Detrital Zircon Trace Elements, U-Pb Geochronology and Its Geological Significance of the “Huoshan Sandstone” in Xiweikou Area of the Eastern Margin of Ordos Basin
Abstract
1. Introduction
2. Regional Geology
3. Petrographic Features
4. Analytical Methods and Sample Characteristics
4.1. Analytical Methods
4.2. Sample Characteristics
5. Analysis of Results
5.1. Zircon Th/U Characteristics
5.2. Zircon U-Pb Dating Results
5.3. Rare Earth Elements in Zircon
5.4. Lu-Hf in Zircon
6. Discussion
6.1. The Maximum Depositional Age of the “Huoshan Sandstone”
6.2. Provenance Analysis
6.3. Geological Significance
6.3.1. Stratigraphic Classification and Correlation
6.3.2. Tectonic Depositional Patterns
6.3.3. Tectonic Evolution
7. Conclusions
Supplementary Materials
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Dai, Y.R.; Chen, J.S.; Zhang, J.W.; Li, H.B.; Liu, W.P.; Wang, K. Comparative application of detrital zircon U-Pb dating for stratigraphic delineation: The “Taojiahe Formation” of the Neoproterozoic Fanjingshan Group as an example. Acta Sedimentol. Sin. 2024, 42, 2006–2019. [Google Scholar]
- Gao, L.Z.; Zhang, H.; Zhang, C.H.; Yin, C.Y. SHRIMP zircon ages: Basis for refining the chronostratigraphic classification of the Meso- and Neoproterozoic strata in North China old land. Acta Geosci. Sin. 2008, 29, 366–376. [Google Scholar]
- Diwu, C.R.; Sun, Y.; Liu, Y.J.; Han, W.; Dai, M.N.; Li, Y.X. The protolith nature of quartz sandstone from Changlongshan Formation in Liujiang area, Qinhuangdao City: Evidence of U-Pb and Hf-isotope from detrital zircon. Acta Petrol. Miner. 2011, 30, 1–12. [Google Scholar]
- Zhang, H.; Gao, L.Z.; Zhou, H.R.; Song, B. Chronology progress of the Guandaokou and Luoyu Groups in the southern margin of North China Craton: Constraints on zircon U-Pb dating of tuff by means of the SHRIMP. Atca Petrol. Sin. 2019, 35, 2470–2486. [Google Scholar]
- Zhang, H.; Zhou, H.R.; Ding, X.Z.; Zhang, C.H.; Gao, L.Z.; Song, B. SHRIMP zircon U-Pb dating of tuff in the Guandaokou Group: Implications for the Meso-Neoproterozoic chronostratigrphic framework of the North China Craton. Acta Petrol. Miner. 2025, 44, 745–766. [Google Scholar]
- Wang, M.; Zhou, H.R.; Zhang, H. Mesoproterozoic stratigraphic attribution and tectnonic evolution in the southern margin of the North China Craton: Evidence from the detrital zircon U-Pb geochronology and zircon trace elements. Acta Geol. Sin. 2020, 94, 1027–1045. [Google Scholar]
- Kuang, H.W.; Liu, Y.Q.; Geng, Y.S.; Peng, N.; Wang, Y.C.; Chen, X.S.; Liu, Y.X.; Yang, F.J.; Zhao, F.H.; Liu, P.J.; et al. Research advances, a subdivision and correlation of the Meso-Neoproterozoic stratigraphy in China. Acta Geol. Sin. 2023, 97, 3861–3901. [Google Scholar]
- Li, H.K.; Zhang, J.; Tian, H.; Zhou, H.Y.; Xiang, Z.Q.; Liu, H. Recent advances in the study of the Meso-to Neoproterozoic chronostratigraphy of the Yanliao Aulacogen on the northern margin of hre North China Craton. Geol. Surv. Res. 2020, 43, 127–136. [Google Scholar]
- Shaanxi Bureau of Geology and Mineral Resources. Regional Geology of Shaanxi Province; Geological Publishing House: Beijing, China, 1989; pp. 1–698. [Google Scholar]
- Shanxi Bureau of Geology and Mineral Resources. Regional Geology of Shanxi Province; Geological Publishing House: Beijing, China, 1989; pp. 1–780. [Google Scholar]
- Feng, J.P.; Ouyang, Z.J. Tectono-Sedimentary Characteristics and Petroleum Geology of the Meso-Neoproterozoic in the Ordos Region; Geological Publishing House: Beijing, China, 2023; pp. 1–189. [Google Scholar]
