Abstract:Uplift processes of the southern margin of the North China Block are of great significance for understanding interactions between the Qinling Orogenic Belt and the North China Basin. Based on sedimentary facies analysis,this paper studies the detrital zircon U-Pb geochronology and fission track chronology of the Permian Shihezi Formation in Luonan area,and discusses the source characteristics and uplift processes of the southern margin of the North China Block. It is expected to provide a sedimentary constraint for the subduction time of the Mianlue Ocean Basin and provide a possible source area for the Triassic recycled sediments in the southern North China Basin. The results show that the Permian Shihezi Formation in Luonan area experienced an upward change in sedimentary facies from alluvial fan to braided river,and then to delta. The sample from the lower part of the strata contains three groups of U-Pb ages,i.e.,353-280 Ma,1139-400 Ma,and 2620-1306 Ma. The fission track ages are decomposed into three peaks of 199 Ma,255 Ma,and 408 Ma. The sample from the upper part of the strata contains two U-Pb age groups,i.e.,339-259 Ma and 2655-1700 Ma,and the fission track ages were decomposed into three peaks of 205 Ma,268 Ma and 656 Ma. The results show that the southern margin of the North China Block received sediment from the Qinling Orogenic Belt during the early sedimentary period of the Shihezi Formation,but the sediments mainly came from the northern margin of the North China Block in the late depositional stage. The tectonic pattern had been transformed from high in the south to high in the north in this time. The initial uplift of the southern margin of the North China Block occurred during the Middle-Late Permian,which was related to the initial subduction of the Mianlue Ocean Basin,and became a potential provenance area to the Triassic strata in the south of the North China Basin.
YANG Wentao,FU Qiang,FANG Te. Provenance characteristics of the Permian Shihezi Formation in Luonan area: implication for uplift processes of southern margin of North China Block[J]. JOPC, 2024, 26(3): 655-670.
[1] 白斌,周立发,刘彬辉,谢其锋. 2006. 南华北上二叠统石千峰组物源与沉积环境分析. 西北大学学报(自然科学版), 36(3): 461-466. [Bai B,Zhou L F,Liu B H,Xie Q F.2006. Sedimentary environment patterns analysis on Shiqianfeng Formation of Upper Permian in southern part of North China. Journal of Northwest University(Natural Science Edition), 36(3): 461-466] [2] 曹高社,方磅磅,孙凤余,余爽杰,徐海亭. 2019. 华北陆块南部平顶山砂岩的最大沉积年龄和物源区: 来自碎屑锆石LA-ICP-MS U-Pb年龄的证据. 岩石学报, 35(8): 2518-2544. [Cao G S,Fang B B,Sun F Y,Yu S J,Xu H T.2019. Maximum sedimentary age and provenance of Pingdingshan sandstone in the southern part of North China Block: evidence from detrital zircon LA-ICP-MS U-Pb age. Acta Petrologica Sinica, 35(8): 2518-2544] [3] 第五春荣,刘祥,孙勇. 2018. 华北克拉通南缘太华杂岩组成及演化. 岩石学报, 34(4): 999-1018. [Diwu C R,Liu X,Sun Y.2018. The composition and evolution of the Taihua Complex in the southern North China Craton. Acta Petrologica Sinica, 34(4): 999-1018] [4] 冯志强,刘永江,王权,史建儒,魏荣珠,卫彦升,雷勇. 2023. 华北板块中部晚二叠世—早三叠世砂岩碎屑锆石U-Pb定年及物源判别. 