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华北北缘东段早中生代构造变形与岩浆作用研究
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摘要
华北克拉通是地质研究的热点地区,国内外学者就这一地区早前寒武纪克拉通化和中-新生代的克拉通破坏问题开展了大量的研究工作,取得了许多重要的研究成果。华北克拉通北缘具有漫长的大陆边缘演化历史,近年来的主要研究成果是对该地区晚古生代构造格架的廓清,但是对华北北缘中生代早期构造背景的认识还存在一定争议。
     中生代早期是华北克拉通北部古亚洲洋关闭,进入板内造山阶段的重要转折时期。深入研究该时期华北北缘地壳深部岩浆活动与浅部构造变形有助于更好的理解两大陆块拼合之后构造体制转变的深部背景,以及浅部地质与深部壳、幔及岩石圈、软流圈之间是如何相互作用的。本文主要开展了以下几个方面的研究工作:(1)以华北北缘早中生代不同时期火山岩为研究对象,运用锆石U-Pb测年、岩石地球化学等手段,对火山岩喷发时代、岩石成因及其反映的深部构造过程进行了研究;(2)对蓟县盘山地区和北京西山地区中生代早期构造变形的时代进行同位素年代学限定;(3)以冀东晚三叠世都山复式岩基为例,研究其侵位变形和岩石成因,从不同角度认识华北北缘中生代早期深部和浅部地质过程。
     通过本论文的研究,取得一些新的认识及进展,主要包括以下几个方面:
     1.除大量侵入岩外,华北克拉通北缘中生代早期发育两套火山岩组合:二叠纪末-早三叠世火山岩形成时代介于245-255Ma,主要为流纹质岩石;中-晚三叠世火山岩形成于228-238Ma,主要为安山质岩石和少量流纹岩。早期火山岩可能是通过古老下地壳熔融并分离结晶形成的,而晚期火山岩则可能是软流圈地幔上涌,引起岩石圈地幔和古老下地壳熔融混合之后形成的。
     2.盘山岩体侵位造成了周缘向斜(府君山向斜、庄果峪向斜和水峪向斜)的形成并明显改造了早期区域近东西向褶皱。在盘山岩体北侧的红石坎背斜和西大峪向斜的两翼可以观察到褶皱的花岗斑岩岩席,它们分别给出214±3Ma和213±2Ma的锆石U-Pb年龄。盘山岩体是一个典型的复式岩体,已发表的SHRIMP U-Pb数据给出206Ma的加权平均年龄,代表峰期年龄,而狼家峪单元稍早,为210Ma。因此,区域褶皱变形的时代在210-213Ma之间。蓟县断裂明显错断和改造了君山向斜和庄果峪向斜,并被盘山岩体穿刺,因此蓟县断裂的活动发生在210Ma前后,并可能延续到大约206Ma。
     3.北京西山青白口背斜南翼奥陶系灰岩被“南大岭组”火山岩以微角度不整合覆盖,根据背斜核部顺层闪长玢岩床和“南大岭组”安山质凝灰岩的锆石U-Pb定年将青白口背斜隆起的起始时代限定在170~177Ma。但从整个盆地边缘来看,早侏罗统地层与下伏地层之间的角度不整合不明显,仅在局部地区发育。因此北京西山中生代早期构造变动并不强烈,其主要构造格局在燕山期形成。
     4.都山复式岩基包括南部变形较强的的都山岩体和北部弱变形的大石柱岩体。新获得的锆石LA-ICP-MS U-Pb年龄结果显示都山岩体和大石柱岩体侵位时代在误差范围内一致(~220Ma)。岩体变形特征初步调查表明都山岩体可能是通过主动膨胀方式侵位的,记录了区域晚三叠世挤压构造背景。而岩石学研究表明都山岩基是在岩石圈伸展体制下形成的,因此,华北北缘中生代早期构造体制在时间和深度上存在解耦,挤压构造应力可能在岩石圈伸展后很长一段时间内仍在上地壳或地表持续作用,显示了时间上的滞后性。
The North China Craton (NCC) has become a hotspot of geological research and attracted more and more researchers from both domestic and abroad. A lot of studies have been carried out on Precambrian cratonization and Phanerozoic decratonization processes, and much progress has been achieved. The northern margin of NCC has a long continental margin history from Mesoproterozoic to Late Paleozoic. Recent researches on the northern margin of the NCC have been mainly focused on the late Paleozoic tectonic events. However, the tectonic setting during the early Mesozoic is still in dispute.
     Early Mesozoic period is a key stage after closure of the Paleo-Asian Ocean and the northern margin of the NCC entered into an intra-plate tectonic setting. Therefore, studying the early Mesozoic magmatism and deformation in the northern NCC is of great importance to understanding the geodynamic processes after the final closure of the Paleo-Asian Ocean and amalgamation between the Mongolian arc terranes and the NCC along the Solonker suture.
     The main contents of this thesis include:(1) Zircon U-Pb dating, whole rock geochemical and isotopic analysis and in-situ zircon Lu-Hf analysis were performed on contrasting latest Permian-Triassic volcanic rock suites from the northern NCC;(2) Based on field profile observation and isotopic dating, Early Mesozoic deformation in the Panshan area and the Western Hills of Beijing were established;(3) Petrogenesis and emplacement deformation of the Dushan composite batholith was studied in order to better understand the geological setting of the northern NCC during the Early Mesozoic time.
     The main advancements achieved from the thesis are as follows:
     1. There are two contrasting volcanic rock suites in the northern NCC during the latest Permian-Triassic. The earlier volcanic rock suite erupted during the latest Permian to Early Triassic at ca.245~255Ma and was composed of rhyolitic rocks. The later suite erupted during the Middle to Late Triassic at ca.228~238Ma and composed of andesitic rocks and minor rhyolitic rocks. Geochemical and isotopic data revealed that the latest Permian to Early Triassic volcanic rocks were likely produced by fractional crystallization of ancient lower crustal-derived magmas. However, the Middle to Late Triassic suites is mainly derived from lithospheric mantle and ancient crust, with minor involvement of asthonospheric mantle.
     2. The intrusion of the Panshan composite pluton resulted in formation of the U-shaped synclines (e.g. the Fujunshan syncline, the Zhuangguoyu syncline and the Shuiyu syncline). On the map scale, the U-shaped synclines obviously superimpose on the earlier regional east-west trending Malanyu anticlinorium fold. There are two folded granitic porphyry sheets in both Hongshikan anticline and Xidayu syncline in the western plunging zone of the Malanyu anticlinorium. Zircon U-Pb dating for these granitic porphyry sheets yield214±3Ma and213±2 Ma, respectively. The Panshan composite pluton emplaced during the late Triassic, with peak at about206Ma. The Langjiayu unit emplaced earlier, at about210Ma. Therefore, regional folding time can be constrained between210~213Ma. The Jixian thrust fault truncates the Fujunshan syncline and the Zhuangguoyu syncline, and then intruded by later emplacement of the Panshan composite pluton. The Jixian thrust fault may activate simultaneously with the intrusion of the Panshan pluton, and may last to~206Ma.
     3. On the southern limb of the Qingbaikou anticline (dome) in the Western Hills of Beijing, there is an angular unconformity between the upper Nandaling Formation and the lower Ordovician limestone. By dating the bed parallel dioritic sills in the core of the Qingbaikou anticline and andesitic tuff from the Nandaling Formation, the initial deformation time of the Qingbaikou anticline can be constrained between170~177Ma. Considering that the angular unconformity beneath the Nandaling Formation is local and it is parallel unconformity between lower Jurassic strata and underlying formations at most area of the Western Hills of Beijing, we proposed that the Early Mesozoic deformation is relatively weak in the Western Hills of Beijing.
     4. The Dushan composite batholith consists of the southern deformed Dushan pluton and the northern undeformed Dashizhu pluton. New zircon LA-ICP-MS U-Pb data indicate that the Dushan pluton and the Dashizhu pluton have the same emplacement ages within the limit of error. Deformation analysis on the Dushan pluton show that it formed by stoping and expansion in a contraction tectonic stress field during its emplacement. However, petrogenesis studies the Dushan composite batholith and the alkaline complexes in the northern NCC reveals that they were formed in a lithospheric scale extension setting, with upwelling of asthonosphere mantle. Therefore, the deep and superficial process may have decoupled during the early Mesozoic time in the northern margin of the NCC, and contraction deformation may last for a long time after closure of the Paleo-Asian Ocean.
引文
Andersen T. Correction of common lead in U-Pb analyses that do not report 204Pb[J], Chemical geology.2002,192(1):59-79.
    Atherton M P, Petford N. Generation of sodium-rich magmas from newly underplated basaltic crust[J]. Nature.1993(362):144-146.
    Bas M J L, Maitre R W L, Streckeisen A, Zanettin B, lugs S O T S. A Chemical Classification of Volcanic Rocks Based on the Total Alkali-Silica Diagram [J]. Journal of Petrology.1986, 27(3):745-750.
    Black L P, Kamo S L, Allen C M, Aleinikoff J N, Davis D W, Korsch R J, Foudoulis C. TEMORA 1:a new zircon standard for Phanerozoic U-pb geochronology[J]. Chemical Geology.2003,200(1):155-170.
    Blichert-Toft J, Albarede F. The Lu-Hf isotope geochemistry of chondrites and the evolution of the mantle-crust system[J]. Earth and Planetary Science Letters.1998,148(1):243-258.
    Cao H, Xu W, Pei F, Wang Z, Wang F, Wang Z. Zircon U-Pb geochronology and petrogenesis of the Late Paleozoic-Early Mesozoic intrusive rocks in the eastern segment of the northern margin of the North China Block[J]. Lithos.2013,170-171(0):191-207.
    Castillo P R. Adakite petrogenesis [J]. Lithos.2012,134:304-316.
    Chen B, Jahn B, Wilde S, Xu B. Two contrasting paleozoic magmatic belts in northern Inner Mongolia, China: petrogenesis and tectonic implications[J]. Tectonophysics.2000,328(1-2): 157-182.
    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.
    Chen F, Siebel W, Satir M, Terzioglu M, Saka K. Geochronology of the Karadere basement (NW Turkey) and implications for the geological evolution of the Istanbul zone[J]. International Journal of Earth Sciences.2002,91(3):469-481.
    Chen J, Wu J, Xu J, Dong Y, Wang B, Kang Z. Geochemistry of Eocene high-Mg# adakitic rocks in the northern Qiangtang terrane, central Tibet:Implications for early uplift of the plateau[J]. Geological Society of America Bulletin. 2013,125(11-12):1800-1819.