- Zhang, J.Q. Comparison and age of Huoshan sandstone in Shanxi Province. Geol. Rev. 1959, 19, 488–491. [Google Scholar]
- Gao, Z.X.; Hsiung, Y.H.; Kao, P. Preliminary notes on the Sinian Stratigraphy of North China. Bull. Geol. Soc. China 1934, 13, 243–288. [Google Scholar] [CrossRef]
- Liang, Y.Z. On the caprock of Shanxi platform from the discussion of Huoshan Sandstone. Geol. Rev. 1960, 6, 262–267. [Google Scholar]
- Mei, M.X. The age attribution of Huoshan sandstone on the north China platform is discussed from the point of petrogenesis. J. Stratigr. 1993, 17, 224–227. [Google Scholar]
- Cawood, P.A.; Hawkesworth, C.J.; Dhuime, B. Detrital zircon record and tectonic setting. Geology 2012, 40, 875–878. [Google Scholar] [CrossRef]
- Jian, D.C.; Williams, S.; Yu, S.; Zhao, G.C. Quantifying the link between the detrital zircon record and tectonic settings. J. Geophys. Res. Solid Earth 2022, 127, e2022JB024606. [Google Scholar] [CrossRef]
- Barham, M.; Kirkland, C.L.; Handoko, A.D. Understanding ancient tectonic settings through detrital zircon analysis. Earth Planet. Sci. Lett. 2022, 583, 117425. [Google Scholar] [CrossRef]
- Xu, Y.J.; Du, Y.S.; Yang, H.M. Prospects of Sediment Provenance Analysis. Geol. Sci. Technol. Inf. 2007, 26, 26–32. [Google Scholar]
- Bhatia, M.R. Plate tectonics and geochemical composition of sandstones. J. Geol. 1983, 91, 611–627. [Google Scholar] [CrossRef]
- Wang, C.S.; Li, X.H. Sedimentary Basin: From Principles to Analyses; Higher Education Press: Beijing, China, 2003. [Google Scholar]
- Weltje, G.J.; Eynatten, H.V. Quantitative provenance analysis of sediments: Review and outlook. Sediment. Geol. 2004, 171, 1–11. [Google Scholar] [CrossRef]
- Andersen, T. Detrital zircons as tracers of sedimentary provenance: Limiting conditions from statistics and numerical simulation. Chem. Geol. 2005, 216, 249–270. [Google Scholar] [CrossRef]
- Gehrels, G.E.; Dickinson, W.R.; Ross, G.M.; Stewart, J.H.; Howell, D.G. Detrital zircon reference for Cambrian to Triassic miogeoclinal strata of western North America. Geology 1995, 23, 831–834. [Google Scholar] [CrossRef]
- Carter, A.; Moss, S.J. Combined detrital zircon fission-track and U-Pb dating: A new approach to understanding hinter-land evolution. Geology 1999, 27, 235–238. [Google Scholar] [CrossRef]
- Weislogel, A.L.; Graham, S.A.; Chang, E.Z.; Wooden, J.L.; Gehrels, G.E.; Yang, H. Detrital zircon provenance of the Late Triassic Songpan-Ganzi complex: Sedimentary record of collision of the North and South China blocks. Geology 2006, 34, 97–100. [Google Scholar] [CrossRef]
- Li, S.Y.; Wei, X.; Xie, W.; Cheng, C.; Li, M.; Hu, B.; Chai, G.L. From source to sink: Couping relation between the Dabie Shan Orogen provenance and Mesozoic sediments of the south-margin of Hefei Basin, based on the evidence of detrital zircon ages. J. Palaeogeogr. (Chin. Ed.) 2019, 21, 82–106. [Google Scholar]
- Bureau of Geology and Mineral Resources of Shanxi Province. Stratigraphy (lithostratic) of Shanxi Province, Multiple Classification and Correlation of the Stratigraphy of China (14); China University of Geosciences Press: Beijing, China, 1997. [Google Scholar]
- Zhao, G.C.; Sun, M.; Wilde, S.A.; Li, S.Z. Late Archean to Paleoproterozoic evolution of the North China Craton: Key issues revisited. Precambrian Res. 2005, 136, 177–202. [Google Scholar] [CrossRef]