地球科学, 48(4): 1288-1306. [Feng Z Q,Liu Y J,Wang Q,Shi J R,Wei R Z,Wei Y S,Lei Y.2023. Detrial zircon U-Pb dating and provenance analysis for Late Permian-Early Triassic sandstone in central North China Craton. Earth Science, 48(4): 1288-1306] [5] 高春云,郭安林,李兴辉,李侃,刘伟刚. 2015. 北秦岭柳叶河盆地石炭系—二叠系含砾砂岩碎屑锆石 LA-ICP-MS U-Pb 年龄及其地质意义. 地质通报, 34(9): 1689-1698. [Gao C Y,Guo A L,Li X H,Li K,Liu W G.2015. LA-ICP-MS U-Pb dating of detrital zircon from Liuyehe Basin in North Qinling mountains. Geological Bulletin of China, 34(9): 1689-1698] [6] 韩旭,任升莲,李龙明,李加好,葛粲,宋传中,林寿发,王静雅,李振强. 2018. 东秦岭卢氏地区奥陶系陶湾群的变质变形特征及形成环境分析. 地质论评, 64(2): 378-391. [Han X,Ren S L,Li L M,Li J H,Ge C,Song C Z,Lin S F,Wang J Y,Li Z Q.2018. An analysis on metamorphic and deformation characteristics and formation environment of the Ordovician Taowan Group in Lushi area,eastern Qinling mountains. Geological Review, 64(2): 378-391] [7] 侯中帅,陈世悦,郭宇鑫,王志金,赫庆庆,崔绮梦. 2018. 华北中南部博山地区上古生界沉积相与沉积演化特征. 沉积学报, 36(4): 731-742. [Hou Z S,Chen S Y,Guo Y X,Wang Z J,He Q Q,Cui Q M.2018. Sedimentary facies and their evolution characteristics of Upper Paleozoic in Zibo Boshan area,central and southern region of North China. Acta Sedimentologica Sinica, 36(4): 731-742] [8] 胡斌,尚永国,牛永斌,宋慧波,刘顺喜,张璐. 2012. 河南省晚古生代煤系层序地层格架与沉积演化. 煤田地质与勘探, 40(2): 1-5. [Hu B,Shang Y G,Niu Y B,Song H B,Liu S X,Zhang L.2012. Sequence stratigraphic framework of Late Paleozoic coal measures and their sedimentary evolution in Henan Province. Coal Geology & Exploration, 40(2): 1-5] [9] 焦若鸿,许长海,张向涛,阙晓铭. 2011. 锆石裂变径迹(ZFT)年代学: 进展与应用. 地球科学进展, 26(2): 171-182. [Jiao R H,Xu C H,Zhang X T,Que X M.2011. Zircon fission-thermochronology(ZFT): advances and applications. Advances in Earth Science, 26(2): 171-182] [10] 李洪颜. 2013. 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. 中国科学: 地球科学, 43(9): 1396-1409. [Li H Y.2013. The prototype basin of the North China Craton and the constraints of magmatic temporal and spatial evolution on craton failure. Scientia Sinica Terrae, 43(9): 1396-1409] [11] 李洪颜,徐义刚,黄小龙,何斌,罗震宇,燕滨. 2009. 华北克拉通北缘晚古生代活化: 山西宁武—静乐盆地上石炭统太原组碎屑锆石U-Pb测年及Hf同位素证据. 科学通报, 54(5): 632-640. [Li H Y,Xu Y G,Huang X L,He B,Luo Z Y,Yan B.2009. Activation of northern margin of the North China Craton in Late Paleozoic: evidence from U-Pb dating and Hf isotopes of detrital zircons from the Upper Carboniferous Taiyuan Formation in the Ningwu-Jingle Basin. Chinese Science Bulletin, 54(5): 632-640] [12] 李曙光,侯振辉,杨永成,孙卫东,张国伟,李秋立. 2003. 南秦岭勉略构造带三岔子古岩浆弧的地球化学特征及形成时代. 中国科学(D辑: 地球科学), 33(12): 1163-1173. [Li S G,Hou Z H,Yang Y C,Sun W D,Zhang G W,Li Q L.2003. Sanchazi ancient magmatic arc of Mianlüe tectonic belt,South Qinling: geochemical characteristics and age of formation. Science in China(Serise D), 33(12): 1163-1173] [13] 李文厚,张倩,李克永,陈强,郭艳琴,马瑶,冯娟萍,张道锋. 2021. 鄂尔多斯盆地及周缘地区晚古生代沉积演化. 古地理学报, 23(1): 39-52. [Li W H,Zhang Q,Li K Y,Chen Q,Guo Y Q,Ma Y,Feng J P,Zhang D F.2021. Sedimentary evolution of the Late Paleozoic in Ordos Basin and its adjacent areas. Journal of Palaeogeography(Chinese Edition), 23(1): 39-52] [14] 刘和. 1990. 河南古生代末箕山运动刍议. 中国煤田地质, 2(4): 29-32. [Liu H.1990. On Jishan movement at the end of Paleozoic in Henan Province. Coal Geology of China, 2(4): 29-32] [15] 刘少峰,张国伟. 2008. 东秦岭—大别山及邻区盆—山系统演化与动力学. 