    Chung S, Lee T, Lo C, Wang P, Chen C, Yem N T, Hoa T T, Genyao W. Intraplate extension prior to continental extrusion along the Ailao Shan-Red River shear zone[J]. Geology.1997, 25(4):311-314.
    Cope T D. Sedimentary evolution of the Yanshan fold-thrust belt, Northeast China[D]. Stanford University California,2003.
    Cope T, Ritts B D, Darby B J, Fildani A, Graham S A. Late Paleozoic Sedimentation on the Northern Margin of the North China Block: Implications for Regional Tectonics and Climate Change[J]. International Geology Review.2005,47(3):270-296.
    Cope T D, Shultz M R, Graham S A. Detrital record of Mesozoic shortening in the Yanshan belt, NE China: testing structural interpretations with basin analysis[J]. Basin Research.2007a, 19(2):253-272.
    Cope T D, Graham S A. Upper crustal response to Mesozoic tectonism in western Liaoning, North China, and implications for lithospheric delamination[J]. Geological Society, London, Special Publications.2007b,280(1):201-222.
    Cope T, Ping L, Xingyang Z, Xuanjie Z, Jinmin S, Gang Z, Shultz M R. Structural controls on facies distribution in a small half-graben basin:Luanping basin, northeast China[J]. Basin Research.2010,22(1):33-44.
    Davis G A, Meng J, Cao W, Du X. Triassic and Jurassic Tectonics in the Eastern Yanshan Belt, North China: Insights from the Controversial Dengzhangzi Formation and Its Neighboring Units[J]. Earth Science Frontiers. 2009,16(3):69-86.
    Davis G A, Yadong Z, Cong W, Darby B J, Changhou Z, Gehrels G. Mesozoic tectonic evolution of the Yanshan fold and thrust belt, with emphasis on Hebei and Liaoning provinces, northern China [J]. Geological Society of America Memoirs.2001,194:171-197.
    Darby B J, Davis G A, Yadong Z. Structural evolution of the southwestern Daqing Shan, Yinshan belt, Inner Mongolia, China[J]. Geological Society of America Memoirs.2001,194:199-214.
    Darby Brian J., Davis Gregory A., Xiao-Hui Zhang, Fu-Yuan W. U., Wilde Simon, Jin-Hui Yang.辽西医巫闾山地区瓦子峪变质核杂岩的厘定(英文)[J].地学前缘.2004(3):145-155.
    De Jong K, Xiao W, Windley B F, Masago H, Lo C. Ordovician 40Ar/39Ar phengite ages from the blueschist-facies Ondor Sum subduction-accretion complex (Inner Mongolia) and implications for the early Paleozoic history of continental blocks in China and adjacent areas [J]. American Journal of Science.2006,306(10):799-845.
    Deng J, Su S, Mo X, Zhao G, Xiao Q, Ji G, Qiu R, Zhao H, Luo Z, Wang Y, Liu C. The Sequence of Magmatic-Tectonic Events and Orogenic Processes of the Yanshan Belt, North China [J]. Acta Geologica Sinica(English Edition).2004,78(1):260-266.
    Dewey J F. Extensional collapse of orogens[J]. Tectonics.1988,7(6):1123-1139.
    Donskaya T. V., Gladkochub D. P., Mazukabzov A. M., Ivanov A. V. Late Paleozoic Mesozoic Subduction-Related Magmatism at the Southern Margin of the Siberian Continent and the 150 Million-Year History of the Mongol-Okhotsk Ocean. Journal of Asian Earth Sciences.2013,62(0):79-97.
    Fan W M, Zhang H F, Baker J, Jarvis K E, Mason P, Menzies M A. On and off the North China Craton: Where is the Archaean keel?[J]. Journal of Petrology. 2000, 41(7):933-950.
    Feng G, Liu S, Zhong H, Feng C, Coulson I M, Qi Y, Yang Y, Yang C. U-Pb zircon geochronology, geochemical, and Sr-Nd isotopic constraints on the age and origin of basaltic porphyries from western Liaoning Province, China[J]. International Geology Review. 2012, 54(9):1052-1070.
    Foley S F. Rejuvenation and erosion of the cratonic lithosphere[J]. Nature Geoscience. 2008,1(8): 503-510.
    Fu L, Wei J, Kusky T M, Chen H, Tan J, Li Y, Kong L, Jiang Y. Triassic shoshonitic dykes from the northern North China craton:petrogenesis and geodynamic significance [J]. Geological Magazine.2012,149(1):39-55.
    Gao S, Rudnick R L, Carlson R W, Mcdonough W F, Liu Y. Re-Os evidence for replacement of ancient mantle lithosphere beneath the North China craton[J]. Earth and Planetary Science Letters.2002,198(3-4):307-322.
    Gao S, Rudnick R L, Yuan H, Liu X, Liu Y, Xu W, Ling W, Ayers J, Wang X, Wang Q. Recycling lower continental crust in the North China craton[J]. Nature. 2004,432(7019): 892-897.
    Gertisser R, Keller J. From basalt to dacite: origin and evolution of the calc-alkaline series of Salina, Aeolian Arc, Italy[J]. Contributions to Mineralogy and Petrology. 2000, 139(5): 607-626.
    Griffin W L, Andi Z, O'Reilly S Y, Ryan C G. Phanerozoic evolution of the lithosphere beneath the Sino-Korean Craton[J]. Geodynamics Series. 1998,27:107-126.
    Griffin W L, Pearson N J, Belousova S E, Achterbergh E V, O'Relly S, Shee S R. The Hf isotope composition of cratonic mantle: LAM-MC-ICPMS analysis of zircon megacrysts in kimberlites[J]. Geochimica et Cosmochimica Acta.2000,64(1):133-147.
    Han C, Xiao W, Zhao G, Sun M, Qu W, Du A. A Re-Os study of molybdenites from the Lanjiagou Mo deposit of North China Craton and its geological significance[J]. Gondwana Research. 2009,16(2):264-271.
    Hawkesworth C, Turner S, Gallagher K, Hunter A, Bradshaw T, Rogers N. Calc - alkaline magmatism, lithospheric thinning and extension in the Basin and Range[J]. Journal of Geophysical Research: Solid Earth (1978-2012).1995,100(B6):10271-10286.
    Hildreth W, Moorbath S. Crustal contributions to arc magmatism in the Andes of central Chile[J]. Contributions to Mineralogy and Petrology.1988,98(4):455-489.
    Hou G, Wang Y, Hari K R. The Late Triassic and Late Jurassic stress fields and tectonic transmission of North China craton[J]. Journal of Geodynamics.2010,50(3-4):318-324.
    Hsu K J, Qingcheg W, Liang L I, Jie H. Geologic evolution of the Neimonides:a working hypothesis [J]. Eclogae Geologicae Helvetiae. 1991,84(1):1-31.
    Hu J, Zhao Y, Liu X, Xu G. Early Mesozoic deformations of the eastern Yanshan thrust belt, northern China[J]. International Journal of Earth Sciences. 2010,99(4):785.
    Hu Z, Gao S, Liu Y, Hu S, Chen H, Yuan H. Signal enhancement in laser ablation ICP-MS by addition of nitrogen in the central channel gas[J]. Journal of Analytical Atomic Spectrometry. 2008,23(8):1093-1101.
    Huang F, Li S, Dong F, He Y, Chen F. High-Mg adakitic rocks in the Dabie orogen, central China: implications for foundering mechanism of lower continental crust[J]. Chemical Geology. 2008,255(1):1-13.
    Huang J. On Major Tectonic Forms of China...[M]. National Geological Survey of China under the Ministry of Economic Affairs, 1945.
    International U O G S, Le Maitre R W, Bateman P. A Classification of Igneous Rocks and Glossary of Terms:Recommendations of the International Union of Geological Sciences, Subcommision on the Systematics of Igneous Rocks [M]. Blackwell Scientific Publications, 1989.
    Jacobsen S B, Wasserburg G J. Sm-Nd isotopic evolution of chondrites[J]. Earth and Planetary Science Letters.1980,50(1):139-155.
    Jahn B, Wu F, Chen B, Others. Granitoids of the Central Asian Orogenic Belt and continental growth in the Phanerozoic [J]. TRANSACTIONS-ROYAL SOCIETY OF EDINBURGH. 2000,91(1/2):181-194.
    Jahn B. The Central Asian Orogenic Belt and growth of the continental crust in the Phanerozoic [J]. Geological Society, London, Special Publications.2004,226(1):73-100.
    Jian P, Liu D, Kroner A, Windley B F, Shi Y, Zhang F, Shi G, Miao L, Zhang W, Zhang Q, Zhang L, Ren J. Time scale of an early to mid-Paleozoic orogenic cycle of the long-lived Central Asian Orogenic Belt, Inner Mongolia of China: Implications for continental growth[J]. Lithos. 2008,101(3-4):233-259.
    Jian P, Liu D, Kroner A, Windley B F, Shi Y, Zhang W, Zhang F, Miao L, Zhang L, Tomurhuu D. Evolution of a Permian intraoceanic arc-trench system in the Solonker suture zone, Central Asian Orogenic Belt, China and Mongolia[J]. Lithos.2010,118(1-2):169-190.
    Jian P, Kroner A, Windley B F, Shi Y, Zhang W, Zhang L, Yang W. Carboniferous and Cretaceous mafic-ultramafic massifs in Inner Mongolia (China):A SHRIMP zircon and geochemical study of the previously presumed integral "Hegenshan ophiolite"[J]. Lithos. 2012,142-143(0):48-66.
    Jiang N. Petrology and geochemistry of the Shuiquangou syenitic complex, northern margin of the North China Craton [J]. Journal of the Geological Society.2005,162(1):203-215.
    Jiang N, Liu Y, Zhou W, Yang J, Zhang S. Derivation of Mesozoic adakitic magmas from ancient lower crust in the North China craton[J]. Geochimica et Cosmochimica Acta. 2007,71(10): 2591-2608.
    Jiang N, Guo J, Zhai M. Nature and origin of the Wenquan granite:Implications for the provenance of Proterozoic A-type granites in the North China craton[J]. Journal of Asian Earth Sciences.2011,42(1):76-82.
    Jiang N, Guo J, Chang G. Nature and evolution of the lower crust in the eastern North China craton:A review[J]. Earth-Science Reviews.2013,122(0):1-9.
    Jordan T H. The continental tectosphere[J]. Reviews of Geophysics. 1975,13(3):1-12.
    Kawabata H, Shuto K. Magma mixing recorded in intermediate rocks associated with high-Mg andesites from the Setouchi volcanic belt, Japan: implications for Archean TTG formation[J]. Journal of Volcanology and Geothermal Research. 2005,140(4):241-271.