- Zhao, G.C.; Wilde, S.A.; Sun, M.; Xia, X.P.; Zhang, J.; He, Y.H. SHRIMP U-Pb zircon geochronology of the Huai’an Complex: Constraints on late Archean to paleoproterozoic magmatic and metamorphic events in the Trans-North China Orogen. Am. J. Sci. 2008, 308, 270–303. [Google Scholar] [CrossRef]
- Bai, J.; Dai, F.Y.; Yan, Y.Y. Precambrian crustal evolution of the Zhongtiao mountains. Earth Sci. Front. 1997, 4, 281–289. [Google Scholar]
- Tian, W.; Liu, S.W.; Liu, C.H.; Yu, S.Q.; Li, Q.G.; Wang, Y.R. Zircon SHRIMP geochronology and geochemistry of TTG rocks in Sushui Complex from Zhongtiao Mountains with its geological implications. Prog. Nat. Sci. 2006, 16, 492–500. [Google Scholar]
- Zhang, R.Y. The composition and evolution of the Sushui complex in the Zhongtiao Mountains, the south of North China Craton. Ph.D. Dissertation, Northwest University, Xi’an, China, 2015. [Google Scholar]
- Diwu, C.R. Crustal growth and evolution of Archean continental crust in the southern North China Craton. Acta Petrol. Sin. 2021, 37, 317–340. [Google Scholar]
- Si, B.W.; Diwu, C.R.; Wang, T.Y.; Gan, B.P. Late Paleoproterozoic tectonothermal events in the North China Craton as revealed by rutile U-Pb dating of the Sushui Complex. Precambrian Res. 2024, 410, 107495. [Google Scholar] [CrossRef]
- Sun, D.Z.; Hu, W.X.; Tang, M.; Zhao, F.Q.; Condie, K.C. Origin of Late Archean and Early Proterozoic rocks and associated mineral deposits from the Zhongtiao Mountains, east-central China. Precambrian Res. 1990, 47, 287–306. [Google Scholar] [CrossRef]
- Tian, W.; Liu, S.W.; Zhang, H.F. Paleoproterozoic potassic granitoids in the Sushui complex from the Zhongtiao Mountains, northern China: Geochronology. geochemistry and petrogenesis. Acta Geol. Sin. 2006, 80, 875–885. [Google Scholar]
- Yang, C.H.; Du, L.L.; Song, H.X.; Duan, Q.S.; Wang, J.L.; Huang, Z.Q.; Ren, L.D.; Geng, Y.S.; Wang, Y.B. Geochronology and petrogenesis of Neoarchean Yanzhuang syenogranites from Sushui Complex in the Zhongtiao Mountains: Implications for the crustal evolution of the North China Craton. Earth Sci. 2020, 45, 3161–3178. [Google Scholar]
- Zhang, R.Y.; Zhai, M.G.; Zhao, Y. Geochronology, geochemistry and isotopic composition of the 2.18~2.16Ga granitoid rocks from the north western Zhongtiao Mountain region: Implications for the middle Paleoproterozoic tectonic evolution of the southern North China Craton. Lithos 2023, 440–441, 107020. [Google Scholar] [CrossRef]
- Yu, S.Q.; Liu, S.W.; Tian, W.; Li, Q.G.; Feng, Y.G. SHRIMP zircon U-Pb chronology and geochemistry of the Henglingguan and Beiyu Granitoids in the Zhongtiao Mountains, Shanxi Province. Acta Geol. Sin. 2006, 80, 912–924. [Google Scholar]
- Wang, J.Q.; Liu, X.; Diwu, C.R. LA-ICP-MS zircon U-Pb dating and Hf isotopic compositions of rocks from the Sushui complex in Shanxi-Shaanxi border area and their geological significance. Geol. Bull. China 2017, 36, 392–401. [Google Scholar]
- Zhang, R.Y.; Sun, Y.; Zhang, S.H. Early Precambrian geological events in the Zhongtiao Mountain, China: Implication for the evolution of Neoarchean to Paleoproterozoic crust in the southern segment of North China Craton. Int. Geol. Rev. 2021, 63, 1030–1050. [Google Scholar] [CrossRef]
- Shi, B.S.; Liu, J.Z.; Li, Y.Q.; Zhu, K.; Zhang, L.; Hu, J.H.; Liu, J.W. Geochronological and geochemical comparison of Precambrian meta-mafic volcanics in Zhongtiao Mountain and Luliangshan regions in Shanxi, North China Craton. Acta Geochim. 2021, 40, 325–347. [Google Scholar] [CrossRef]