地质通报, 27(12): 1943-1960. [Liu S F,Zhang G W.2008. Evolution and geodynamics of basin/mountain systems in East Qinling-Dabieshan and its adjacent regions,China. Geological Bulletin of China, 27(12): 1943-1960] [16] 罗婷婷,周立发. 2014. 鄂尔多斯盆地二叠纪石盒子组沉积期南部沉积边界探讨. 高校地质学报, 20(1): 139-150. [Luo T T,Zhou L F.2014. Discussion on the southern boundary of the Permian Shihezi Formation in the Ordos Basin. Geological Journal of China Universities, 20(1): 139-150] [17] 马收先,李增学,吕大炜. 2010. 南华北石炭—二叠系陆表海层序古地理演化. 沉积学报, 28(3): 497-508. [Ma S X,Li Z X,Lü D W.2010. Sequence paleogeographical evolution of epicontinental deposit of Permo-Carboniferous in southern North China. Acta Sedimentologica Sinica, 28(3): 497-508] [18] 马志和,李海平,计文化. 1996. 华北地块南缘向北的薄皮推覆构造及北秦岭加里东造山作用. 陕西地质, 14(1): 14-19. [Ma Z H,Li H P,Ji W H.1996. Northward thin-skinned nappe structure in the southern margin of North China landmass and Caledonian orogeny in northern Qinling. Geology of Shaanxi, 14(1): 14-19] [19] 毛景文,谢桂青,张作衡,李晓峰,王义天,张长青,李永峰. 2005. 中国北方中生代大规模成矿作用的期次及其地球动力学背景. 岩石学报, 21(1): 169-188. [Mao J W,Xie G Q,Zhang Z H,Li X F,Wang Y T,Zhang C Q,Li Y F.2005. Mesozoic large-scale metallogenic pulses in North China and corresponding geodynamic settings. Acta Petrologica Sinica, 21(1): 169-188] [20] 彭深远,杨文涛,王艳鹏,仲聪聪. 2019. 济源地区中—下三叠统碎屑锆石年代学特征及其物源分析. 地质科技情报, 38(5): 126-137. [Peng S Y,Yang W T,Wang Y P,Zhong C C.2019. Detrital zircon chronology of the Lower-Middle Triassic strata in Jiyuan area and its implication for provenance analysis. Geological Science and Technology Information, 38(5): 126-137] [21] 彭深远,杨文涛,张鸿禹,方特. 2022. 华北盆地三叠纪物源特征及其沉积-构造演化: 来自碎屑锆石年龄的指示. 沉积学报, 40(5): 1228-1249. [Peng S Y,Yang W T,Zhang H Y,Fang T.2022. Provenance characteristics and sedimentary-tectonic evolution of the North China basin in the Triassic: indications from detrital zircon ages. Acta Sedimentologica Sinica, 40(5): 1228-1249] [22] 祁凯,任战利,张梦婷,马骞,杨燕,刘润川. 2020. 渭河地区及周缘晚古生代—中生代碎屑锆石年代学、地球化学及构造-沉积意义. 岩石学报, 36(6): 1897-1912. [Qi K,Ren Z L,Zhang M T,Ma Q,Yang Y,Liu R C.2020. Characteristics of geochronology,geochemistry of Late Paleozoic and Mesozoic in Weihe region and its tectonic-sedimentary significance. Acta Petrologica Sinica, 36(6): 1897-1912] [23] 陕西省地质矿产局. 1989. 陕西省区域地质志. 北京: 地质出版社,176-194. [Bureau of Geology and Mineral Exploration and Development of Shaanxi Province. 1989. Regional Geology of Shanxi Province. Beijing: Geological Publishing House,176-194] [24] 邵龙义,董大啸,李明培,王海生,王东东,鲁静,郑明泉,程爱国. 2014. 华北石炭—二叠纪层序—古地理及聚煤规律. 煤炭学报, 39(8): 1725-1734. [Shao L Y,Dong D X,Li M P,Wang H S,Wang D D,Lu J,Zheng M Q,Cheng A G.2014. Sequence-paleogeography and coal accumulation of the Carboniferous-Permian in the North China Basin. Journal of China Coal Society, 39(8): 1725-1734] [25] 申博恒,沈树忠,吴琼,张水昌,张斌,王向东,侯章帅,袁东勋,张以春,刘锋,刘俊,张华,史宇坤,王军,冯卓. 2022. 华北板块石炭纪—二叠纪地层时间框架. 中国科学: 地球科学, 52(7): 1181-1212. [Shen B H,Shen S Z,Wu Q,Zhang S C,Zhang B,Wang X D,Hou Z S,Yuan D X,Zhang Y C,Liu F,Liu J,Zhang H,Shi Y K,Wang J,Feng Z.2022. Carboniferous and Permian integrative stratigraphy and timescale of North China Block. Scientia Sinica Terrae, 52(7): 1181-1212] [26] 孙小攀,徐学义,陈隽璐,高婷,李婷,李现冰,李晓英. 2013. 西秦岭江里沟花岗岩体地球化学特征、年代学及地质意义. 