Late Paleoproterozoic multiple metamorphic events in the Quanji Massif: Links with Tarim and North China Cratons and implications for assembly of the Columbia supercontinent
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M. Santosh | N. Chen | Qinyan Wang | M. Sun | Lu Wang | Fanxi Liao | H. Mustafa
[1] Guochun Zhao,et al. Lithotectonic elements of Precambrian basement in the North China Craton: Review and tectonic implications , 2013 .
[2] Chuan-Lin Zhang,et al. Tectonic framework and evolution of the Tarim Block in NW China , 2013 .
[3] Wenjiao Xiao,et al. Introduction to tectonics of China , 2013 .
[4] Y. Niu,et al. Tectonics of the North Qilian orogen, NW China , 2013 .
[5] K. K. Wu,et al. Metamorphism of the northern Liaoning Complex: Implications for the tectonic evolution of Neoarchean basement of the Eastern Block, North China Craton , 2013 .
[6] T. Kusky,et al. Zircon Hf isotope of Yingfeng Rapakivi granites from the Quanji Massif and ∼2.7 Ga crustal growth , 2013, Journal of Earth Science.
[7] Xian‐Hua Li,et al. Integrated in situ zircon U–Pb age and Hf–O isotopes for the Helanshan khondalites in North China Craton: Juvenile crustal materials deposited in active or passive continental margin? , 2012 .
[8] San-zhong Li,et al. Petrology and P–T path of the Yishui mafic granulites: Implications for tectonothermal evolution of the Western Shandong Complex in the Eastern Block of the North China Craton , 2012 .
[9] Q. Zhang,et al. Episodic mantle melting-crustal reworking in the late Neoarchean of the northwestern North China Craton: Zircon ages of magmatic and metamorphic rocks from the Yinshan Block , 2012 .
[10] B. Windley,et al. UHT sapphirine granulite metamorphism at 1.93–1.92 Ga caused by gabbronorite intrusions: Implications for tectonic evolution of the northern margin of the North China Craton , 2012 .
[11] Guochun Zhao,et al. U–Pb geochronology and Hf isotope geochemistry of detrital zircons from the Zhongtiao Complex: Constraints on the tectonic evolution of the Trans-North China Orogen , 2012 .
[12] S. Wilde,et al. Petrogenesis and geochronology of Precambrian granitoid gneisses in Western Liaoning Province: Constraints on Neoarchean to early Paleoproterozoic crustal evolution of the North China Craton , 2012 .
[13] Guochun Zhao,et al. Precambrian geology of China: Preface , 2012 .
[14] Peter A. Cawood,et al. Precambrian geology of China , 2012 .
[15] Pengtao Yang,et al. Geochemistry and U–Pb zircon ages of metamorphic volcanic rocks of the Paleoproterozoic Lüliang Complex and constraints on the evolution of the Trans-North China Orogen, North China Craton , 2012 .
[16] Dunyi Liu,et al. Zircon ages and geochemistry of late Neoarchean syenogranites in the North China Craton: A review , 2012 .
[17] M. Santosh,et al. Episodic growth of Precambrian lower crust beneath the North China Craton: A synthesis , 2012 .
[18] B. Windley,et al. Petrogenesis of Late Paleoproterozoic Liangcheng charnockites and S-type granites in the central-northern margin of the North China Craton: Implications for ridge subduction , 2012 .
[19] Peter A. Cawood,et al. Amalgamation of the North China Craton: Key issues and discussion , 2012 .
[20] L. Chan,et al. Structural pattern of the Wutai Complex and its constraints on the tectonic framework of the Trans-North China Orogen , 2012 .
[21] P. Monié,et al. Paleoproterozoic tectonic evolution of the Trans-North China Orogen: Toward a comprehensive model , 2012 .
[22] San-zhong Li,et al. Metamorphic P-T path and tectonic implications of medium-pressure pelitic granulites from the Jiaobei massif in the Jiao-Liao-Ji Belt, North China Craton , 2012 .