- Diwu, C.R.; Zhang, C.L.; Sun, Y. Archean Continental Crust in the Southern North China Craton. Main Tectonic Events and Metallogeny of the North China Craton; Zhai, M.G., Zhao, Y., Zhao, T.P., Eds.; Springer: Singapore, 2016; pp. 29–44. [Google Scholar]
- Wan, Y.S.; Liu, D.Y.; Dong, C.Y.; Xie, H.Q.; Ren, P. Formation and Evolution of Archean Continental Crust of the North China Craton. Precambrian Geology of China; Zhai, M.G., Ed.; Springer: Berlin/Heidelberg, Germany, 2015; pp. 59–136. [Google Scholar]
- Ludwig, K.R. Isoplot 3.0-A geochronological toolkit for Microsoft Excel. Berkeley Geochronol. Cent. Spec. Publ. 2003, 4, 1–70. [Google Scholar]
- Wiedenbeck, M.P.; Allé, F.; Corfu, W.L.; Griffin, M.; Meier, F.; Oberli, A.V.; Quant, A.V.; Roddick, J.C.; Spiegel, W. Three natural zircon standards for U-Th-Pb, Lu-Hf, trace element and REE analyses. Geostands Geoanal. Res. 1995, 19, 1–23. [Google Scholar] [CrossRef]
- Sláma, J.; Košler, J.; Condon, D.J.; Crowley, J.L.; Gerdes, A.; Hanchar, J.M.; Horstwood, M.S.A.; Morris, G.A.; Nasdala, L.; Norberg, N.; et al. Plešovice zircon: A new natural reference material for U–Pb and Hf isotopic microanalysis. Chem. Geol. 2008, 249, 1–35. [Google Scholar] [CrossRef]
- Jackson, S.E.; Pearson, N.J.; Griffin, W.L.; Belousova, E.A. The application of laser ablation-inductively coupled plasma-mass spectrometry to in-situ U-Pb zircon geochronology. Chem. Geol. 2004, 211, 47–69. [Google Scholar] [CrossRef]
- Diwu, C.R.; Sun, Y.; Gao, J.F.; Fan, L.G. Early Precambrian tectonothermal events of the North China Craton: Constraints from in situ detrital zircon U-Pb, Hf and O isotopic compositions in Tietonggou Formation. China Sci. Bull. 2013, 58, 3760–3770. [Google Scholar] [CrossRef]
- Diwu, C.R.; Sun, Y.; Wang, Q. The crustal growth and evolution of North China Craton: Revealed by Hf isotopes in detrital zircons from modern rivers. Acta Petrol. Sin. 2012, 28, 3520–3530. [Google Scholar]
- Chu, N.C.; Taylor, R.N.; Chavagnac, V. Hf isotope ratio analysis using multi-collector inductively coupled plasma mass spectrometry: An evaluation of isobaric interference corrections. J. Anal. At. Spectrom. 2002, 17, 1567–1574. [Google Scholar] [CrossRef]
- Bouvier, A.; Vervoort, J.D.; Patchett, P.J. The Lu-Hf and Sm-Nd isotopic composition of CHUR: Constraints from unequilibrated chondrites and implications for the bulk composition of terrestrial planets. Earth Planet. Sci. Lett. 2008, 273, 48–57. [Google Scholar] [CrossRef]
- Vervoort, J.D.; Patchett, P.J.; Blichert-Toft, J.; Albarede, F. Relationships between Lu-Hf and Sm-Nd isotopic systems in the global sedimentary system. Earth Planet. Sci. Lett. 1999, 168, 79–99. [Google Scholar] [CrossRef]
- Rudnick, R.L.; Gao, S. Composition of the Continental Crust. In Treatise on Geochemistry; Holland, H.D., Turekian, K.K., Eds.; Pergamon: Oxford, UK, 2003; pp. 1–64. [Google Scholar]
- Hoskin, P.W.O.; Schalttegger, U. The composition of Zircon and igneous and metamorhpic petrogenisis. Rev. Mineral. Geochem. 2003, 53, 27–55. [Google Scholar] [CrossRef]
- Hoskin, P.W.O.; Black, L.P. Metamorphic zircon formation by solid-state recrystallization of protolith igneous zircon. J. Metamorph. Geol. 2000, 18, 423–439. [Google Scholar] [CrossRef]
- Belousova, E.A.; Griffin, W.L.; O’Reilly, S.Y.; Fisher, N.I. Igneous zircon: Trace element composition as an indicator of source rock type. Contrib. Miner. Petrol. 2002, 143, 602–622. [Google Scholar] [CrossRef]
- Rubatto, D. Zircon trace element geochemistry: Partitioning with tarnet and the link between U-Pb ages and metamorphism. Chem. Geol. 2002, 184, 123–138. [Google Scholar] [CrossRef]