地质学报, 87(3): 330-342. [Sun X P,Xu X Y,Chen J L,Gao T,Li X B,Li X Y.2013. Geochemical characteristics and chronology of the Jiangligou granitic pluton in West Qinling and their geological significance. Acta Geologica Sinica, 87(3): 330-342] [27] 王仁农. 1997. 豫西石千峰组研究新进展. 地质论评, 43(2): 201-209. [Wang R N.1997. New advance of the study of the Shiqianfeng Formation in western Henan. Geological Review, 43(2): 201-209] [28] 王艳鹏,杨文涛,祁帅帅. 2020. 华北克拉通南缘古—中生代构造转换期的泥岩地球化学特征响应. 河南理工大学学报(自然科学版), 39(4): 27-37. [Wang Y P,Yang W T,Qi S S.2020. Geochemical characteristics response of mudstone in the southern margin of the North China Craton during the Paleozoic-Mesozoic structural transition. Journal of Henan Polytechnic University(Natural Science), 39(4): 27-37] [29] 王宗起,高联达,王涛,姜春发. 2007. 北秦岭陶湾群新发现的微体化石及其对地层时代的限定. 中国科学(D辑: 地球科学), 37(11): 1467-1473. [Wang Z Q,Gao L D,Wang T,Jiang C F.2007. Newly discovered microfossils and their stratigraphic counterparts in the Taowan Group,North Qinling limitation of the times. Science in China(Serise D), 37(11): 1467-1473] [30] 杨莉,袁万明,洪树炯,冯子睿. 2022. 裂变径迹技术及其地质应用. 中国地质调查, 9(3): 104-112. [Yang L,Yuan W M,Hong S J,Feng Z R.2022. Fission track technology and its geological applications. Geological Survey of China, 9(3): 104-112] [31] 杨荣生,陈衍景,张复新,李志宏,毛世东,刘红杰,赵成海. 2006. 甘肃阳山金矿独居石Th-U-Pb化学年龄及其地质和成矿意义. 岩石学报, 22(10): 2603-2610. [Yang R S,Chen Y J,Zhang F X,Li Z H,Mao S D,Liu H J,Zhao C H.2006. Chemical Th-U-Pb age of monazite from the Yangshan gold deposit,Gansu Province and their geologic and metallogenic implications. Acta Petrologica Sinica, 22(10): 2603-2610] [32] 张国伟. 2001. 秦岭造山带与大陆动力学. 北京: 科学出版社,162-271. [Zhang G W.2001. Qinling Orogenic Belt and Continental Dynamics. Beijing: Science Press,162-271] [33] 张国伟,董云鹏,赖绍聪,郭安林,孟庆任,刘少峰,程顺有,姚安平,张宗清,裴先治,李三忠. 2003. 秦岭—大别造山带南缘勉略构造带与勉略缝合带. 中国科学(D辑: 地球科学), 33(12): 1121-1135. [Zhang G W,Dong Y P,Lai S C,Guo A L,Meng Q R,Liu S F,Cheng S Y,Yao A P,Zhang Z Q,Pei X Z,Li S Z.2003. Mianlue structural belt and Mianlüe suture belt in the southern margin of Qinling-Dabie orogenic belt. Science in China(Serise D), 33(12): 1121-1135] [34] 张国伟,程顺有,郭安林,董云鹏,赖绍聪,姚安平. 2004. 秦岭—大别中央造山系南缘勉略古缝合带的再认识: 兼论中国大陆主体的拼合. 地质通报,23(Z2): 846-853. [Zhang G W,Cheng S Y,Guo A L,Dong Y P,Lai S C,Yao A P.2004. Mianlue paleo-suture on the southern margin of the Central Orogenic System in Qinling-Dabie with a discussion of the assembly of the main part of the continent of China. Geological Bulletin of China,23(Z2): 846-853] [35] 张宏飞,张本仁,赵志丹,骆庭川. 1996. 东秦岭商丹构造带陆壳俯冲碰撞: 花岗质岩浆源区同位素示踪证据. 中国科学(D辑: 地球科学), 26(3): 231-236. [Zhang H F,Zhang B R,Zhao Z D,Luo T C.1996. Isotopic tracer evidence from the granitic magmatic source area of the Shangdan tectonic belt,eastern Qinling. Science in China(Serise D), 26(3): 231-236] [36] 张思敏,姜高磊,柳坤峰,王成刚. 2014. 秦岭—大别新元古代—中生代沉积盆地演化. 地球科学, 39(8): 1185-1199. [Zhang S M,Jiang G L,Liu K F,Wang C G.2014. Evolution of Neoproterozoic-Mesozoic sedimentary basins in Qinling-Dabie orogenic belt. Earth Science, 39(8): 1185-1199] [37] 张翔,田景春,曹桐生. 2011. 南华北盆地中二叠统“石盒子组”岩相古地理及储、盖特征研究. 地层学杂志, 35(4): 431-439. [Zhang X,Tian J C,Cao T S.2011. Research on lithofacies palaeogeography and reservoir cap rock characteristics of Middle Permian Shihezi Formation in southern North China Basin. Journal of Stratigraphy, 35(4): 431-439] [38] 张照伟,李文渊,赵东宏,高永宝,彭素霞. 2010. 