.F., Guo, C.H., Wang, X.C., 2010. Penglai zircon megacrysts:a potential new working reference material for microbeam determination of Hf-O isotopes and U-Pb age. Geostandards and Geoanalytical Research 34,117-134.
    Li, Y.L., Zhou, H.W., Brouwer, F.M., Wijbrans, J.R., Zhong, Z.Q., Liu, H.F., 2011. Tectonic significance of the Xilin Gol complex, Inner Mongolia, China:petrological,geochemical and U-Pb zircon age constraints. Journal of Asian Earth Sciences42,1018-1029.
    Liu, X.M., Gao, S., Diwu, C.R., Ling, W.L.,2008. Precambrian crustal growth of Yangtze Craton as revealed by detrital zircon studies. American Journal of Science 308(4), 421-468.
    Liu, Y.F., Jiang, S.H., Zhang, Y., 2010a. The SHRIMP zircon U-Pb dating and geological features of Bairendaba diorite in the Xilin-haote area, Inner Mongolia, China.Geological Bulletin of China 29(5), 688-696(in Chinese with English abstract).
    Liu, Y.S., Hu, Z.C., Zong, K.Q., Gao, C.G., Gao, S., Xu, J., Chen, H.H., 2010b. Reappraisement and refinement of zircon U-Pb isotope and trace element analyses by LA-ICP-MS. Chinese Science Bulletin 55(15), 1535-1546.
    Ludwig, K.R., 2003. A Geochronological Toolkit for Microsoft Excel, vol. 4. Berkeley Geochronology Center:Special Publication, pp. 25-32.
    Meng, Q.R., 2003. What drove late Mesozoic extension of the northern China-Mongolia tract? Tectonophysics 369,155-174.
    Miao, L., Zhang, F., Fan, W., Liu, D., 2007. Phanerozoic evolution of the Inner Mongolia-Daxinganling Orogenic Belt in North China:constraints from geochronology of ophiolites and associated formations. In:Zhai, M.G.,Windley, B.F., Kusky, T.M., Meng, Q.R.(Eds.), Mesozoic Sub-continental Lithospheric Thinning under Eastern Asia, vol. 280. Geological Society, London,Special Publications, pp. 223-237.
    Miao, L.C., Fan, W.M., Liu, D.Y., Zhang, F.Q., Shi, Y.R., Guo, F., 2008. Geochronology and geochemistry of the Hegenshan ophiolitic complex:implications for latestage tectonic evolution of the Inner Mongolia-Daxinganling orogenic belt,China. Journal of Asian Earth Sciences 32, 348-370.
    Mossakovsky, A.A., Ruzhentsev, S.V., Samygin, S.G., Kheraskova,T.N.,1993. Central Asian fold belt:geodynamic evolution and history of formation, Geotectonics 6,3-33.
    Nie, F., Bj(?)rlykke, A., 1999. Nd and Sr isotope constraints on the age and origin of Proterozoic meta-mafic volcanic rocks in the Bainaimiao-Wenduermiao district,south-central Inner Mongolia, China. Continental Dynamics 4,1-14.
    Robinson, P.T., Zhou, M.F., Hu, X.F., Reynolds, P., Bai, W., Yang,J., 1995. Geochemical constraints on petrogenesis and crustal accretion of the Hegenshan ophiolite,northern China. Acta Petrologica Sinica 11, 112-124(in Chinese with English abstract).
    Robinson, P.T., Zhou, M.F., Hu, X.F., Reynolds, P., Wenji, B., Yang, J.S., 1999.Geochemical constraints on the origin of the Hegenshan ophiolite, Inner Mongolia, China. Journal of Asian Earth Sciences 17, 423-442.
    Rojas-Agramonte, Y., Kroner, A.,Demoux,A.,Xia, X.,Wang,W., Donskaya, T., Liu, D.,Sun, M., 2011. Detrital and xenocrystic zircon ages fromNeoproterozoic to palaeozoic arc terranes of Mongolia:significance for the origin of crustal fragments in the central Asian Orogenic Belt. Gondwana Research 19, 751-763.
    Sengor,A.M.C., Natal'in, B.A., Burtman, V.S., 1993. Evolution of the Altaid tectonic collage and Paleozoic crustal growth in Eurasia. Nature 364(6435), 299-307.
    Sengor, A.M.C., Natal'in, B.A., 1996a. Paleotectonics of Asia:fragments of a synthesis.In:Yin, A., Harrison, M.(Eds.), The Tectonic Evolution of Asia. Cambridge University Press, Cambridge, pp. 486-641.
    Sengor,A.M.C., Natal'in, B.A., 1996b. Turkic-type orogeny and its role in the making of the continental crust. Annual Review of Earth and Planetary Sciences 24,263-337.