- Hokada, T.; Harley, S.L. Zircon growth in UHT leucosome: Constrains from Zircon-granet rare earth element (REE) relations in Napier Complex, East Antarctica. J. Miner. Petrol. Sci. 2004, 99, 180–190. [Google Scholar] [CrossRef]
- Sun, J.J.; Shu, L.S.; Santosh, M.; Wang, L.S. Precambrian crustal evolution of the central Jiangnan Orogen (South China): Evidence from detrital zircon U-Pb ages and Hf isotopic compositions of Neoproterozoic metasedimentary rocks. Precambrian Res. 2018, 318, 1–47. [Google Scholar] [CrossRef]
- Liu, Y.S.; Hu, Z.C.; Gao, S.; Günther, D.; Xu, J.; Gao, C.G.; Chen, H.H. In situ analysis of major and trace elements of anhydrous minerals by LA-ICP-MS without applying an internal standard. Chem. Geol. 2008, 257, 34–43. [Google Scholar] [CrossRef]
- Trail, D.; Watson, E.B.; Tailby, N.D. Ce and Eu anomalies in zircon as proxies for the oxidation state of magmas. Geochim. Cosmochim. Acta 2012, 97, 70–87. [Google Scholar] [CrossRef]
- Wu, F.Y.; Liu, X.C.; Wang, J.M.; Yang, L. Highly fractionated granites: Recognition and research. Sci. China Earth Sci. 2017, 60, 1201–1219. [Google Scholar] [CrossRef]
- Wang, R.; Wu, S.C.; Weinberg, R.F.; Collins, W.J.; Cawood, P.A. Zircons reveal the history of fluctuations in oxidation state of crustal magmatism and supercontinent cycle. Sci. Bull. 2024, 69, 97–102. [Google Scholar] [CrossRef]
- Corfu, F.; Hanchar, J.M.; Hoskin, P.W.O.; Peter, K. Altas of zircon textures. Rev. Miner. Geochem. 2003, 53, 469–500. [Google Scholar] [CrossRef]
- Liu, R.; Zhou, H.W.; Zhang, L.Z.; Zhong, Q.W.; Zeng, H.; Xiang, S.; Jin, X.; Lu, Q.; Li, C.Z. Paleoproterozoic reworking of ancient crust in the Cathaysia Block, South China: Evidence from zircon trace elements, U-Pb and Lu-Hf isotopes. Chin. Sci. Bull. 2009, 54, 906–917. [Google Scholar] [CrossRef]
- Sun, S.S.; Mcdonough, W.F. Chemical and isotopic systematics of oceanic basalts: Implications for mantle composition and processes. Geol. Soc. Lond. Spec. Publ. 1989, 42, 313–345. [Google Scholar] [CrossRef]
- Zhang, R.Y.; Zhang, C.L.; Sun, Y. Crustal reworking in the North China Craton at ~2.5Ga: Evidence from zircon U-Pb ages, Hf isotopes and whole-rock geochemistry of the TTG gneisses in the Zhongtiao Mountain. Acta Petrol. Sin. 2013, 29, 2265–2280. [Google Scholar]
- Fu, X.H.; Zhao, H.G.; Zhou, Y.J.; Peng, Z.C.; Jiang, S.; Zhangsun, X.Q.; Wang, H.R.; Li, Y.N. Jurassic detrital zircon U-Pb dating of Langshan area, Inner Mongolia, and its provenance significance. Geol. Bull. China 2016, 35, 2063–2075. [Google Scholar]
- Dickinson, W.R.; Gehrels, G.E. Use of U-Pb ages of detrital zircons to infer maximum depositional ages of strata: A test against a Colorado Plateau Mesozoic database. Earth Planet. Sci. Lett. 2009, 288, 115–125. [Google Scholar] [CrossRef]
- Guo, P.; Liu, C.Y.; Wang, J.Q.; Li, C.Z. Consideration on the application of detrital-zircon geochronology to sedimentary provenance analysis. Acta Sedimentol. Sin. 2017, 35, 46–56. [Google Scholar]
- Zhang, J.; Li, J.Y.; Liu, J.F.; Feng, Q.W. Detrital zircon U-Pb ages of Middle Ordovician flysch sandstones in the western Ordos margin: New constraints on their provenance and tectonic implications. J. Asian Earth Sci. 2011, 42, 1030–1047. [Google Scholar]
- Xie, H.S.; Wang, P.; Chen, X.Y.; Wei, X.C.; Luo, X.Y.; Li, S.Y. Constraining stratigraphic ages using maxium depositional age of detrital zircon: Principles, methods, and applications. J. Stratigr. 2025, 49, 103–122. [Google Scholar]