[23] M. Santosh,et al. Spinel + quartz-bearing ultrahigh-temperature granulites from Xumayao, Inner Mongolia Suture Zone, North China Craton: Petrology, phase equilibria and counterclockwise p-T path , 2012 .
[24] T. Kusky,et al. U–Pb and Hf isotopic compositions of detrital zircons from the paragneisses of the Quanji Massif, NW China: Implications for its early tectonic evolutionary history , 2012 .
[25] J. Rogers. Did natural fission of 235U in the earth lead to formation of the supercontinent Columbia , 2012 .
[26] Bin Lv,et al. Zircon U–Pb ages and geochemistry of the Qinglong volcano-sedimentary rock series in Eastern Hebei: Implication for ∼2500 Ma intra-continental rifting in the North China Craton , 2012 .
[27] S. Mohanty. Spatio-temporal evolution of the Satpura Mountain Belt of India: A comparison with the Capricorn Orogen of Western Australia and implication for evolution of the supercontinent Columbia , 2012 .
[28] J. Meert. What's in a name? The Columbia (Paleopangaea/Nuna) supercontinent , 2012 .
[29] San-zhong Li,et al. Paleoproterozoic structural evolution of the southern segment of the Jiao-Liao-Ji Belt, North China Craton , 2012 .
[30] S. Wilde,et al. Precambrian crustal evolution of the eastern North China Craton as revealed by U-Pb ages and Hf isotopes of detrital zircons from the Proterozoic Jing'eryu Formation , 2012 .
[31] Ba Jina. Re-Determining the Intrusion Age for the Protolith of the Mohe Gneiss in the Quanji Massif , 2012 .
[32] Guochun Zhao,et al. Detrital zircon U–Pb dating, Hf isotopes and whole-rock geochemistry from the Songshan Group in the Dengfeng Complex: Constraints on the tectonic evolution of the Trans-North China Orogen , 2012 .
[33] T. Kusky,et al. Early Paleoproterozoic magmatism in the Quanji Massif, northeastern margin of the Qinghai-Tibet Plateau and its tectonic significance: LA-ICPMS U-Pb zircon geochronology and geochemistry , 2012 .
[34] Guochun Zhao,et al. The Paleoproterozoic basin evolution in the Trans-North China Orogen,North China Craton , 2012 .
[35] Xu-Ping Li,et al. Geochronology of khondalite-series rocks of the Jining Complex: confirmation of depositional age and tectonometamorphic evolution of the North China craton , 2011 .
[36] Dunyi Liu,et al. Multistage late Neoarchaean crustal evolution of the North China Craton, eastern Hebei , 2011 .
[37] M. Santosh,et al. The early Precambrian odyssey of the North China Craton: A synoptic overview , 2011 .
[38] M. Santosh,et al. Ultrahigh-temperature metamorphism in Daqingshan, Inner Mongolia Suture Zone, North China Craton , 2011 .
[39] T. Kusky. Geophysical and geological tests of tectonic models of the North China Craton , 2011 .
[40] Guochun Zhao,et al. Metamorphic P–T paths of the Zanhuang amphibolites and metapelites: constraints on the tectonic evolution of the Paleoproterozoic Trans-North China Orogen , 2011 .
[41] B. Windley,et al. Halaqin volcano-sedimentary succession in the central-northern margin of the North China Craton: Products of Late Paleoproterozoic ridge subduction , 2011 .
[42] C. Yuan,et al. Reworking of the Tarim Craton by underplating of mantle plume-derived magmas: Evidence from Neoproterozoic granitoids in the Kuluketage area, NW China , 2011 .
[43] M. Santosh,et al. The 1.85 Ga Mo mineralization in the Xiong'er Terrane, China: Implications for metallogeny associated with assembly of the Columbia supercontinent , 2011 .
[44] Yue-heng Yang,et al. ̃2.7Ga juvenile crust formation in the North China Craton (Taishan-Xintai area, western Shandong Province): Further evidence of an understated event from U-Pb dating and Hf isotopic composition of zircon , 2011 .