东秦岭莲花沟岩体锆石U-Pb年代学研究及其地质意义. 地球化学, 39(1): 90-99. [Zhang Z W,Li W Y,Zhao D H,Gao Y B,Peng S X.2010. Zircon U-Pb dating of Lianhuagou Pluton in East Qinling and its geological implications. Geochimica, 39(1): 90-99] [39] 郑超,李宝芳,温显端. 2003. 秦岭北麓晚二叠世平顶山段辫状河—辫状三角洲沉积体系及其构造涵义. 现代地质, 17(4): 415-420. [Zheng C,Li B F,Wen X D.2003. Depositional characteristics of the Late Permian braided channel-braided delta deposits in northern foothills of the Qinling Mountains,China. Geoscience, 17(4): 415-420] [40] 郑和荣,胡宗全. 2010.中国前中生代构造—岩相古地理图集. 北京: 地质出版社,1-193. [Zheng H R,Hu Z Q.2010. Atlas of Pre-Mesozoic Tectonics-Lithofacies Palaeogeography of China. Beijing: Geological Publishing House,1-193] [41] Bellemans F,Corte F,Haute P.1995. Composition of srm and cn u-doped glasses: significance for their use as thermal neutron fluence monitors in fission track dating. Radiation Measurements, 24(2): 153-160. [42] Brandon M T.1996. Probability density plot for fission-track grain-age samples. Radiation Measurements, 26(5): 663-676. [43] Chang H,Wu Y B,Zhou G Y,Zhang W X,He Y,Zhao Y J,Hu P,Hu Z C.2021. Zircon U-Pb geochronology and geochemistry of the Lajimiao mafic complex in the Shangdan suture zone,Qinling orogen: petrogenesis and tectonic implications. Lithos, 390-391: 106113. [44] Cheng C,Li S Y,Xie X Y,Manger W,Busbey A.2019. U-Pb detrital zircon geochronology and Hf isotopic composition of Permian clastic rocks,Zhen’an Basin,South Qinling Belt: implications for the Paleozoic tectonic evolution of the Qinling orogenic belt. International Geology Review, 61(12): 1462-1478. [45] Diwu C R,Sun Y G,Lin C L,Wang H L.2010. LA-(MC)-ICPMS U-Pb zircon geochronology and Lu-Hf isotope compositions of the Taihua complex on the southern margin of the North China Craton. Chinese Science Bulletin, 55(23): 2557-2571. [46] Diwu C R,Sun Y G,Wang Q.2012. The crustal growth and evolution of North China Craton: revealed by Hf isotopes in detrital zircons from modern rivers. Acta Petrologica Sinica, 28(11): 3520-3530. [47] Dong Y P,Zhang G W,Neubauer F,Liu X M,Genser J,Hauzenberger C.2011. Tectonic evolution of the Qinling orogeny,China: review and synthesis. Journal of Asian Earth Sciences, 41(3): 213-237. [48] Dong Y P,Santosh M.2016. Tectonic architecture and multiple orogeny of the Qinling orogenic belt,central China. Gondwana Research, 29(1): 1-40. [49] Dong Y P,Yang Z,Liu X M,Sun S S,Li W,Cheng B,Zhang F F,Zhang X N,He D F,Zhang G W.2016. Mesozoic intracontinental orogeny in the Qinling Mountains,central China. Gondwana Research, 30: 144-158. [50] Galbraith R F.1981. On statistical models for fission track counts. Journal of the International Association for Mathematical Geology, 13(6): 471-478. [51] Hurford A J.1990. Standardization of fission track dating calibration: recommendation by the fission track working group of the I.U.G.S.subcommission on geochronology. Chemical Geology: Isotope Geoscience Section, 80(2): 171-178. [52] Hurford A J,Green P F.1983. The zeta age calibration of fission-track dating. Chemical Geology, 41: 285-317. [53] Lai S C,Qin J F.2010. Zircon U-Pb dating and Hf isotopic composition of the Diabase Dike Swarm from Sanchazi area,Mianlue