    Kay R W, Mahlburg Kay S. Delamination and delamination magmatism[J]. Tectonophysics.1993, 219(1):177-189.
    Khain E V, Bibikova E V, Kroner A, Zhuravlev D Z, Sklyarov E V, Fedotova A A, Kravchenko-Berezhnoy I R. The most ancient ophiolite of the Central Asian fold belt: U-Pb and Pb-Pb zircon ages for the Dunzhugur Complex, Eastern Sayan, Siberia, and geodynamic implications [J]. Earth and Planetary Science Letters. 2002, 199(3):311-325.
    Li H, Lu S, Su W, Xiang Z, Zhou H, Zhang Y. Recent advances in the study of the Mesoproterozoic geochronology in the North China Craton[J]. Journal of Asian Earth Sciences.2013,72(0):216-227.
    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(3-4):207-224.
    Li Q, Wu F, Li X, Qiu Z, Liu Y, Yang Y, Tang G. Precisely dating Paleozoic kimberlites in the North China Craton and Hf isotopic constraints on the evolution of the subcontinental lithospheric mantle[J]. Lithos.2011,126(1-2):127-134.
    Li Y, Zhou H, Brouwer F M, Xiao W, Zhong Z, Wijbrans J R. Late Carboniferous-Middle Permian arc/forearc-related basin in Central Asian Orogenic Belt: Insights from the petrology and geochemistry of the Shuangjing Schist in Inner Mongolia, China[J]. Island Arc.2011a, 20(4):535-549.
    Li Y, Zhou H, Brouwer F M, Wijbrans J R, Zhong Z, Liu H. Tectonic significance of the Xilin Gol Complex, Inner Mongolia, China: petrological, geochemical and U-Pb zircon age constraints[J]. Journal of Asian Earth Sciences.2011b,42(5):1018-1029.
    Li Y, Zhou H, Brouwer F M, Xiao W, Wijbrans J R, Zhao J, Zhong Z, Liu H. Nature and timing of the Solonker suture of the Central Asian Orogenic Belt: insights from geochronology and geochemistry of basic intrusions in the Xilin Gol Complex, Inner Mongolia, China[J]. International Journal of Earth Sciences.2013:1-20.
    Lin W, Faure M, Nomade S, Shang Q, Renne P R. Permian-Triassic amalgamation of Asia: Insights from Northeast China sutures and their place in the final collision of North China and Siberia[J]. Comptes Rendus Geoscience.2008,340(2-3):190-201.
    Liu D Y, Nutman A P, Compston W, Wu J S, Shen Q H. Remnants of ≥3800 Ma crust in the Chinese part of the Sino-Korean craton [J]. Geology. 1992,20(4):339-342.
    Liu F L, Gerdes A, Liou J G, Xue H M, Liang F H. SHRIMP U - Pb zircon dating from Sulu-Dabie dolomitic marble, eastern China:Constraints on prograde, ultrahigh - pressure and retrograde metamorphic ages[J]. Journal of metamorphic Geology.2006,24(7):569-589.
    Liu J, Zhao Y, Liu X, Wang Y, Liu X. Rapid exhumation of basement rocks along the northern margin of the North China craton in the early Jurassic:evidence from the Xiabancheng Basin, Yanshan Tectonic Belt[J]. Basin Research.2012,24(5):544-558.
    Liu J, Zhao Y, Sun Y, Li D, Liu J, Chen B, Zhang S, Sun W. Recognition of the latest Permian to Early Triassic Cu-Mo mineralization on the northern margin of the North China block and its geological significance[J]. Gondwana Research.2010,17(1):125-134.
    Liu S, Zhang J, Hong S, Ritts B D. Early Mesozoic basin development and its response to thrusting in the Yanshan fold-and-thrust belt, China[J]. International Geology Review.2007, 49(11):1025-1049.
    Liu Y, Hu Z, Gao S, G U Nther D, Xu J, Gao C, Chen H. In-situ analysis of major and trace elements of anhydrous minerals by LA-ICP-MS without applying an internal standard[J]. Chemical Geology.2008,257(1):34-43.
    Liu Y, Gao S, Hu Z, Gao C, Zong K, Wang D. 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[J]. Journal of Petrology.2010,51(1-2): 537-571.
    Lu S, Zhao G, Wang H, Hao G. Precambrian metamorphic basement and sedimentary cover of the North China Craton:Areview[J]. Precambrian Research. 2008,160(1-2):77-93.
    Ludwig K R. ISOPLOT 3.00:A Geochronological Toolkit for Microsoft Excel.[M]. Berkeley, California: Berkeley Geochronology Center, 2003.
    Ma Q, Zheng J, Griffin W L, Zhang M, Tang H, Su Y, Ping X. Triassic "adakitic" rocks in an extensional setting (North China):Melts from the cratonic lower crust[J]. Lithos.2012,149: 159-173.
    Ma S, Meng Q, Duan L, Wu G. Reconstructing Late Paleozoic exhumation history of the Inner Mongolia Highland along the northern edge of the North China Craton[J]. Journal of Asian Earth Sciences.2014,87(0):89-101.
    Meng Q, Wei H, Wu G, Duan L. Early Mesozoic tectonic settings of the northern North China craton[J]. Tectonophysics.2014,611(25):155-166.
    Menzies M A, Fan W, Zhang M. Palaeozoic and Cenozoic lithoprobes and the loss of > 120 km of Archaean lithosphere, Sino-Korean craton, China [J]. Geological Society, London, Special Publications.1993,76(1):71-81.
    Menzies M, Xu Y, Zhang H, Fan W. Integration of geology, geophysics and geochemistry: A key to understanding the North China Craton[J]. Lithos.2007,96(1-2):1-21.
    Miao L, Zhang F, Fan W M, Liu D. Phanerozoic evolution of the Inner Mongolia-Daxinganling orogenic belt in North China: constraints from geochronology of ophiolites and associated formations [J]. Geological Society, London, Special Publications.2007,280(1):223-237.
    Miao L, Fan W, Liu D, Zhang F, Shi Y, Guo F. Geochronology and geochemistry of the Hegenshan ophiolitic complex:Implications for late-stage tectonic evolution of the Inner Mongolia-Daxinganling Orogenic Belt, China[J]. Journal of Asian Earth Sciences.2008, 32(5):348-370.
    Monroe J, Wicander R, Hazlett R. Physical geology: exploring the Earth[M]. Cengage Learning, 2006.
    Morel M L A, Nebel O, Nebel-Jacobsen Y J, Miller J S, Vroon P Z. Hafnium isotope characterization of the GJ-1 zircon reference material by solution and laser-ablation MC-ICPMS[J]. Chemical Geology.2008,255(1-2):231-235.
    Nasdala L, Hofmeister W, Norberg N, Martinson J M, Corfu F, Dorr W, Kamo S L, Kennedy A K, Kronz A, Reiners P W. Zircon M257 - a Homogeneous Natural Reference Material for the Ion Microprobe U - Pb Analysis of Zircon[J]. Geostandards and Geoanalytical Research. 2008,32(3):247-265.
    Nie F, Jiang S, Su X, Wang X. Geological features and origin of gold deposits occurring in the Baotou-Bayan Obo district, south-central Inner Mongolia, People's Republic of China[J]. Ore Geology Reviews.2002,20(3):139-169.
    Niu X, Chen B, Liu A, Suzuki K, Ma X. Petrological and Sr-Nd-Os isotopic constraints on the origin of the Fanshan ultrapotassic complex from the North China Craton[J]. Lithos.2012, 149:146-158.
    Paterson S R, Vernon R H, Tobisch O T. A review of criteria for the identification of magmatic and tectonic foliations in granitoids[J]. Journal of Structural Geology.1989, 11(3):349-363.
    Peccerillo A, Taylor S R. Geochemistry of Eocene calc-alkaline volcanic rocks from the Kastamonu area, northern Turkey[J]. Contributions to mineralogy and petrology.1976,58(1): 63-81.
    Peng P, Zhai M, Zhang H, Guo J. Geochronological constraints on the Paleoproterozoic evolution of the North China Craton: SHRIMP zircon ages of different types of mafic dikesfJ]. International Geology Review.2005,47(5): 492-508.
    Qian Q, Hermann J. Partial melting of lower crust at 10-15 kbar: constraints on adakite and TTG formation[J]. Contributions to Mineralogy and Petrology.2013,165(6):1195-1224.
    Robinson P T, Zhou M, Hu X, Reynolds P, Wenji B, Yang J. Geochemical constraints on the origin of the Hegenshan Ophiolite, Inner Mongolia, China[J]. Journal of Asian Earth Sciences.1999,17(4):423-442.
    Rudnick R L, Gao S, Ling W, Liu Y, Mcdonough W F. Petrology and geochemistry of spinel peridotite xenoliths from Hannuoba and Qixia, North China craton[J]. Lithos.2004,77(1-4): 609-637.
    Schott B, Schmeling H. Delamination and detachment of a lithospheric root[J]. Tectonophysics. 1998,296(3-4):225-247.
    Seber D, Barazangi M, Ibenbrahim A, Demnati A. Geophysical evidence for lithospheric delamination beneath the Alboran Sea and Rif-Betic mountains[J].1996.
    Sengor A, Burtman V S. Evolution of the Altaid tectonic collage and Palaeozoic crustal growth in Eurasia[J]. Nature.1993,364:299-307.
    Sengor A C, Natal'In B A. Turkic-type orogeny and its role in the making of the continental crust[J]. Annual Review of Earth and Planetary Sciences. 1996,24(1):263-337.
    Shi G, Faure M, Xu B, Zhao P, Chen Y. Structural and kinematic analysis of the Early Paleozoic Ondor Sum-Hongqi melange belt, eastern part of the Altaids (CAOB) in Inner Mongolia, China[J]. Journal of Asian Earth Sciences.2013,66(0):123-139.
    Soderlund U, Patchett P J, Vervoort J D, Isachsen C E. The 176Lu decay constant determined by Lu-Hf and U-Pb isotope systematics of Precambrian mafic intrusions [J]. Earth and Planetary Science Letters. 2004,219(3):311-324.
    Stern C R, Kilian R. Role of the subducted slab, mantle wedge and continental crust in the generation of adakites from the Andean Austral Volcanic Zone[J]. Contributions to mineralogy and petrology. 1996, 123(3):263-281.
    Streck M J, Leeman W P, Chesley J. High-magnesian andesite from Mount Shasta:A product of magma mixing and contamination, not a primitive mantle melt[J]. Geology. 2007,35(4): 351-354.
    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.