[45] K. Zhou,et al. The discovery of the oldest rocks in the Kuluketage area and its geological implications , 2011 .
[46] S. Boger. Antarctica — Before and after Gondwana , 2011 .
[47] T. Kusky,et al. Supercontinent cycles, extreme metamorphic processes, and changing fluid regimes , 2011 .
[48] San-zhong Li,et al. Assembly, accretion, and break-up of the Palaeo-Mesoproterozoic Columbia supercontinent: record in the North China Craton revisited , 2011 .
[49] Guochun Zhao,et al. U–Pb and Hf isotopic study of zircons of the Helanshan Complex: Constrains on the evolution of the Khondalite Belt in the Western Block of the North China Craton , 2011 .
[50] F. Wang,et al. Petrology and metamorphism of khondalites from the Jining complex, North China craton , 2011 .
[51] Wang Qinyan,et al. Mineral evolution and zircon geochronology of mafic enclave in granitic gneiss of the Quanji Block and implications for Paleoproterozoic regional metamorphism , 2011 .
[52] Chen Neng-song,et al. Detrital zircon LA-ICP-MS U-Pb dating for K-feldspar leptite of Quanji massif in the north margin of Qaidam Block:constraint on the age of Dakendaban Group , 2011 .
[53] Guochun Zhao,et al. Formation of the paleoproterozoic calc-silicate and high-pressure mafic granulite in the Jiaobei Terrane, Eastern Shandong, China , 2011 .
[54] Yue-heng Yang,et al. Archean crustal evolution of the northern Tarim craton, NW China: Zircon U-Pb and Hf isotopic constraints , 2010 .
[55] L. Yongsheng,et al. Reappraisement and refinement of zircon U-Pb isotope and trace element analyses by LA-ICP-MS , 2010 .
[56] M. Santosh. Assembling North China Craton within the Columbia supercontinent: The role of double-sided subduction , 2010 .
[57] Peter A. Cawood,et al. Single zircon grains record two Paleoproterozoic collisional events in the North China Craton , 2010 .
[58] T. Kusky,et al. Origin of paired high pressure–ultrahigh‐temperature orogens: a ridge subduction and slab window model , 2010 .
[59] C. Yuan,et al. Detrital zircon ages and Hf isotopes of the early Paleozoic flysch sequence in the Chinese Altai, NW China: New constrains on depositional age, provenance and tectonic evolution , 2010 .
[60] C. Yin,et al. Metamorphism of the Helanshan-Qianlishan Complex and its implications for tectonic evolution of the Khondalite Belt in the western block,North China Craton , 2010 .
[61] Z. Ming. Tectonic evolution and metallogenesis of North China Craton , 2010 .
[62] Shan Gao,et al. Continental and Oceanic Crust Recycling-induced Melt^Peridotite Interactions in the Trans-North China Orogen: U^Pb Dating, Hf Isotopes and Trace Elements in Zircons from Mantle Xenoliths , 2010 .
[63] Guochun Zhao,et al. LA-ICP-MS U-Pb zircon ages of the Qianlishan Complex: Constrains on the evolution of the Khondalite Belt in the Western Block of the North China Craton , 2009 .
[64] X. Xia,et al. Precambrian evolution of the Quanji Block, northeastern margin of Tibet: Insights from zircon U-Pb and Lu-Hf isotope compositions , 2009 .
[65] M. Santosh,et al. Tectonics and surface effects of the supercontinent Columbia , 2009 .
[66] M. Santosh,et al. Counterclockwise exhumation of a hot orogen: The Paleoproterozoic ultrahigh-temperature granulites in the North China Craton , 2009 .
[67] Yuanming Pan,et al. Proterozoic polymetamorphism in the Quanji Block, northwestern China: Evidence from microtextures, garnet compositions and monazite CHIME ages , 2009 .