suture: chronology evidence for the paleo-Tethys oceanic crust subduction. Journal of Earth Sciences and Environment, 32(1): 27-33. [54] Li H Y,He B,Xu Y G,Huang X L.2010. U-Pb and Hf isotope analyses of detrital zircons from Late Paleozoic sediments: insights into interactions of the North China Craton with surrounding plates. Journal of Asian Earth Sciences, 39(5): 335-346. [55] Li S Z,Zhao S J,Liu X,Cao H H,Yu S,Li X Y,Somerville L,Yu S Y,Suo Y H.2018. Closure of the proto-Tethys Ocean and Early Paleozoic amalgamation of microcontinental blocks in East Asia. Earth-Science Reviews, 186: 37-75. [56] Li Y,Li S Z,Liang W T,Lu R K,Zhang Y J,Li X Y,Wang P C,Liu Y J,Somerville I,Zhang G W.2019. Incremental emplacement and syn-tectonic deformation of Late Triassic granites in the Qinling Orogen: structural and geochronological constraints. Gondwana Research, 72: 194-212. [57] Liu S F,Su S,Zhang G W.2013. Early Mesozoic basin development in North China: indications of cratonic deformation. Journal of Asian Earth Sciences, 62: 221-236. [58] Liu Y S,Hu Z C,Gao S,Günther D,Xu J,Gao C G,Chen H H.2008. In situ analysis of major and trace elements of anhydrous minerals by LA-ICP-MS without applying an internal standard. Chemical Geology, 257(1-2): 34-43. [59] Liu Y S,Gao S,Hu Z C,Gao C G,Zong K Q,Wang D B.2010. Continental and oceanic crust recycling-induced melt-peridotite interactions in the trans-north China orogeny: U-Pb dating,Hf isotopes and trace elements in zircons from mantle xenoliths. Journal of Petrology, 51(1-2): 537-571. [60] Ludwig K R.2003. Isoplot 3.00: A Geochronological Toolkit for Microsoft Excel. Berkeley Geochronology Center,Special Publication, 4: 71. [61] Ma S X,Meng Q R,Duan L,Wu G L.2014. Reconstructing Late Paleozoic exhumation history of the Inner Mongolia Highland along the northern edge of the North China Craton. Journal of Asian Earth Sciences, 87: 89-101. [62] Qin J F,Lai S C,Juan W,Li Y F.2008. Zircon LA-ICP MS U-Pb age,Sr-Nd-Pb isotopic compositions and geochemistry of the Triassic post-collisional Wulong adakitic granodiorite in the South Qinling,central China,and its petrogenesis. Acta Geologica Sinica: English Edition, 82(2): 425-437. [63] Shi Y,Huang Q W,Liu X J,Krapež B,Yu J H,Bai Z A.2018. Provenance and tectonic setting of the supra-crustal succession of the Qinling Complex: implications for the tectonic affinity of the North Qinling Belt,central China. Journal of Asian Earth Sciences, 158: 112-139. [64] Wang Q F,Deng J,Liu X F,Zhao R,Cai S H.2016. Provenance of Late Carboniferous bauxite deposits in the North China Craton: new constraints on marginal arc construction and accretion processes. Gondwana Research, 38: 86-98. [65] Wang X X,Wang T,Zhang C L.2013. Neoproterozoic,Paleozoic,and Mesozoic granitoid magmatism in the Qinling orogeny,China: constraints on orogenic process. Journal of Asian Earth Sciences, 27: 129-151. [66] Wang Y P,Yang W T,Zheng D S,Zuo P F,Qi S S.2019. Detrital zircon U-Pb ages from the Middle to Late Permian strata of the Yiyang area,southern North China Craton: implications for the Mianlue oceanic crust subduction. Geological Journal, 54: 3527-3541. [67] Wang Y P,Yang W T,Peng S Y,Qi S S,Zheng