    Tappe S, Foley S F, Stracke A, Romer R L, Kjarsgaard B A, Heaman L M, Joyce N. Craton reactivation on the Labrador Sea margins: 40Ar/39Ar age and Sr-Nd-Hf-Pb isotope constraints from alkaline and carbonatite intrusives[J]. Earth and Planetary Science Letters.2007,256(3): 433-454.
    Tang Jie, Xu Wen-Liang, Wang Feng, Wang Wei, Xu Mei-Jun, Zhang Yi-Han. Geochronology and Geochemistry of Early-Middle Triassic Magmatism in the Erguna Massif, Ne China: Constraints On the Tectonic Evolution of the Mongol-Okhotsk Ocean. Lithos. 2014, 184-187(0):1-16.
    Taylor S R, Mclennan S M. The continental crust:its composition and evolution[M]. Oxford: Blackwell Science Pbulication, 1985:312.
    Vernon R H. Review of microstructural evidence of magmatic and solid-state flow[J]. Visual Geosciences.2000,5(2):1-23.
    Wan Y, Liu D, Wang W, Song T, Kroner A, Dong C, Zhou H, Yin X. Provenance of Meso - to Neoproterozoic cover sediments at the Ming Tombs, Beijing, North China Craton:An integrated study of U - Pb dating and Hf isotopic measurement of detrital zircons and whole-rock geochemistry[J]. Gondwana Research.2011,20(1):219-242.
    Wang H, Mo X. An outline of the tectonic evolution of China[J]. Episodes-Newsmagazine of the International Union of Geological Sciences.1995,18(1):6-16.
    Wang J, Pfefferkorn H W, Zhang Y, Feng Z. Permian vegetational Pompeii from Inner Mongolia and its implications for landscape paleoecology and paleobiogeography of Cathaysia[J]. Proceedings of the National Academy of Sciences.2012,109(13):4927-4932.
    Wang Q, Liu X. Paleoplate tectonics between Cathaysia and Angaraland in inner Mongolia of China[J]. Tectonics.1986,5(7):1073-1088.
    Wang T, Guo L, Zheng Y, Donskaya T, Gladkochub D, Zeng L, Li J, Wang Y, Mazukabzov A. Timing and processes of late Mesozoic mid-lower-crustal extension in continental NE Asia and implications for the tectonic setting of the destruction of the North China Craton: Mainly constrained by zircon U - Pb ages from metamorphic core complexes[J]. Lithos. 2012, 154(0):315-345.
    Wang Y, Zhou L, Zhao L. Cratonic reactivation and orogeny: An example from the northern margin of the North China Craton[J]. Gondwana Research.2013,24(3-4):1203-1222.
    Wei H, Liu J, Meng Q. Structural and sedimentary evolution of the southern Songliao Basin, northeast China, and implications for hydrocarbon prospectivity [J]. AAPG Bulletin. 2010, 94(4):533-566.
    Weis D, Kieffer B, Maerschalk C, Barling J, de Jong J, Williams G A, Hanano D, Pretorius W, Mattielli N, Scoates J S. High - precision isotopic characterization of USGS reference materials by TIMS and MC - ICP - MS[J]. Geochemistry, Geophysics, Geosystems. 2006, 7(8).
    Wells M L, Hoisch T D. The role of mantle delamination in widespread Late Cretaceous extension and magmatism in the Cordilleran orogen, western United States [J]. Geological Society of America Bulletin.2008,120(5-6):515-530.
    Wernicke B, Clayton R, Ducea M, Jones C H, Park S, Ruppert S, Saleeby J, Snow J K, Squires L, Fliedner M. Origin of high mountains in the continents: The southern Sierra Nevada[J]. Science.1996,271(5246):190-193.
    Wilde S A, Zhao G, Sun M. 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[J]. Gondwana Research.2002,5(1):85-94.
    Williams I S. U-Th-Pb geochronology by ion microprobe[J]. Reviews in Economic Geology. 1998,7(1):1-35.
    Windley B F, Alexeiev D, Xiao W, Kroner A, Badarch G. Tectonic models for accretion of the Central Asian Orogenic Belt [J]. Journal of the Geological Society. 2007,164(1):31-47.
    Windley B F, Maruyama S, Xiao W J. Delamination/thinning of sub-continental lithospheric mantle under Eastern China: The role of water and multiple subduction [J]. American Journal of Science.2010,310(10):1250-1293.
    Wu F Y, Walker R J, Yang Y H, Yuan H L, Yang J H. The chemical-temporal evolution of lithospheric mantle underlying the North China Craton[J]. Geochimica et Cosmochimica Acta.2006a,70(19):5013-5034.
    Wu F, Yang Y, Xie L, Yang J, Xu P. Hf isotopic compositions of the standard zircons and baddeleyites used in U-Pb geochronology [J]. Chemical Geology.2006b, 234(1-2):105-126.
    Wu F, Zhao G, Sun D, Wilde S A, Yang J. 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(3-4): 542-556.
    Xiao W, Windley B F, Hao J, Zhai M. Accretion leading to collision and the Permian Solonker suture, Inner Mongolia, China: Termination of the central Asian orogenic belt[J]. Tectonics. 2003,22(6): 1069.
    Xiao W, Windley B, Huang B, Han C, Yuan C, Chen H, Sun M, Sun S, Li J. 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.
    Xiao W, Han C, Yuan C, Sun M, Zhao G, Shan Y. Transitions among Mariana-, Japan-, Cordillera-and Alaska-type arc systems and their final juxtapositions leading to accretionary and collisional orogenesis[J]. Geological Society, London, Special Publications.2010,338(1): 35-53.
    Xu B, Charvet J, Chen Y, Zhao P, Shi G. Middle Paleozoic convergent orogenic belts in western Inner Mongolia (China): framework, kinematics, geochronology and implications for tectonic evolution of the Central Asian Orogenic Belt[J]. Gondwana Research.2013,23(4): 1342-1364.
    Xu J, Shinjo R, Defant M J, Wang Q, Rapp R P. Origin of Mesozoic adakitic intrusive rocks in the Ningzhen area of east China: partial melting of delaminated lower continental crust? [J]. Geology.2002,30(12):1111-1114.
    Xu W, Gao S, Wang Q, Wang D, Liu Y. Mesozoic crustal thickening of the eastern North China craton: Evidence from eclogite xenoliths and petrologic implications[J]. Geology.2006, 34(9):721-724.
    Xu W, Hergt J M, Gao S, Pei F, Wang W, Yang D. Interaction of adakitic melt-peridotite: Implications for the high-Mg# signature of Mesozoic adakitic rocks in the eastern North China Craton[J]. Earth and Planetary Science Letters.2008,265(1):123-137.
    Xu W, Yang D, Gao S, Pei F, Yu Y. Geochemistry of peridotite xenoliths in Early Cretaceous high-Mg# diorites from the Central Orogenic Block of the North China Craton:The nature of Mesozoic lithospheric mantle and constraints on lithospheric thinning[J]. Chemical Geology. 2010,270(1-4):257-273.
    Xu W, Pei F, Wang F, Meng E, Ji W, Yang D, Wang W. Spatial-temporal relationships of Mesozoic volcanic rocks in NE China:Constraints on tectonic overprinting and transformations between multiple tectonic regimes[J]. Journal of Asian Earth Sciences.2013, 74:167-193.
    Xu Y. Thermo-tectonic destruction of the Archaean lithospheric keel beneath the Sino-Korean Craton in China: Evidence, timing and mechanism[J]. Physics and Chemistry of the Earth, Part A: Solid Earth and Geodesy.2001,26(9):747-757.
    Xu Y. Diachronous lithospheric thinning of the North China Craton and formation of the Daxin'anling-Taihangshan gravity lineament[J]. Lithos.2007,96(1):281-298.
    Yang J, Wu F, Shao J, Wilde S A, Xie L, Liu X. Constraints on the timing of uplift of the Yanshan Fold and Thrust Belt, North China[J]. Earth and Planetary Science Letters.2006,246(3-4): 336-352.
    Yang J, Wu F, Wilde S A, Liu X. Petrogenesis of Late Triassic granitoids and their enclaves with implications for post-collisional lithospheric thinning of the Liaodong Peninsula, North China Craton[J]. Chemical Geology.2007a,242(1-2):155-175.
    Yang J H, Wu F Y, Wilde S A, Xie L W, Yang Y H, Liu X M. Tracing magma mixing in granite genesis:in situ U--Pb dating and Hf-isotope analysis of zircons[J]. Contributions to Mineralogy and Petrology.2007b,153(2):177-190.
    Yang J, Wu F, Wilde S A, Belousova E, Griffin W L. Mesozoic decratonization of the North China block[J]. Geology.2008,36(6):467-470.
    Yang J, O'Reilly S, Walker R J, Griffin W, Wu F, Zhang M, Pearson N. Diachronous decratonization of the Sino-Korean craton:Geochemistry of mantle xenoliths from North Korea [J]. Geology.2010,38(9):799-802.
    Yang J, Sun J, Zhang M, Wu F, Wilde S A. Petrogenesis of silica-saturated and silica-undersaturated syenites in the northern North China Craton related to post-collisional and intraplate extension[J]. Chemical Geology.2012,328:149-167.
    Yang T N, Peng Y, Leech M L, Lin H Y. Fold patterns indicating Triassic constrictional deformation on the Liaodong peninsula, eastern China, and tectonic implications [J]. Journal of Asian Earth Sciences.2011,40(1):72-83.
    Yang W, Li S. Geochronology and geochemistry of the Mesozoic volcanic rocks in Western Liaoning:Implications for lithospheric thinning of the North China Craton[J]. Lithos.2008, 102(1-2):88-117.
    Yin A, Nie S. A Phanerozoic palinspastic reconstruction of China and its neighboring regions[J]. World and Regional Geology.1996:442-485.
    Ying J, Zhang H, Tang Y. Crust-mantle interaction in the central North China Craton during the Mesozoic:Evidence from zircon U-Pb chronology, Hf isotope and geochemistry of syenitic-monzonitic intrusions from Shanxi province[J]. Lithos.2011,125(1-2):449-462.
    Zhai M G. Precambrian geological events in the North China Craton[J]. Tectonic Evolution of China. Geol Soc Spec Publ.2004,226:57-72.
    Zhai M, Fan Q, Zhang H, Sui J, Shao J. Lower crustal processes leading to Mesozoic lithospheric thinning beneath eastern North China:Underplating, replacement and delamination[J]. Lithos. 2007,96(1-2):36-54.
    Zhai M, Santosh M. The early Precambrian odyssey of the North China Craton:A synoptic overview[J]. Gondwana Research.2011,20(1):6-25.