[68] Zhou Xi. Metamorphic age of the khondalite series in the Helanshan region: Constraints on the evolution of the western block in the North China Craton. , 2009 .
[69] Guochun Zhao. Metamorphic evolution of major tectonic units in the basement of the North China Craton: Key issues and discussion , 2009 .
[70] T. Kusky,et al. The Columbia connection in North China , 2009 .
[71] Shan Gao,et al. In situ analysis of major and trace elements of anhydrous minerals by LA-ICP-MS without applying an internal standard , 2008 .
[72] N. Chen,et al. LA-ICPMS zircon U-Pb geochronological constraints on the tectonothermal evolution of the Early Paleoproterozoic Dakendaban Group in the Quanji Block, NW China , 2008 .
[73] 王勤燕 陈能松 李晓彦 郝爽 陈海红,et al. 全吉地块基底达肯大坂岩群和热事件的LA-ICPMS锆石U-Pb定年 , 2008 .
[74] S. Wilde,et al. U-Pb Zircon and Sm-Nd isotopic study of the huangtuling granulite, dabie-sulu belt, China: Implication for the paleoproterozoic tectonic history of the yangtze craton , 2008, American Journal of Science.
[75] Shan Gao,et al. Zircon U–Pb age and trace element evidence for Paleoproterozoic granulite-facies metamorphism and Archean crustal rocks in the Dabie Orogen , 2008 .
[76] Guochun Zhao,et al. Paleoproterozoic crustal growth in the Western Block of the North China Craton: Evidence from detrital zircon Hf and whole rock Sr-nd isotopic compositions of the Khondalites from the Jining Complex , 2008, American Journal of Science.
[77] Chuan-Lin Zhang,et al. Geological and geochronological evidence for the Precambrian evolution of the Tarim Craton and surrounding continental fragments , 2008 .
[78] Guochun Zhao,et al. Precambrian metamorphic basement and sedimentary cover of the North China Craton: A review , 2008 .
[79] San-zhong Li,et al. SHRIMP U–Pb zircon geochronology of the Liaoji granitoids: Constraints on the evolution of the Paleoproterozoic Jiao-Liao-Ji belt in the Eastern Block of the North China Craton , 2007 .
[80] T. Kusky,et al. The Paleoproterozoic North Hebei Orogen: North China craton's collisional suture with the Columbia supercontinent , 2007 .
[81] Xian‐Hua Li,et al. An early Paleoproterozoic high-K intrusive complex in southwestern Tarim block, NW China: Age, geochemistry, and tectonic implications , 2007 .
[82] M. Santosh,et al. Discovery of sapphirine-bearing Mg–Al granulites in the North China Craton: Implications for Paleoproterozoic ultrahigh temperature metamorphism , 2007 .
[83] Guochun Zhao,et al. Geochemistry of Neoarchean (ca. 2.55–2.50 Ga) volcanic and ophiolitic rocks in the Wutaishan greenstone belt, central orogenic belt, North China craton: Implications for geodynamic setting and continental growth: Discussion , 2007 .
[84] Wu Chang-hua. Meta-Sedimentary Rocks and Tectonic Division of the North China Craton , 2007 .
[85] S. Liu,et al. Structural, Geochronological and Aeromagnetic Studies of the Hengshan-Wutai-Fuping Mountain Belt: Implications for the Tectonic Evolution of the Trans-North China Orogen , 2007 .
[86] Shan Gao,et al. Zircon U-Pb age and Hf-O isotope evidence for Paleoproterozoic metamorphic event in South China , 2006 .
[87] Z. Jianxin,et al. Timing and mechanism of formation and exhumation of the Northern Qaidam ultrahigh-pressure metamorphic belt , 2006 .
[88] Z. Jianxin,et al. Geochemistry of high-grade metamorphic rocks of the North Qaidam mountains and their geological significance , 2006 .
[89] M. Santosh,et al. Extreme crustal metamorphism during Columbia supercontinent assembly: Evidence from North China Craton , 2006 .