- Chen, A.D.; Chen, B.L.; Wang, Y.; Meng, L.T.; He, J.T.; Han, M.M.; Wang, B. Geochronology of the sedimentary series from Zhuo’abulake Formation in Kaladawan area of Altun and its geological significance: LA-ICP-MS U-Pb age evidence of detrital zircons. Geol. Bull. China 2018, 37, 776–789. [Google Scholar]
- Wu, H.S.; Zhang, Y.Z.; Yang, X.; Yang, J.W.; Li, M.Y.; Yu, X.Q.; Wang, C.; Gan, C.S. From amalgamation to post-orogenic rifting: Decoded by the Neoproterozoic Shenshan Group, South China. China Geol. 2025, 9, 102–119. [Google Scholar] [CrossRef]
- Zhang, Y.Z.; Wang, Y.J.; Zhang, Y.H.; Zhang, A.M. Neoproterozoic assembly of the Yangtze and Cathaysia blocks: Evidence from the Cangshuipu group and associated rocks along the Central Jiangnan Orogen, South China. Precambrian Res. 2015, 269, 18–30. [Google Scholar] [CrossRef]
- Tang, M.; Ji, W.Q.; Chu, X.; Wu, A.B.; Chen, C. Reconstructing crustal thickness evolution from europium anomalies in detrital zircons. Geology 2020, 48, 76–80. [Google Scholar] [CrossRef]
- Zhang, H.; Wang, N.S.; Meng, X.Z.; Meng, Z. Detrital zircon U-Pb dating of Maihanhada Formation in Yin’E Basin of northern Suhongtu depression and its geological significance. Geol. Bull. China 2019, 38, 656–666. [Google Scholar]
- Zhao, G.C.; 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 tectonic evolution. Precambrian Res. 2001, 107, 45–73. [Google Scholar] [CrossRef]
- Xiao, L.L.; Zhou, J.Y.; Liu, Y.L.; Wang, G.D. Neoarchean–Paleoproterozoic magmatic–metamorphic events and its tectonic implications of the Zuoquan–Zanhuang metamorphic complexes in the North China Craton. Precambrian Res. 2025, 427, 107866. [Google Scholar] [CrossRef]
- Santosh, M. Assembling North China Craton within the Columbia supercontinent: The role of double-sided subduction. Precambrian Res. 2010, 178, 149–167. [Google Scholar] [CrossRef]
- Wan, Y.S.; Dong, C.Y.; Ren, P.; Bai, W.Q.; Xie, H.Q.; Liu, S.J.; Xie, S.Y.; Liu, D.Y. Spatial and temporal distribution, compositional, characteristics and formation and evolution of Archean TTG rocks in the North China craton: A synthesis. Acta Petrol. Sin. 2017, 33, 1405–1419. [Google Scholar]
- Guan, H.; Sun, M.; Wilde, S.A.; Zhou, X.H.; Zhai, M.G. SHRIMP U-Pb zircon geochronology of the Fuping Complex: Implications forformation and assembly of the North China Craton. Precambrian Res. 2002, 113, 1–18. [Google Scholar] [CrossRef]
- Tang, L.; Santosh, M.; Teng, X.M. Paleoproterozoic (ca.2.1~2.0 Ga) arc magmatism in the Fuping Complex: Implications for thetectonic evolution of the Trans-North China Orogen. Precambrian Res. 2015, 268, 16–32. [Google Scholar] [CrossRef]
- Zhao, G.C.; Wilde, S.A.; Sun, M.; Li, S.Z.; Li, X.P.; Zhang, J. SHRIMP U-Pb zircon ages of granitoid rocks in the Lüliang Complex: Implications for the accretion and evolution of the Trans-North China Orogen. Precambrian Res. 2008, 160, 213–226. [Google Scholar] [CrossRef]
- Zhu, X.Y.; Zhai, M.G.; Chen, F.K.; Lyu, B.; Wang, W.; Peng, P.; Hu, B. ~2.7Ga crustal growth in the North China Craton: Evidence from zircon U-Pb ages and Hf isotopes of the Sushui Complex in the Zhongtiao Terrane. J. Geol. 2013, 121, 239–254. [Google Scholar] [CrossRef]
- Tian, W.; Liu, S.W.; Liu, C.H.; Yu, S.Q.; Li, Q.G.; Wang, Y.R. Zircon SHRIMP dating and geochemistry of TTG series rocks from Sushui Complex in zhongtiao mountain and their geological significance. Prog. Nat. Sci. 2005, 15, 1476–1484. [Google Scholar]