D S.2020. Early Triassic conversion from source to sink on the southern margin of the North China craton: constraints by detrital zircon U-Pb ages. Minerals, 10(1): 1-19. [68] Wu Q,Ramezani J,Zhang H,Wang J,Zeng F G,Zhang Y C,Liu F,Chen J,Cai Y F,Hou Z S. Liu C,Yang W,Henderson C M,Shen S Z.2021. High-precision U-Pb age constraints on the Permian floral turnovers,paleoclimate change,and tectonics of the North China Block. Geology, 49(6): 677-681. [69] Wu Y B,Zheng Y F.2013. Tectonic evolution of a composite collision orogeny: an overview on the Qinling-Tongbai-Hong’an-Dabie-Sulu orogenic belt in central China. Gondwana Research, 23(4): 1402-1428. [70] Xie X,Heller P L.2013. U-Pb detrital zircon geochronology and its implications: the early Late Triassic Yanchang Formation,south Ordos Basin,China. Journal of Asian Earth Sciences, 64: 86-98. [71] Xu Y H,He D F.2022. Triassic provenance shifts and tectonic evolution of southeast Ordos Basin,central China. Palaeogeography,Palaeoclimatology,Palaeoecology, 598: 111002. [72] Yang J H,Wu F Y,Shao J A,Wilde S A,Xie L W,Liu X M.2006. Constraints on the timing of uplift of the Yanshan fold and thrust belt,North China. Earth and Planetary Science Letters, 246(3-4): 336-352. [73] Yang Q Y,Santosh M.2015. Charnockite magmatism during a transitional phase: implications for late Paleoproterozoic ridge subduction in the North China Craton. Precambrian Research, 261: 188-216. [74] Yang W T,Peng S Y,Wang M,Zhang H Y.2021. Provenance of upper Permian-Triassic sediments in the south of North China: implications for the Qinling orogeny and basin evolution. Sedimentary Geology, 424: 106002. [75] Yu H C,Qiu K F,Pirajno F,Zhang P C,Dong W Q.2022. Revisiting Phanerozoic evolution of the Qinling Orogen(East Tethys)with perspectives of detrital zircon. Gondwana Research, 103: 426-444. [76] Yuan W M,Dong J Q,Wang S C,Carter A.2006. Apatite fission track evidence for Neogene uplift in the eastern Kunlun Mountains,northern Qinghai-Tibet Plateau,China. Journal of Asian Earth Sciences, 27(6): 847-856. [77] Zhai M G.2012. Evolution of the North China Craton and early plate tectonics. Acta Geologica Sinica, 86(9): 1335-1349. [78] Zhang S H,Zhao Y,Liu J M,Hu Z C.2016a. Different sources involved in generation of continental arc volcanism: the Carboniferous-Permian volcanic rocks in the northern margin of the North China block. Lithos, 240: 382-401. [79] Zhang R Y,Sun Y,Zhang X,Ao W H,Santosh M.2016b. Neoproterozoic magmatic events in the South Qinling Belt,China: implications for amalgamation and breakup of the Rodinia supercontinent. Gondwana Research, 30: 6-23. [80] Zhao G C,Wilde S A,Guo J H,Cawood P A,Sun M,Li X P.2010. Single zircon grains record two Paleoproterozoic collisional events in the North China Craton. Precambrian Research, 177(3): 266-276. [81] Zhao G C,Zhai M G.2013. Lithotectonic elements of Precambrian basement in the North China Craton: review and tectonic implications. Gondwana Research, 23(4): 1207-1240. [82] Zhu X Q,Zhu W B,Ge R F,Wang X.2014. Late Paleozoic provenance shift in the south-central North China Craton: implications for tectonic evolution and crustal growth. Gondwana Research, 25(1): 383-400.