    Zhang H, Sun M, Zhou X, Fan W, Zhai M, Yin J. Mesozoic lithosphere destruction beneath the North China Craton:evidence from major-, trace-element and Sr-Nd-Pb isotope studies of Fangcheng basalts[J]. Contributions to Mineralogy and Petrology. 2002,144(2):241-254.
    Zhang L, Wu H, Wan B, Chen Z. Ages and geodynamic settings of Xilamulun Mo-Cu metallogenic belt in the northern part of the North China Craton[J]. Gondwana Research. 2009,16(2):243-254.
    Zhang S, Zhao Y, Song B. Hornblende thermobarometry of the Carboniferous granitoids from the Inner Mongolia Paleo-uplift: Implications for the tectonic evolution of the northern margin of North China block[J]. Mineralogy and Petrology.2006,87(1):123-141.
    Zhang S, Zhao Y, Song B, Yang Y. Zircon SHRIMP U-Pb and in-situ Lu-Hf isotope analyses of a tuff from Western Beijing: Evidence for missing Late Paleozoic arc volcano eruptions at the northern margin of the North China block[J]. Gondwana Research.2007a,12(1-2): 157-165.
    Zhang S, Zhao Y, Song B, Yang Z, Hu J, Wu H. Carboniferous granitic plutons from the northern margin of the North China block: implications for a late Palaeozoic active continental margin [J]. Journal of the Geological Society.2007b,164(2):451-463.
    Zhang S, Liu S, Zhao Y, Yang J, Song B, Liu X. The 1.75-1.68Ga anorthosite-mangerite-alkali granitoid-rapakivi granite suite from the northern North China Craton: Magmatism related to a Paleoproterozoic orogen[J]. Precambrian Research.2007c,155(3-4):287-312.
    Zhang S, Zhao Y, Song B, Liu D. Petrogenesis of the Middle Devonian Gushan diorite pluton on the northern margin of the North China block and its tectonic implications [J]. Geological Magazine.2007d,144(3):553-568.
    Zhang S, Zhao Y, Song B, Hu J, Liu S, Yang Y, Chen F, Liu X, Liu J. Contrasting Late Carboniferous and Late Permian-Middle Triassic intrusive suites from the northern margin of the North China craton: Geochronology, petrogenesis, and tectonic implications [J]. Geological Society of America Bulletin.2009a,121(1-2):181-200.
    Zhang S, Zhao Y, Kroner A, Liu X, Xie L, Chen F. 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.2009b,98(6):1441.
    Zhang S, Zhao Y, Yang Z, He Z, Wu H. The 1.35Ga diabase sills from the northern North China Craton: Implications for breakup of the Columbia (Nuna) supercontinent[J]. Earth and Planetary Science Letters.2009c,288(3-4):588-600.
    Zhang S, Zhao Y, Liu X, Liu D, Chen F, Xie L, Chen H. Late Paleozoic to Early Mesozoic mafic-ultramafic complexes from the northern North China Block: Constraints on the composition and evolution of the lithospheric mantle[J]. Lithos. 2009d,110(1-4):229-246.
    Zhang S, Zhao Y, Santosh M. Mid-Mesoproterozoic bimodal magmatic rocks in the northern North China Craton:Implications for magmatism related to breakup of the Columbia supercontinent[J]. Precambrian Research.2012a,222 - 223:339-367.
    Zhang S, Zhao Y, Ye H, Hou K, Li C. Early Mesozoic alkaline complexes in the northern North China Craton: Implications for cratonic lithospheric destruction[J]. Lithos.2012b,155:1-18.
    Zhang S, Zhao Y. Mid-crustal emplacement and deformation of plutons in an Andean-style continental arc along the northern margin of the North China Block and tectonic implications[J]. Tectonophysics.2013,608:176-195.
    Zhang S, Zhao Y, Ye H, Liu J, Hu Z. Origin and evolution of the Bainaimiao arc belt: Implications for crustal growth in the southern Central Asian orogenic belt[J]. Geological Society of America Bulletin. 2014a.
    Zhang S, Zhao Y, Davis G A, Ye H, Wu F. Temporal and spatial variations of Mesozoic magmatism and deformation in the North China Craton: Implications for lithospheric thinning and decratonization[J]. Earth-Science Reviews.2014b,131:49-87.
    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. 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 [J]. Tectonophysics.2014c,612-613(0):26-39.
    Zhang W, Jian P, Kroner A, Shi Y. Magmatic and metamorphic development of an early to mid-Paleozoic continental margin arc in the southernmost Central Asian Orogenic Belt, Inner Mongolia, China[J]. Journal of Asian Earth Sciences.2013,72(0):63-74.
    Zhang X, Zhang H, Wilde S A, Yang Y, Chen H. Late Permian to Early Triassic mafic to felsic intrusive rocks from North Liaoning, North China: Petrogenesis and implications for Phanerozoic continental crustal growth[J]. Lithos. 2010,117(1-4):283-306.
    Zhang Z, Zhang H, Shao J, Ying J, Yang Y, Santosh M. Guangtoushan granites and their enclaves: Implications for Triassic mantle upwelling in the northern margin of the North China Craton[J]. Lithos.2012,149:174-187.
    Zhang Z, Zhang H, Shao J A, Ying J, Yang Y, Santosh M. Mantle upwelling during Permian to Triassic in the northern margin of the North China Craton: Constraints from southern Inner Mongolia[J]. Journal of Asian Earth Sciences.2014,79, Part A(0):112-129.
    Zhao G, Wilde S A, Cawood P A, Sun M. Archean blocks and their boundaries in the North China Craton: lithological, geochemical, structural and P-T path constraints and tectonic evolution[J]. Precambrian Research.2001,107(1-2):45-73.
    Zhao G, Sun M, Wilde S A, Li S. A Paleo-Mesoproterozoic supercontinent: assembly, growth and breakup[J]. Earth-Science Reviews.2004,67(1-2):91-123.
    Zhao G, Sun M, Wilde S A, Sanzhong L. Late Archean to Paleoproterozoic evolution of the North China Craton: key issues revisited[J]. Precambrian Research.2005,136(2):177-202.
    Zhao G, Li S, Sun M, Wilde S A. Assembly, accretion, and break-up of the Palaeo-Mesoproterozoic Columbia supercontinent: record in the North China Craton revisited[J]. International Geology Review.2011,53(11-12):1331-1356.
    Zhao G, Zhai M. Lithotectonic elements of Precambrian basement in the North China Craton: Review and tectonic implications [J]. Gondwana Research.2013,23(4):1207-1240.
    Zhao T, Chen W, Zhou M. Geochemical and Nd-Hf isotopic constraints on the origin of the-1.74-Ga Damiao anorthosite complex, North China Craton[J]. Lithos.2009,113(3):673-690.
    Zheng J P, Griffin W L, O Reilly S Y, Yu C M, Zhang H F, Pearson N, Zhang M. Mechanism and timing of lithospheric modification and replacement beneath the eastern North China Craton: Peridotitic xenoliths from the 100 Ma Fuxin basalts and a regional synthesis [J]. Geochimica et Cosmochimica Acta.2007,71(21):5203-5225.
    Zheng Y, Xiao W, Zhao G. Introduction to tectonics of China[J]. Gondwana Research. 2013, 23(4):1189-1206.
    Zhou X M, Li W X. Origin of Late Mesozoic igneous rocks in Southeastern China:implications for lithosphere subduction and underplating of mafic magmas[J]. Tectonophysics.2000, 326(3-4):269-287.
    Zhu R, Yang J, Wu F. Timing of destruction of the North China Craton[J]. Lithos. 2012, 149: 51-60.
    邴志波,王宗秀.华北地台东缘的音质运动烙印——来自大连地区的构造形变信息[J].地球学报.2005,25(5):555-560.
    蔡剑辉,阎国翰,牟保磊,任康绪,李凤棠,杨斌.天津蓟县孙各庄碱性杂岩体年代学和岩石地球化学特征[J].吉林大学学报(地球科学版).2011,41(6):1901-1913.
    蔡明海,张志刚,屈文俊,彭振安,张诗启,徐明,陈艳,王显彬.内蒙古乌拉特后旗查干花钼矿床地质特征及Re-Os测年[J].地球学报.2011,32(1):64-68.
    蔡书慧,贺怀宇,朱日祥.燕山地区承德盆地下白垩统磁性地层学研究及其对华北克拉通破坏的制约[J].地球物理学报.2012,55(01):66-75.
    曾庆栋,刘建明,张作伦,覃锋,陈伟军,张瑞斌,于昌明,叶杰.华北克拉通北缘鸡冠山斑岩钼矿床成矿年代及印支期成矿事件[J].岩石学报.2009a,25(2):393-398.
    曾庆栋,刘建明,张作伦,陈伟军,覃锋,张瑞斌,于文斌,张晓晖,翟明国.华北克拉通北缘西拉沐沦钼多金属成矿带钼矿化类型、特征及地球动力学背景[J].岩石学报.2009b,25(5):1225-1238.
    曾庆利.蓟县盘山地区构造变形分析[D].中国地质科学院,2003.
    陈安国,马配学,李洪阳,彭岚.河北省赤城县小张家口超基性岩体主要特征和时代[J].岩石学报.1996,12(01):156-162.
    陈斌,田伟,刘安坤.冀北小张家口基性-超基性杂岩的成因:岩石学、地球化学和Nd-Sr同位素证据[J].高校地质学报.2008,14(03):295-303.
    陈斌,牛晓露,王志强,高林,王超.华北克拉通北缘姚家庄过钾质超镁铁岩-正长岩杂岩体的锆石U-Pb年代学、岩石学和地球化学特征[J].中国科学:地球科学.2013a,43(07):1073-1087.
    陈斌,陈长健,贺敬博,刘安坤.华北东部中生代高镁埃达克质岩浆的起源:岩石学和Nd-Sr-Os同位素证据[J].科学通报.2013b,58(20):1941-1953.
    陈衍景,翟明国,蒋少涌.华北大陆边缘造山过程与成矿研究的重要进展和问题[J].岩石学报.2009,25(11):2695-2726.
    陈印,朱光,姜大志,张必龙.四合堂剪切带活动时代及其对燕山运动B幕时间的限定[J].地质学报.2013,87(3):295-310.
    陈正邦,邓一岗,米双庆,李玉光,陈铭强.北京地区的印支运动[J].成都地质学院学报.1985(3):62-71.
    崔盛芹,李锦蓉.试论中国滨太平洋带的印支运动[J].地质学报.1983,57(1):51-61.