- Liu, S.W.; Zhao, G.C.; Wilde, S.A.; Shu, G.M.; Sun, M.; Li, Q.G.; Tian, W.; Zhang, J. Th-U-Pb monazite geochronology of the Lüliang and Wutai Complexes: Constraints on the tectonothermal evolution of the Trans-North China Orogen. Precambrian Res. 2006, 148, 205–222. [Google Scholar] [CrossRef]
- Zhou, Y.Y.; Zhao, T.P.; Xue, L.W.; Wang, S.Y.; Gao, J.F. Petrological geochemecal and chronological constraints for the origin and geological significance of Neoarchean TTG gneiss in the Songshan area, North China Craton. Acta Petrol. Sin. 2009, 25, 331–347. [Google Scholar]
- Feng, J.P.; Ouyang, Z.J.; Zhou, Y.J.; Bao, H.P.; Yan, T. Revision of the Mesoproterozoic “Aulacogen” in Ordos area. J. Northwest Univ. 2018, 48, 587–592. [Google Scholar]
- Jia, J.D.; He, G.Q.; Li, M.S.; Zhou, D.C.; Zhang, L.X. Structural feature of basement in the Ordos Basin and its control to Paleozoic gas. Geol. J. China Univ. 1997, 3, 144–153. [Google Scholar]
- Feng, J.P.; Ouyang, Z.J.; Ding, X.F. Geochemical characteristics of Mesoproterozoic Erathem Changcheng system source rocks in the south margins of Ordos basin. J. Xi’an Univ. Sci. Technol. 2015, 35, 749–754. [Google Scholar]
- Zhai, M.G.; Peng, P. Paleoproterozoic events in North China Craton. Acta Petrol. Sin. 2007, 23, 2665–2683. [Google Scholar]
- Zhai, M.G.; Li, T.S.; Peng, P.; Hu, B.; Liu, F.; Zhang, Y.B. Precambrian key tectonic events and evolution of the North China craton. Geol. Soc. Lond. Spec. Publ. 2010, 338, 235–262. [Google Scholar] [CrossRef]
- Zhai, M.G.; Santosh, M. The early Precambrian odyssey of North China Craton: A synoptic overview. Gondwana Res. 2011, 20, 6–25. [Google Scholar] [CrossRef]
- Wu, J.S. Archean Geology Characteristics and Tectonic Evolution of China-Korea Paleo- Continent; Geological publishing house: Beijing, China, 1998. [Google Scholar]
- Xiao, B.; Li, Q.G.; Liu, S.W.; Wang, Z.Q.; Yu, T.; Zhang, Z.F.; Zhou, J.; Tu, J.Y. Muscovite 40Ar/39Ar dating of the Palaeoproterozoic granitoid gneiss in the Zhongtiao Mountains and its geological significance. Geol. Bull. China 2013, 32, 706–716. [Google Scholar]
- Kröner, A.; Wilde, S.A.; O’Brien, P.J.; Li, J.H.; Passchier, C.W.; Walte, N.P.; Liu, D.Y. Field relationships, geochemistry, zircon ages and evolution of a late Archaean to Palaeoproterozoic lower crustal section in the Hengshan terrain of northern China. Acta Geol. Sin. 2005, 79, 605–629. [Google Scholar]
- Faure, M.; Trap, P.; Lin, W.; Patrick, K.; Bruguier, O.; Monié, P. Polyorogenic evolution of the Paleoproterozoic Trans-North China Belt-new insights from the Luliang shan-Hengshan-Wutaishan and Fuping massifs. Episodes 2007, 30, 96–107. [Google Scholar] [CrossRef]
- Kusky, T.M.; Li, J.H. Paleoproterozoic tectonic evolution of the North China Craton. J. Asian Earth Sci. 2003, 22, 383–397. [Google Scholar] [CrossRef]
- Kusky, T.M.; Li, J.H.; Santosh, M. The Paleoproterozoic north Hebei orogen: North China Craton’s collisional suture with the Columbia supercontinent. Gondwana Res. 2007, 12, 4–28. [Google Scholar] [CrossRef]
- Kusky, T.M.; Santosh, M. The Columbia connection in north China. Geol. Soc. Lond. Spec. Publ. 2009, 323, 49–71. [Google Scholar] [CrossRef]
- Kusky, T.M. Geophysical and geological tests of tectonic models of the North China Craton. Gondwana Res. 2011, 20, 26–35. [Google Scholar] [CrossRef]
- Wang, Z.H.; Wilde, S.A.; Wan, J.L. Tectonic setting and significance of 2.3-2.1Ga magmatic events in the Trans-North China Orogen: New constraints from the Yanmenguan mafic-ultramafic intrusion in the Hengshan-Wutai-Fuping area. Precambrian Res. 2010, 178, 27–42. [Google Scholar] [CrossRef]