[90] S. Wilde,et al. Th–U–Pb monazite geochronology of the Lüliang and Wutai Complexes: Constraints on the tectonothermal evolution of the Trans-North China Orogen , 2006 .
[91] Dunyi Liu,et al. Zircon geochronology and metamorphic evolution of mafic dykes in the Hengshan Complex of northern China: Evidence for late Palaeoproterozoic extension and subsequent high-pressure metamorphism in the North China Craton , 2006 .
[92] Dunyi Liu,et al. Evolution from Oceanic Subduction to Continental Collision: a Case Study from the Northern Tibetan Plateau Based on Geochemical and Geochronological Data , 2006 .
[93] Guochun Zhao,et al. LA-ICP-MS U–Pb geochronology of detrital zircons from the Jining Complex, North China Craton and its tectonic significance , 2006 .
[94] Guochun Zhao,et al. U-Pb and Hf isotopic study of detrital zircons from the Wulashan khondalites: Constraints on the evolution of the Ordos Terrane, Western Block of the North China Craton , 2006 .
[95] T. Kusky,et al. Geochemistry of Neoarchean (ca. 2.55–2.50 Ga) volcanic and ophiolitic rocks in the Wutaishan greenstone belt, central orogenic belt, North China craton: Implications for geodynamic setting and continental growth , 2005 .
[96] S. Wilde,et al. Archean to Paleoproterozoic evolution of the North China Craton , 2005 .
[97] S. Wilde,et al. Age and evolution of a late Archean to Paleoproterozoic upper to lower crustal section in the Wutaishan/Hengshan/Fuping terrain of northern China , 2005 .
[98] P. O'Brien,et al. The petrology of two distinct granulite types in the Hengshan Mts, China, and tectonic implications , 2005 .
[99] S. Wilde,et al. Nd isotopic constraints on crustal formation in the North China Craton , 2005 .
[100] M. Zhai,et al. Sm-Nd and SHRIMP U-Pb zircon geochronology of high-pressure granulites in the Sanggan area, North China Craton: Timing of Paleoproterozoic continental collision , 2005 .
[101] S. Wilde,et al. Late Archean to Paleoproterozoic evolution of the North China Craton: key issues revisited , 2005 .
[102] M. Sun,et al. LA-ICPMS U-Pb zircon dating for felsic granulite, Huangtuling Area, North Dabieshan: Constraints on timing of its protolith and granulite-facies metamorphism, and thermal events in its provenance , 2005 .
[103] M. Santosh,et al. Continents and Supercontinents , 2004 .
[104] San-zhong Li,et al. A Paleo-Mesoproterozoic supercontinent: assembly, growth and breakup , 2004 .
[105] Wang Fei,et al. Age of Yingfeng rapakivi granite pluton on the north flank of Qaidam and its geological significance , 2004 .
[106] L. Songnian,et al. The constitution and importance geological events of Pre-Devonian in the Dulan, Qinghai , 2004 .
[107] T. Kusky,et al. Paleoproterozoic tectonic evolution of the North China Craton , 2003 .
[108] Guochun Zhao,et al. Metamorphic P-T Path of the Southern Jilin Complex: Implications for Tectonic Evolution of the Eastern Block of the North China Craton , 2003 .
[109] M. Santosh,et al. Supercontinents in earth history , 2003 .
[110] S. Wilde,et al. Assembly, Accretion and Breakup of the Paleo-Mesoproterozoic Columbia Supercontinent: Records in the North China Craton , 2003 .
[111] M. Zhai. Palaeoproterozoic tectonic history of the North China craton: a review , 2003 .
[112] K. Ludwig. User's Manual for Isoplot 3.00 - A Geochronological Toolkit for Microsoft Excel , 2003 .
[113] Peter A. Cawood,et al. Review of global 2.1-1.8 Ga orogens: implications for a pre-Rodinia supercontinent , 2002 .
[114] W. Griffin,et al. Igneous zircon: trace element composition as an indicator of source rock type , 2002 .