    Shao, J.A., 1989. Continental crust accretion and tectono-magmatic activity at the northern margin of the Sino-Korean plate. Journal of Southeast Asian Earth Sciences 3, 57-62.
    Shao,J.A., 1991. Crustal Evolution in the Middle Part of the Northern Margin of the Sino-Korean Plate. Peking University Publishing House, Beijing, China(in Chinese with English abstract).
    Shao, J.A., Tang, K.D., He, G.Q., 2014. Early permian tectono-palaeogeographic reconstruction of Inner Mongolia, China. Acta Petrolei Sinica 30, 1858-1866(in Chinese with English abstract).
    Shen, S.Z., Zhang, H., Shang, Q.H., Li, W.Z., 2006. Permian stratigraphy and correlation of Northeast China:a review. Journal of Asian Earth Sciences 26(3-4),304-326.
    Shi, G.H., Liu, D.Y., Zhang, F.Q., Jian,P., Miao, L.C., Shi, Y.R., Tao, H., 2003. SHRIMP U-Pb zircon geochronology of Xilin gol complex, Inner Mongolia, China, and its implications. Chinese Science Bulletin 48, 2742-2748.
    Shi, G.H., Miao, L.C., Zhang, F.Q., Jian, P., Fan, W.M., Liu, D.Y., 2004. Emplacement age and tectonic implications of the Xilinhot A-type granite in Inner Mongolia,China. Chinese Science Bulletin 49, 723-729.
    Shi, Y.R., Liu, D.Y., Zhang, Q., Jian, P., Zhang, F.Q., Miao, L.C., Shi, G.H., Zhang, L.Q.,Tao, H., 2005a. The petrogenesis and SHRIMP dating of the Baiyinbaolidao adakitic rocks in south Suzuqi, Inner Mongolia. Acta Petrologica Sinica 21,143-150(in Chinese with English abstract).
    Shi, Y.R., Liu, D.Y., Jian, P., Zhang, Q., Zhang, F.Q., Miao, L.C., Shi, G.H., Zhang, L.Q.,Tao, H., 2005b. Zircon SHRIMP dating of krich granites in sonid zuoqi.Geological Bulletin of China 21, 424-428(in Chinese with English abstract).
    Song, S.G., Wang, M.M.,Xu, X., Wang, C., Niu, Y.L.,Allen, M.B., Su, L., 2015. Ophiolites in the Xing'an-Inner Mongolia accretionary belt of the CAOB:implications for two cycles of seafloor spreading and accretionary orogenic events. Tectonics 34(10),2221-2248.
    Soderlund, U., Patchett, P.J., Vervoort, J.D., Isachsen, C.E., 2004. The 176Lu decay constant determined by Lu-Hf and U-Pb isotope systematics of Precambrian mafic intrusions. Earth and Planetary Science Letters 219, 311-324.
    Tang, K.D., 1990. Tectonic development of Paleozoic foldbelts at the northern margin of the Sino-Korean Craton. Tectonics 9, 249-260.
    Tang, K.D., Yan, Z.Y., 1993. Regional metamorphism and tectonic evolution of the Inner Mongolian suture zone. Journal of Metamorphic Geology 11, 511-522.
    Tong, Y., Jahn, B.M., Wang, T., Hong, D.W., Smith, E.I., Sun, M., Gao, J.F., Yang, Q.D.,Huang, W., 2015. Permian alkaline granites in the Erenhot-Hegenshan belt,northern Inner Mongolia, China:model of generation, time of emplacement and regional tectonic significance. Journal of Asian Earth Sciences 97, 320-336.
    Torsvik, T.H., Cocks, R.M., 2004. Earth geography from 400 to 250Ma:a paleomagnetic, faunal and facies review. Journal of the Geological Society 161,555-572.
    Wainwright, A.J.,Tosdal, R.M., Wooden, J.L., Mazdab, F.K., Friedman, R.M., 2011. U-Pb(zircon)and geochemical constraints on the age, origin, and evolution of Paleozoic arc magmas in the Oyu Tolgoi porphyry Cu-Au district, southern Mongolia. Gondwana Research 19, 764-787.
    Wang, C.Y., Wang, P., Li, W.G., 2004. Conodonts from the permian jisu honguer(Zhesi)formation of Inner Mongolia, China. Geobios 37, 471-480.
    Wang, Q., Liu, X.Y., 1986. Paleoplate tectonics between cathaysia and angaraland in Inner Mongolia of China. Tectonics 5,1073-1088.
    Wang, T., Zheng, Y.D., Gehrels, G.E., Mu, Z.G., 2001. Geochronological evidence for existence of the south Mongolian microcontinent:a zircon U-Pb age of granitoid gneisses from the Yagan-Onch Hayrhan metamorphic core complex on the Sino-Mongolian border. China Science Bulletin 46, 2005-2008.