- Wilde, S.A.; Zhao, G.C.; Sun, M. Development of the North China Craton during the late Archaean and its final amalgamation at 1.8Ga: Some speculations on its position within a global Palaeoproterozoic supercontinent. Gondwana Res. 2002, 5, 85–94. [Google Scholar] [CrossRef]
- Polat, A.; Kusky, T.M.; Li, J.H.; Fryer, B.J.; Kerrich, R.; Patrick, K. 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. Geol. Soc. Am. Bull. 2005, 117, 1387–1399. [Google Scholar] [CrossRef]
- Li, J.H.; Kusky, T.M. A Late Archean foreland fold and thrust belt in the North China Craton: Implications for early collisional tectonics. Gondwana Res. 2006, 12, 47–66. [Google Scholar] [CrossRef]
- Trap, P.; Faure, M.; Lin, W.; Monié, P. Late Paleoproterozoic (1900–1800 Ma) nappe stacking and polyphase deformation in the Hengshan-Wutaishan area: Implications for the understanding of the Trans-North-China Belt, North China Craton. Precambrian Res. 2007, 156, 85–106. [Google Scholar] [CrossRef]
- Trap, P.; Faure, M.; Lin, W.; Bruguier, O.; Monié, P. Contrasted tectonic styles for the Paleoproterozoic evolution of the North China Craton. Evidence for a ~2.1Ga thermal and tectonic event in the Fuping Massif. J. Struct. Geol. 2008, 30, 1109–1125. [Google Scholar] [CrossRef]
- Trap, P.; Faure, M.; Lin, W.; Monié, P.; Meffre, S.; Melleton, J. The Zanhuang Massif, the second and eastern suture zone of the Paleoproterozoicm Trans-North China Orogen. Precambrian Res. 2009, 172, 80–98. [Google Scholar] [CrossRef]
- Wang, Z.H. Tectonic evolution of the Hengshan-Wutai-Fuping complexes and its implication for the Trans-North China Orogen. Precambrian Res. 2009, 170, 73–87. [Google Scholar] [CrossRef]
- Zhang, C.L.; Gou, L.L.; Bai, H.F.; Hu, Y.; Wu, C.Y. New thinking and understanding for the researches on the basement of Ordos Block. Acta Petrol. Sin. 2021, 37, 162–184. [Google Scholar]
- Rogers, J.J.W.; Santosh, M. Configuration of Columbia: A Mesoproterozoic supercontinet. Gondwana Res. 2002, 5, 5–22. [Google Scholar] [CrossRef]
- Zhao, G.C.; Cawood, P.A.; Wilde, S.A.; Sun, M. Review of global 2.1~1.8 Ga orogens: Implications for a pre-Rodinia supercontinent. Earth-Sci. Rev. 2002, 59, 125–162. [Google Scholar] [CrossRef]









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Wang, C.; Tan, C.; Zhang, C.; Zhou, X.; Wang, L. Detrital Zircon Trace Elements, U-Pb Geochronology and Its Geological Significance of the “Huoshan Sandstone” in Xiweikou Area of the Eastern Margin of Ordos Basin. Minerals 2026, 16, 225. https://doi.org/10.3390/min16020225
Wang C, Tan C, Zhang C, Zhou X, Wang L. Detrital Zircon Trace Elements, U-Pb Geochronology and Its Geological Significance of the “Huoshan Sandstone” in Xiweikou Area of the Eastern Margin of Ordos Basin. Minerals. 2026; 16(2):225. https://doi.org/10.3390/min16020225
Chicago/Turabian StyleWang, Chenglong, Chengqian Tan, Chuang Zhang, Xue Zhou, and Liangliang Wang. 2026. "Detrital Zircon Trace Elements, U-Pb Geochronology and Its Geological Significance of the “Huoshan Sandstone” in Xiweikou Area of the Eastern Margin of Ordos Basin" Minerals 16, no. 2: 225. https://doi.org/10.3390/min16020225
APA StyleWang, C., Tan, C., Zhang, C., Zhou, X., & Wang, L. (2026). Detrital Zircon Trace Elements, U-Pb Geochronology and Its Geological Significance of the “Huoshan Sandstone” in Xiweikou Area of the Eastern Margin of Ordos Basin. Minerals, 16(2), 225. https://doi.org/10.3390/min16020225