    代军治,毛景文,杨富全,叶会寿,赵财胜,谢桂青,张长青.华北地台北缘燕辽钼(铜)成矿带矿床地质特征及动力学背景[J].矿床地质.2006,25(05):598-612.
    代军治,毛景文,赵财胜,李福让,王瑞廷,谢桂青,杨富全.辽西兰家沟钼矿床花岗岩SHRIMP锆石U-Pb年龄及岩石化学特征[J].地质学报.2008,82(11):1555-1564.
    邓洪菱,张长厚,李海龙,邹云.褶皱相关断裂构造及其地质意义[J].自然科学进展.2009(03):285-296.
    邓晋福,冯艳芳,刘翠,肖庆辉,苏尚国,周肃,高延光.太行—燕辽地区燕山期造山过程、岩浆源区与成矿作用[J].中国地质.2009b(3):623-633.
    邓胜徽,万传彪,杨建国.黑龙江阿城晚二叠世安加拉-华夏混生植物群——兼述古亚洲洋的关闭问题[J].中国科学(D辑:地球科学).2009,39(12):1744-1752.
    高洪雷.内蒙古狼山地区中生代构造演化与年代学约束[D].中国地质大学(北京),2010.
    高剑峰,陆建军,赖鸣远,林雨萍,濮巍.岩石样品中微量元素的高分辨率等离子质谱分析[J].南京大学学报:自然科学版.2003,39(6):844-850.
    高林志,张传恒,史晓颖,周洪瑞,王自强.华北青白口系下马岭组凝灰岩锆石SHRIMP U-Pb定年[J].地质通报.2007,26(03):249-255.
    高林志,张传恒,尹崇玉,史晓颖,王自强,刘耀明,刘鹏举,唐烽,宋彪.华北古陆中、新元古代年代地层框架SHRIMP锆石年龄新依据[J].地球学报.2008a,29(03):366-376.
    高林志,张传恒,史晓颖,宋彪,王自强,刘耀明.华北古陆下马岭组归属中元古界的锆石SHRIMP年龄新证据[J].科学通报.2008b,53(21):2617-2623.
    葛梦春,周文孝,于洋,孙俊俊,鲍建泉,王世海.内蒙古锡林郭勒杂岩解体及表壳岩系年代确定[J].地学前缘.2011,18(05):182-195.
    葛肖虹.华北板内造山带的形成史[J].地质论评.1989,35(3):254-261.
    谷丛楠,周志广,张有宽,柳长峰,刘文灿,於炀森.内蒙古白乃庙地区白音都西群的碎屑锆石年龄及其构造意义[J].现代地质.2012,26(1):1-9.
    郭安林,张国伟,程顺有.超越板块构造——大陆地质研究新机遇评述[J].自然科学进展.2004,14(07):729-733.
    韩宝福,加加美宽雄,李惠民.河北平泉光头山碱性花岗岩的时代、Nd-Sr同位素特征及其对华北早中生代壳幔相互作用的意义[J].岩石学报.2004,20(6):1375-1388.
    郝旭,徐备.内蒙古锡林浩特锡林郭勒杂岩的原岩年代和变质年代[J].地质论评.1997,43(01):101-105.
    和政军,李锦轶,牛宝贵,任纪舜.燕山—阴山地区晚侏罗世强烈推覆—隆升事件及沉积响应[J].地质论评.1998(4):407-418.
    和政军,张新元,牛宝贵,刘仁燕,赵磊.北京密云元古宙环斑花岗岩古风化壳及其与长城系常州沟组的关系[J].地学前缘.2011,18(4):123-130.
    河北省地质局第二区域地质测量大队.山海关幅1:20万区域地质图及说明书[Z].1974.
    河北省地质勘测总队.青龙幅K-50-351:20万区域地质图及说明书[Z].1970.
    河北省地质矿产局.1:20万围场幅地质图[Z].1977.
    河北省地质矿产局.1:20万棋盘公社幅地质图[Z].1979.
    河北省地质矿产局.河北省北京市天津市区域地质志[M].北京:地质出版社,1989:1-2.
    河北省地质调查院.隆化县1:25万地质图(K50C003003)[Z].2002.
    洪大卫,王式,谢锡林,张季生.兴蒙造山带正ε(Nd,t)值花岗岩的成因和大陆地壳生长[J].地学前缘.2000(02):441-456.
    侯可军,李延河,邹天人,曲晓明,石玉若,谢桂青LA-MC-ICP-MS锆石Hf同位素的分析方法及地质应用[J].岩石学报.2007(10):2595-2604.
    侯万荣,聂凤军,杜安道,李超,江思宏,白大明,刘妍.内蒙古西沙德盖钼矿床辉钼矿Re-Os同位素年龄及其地质意义[J].矿床地质.2010,29(06):1043-1053.
    侯万荣,聂凤军,胡建民,刘翼飞,肖伟,刘勇,张可.内蒙古乌拉山地区沙德盖岩体年代学、地球化学特征及成因探讨[J].吉林大学学报(地球科学版).2011,41(6):1914-1927.
    胡健民,刘晓文,赵越,徐刚,刘健,张拴宏.燕山板内造山带早期构造变形演化——以辽 西凌源太阳沟地区为例[J].地学前缘.2004,11(3):255-271.
    胡健民,赵越,刘晓文,石玉若,赵国春.辽西凌源地区水泉沟组辉石安山岩锆石SHRIMPU-Pb定年及其意义[J].地质通报.2005,24(2):104-109.
    胡健民,刘晓文,杨之青.辽西地区燕山板内造山带早中生代构造变形的年代学限定[J].岩石学报.2007,23(3):605-616.
    胡玲,宋鸿林,颜丹平,胡道功.尚义-赤城断裂带中糜棱岩40Ar/39Ar年龄记录及地质意义[J].中国科学(D辑:地球科学).2002(11):908-913.
    黄典豪,杜安道.华北地台钼(铜)矿床成矿年代学研究:辉钼矿铼—锇年龄及其地质意义[J].矿床地质.1996,15(4):365-373.
    贾炳文,周安朝,谷东起.辽西地区晚古生代火山事件沉积地球化学特征及物源区分析[J].沉积学报.1999(3):473-477.
    旷红伟,柳永清,刘燕学,彭楠,许欢,董超,陈军,刘海,徐加林,薛沛霖.兴蒙造山区及邻区早白垩世盆地岩石地层格架与沉积古地理演化[J].地质通报.2013,32(07):1063-1084.
    李刚,刘正宏,徐仲元,彭向东,董晓杰,沙茜,王挽琼.内蒙古白乃庙逆冲推覆构造的组成及其构造特征[J].吉林大学学报(地球科学版).2012(S2):309-319.
    李海龙,张长厚,邹云,邓洪菱,马君.冀东马兰峪背斜南翼与西部倾伏端盖层变形特征及其构造意义[J].地质通报.2008,27(10):1698-1708.
    李洪颜.华北克拉通原型盆地及岩浆活动时空演化对克拉通破坏的制约[J].中国科学:地球科学.2013,43(9):1396-1409.
    李怀坤,陆松年,李惠民,孙立新,相振群,耿建珍,周红英.侵入下马岭组的基性岩床的锆石和斜锆石U-Pb精确定年——对华北中元古界地层划分方案的制约[J].地质通报.2009(10):1396-1404.
    李怀坤,朱士兴,相振群,苏文博,陆松年,周红英,耿建珍,李生,杨锋杰.北京延庆高于庄组凝灰岩的锆石U-Pb定年研究及其对华北北部中元古界划分新方案的进一步约束[J].岩石学报.2010,26(7):2131-2140.
    李怀坤,苏文博,周红英,耿建珍,相振群,崔玉荣,刘文灿,陆松年.华北克拉通北部长城系底界年龄小于1670Ma:来自北京密云花岗斑岩岩脉锆石LA-MC-ICPMS U-Pb年龄的约束[J].地学前缘.2011,18(3):108-120.
    李锦轶,高立明,孙桂华,李亚萍,王彦斌.内蒙古东部双井子中三叠世同碰撞壳源花岗岩的确定及其对西伯利亚与中朝古板块碰撞时限的约束[J].岩石学报.2007(3):565-582.
    李锦轶,张进,杨天南,李亚萍,孙桂华,朱志新,王励嘉.北亚造山区南部及其毗邻地区地壳构造分区与构造演化[J].吉林大学学报(地球科学版).2009,39(4):584-605.
    李三忠,刘鑫,索艳慧,刘丽萍,钱存超,刘晓春,张国伟,赵国春.华北克拉通东部地块和大别-苏鲁造山带印支期褶皱-逆冲构造与动力学背景[J].岩石学报.2009(09):2031-2049.
    李维谦,吴玉兰.华北地区印支运动初析[J].石油实验地质.1984,6(3):192-202.
    李伍平.辽西北票早侏罗世兴隆沟组英安岩的地球化学特征[J].岩石学报.2006(6):1608-1616.
    辽宁省地质局第二区域地质测量队.凌源县幅1:20万地质图、矿产图及说明书[Z].1965.
    辽宁省地质调查院.建平县1:25万地质图(K51C003004)[Z].2004.
    林少泽,朱光,严乐佳,宋利宏,刘备.燕山构造带晚古生代挤压变形事件的构造与年代学证据[J].科学通报.2013,58(34):3597-3609.
    刘健,赵越,柳小明.冀北承德盆地髫髻山组火山岩的时代[J].岩石学报.2006,22(11):2617-2630.
    刘健,赵越,柳小明,刘晓文.燕山褶断带下板城盆地杏石口组沉积特征及其构造意义[J].岩石学报.2007,23(3):639-654.
    刘健,赵越,叶浩.冀北承德地区晚侏罗世盆地充填记录及其构造含义[J].中国地质.2013(01):140-151.
    刘建峰,迟效国,赵芝,胡兆初,陈军强.内蒙古巴林右旗建设屯埃达克岩锆石U-Pb年龄及成因讨论[J].岩石学报.2013,29(03):827-839.
    刘胤,倪志耀,翟明国,石玉若,严刚,卢俊生.冀北赤城花岗岩的锆石SHRIMP年龄及其地质意义[J].矿物岩石.2010,30(2):38-44.
    刘勇,聂凤军,方俊钦.辽西河坎子碱性侵入杂岩体及钼多金属矿床同位素年代学研究[J].矿床地质.2012,31(06):1326-1336.
    刘正宏,徐仲元,杨振升.内蒙古大青山印支运动厘定[J].地质论评.2003a,(5):457-463.
    刘正宏,徐仲元.阴山地区印支期地壳构造变形研究[J].吉林大学学报(地球科学版).2003b,(01):1-6.