    Wang, T., Zheng, Y.D., Zhang, J.J., Zeng, L.S., Donskaya, T., Guo, L., Li, J.B., 2011. Pattern and kinematic polarity of late Mesozoic extension in continental NE Asia:perspectives from metamorphic core complexes. Tectonics 30(6), TC6007.
    Windley, B.F., Alexeiev, D., Xiao, W.J., Kroner, A., Badarch, G., 2007. Tectonic models for accretion of the central asian orogenic belt. Journal of the Geological Society164, 31-47.
    Wu, F.Y., Yang, Y.H., Xie, L.W., Yang, J.H., Xu, P., 2006. Hf isotopic compositions of the standard zircons and baddeleyites used in U-Pb geochronology. Chemical Geology 234, 105-126.
    Xiao, W.J.,Windley,B.F.,Hao,J.,Zhai,M.G.,2003. Accretion leading to collision and the Permian Solonker suture, Inner Mongolia, China:termination of the central Asian orogenic belt. Tectonics 22(6), 1069.
    Xiao, W.J., Zhang, L.C., Qin, K.Z., Sun, S., Li, J.L., 2004. Paleozoic accretionary and collisional tectonics of the Eastern Tianshan(China):implications for the continental growth of central Asia. American Journal of Science 304, 370-395.
    Xiao, W.J., Kroner, A., Windley, B., 2009a. Geodynamic evolution of central Asia in the paleozoic and mesozoic. International Journal of Earth Sciences 98,1185-1188.
    Xiao, W.J., Windley, B., Huang, B., Han, C., Yuan, C., Chen, H., Sun,M., Sun, S., Li, J.,2009b. 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. International Journal of Earth Sciences 98,1189-1217.
    Xiao, W.J., Huang, B.C., Han, C.M., Sun, S., Li, J.L., 2010. A review of the western part of the Altaids:a key to understanding the architecture of accretionary orogens.Gondwana Research 18, 253-273.
    Xiao, W.J., Windley, B.F., Allen, M.B., Han, C., 2013. Paleozoic multiple accretionary and collisional tectonics of the Chinese Tianshan orogenic collage. Gondwana Research 23,1316-1341.
    Xiao, W.J., Windley, B.F., Sun, S., Li, J.L., Huang, B.C., Han, C.M.,Yuan, C., Sun, M.,Chen, H.L., 2015. A tale of amalgamation of three permo-triassic collage systems in central Asia:oroclines, sutures, and terminal accretion. Annual Review of Earth and Planetary Sciences 43,16.1-16.31.
    Xiao, W.J., Santosh, M., 2014. The western Central Asian Orogenic Belt:a window to accretionary orogenesis and continental growth. Gondwana Research 25,1429-1444.
    Xu, B., Chen, B., 1997. Framework and evolution of the middle Paleozoic orogenic belt between Siberian and North China plates in northern Inner Mongolia.Science in China Series D-Earth Sciences 40, 463-469(in Chinese).
    Xu, B., Charvet, J., Chen, Y., Zhao, P., Shi, G.Z., 2013. Middle Paleozoic convergent orogenic belts in western Inner Mongolia(China):framework, kinematics,geochronology and implications for tectonic evolution of the Central Asian Orogenic Belt. Gondwana Research 23,1342-1364.
    Xu, B., Zhao, G.C., Li, J.H., Liu, D.X., Wang, B., Han, Y.G., Eizenhofer, P.R., Zhang, X.R.,Hou, W.Z., Liu, Q., 2017. Ages and Hf isotopes of detrital zircons from paleozoic strata in the chagan obo temple area, Inner Mongolia:implications for the evolution of the central asian orogenic belt. Gondwana Research 43,149-163.
    Xue, H.M., Guo, L.J., Hou, Z.Q., Zhou, X.W., Tong, Y., Pan, X.F., 2009. The Xilingele complex from the eastern part of the Central Asian-Mongolia Orogenic Belt,China:products of of Early Variscan orogeny other than ancient block:evidence from zircon SHRIMP U-Pb ages. Acta Petrologica Sinica 25(8), 2001-2010(in Chinese with English abstract).
    Yakubchuk, A., 2004. Architecture and mineral deposit set-tings of the Altaid orogenic collage:a revised model. Journal of Asian Earth Sciences 23, 761-779.
    Yang, Z.Y., Liu, H., Zhang, D.J., Li, X., Sun, Y.W., 2015. Detrital zircon U-Pb dating of upper carboniferous-lower permian Amushan Formation in bayan obo area,Inner Mongolia and its geological implications. Global Geology 34, 259-272(in Chinese with English abstract).