[115] D. Rubatto. Zircon trace element geochemistry: partitioning with garnet and the link between U–Pb ages and metamorphism , 2002 .
[116] Peter A. Cawood,et al. SHRIMP U-Pb zircon ages of the Fuping Complex: implications for Late Archean to Paleoproterozoic accretion and assembly of the North China Craton , 2002 .
[117] Yang Chun-liang. NORTH CHINA CONTINENT AND COLUMBIA SUPERCONTINENT , 2002 .
[118] Lü Song. Microcontinents on the eastern margin of Tarim paleocontinent , 2002 .
[119] M. Santosh,et al. Configuration of Columbia, a Mesoproterozoic Supercontinent , 2002 .
[120] S. Wilde,et al. Development of the North China Craton During the Late Archaean and its Final Amalgamation at 1.8 Ga: Some Speculations on its Position Within a Global Palaeoproterozoic Supercontinent , 2002 .
[121] L. Songnian,et al. A Group of Rifting Events in the Terminal Paleoproterozoic in the North China Craton , 2002 .
[122] Z. Jianxin,et al. Ages and Compositions of the Precambrian High‐grade Basement of the Qilian Terrane and Its Adjacent Areas , 2001 .
[123] X. Xu,et al. Isotope Geology of Upper Paleozoic Carbonates, Loei Area, NE Thailand: Implication for Paleoenvironments and Tectonic Setting , 2001 .
[124] Shan Gao,et al. The recognizing of ca. 1.95 Ga tectono-thermal eventin Kongling nucleus and its significance for the evolution of Yangtze Block, South China , 2001 .
[125] M. Zhai,et al. Sm-Nd age dating of high-pressure granulites and amphibolite from Sanggan area, North China craton , 2001 .
[126] Guochun Zhao. Palaeoproterozoic assembly of the North China Craton , 2001, Geological Magazine.
[127] Peter A. Cawood,et al. Metamorphism of basement rocks in the Central Zone of the North China Craton: implications for Paleoproterozoic tectonic evolution , 2000 .
[128] L. P. Black,et al. Metamorphic zircon formation by solid‐state recrystallization of protolith igneous zircon , 2000 .
[129] T. Ireland,et al. Rare earth element chemistry of zircon and its use as a provenance indicator , 2000 .
[130] Peter A. Cawood,et al. Tectonothermal history of the basement rocks in the western zone of the North China Craton and its tectonic implications , 1999 .
[131] Peter A. Cawood,et al. Thermal evolution of two textural types of mafic granulites in the North China craton: evidence for both mantle plume and collisional tectonics , 1999, Geological Magazine.
[132] D. Gebauer,et al. Internal morphology, habit and U-Th-Pb microanalysis of amphibolite-to-granulite facies zircons: geochronology of the Ivrea Zone (Southern Alps) , 1999 .
[133] D. Gebauer,et al. Growth, annealing and recrystallization of zircon and preservation of monazite in high-grade metamorphism: conventional and in-situ U-Pb isotope, cathodoluminescence and microchemical evidence , 1999 .
[134] Peter A. Cawood,et al. Petrology and P-T history of the Wutai amphibolites: Implications for tectonic evolution of the Wutai Complex, China , 1999 .
[135] K. Condie. Sources of Proterozoic mafic dyke swarms: constraints from ThTa and LaYb ratios , 1997 .
[136] D. Gebauer,et al. Multiple zircon growth and recrystallization during polyphase Late Carboniferous to Triassic metamorphism in granulites of the Ivrea Zone (Southern Alps): an ion microprobe (SHRIMP) study , 1996 .
[137] S. Harley. The origins of granulites: a metamorphic perspective , 1989, Geological Magazine.
[138] Alan Bruce Thompson,et al. Pressure—Temperature—Time Paths of Regional Metamorphism I. Heat Transfer during the Evolution of Regions of Thickened Continental Crust , 1984 .
[139] A. Miyashiro. Metamorphism and Metamorphic Belts , 1973 .