    刘正宏,徐仲元,杨振升.大青山逆冲推覆构造形成时代的~(40)Ar/-(39)Ar年龄证据[J].科学通报.2003c,(20):2193-2197.
    柳长峰.内蒙古四子王旗地区古生代—早中生代岩浆岩带及其构造意义[D].中国地质大学(北京),2010.
    路凤香,郑建平,邵济安,张瑞生,陈美华,余淳梅.华北东部中生代晚期—新生代软流圈上涌与岩石圈减薄[J].地学前缘.2006,13(02):86-92.
    陆松年,李惠民.蓟县长城系大红峪组火山岩的单颗粒锆石U-Pb法准确定年[J].中国地质科学院院报.1991(22):137-146.
    罗镇宽,李俊建,关康,裘有守,Qiu Y.M.,Mcnaughton N.J.,Groves D.I.辽宁凌源柏杖子金矿区花岗岩SHRIMP锆石U-Pb年龄[J].地质调查与研究.2004,27(2):82-85.
    罗镇宽,苗来成,关康,裘有守,Qiu Y.M.,Mcnaughton N.J.,Groves D.I冀东都山花岗岩基及相关花岗斑岩脉SHRIMP锆石U-Pb法定年及其意义[J].地球化学.2003,32(2):173-180.
    马文璞.当前造山带研究的几个重要问题[J].地学前缘.1999,6(3):103-111.
    马寅生,曾庆利,宋彪,杜建军,杨富全,赵越.燕山中段盘山花岗岩体锆石SHRIMP U-Pb年龄测定及其构造意义[J].岩石学报.2007,23(3):547-556.
    毛景文,周振华,丰成友,王义天,张长青,彭惠娟,于淼.初论中国三叠纪大规模成矿作用及其动力学背景[J].中国地质.2012,39(06):1437-1471.
    牟保磊,邵济安,储著银,阎国翰,乔广生.河北矾山钾质碱性超镁铁岩-正长岩杂岩体Sm-Nd年龄和Sr、Nd同位素特征[J].岩石学报.2001,17(3):358-365.
    牟保磊,阎国翰.燕辽三叠纪碱性偏碱性杂岩体地球化学特征及意义[J].地质学报.1992,5(2):108-121.
    聂凤军,江思宏,刘妍,胡朋.再论内蒙古哈达门沟金矿床的成矿时限问题[J].岩石学报.2005,21(06):1719-1728.
    聂凤军,张可,刘翼飞,江思宏,刘勇,刘妍.华北克拉通北缘及邻区印支期岩浆活动与钼和金成矿作用[J].吉林大学学报(地球科学版).2011,41(6):1651-1666.
    聂凤军,张万益,江思宏,刘妍.论河北丰宁牛圈银(金)矿床的成矿时限问题[J].地学前缘.2007,14(05):167-176.
    牛宝贵,和政军,宋彪,任纪舜.张家口组火山岩SHRIMP定年及其重大意义[J].地质通报.2003,22(2):140-141.
    潘广.中朝陆台的印支运动[J].科学通报.1963(03):61-63.
    彭兆蒙,彭仕宓,吴智平,李伟,孔旭.华北地区三叠纪盆地格局及演化分析[J].西安石油大学学报(自然科学版).2009,24(2):34-38.
    彭兆蒙,吴智平.华北地区三叠纪地层发育特征及原始沉积格局分析[J].高校地质学报.2006,12(3):343-352.
    彭振安,李红红,屈文俊,张诗启,丁海军,陈晓日,张斌,张永正,徐明,蔡明海.内蒙古北山地区小狐狸山钼矿床辉钼矿Re-Os同位素年龄及其地质意义[J].矿床地质.2010,29(03):510-516.
    任康绪,阎国翰,牟保磊,蔡剑辉,李凤棠,谭林坤,邵宏翔,李元崑,储著银.辽西凌源河坎子碱性杂岩体地球化学特征及地质意义[J].岩石矿物学杂志.2004,23(3):193-202.
    任康绪,阎国翰,牟保磊,蔡剑辉,童英,李凤棠,赵凤三,古丽冰,杨斌,储著银.阿拉善断块富碱侵入岩岩石地球化学和Nd, Sr、Pb同位素特征及其意义[J].地学前缘.2005,12(2):292-302.
    任荣,牟保磊,韩宝福,张磊,陈家富,徐钊,宋彪.河北矾山钾质碱性超镁铁岩-正长岩杂岩体的锆石SHRIMP U-Pb年龄[J].岩石学报.2009,25(3):588-594.
    尚恒胜,陶继雄,宝音乌力吉,郝先义.内蒙古白云鄂博地区早古生代弧—盆体系及其构造意义[J].地质调查与研究.2003(3):160-168.
    尚庆华.北方造山带内蒙古中,东部地区二叠纪放射虫的发现及意义[J].科学通报.2004,49(24):2574-2579.
    邵济安,张履桥.议京西大台地区的燕山运动[J].岩石学报.2004(03):647-654.
    邵济安,路凤香,李伍平.辽西中生代陆内底侵作用背景下形成的安山岩[J].岩石学报.2007(4):701-708.
    邵济安,杨进辉.记载了早中生代壳幔演化的赤峰-凌源地质走廊[J].岩石学报.2011a,27(12):3525-3534.
    邵济安,魏春景.内蒙古东部早中生代麻粒岩捕掳体的岩石学及其构造意义[J].中国科学:地球科学.2011b,41(8):1080-1088.
    邵济安,张舟,佘宏全,刘东盛.华北克拉通北缘赤峰地区显生宙麻粒岩的发现及其意义[J].地学前缘.2012,19(3):188-198.
    施光海,刘敦一,张福勤,简平,苗来成,石玉若,陶华.中国内蒙古锡林郭勒杂岩SHRIMP锆石U-Pb年代学及意义[J].科学通报.2003(20):2187-2192.
    施光海,苗来成,张福勤,简平,范蔚茗,刘敦一.内蒙古锡林浩特A型花岗岩的时代及区域构造意义[J].科学通报.2004(4):384-389.
    宋鸿林,葛梦春.从构造特征论北京西山的印支运动[J].地质论评.1984,30(1):77-80.
    宋扬,王瑞江,聂凤军,胡建中,石成龙,张松.冀东金厂峪金矿区印支期成矿作用的发现及地质意义[J].地球学报.2011,32(1):125-128.
    宋时雨,张长厚,李志斌,刘孜,常利忠.北京西山“青白口穹窿”与NW向构造:特征及 意义:第六届构造地质与地球动力学研讨会[Z].长春:吉林大学,2013.
    孙德有,吴福元,张艳斌,高山.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.
    孙金凤,杨进辉.华北中生代岩浆作用与去克拉通化[J].岩石矿物学杂志.2013,32(5):577-592.
    陶继雄,许立权,贺锋,苏茂荣.内蒙古巴特敖包地区早古生代洋壳消减的岩石证据[J].地质调查与研究.2005(1):1-8.
    滕飞.燕山中段早、中侏罗世构造变形及其意义[D].中国地质大学(北京),2012.
    田立富,胡华斌,胡胜军,杨竹森,朱才伐.燕山西段印支运动的探讨[J].河北地质学院学报.1996,19(6):668-672.
    田伟,陈斌,刘超群,张华锋.冀北小张家口超基性岩体的锆石U-Pb年龄和Hf同位素组成[J].岩石学报.2007,23(3):583-590.
    王芳,陈福坤,侯振辉,彭澎,翟明国.华北陆块北缘崇礼-赤城地区晚古生代花岗岩类的锆石年龄和Sr-Nd-Hf同位素组成[J].岩石学报.2009,25(11):3057-3074.
    王惠初,相振群,赵凤清,李惠民,袁桂邦,初航.内蒙古固阳东部碱性侵入岩:年代学、成因与地质意义[J].岩石学报.2012(9):2843-2854.
    王荃.内蒙古中部中朝与西伯利亚古板块间缝合线的确定[J].地质学报.1986(1):31-43.
    王荃,刘雪亚,李锦轶.中国内蒙古中部的古板块构造[J].中国地质科学院院报.1991,22(1):1-15.
    王涛.花岗岩研究与大陆动力学[J].地学前缘.2000(S2).
    王彦斌,韩娟,李建波,欧阳志侠,童英,侯可军.内蒙赤峰楼子店拆离断层带下盘变形花岗质岩石的时代、成因及其地质意义——锆石U-Pb年龄和Hf同位素证据[J].岩石矿物学杂志.2010,29(6):763-778.
    王玉净,樊志勇.内蒙古西拉木伦河北部蛇绿岩带中二叠纪放射虫的发现及其地质意义[J].古生物学报.1997,36(01):58-69.
    王瑜,李锦轶.北京西山南窖地区南东东110°-120°拉伸线理形成时间的年代学制约[J].岩石学报.2007,(03):617-624.
    翁文灏.中国东部中生代以来之地壳运动及火山活动[J].中国地质学会志.1927,6(1):9-37.
    吴福元,林强,江博明.中国北方造山带造山后花岗岩的同位素特点与地壳生长意义[J].科学通报.1997(20):2188-2192.
    吴福元,徐义刚,高山,郑建平.华北岩石圈减薄与克拉通破坏研究的主要学术争论[J].岩石学报.2008,24(6):1145-1174.
    吴福元,杨进辉,张艳斌,柳小明.辽西东南部中生代花岗岩时代[J].岩石学报.2006,22(2):315-325.
    伍家善,耿元生,沈其韩,万渝生,刘敦一,宋彪.中朝古大陆太古宙地质特征及构造演化[M].北京:地质出版社,1998.
    相振群,李怀坤,陆松年,周红英,李惠民,王惠初,陈志宏,牛健.泰山地区古元古代末期基性岩墙形成时代厘定——斜锆石U-Pb精确定年[J].岩石学报.2012(9):2831-2842.
    徐备,陈斌.内蒙古北部华北板块与西伯利亚板块之间中古生代造山带的结构及演化[J].中国科学(D辑:地球科学).1997(3):227-232.
    徐备,陈斌,邵济安.内蒙古锡林郭勒杂岩Sm-Nd,Rb-Sr同位素年代研究[J].科学通报.1996, 41(02):153-155.
    徐刚,赵越,高锐,李秋生,胡健民,刘晓文,吴海,杨富全,张拴宏,管烨,张季生,白金,匡朝阳,王海燕.燕山褶断带中生代盆地变形—板内变形过程的记录——以下板城、承德—上板城、北台盆地为例[J].地球学报.2006(1):1-12.
    徐刚,赵越,胡健民,曾庆利,刘晓文,吴海,宋彪.辽西牛营子地区晚三叠世逆冲构造[J].地质学报.2003(1):25-34.