    Yarmolyuk, V.V., Kovalenko, V.I., Sal'nikova, E.B., Kozakov, I.K., Kotov, A.B.,Kovach, V.P., Vladykin, N.V., Yakovleva, S.Z., 2005. U-Pb age of syn-and postmetamorphic granitoids of south Mongolia:evidence for the presence of grenvillides in the central asian foldbelt. Doklady Earth Sciences 404, 986-990.
    Yarmolyuk, V.V., Kovalenko, V.I., Sal'nikova, E.B., Kovach, V.P., Kozlovsky, A.M.,Kotov, A.B., Lebedev, V.I., 2008. Geochronology of igneous rocks and formation of the late paleozoic south Mongolian active margin of the siberian continent.Stratigraphy and Geological Correlation 16(2), 162-181.
    Yin, A., Nie, S., 1996. A Phanerozoic palinspastic reconstruction of China and its neighboring regions. In:Yin, A., Harrison, T.M.(Eds.), The Tectonic Evolution of Asia. Cambridge University Press, Cambridge, pp. 442-485.
    Zhao, G.C., Sun, M., Wilde, S.A., Li, S.Z., Liu, S.W., Zhang,J., 2006. Composite nature of the north China granulite-facies belt:tectonothermal and geochronological constraints. Gondwana Research 9(3), 337-348.
    Zhao, G.C., Cawood, P.A., 2012. Precambrian geology of China. Precambrian Research222-223, 13-54.
    Zhao, P., Fang, J.Q., Xu, B., Chen, Y., Faure, M., 2014. Early paleozoic tectonic evolution of the Xing-meng orogenic belt:constraints from detrital zircon geochronology of western Erguna-Xing'an block, north China. Journal of Asian Earth Sciences95,136-146.
    Zhang, J., Sun, M., Schulmann, K., Zhao, G.C., Wu, Q., Jiang, Y.D., Guy, A., Wang, Y.J.,2015a. Distinct deformational history of two contrasting tectonic domains in the Chinese Altai:their significance in understanding accretionary orogenic process. Journal of Structural Geology 73, 64-82.
    Zhang, J.F., Pang, Q.B., Zhu, Q., Jin, C.Z., Liu, G.J., 2004. Zircon U-Pb dating of the Bayan Bold granite-porphyry in Inner Mongolia:the age of the host rock of the Bayan Bold gold deposit. Regional Geology of China 23, 189-192(in Chinese with English abstract).
    Zhang, S., Gao, R., Li, H., Hou, H., Wu, H.,Li, Q.,Yang, K., Li, C.,Li, W.,Zhang, J.,Yang, T., Keller, G.R., Liu, M., 2014. Crustal structures revealed from a deep seismic reflection profile across the Solonker suture zone of the Central Asian orogenic belt, northern China:an integrated interpretation. Tectonophysics612-613(3), 26-39.
    Zhang, X.H., Zhang, H.F., Tang, Y.J., Wilde, S.A., Hu, Z.C., 2008. Geochemistry of permian bimodal volcanic rocks from central Inner Mongolia, north China:Implication for tectonic setting and phanerozoic continental growth in central asian orogenic belt. Chemical Geology 249, 262-281.
    Zhang, X.H., Wilde, S.A., Zhang, H.F., Zhai, M.G., 2011. Early Permian high-K calcalkaline volcanic rocks from NW Inner Mongolia, North China:geochemistry,origin and tectonic implications. Journal of the Geological Society 168,525-543.
    Zhang, X.H., Yuan, L.L., Xue, F.H., Yan, X.,Mao, Q., 2015b. Early Permian A-type granites from central Inner Mongolia, North China:magmatic tracer of postcollisional tectonics and oceanic crustal recycling. Gondwana Research 28(1),311-327.
    Zhang, Z.C., Li, K., Li, J.F., Tang, W.H., Chen, Y., Luo, Z.W., 2015c. Geochronology and geochemistry of the eastern Erenhot ophiolitic complex:implications for the tectonic evolution of the Inner Mongolia-Daxinganling orogenic belt. Journal of Asian Earth Sciences 97, 279-293.
    Zhou, J.B., Han, J., Zhao, G.C., Zhang, X.Z., Cao, J.L., Wang, B., Pei, S.H., 2015. The emplacement time of the Hegenshan ophiolite:constraints from the unconformably overlying Paleozoic strata. Tectonophysics 662, 398-415.
    Zhou, W.X., 2012. Studies of Geochronology and Geochemistry of Paleozoic Magmatism in Xilinhot Area, Inner Mongolia. Ph.D. thesis. China University of Geosciences(in Chinese with English abstract).
    Zhu, C.Y.L., Zhao, G.C., Sun, M., Liu, Q., Han, Y.G., Hou, W.Z., Zhang, X.R.,Eizenhofer, P.R., 2015. Geochronology and geochemistry of the Yilan blueschists in the Heilongjiang Complex, northeastern China and tectonic implications.Lithos 216-217, 241-253.

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