    徐刚,赵越,吴海,张栓宏.辽西凌源牛营子盆地晚三叠世——中侏罗世地层层序及区域对比[J].地球学报.2005,26(4):299-308.
    徐义刚,李洪颜,庞崇进,何斌.论华北克拉通破坏的时限[J].科学通报.2009(14):1974-1989.
    许欢,柳永清,旷红伟,刘燕学,彭楠,董超,薛沛霖,徐加林,陈军,刘海.阴山—燕山地区大青山组/后城组/土城子组沉积物源与盆地演化[J].地质通报.2013(Z1).
    许欢,柳永清,旷红伟,彭楠.华北北部土城子组时代及中国陆相侏罗-白垩系界线探讨[J].地学前缘.2014,21(2):203-215.
    许立权,邓晋福,陈志勇,陶继雄.内蒙古达茂旗北部奥陶纪埃达克岩类的识别及其意义[J].现代地质.2003(4):428-434.
    薛怀民,郭利军,侯增谦,周喜文,童英,潘晓菲.中亚-蒙古造山带东段的锡林郭勒杂岩:早华力西期造山作用的产物而非古老陆块?——错石SHRIMP U-Pb年代学证据[J].岩石学报.2009(08):2001-2010.
    阎国翰,牟保磊,许保良,何国琦,谭林坤,赵晖,何中甫,张任祜,乔广生.燕辽-阴山三叠纪碱性侵入岩年代学和Sr,Nd,Pb同位素特征及意义[J].中国科学(D辑:地球科学).2000,4(30):383-387.
    阎国翰,谭林坤,许保良,牟保磊,邵宏翔,陈廷礼,童英,任康绪,杨斌.阴山地区印支期碱性侵入岩岩石地球化学特征[J].岩石矿物学杂志.2001,20(3):281-292.
    杨富全,赵越,曾庆利,吴海,夏浩东.天津蓟县盘山Ⅰ型——A型复合花岗岩体——区域构造环境转变的记录?[J].岩石学报.2007(3):529-546.
    杨进辉,吴福元.华北东部三叠纪岩浆作用与克拉通破坏[J].中国科学(D辑:地球科学).2009(7):910-921.
    杨毓红,刘桑,胡瑞忠,冯彩霞,冯光英,杨朝贵,齐有强.承德三岔口基性岩墙地球化学特征及地质意义[J].吉林大学学报(地球科学版).2012,42(6):1796-1805.
    叶栩松,廖群安,葛梦春.内蒙古锡林浩特、林西地区三叠纪过铝质花岗岩的成因及构造意义[J].地质科技情报.2011,30(03):57-64.
    英基丰,张宏福,汤艳杰.华北克拉通破坏过程中下地壳的改造——捕虏体证据[J].岩石矿物学杂志.2013,32(5):567-576.
    于福生,漆家福,王春英.华北东部印支期构造变形研究[J].中国矿业大学学报.2002,31(4):75-79.
    翟明国,卞爱国.华北克拉通新太古代末超大陆拼合及古元古代末-中元古代裂解[J].中国科学(D辑:地球科学).2000,30:129-137.
    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.
    翟明国.华北克拉通的形成以及早期板块构造[J].地质学报.2012(9):1335-1349.
    翟明国,胡波,彭澎,赵太平.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(01):100-119.
    张宏福,杨岳衡.华北克拉通东部含金刚石金伯利岩的侵位年龄和Sr-Nd-Hf同位素地球化学特征[J].岩石学报.2007,23(02):285-294.
    张连昌,吴华英,相鹏,张晓静,陈志广,万博.中生代复杂构造体系的成矿过程与成矿作用——以华北大陆北缘西拉木伦钼铜多金属成矿带为例[J].岩石学报.2010,26(5):1351-1362.
    张旗,王焰,钱青,杨进辉,王元龙,赵太平,郭光军.中国东部燕山期埃达克岩的特征及其构造-成矿意义[J].岩石学报.2001(2).
    张拴宏,赵越,刘建民,胡健民,宋彪,刘健,吴海.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.
    张拴宏,赵越,宋彪,吴海.冀北隆化早前寒武纪高级变质区内的晚古生代片麻状花岗闪长岩——锆石SHRIMP U-Pb年龄及其构造意义[J].岩石学报.2004(3):621-626.
    张拴宏,赵越,叶浩,胡健民,吴飞.燕辽地区长城系串岭沟组及团山子组沉积时代的新制约[J].岩石学报.2013,29(07):2481-2490.
    张彤,陈志勇,许立权,陈郑辉.内蒙古卓资县大苏计钼矿辉钼矿铼-锇同位素定年及其地质意义[J].岩矿测试.2009,28(3):279-282.
    张维,简平.内蒙古达茂旗北部早古生代花岗岩类SHRIMP U-Pb年代学[J].地质学报.2008(6):778-787.
    张维,简平,刘敦一,侯可军.内蒙古中部达茂旗地区三叠纪花岗岩和钾玄岩的地球化学、年代学和Hf同位素特征[J].地质通报.2010,29(06):821-832.
    张永生,田树刚,李子舜,宫月萱,邢恩袁,王卓卓,翟大兴,曹洁,苏奎,王猛.兴蒙地区二叠系乐平统林西组上部发现海相化石[J].科学通报.2013,58(33):3429-3439.
    张雨莲,许荣科,陕亮,贾群子,宋忠宝,陈向阳,张晓飞,陈博,栗亚芝,全守村.内蒙古北山地区小狐狸山钼矿辉钼矿Re-Os年龄口LA-ICP-MS锆石U-Pb年龄[J].地质通报.2012,31(2-3):469-475.
    张允平,苏养正,李景春.内蒙古中部地区晚志留世西别河组的区域构造学意义[J].地质通报.2010(11):1599-1605.
    张长厚,宋鸿林.燕山板内造山带中生代逆冲推覆构造及其与前陆褶冲带的对比研究[J].地球科学.1997(01):33-36.
    张长厚,宋鸿林,王根厚,颜丹平,孙卫华.燕山板内造山带中段近东西向中生代右行走滑构造系统[J].地球科学.2001(05):464-472.
    张长厚,王根厚,王果胜,吴正文,张路锁,孙卫华.辽西地区燕山板内造山带东段中生代逆冲推覆构造[J].地质学报.2002(1):64-76.
    张长厚,吴淦国,徐德斌,王根厚,孙卫华.燕山板内造山带中段中生代构造格局与构造演化[J].地质通报.2004,23(9-10):864-875.
    张长厚,张勇,李海龙,吴淦国,王根厚,徐德斌,肖伟峰,戴凛.燕山西段及北京西山晚中生代逆冲构造格局及其地质意义[J].地学前缘.2006(2):165-183.
    张长厚,李程明,邓洪菱,刘阳,刘磊,魏波,李寒滨,刘孜.燕山-太行山北段中生代收缩变形与华北克拉通破坏[J].中国科学:地球科学.2011,41(5):593-617.
    张长厚,邓洪菱,李程明,刘孜,邓洪旦,滕飞.燕山板内造山带中部“承德逆冲构造”的褶皱相关断裂构造模型[J].地学前缘.2012(05):27-40.
    张宏仁.燕山事件[J].地质学报.1998(2):103-111.
    张宏仁,张永康,蔡向民,渠洪杰,李海龙,王猛.燕山运动的“绪动”——燕山事件[J].地质学报.2013(12):1779-1790.
    张晓晖,王辉,李铁胜.辽北法库构造岩系的40Ar-39Ar年代学研究及地质意义[J].中国科学(D辑:地球科学).2004,34(6):504-513.
    张遵忠,吴昌志,顾连兴,冯慧,郑远川,黄建华,李晶,孙亚莉.燕辽成矿带东段新台门钼矿床的Re-Os同位素年龄及其地质意义[J].矿床地质.2009,28(3):313-320.
    章永梅,顾雪祥,程文斌,董树义,黄志全,李福亮,杨伟龙.内蒙古柳坝沟金矿床40Ar-39Ar年代学及铅同位素[J].吉林大学学报(地球科学版).2011,41(5):1407-1422.
    赵丽君.华北克拉通北缘早中生代岩体侵位与地壳变形——以盘山岩体周缘变形及年代学分析为例[J].地质与勘探.2010,46(1):102-112.
    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].吉林大学,2010.
    赵越.燕山地区中生代造山运动及构造演化[J].地质论评.1990,36(1):1-13.
    赵越,崔盛芹,郭涛,徐刚.北京西山侏罗纪盆地演化及其构造意义[J].地质通报.2002(4-5):211-217.
    赵越,徐刚,张拴宏,杨振宇,张岳桥,胡健民.燕山运动与东亚构造体制的转变[J].地学前缘.2004a(3):319-328.
    赵越,张拴宏,徐刚,杨振宇,胡健民.燕山板内变形带侏罗纪主要构造事件[J].地质通报.2004b,22(9-10):854-863.
    赵越,宋彪,张拴宏,刘健.北京西山侏罗纪南大岭组玄武岩的继承锆石年代学及其含义[J].地学前缘.2006(2):184-190.
    赵越,陈斌,张拴宏,刘建民,胡健民,刘健,裴军令.华北克拉通北缘及邻区前燕山期主要地质事件[J].中国地质.2010,37(4):900-915.
    郑桂森,方景玲.北京西山青白口——下苇甸一带印支期侵入活动特征[J].北京地质.1994(1):21-27.
    郑建平,路凤香.胶辽半岛金伯利岩中地幔捕虏体岩石学特征:古生代岩石圈地幔及其不均一性[J].岩石学报.1999,15(01):65-74.
    郑亚东,Davis G.A.,王琮,Darby B.J.,张长厚.燕山带中生代主要构造事件与板块构造背景问题[J].地质学报.2000(4):289-302.
    郑永飞,吴福元.克拉通岩石圈的生长和再造[J].科学通报.2009,54(14):1945-1949.
    中国地质大学北京地质调查研究院.青龙县幅K50C0040041:25万区域地质图及区域地质调查报告[Z].2002.
    周安朝.华北地块北缘晚古生代盆地演化及盆山耦合关系[M].北京:煤炭工业出版社,2002.
    周新华.中国东部中、新生代岩石圈转型与减薄研究若干问题[J].地学前缘.2006,13(02):50-64.
    朱日祥,陈凌,吴福元,刘俊来.华北克拉通破坏的时间、范围与机制[J].中国科学:地球科学.2011,41(5):583-592.
    朱日祥,徐义刚,朱光,张宏福,夏群科,郑天愉.华北克拉通破坏[J].中国科学:地球科学.2012,42(08):1135-1159.

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