Micro-Geochemistry of Clinopyroxene of the Mafic Dykes in the Jiaodong Peninsula: Implications for Petrogenesis and Geodynamic

  • Chapter
  • First Online:
Mineral Micro-Geochemistry Constraints on Petrogenesis and Genesis of Gold Deposit
  • 282 Accesses

Abstract

Early Cretaceous mafic dykes widely spread in the Jiaodong Peninsula and provided significant evidence for geodynamic of the studied area. Based on the whole geochemistry, in situ major element, trace element, Sr isotopic compositions and H2O contents analyses of the clinopyroxene phenocrysts of the mafic dykes were analysed. These evidences proved that the lithospheric mantle beneath Jiaodong Peninsula had undergone the metasomatism resulted from Paleo-Pacific slab subduction, and that lithospheric thinning of the eastern NCC caused by prolonged thermo-mechanical erosion. Both of these processes played a significant role in the petrogenesis of the Mesozoic mafic dykes at Jiaodong.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Subscribe and save

Springer+ Basic
EUR 32.99 /Month
  • Get 10 units per month
  • Download Article/Chapter or Ebook
  • 1 Unit = 1 Article or 1 Chapter
  • Cancel anytime
Subscribe now

Buy Now

Chapter
EUR 29.95
Price includes VAT (France)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
EUR 117.69
Price includes VAT (France)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book
EUR 158.24
Price includes VAT (France)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free ship** worldwide - see info
Hardcover Book
EUR 158.24
Price includes VAT (France)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free ship** worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

References

  • Adam, J., and T.H. Green. 1994. The effects of pressure and temperature on the partitioning of Ti, Sr and REE between amphibole, clinopyroxene and basanitic melts. Chemical Geology 117: 219–233.

    Article  Google Scholar 

  • Alonso-Perez, R., O. Müntener, and P. Ulmer. 2009. Magmatic garnet and amphibole fractionation in the roots of island arcs: Experimental constraints on andesitic liquids. Contributions to Mineralogy and Petrology 157: 541–558.

    Article  Google Scholar 

  • Asimow, P.D., J.E. Dixon, and C.H. Langmuir. 2004. A hydrous melting and fractionation model for mid-ocean ridge basalts: application to the Mid-Atlantic Ridge near the Azores. Geochemistry, Geophysics, Geosystems 5: 1–24.

    Article  Google Scholar 

  • Batki, A., P. Elemér, D. Gábor, and S. Alasdair. 2014. Petrogenetic significance of ocellar camptonite dykes in the Ditrău Alkaline Massif, Romania: Lithos, 200–201, 181–196.

    Google Scholar 

  • Bell, D.R., P.D. Ihinger, and G.R. Rossman. 1995. Quantitative analysis of trace OH in garnet and pyroxenes. American Mineralogist 80: 465–474.

    Article  Google Scholar 

  • Ben, O.D., W.M. White, and J. Patchett. 1989. The geochemistry of marine sediments, island arc magma genesis, and crust-mantle recycling: Earth Planet. Science Letters 94: 1–21.

    Google Scholar 

  • Blundy, J.D., T.J. Falloon, B.J. Wood, and J.A. Dalton. 1995. Sodium partitioning between clinopyroxene and silicate melts. Journal of Geophysical Researches 100: 15501–15515.

    Article  Google Scholar 

  • Cai, Y.C., H.R. Fan, M. Santosh, F.F. Hu, K.F. Yang, and Z. Hu. 2015. Subduction-related metasomatism of the lithospheric mantle beneath the southeastern north china craton: Evidence from mafic to intermediate dykes in the northern sulu orogen. Tectonophysics 659: 137–151.

    Article  Google Scholar 

  • Cai, Y.C., H.R. Fan, M. Santosh, X. Liu, F.F. Hu, K.F. Yang, T.G. Lan, Y.H. Yang, and Y.S. Liu. 2013. Evolution of the lithospheric mantle beneath the southeastern North China Craton: Constraints from mafic dykes in the Jiaobei terrain. Gondwana Research 24: 601–621.

    Article  Google Scholar 

  • Callegaro, S., Andreamarzoli, H. Bertrand, C. Massimo, L. Reisberg, Christine., B. Giuliano, E.W. Robert, and R. Merle. 2013. Upper and lower crust recycling in the source of CAMP basaltic dykes from southeastern North America: Earth Planet. Science Letters 376: 186–199.

    Google Scholar 

  • Castillo, P.R. 2012. Adakite petrogenesis. Lithos 134 (3): 304–316.

    Article  Google Scholar 

  • Castillo, P.R., P.E. Janney, and R.U. Olidum. 1999. Petrology and geochemistry of Camiguin Island, southern Philippines: Insights to the source of adakites and other lavas in a complex arc setting. Contributions to Mineralogy and Petrology 134(1): 33–51.

    Google Scholar 

  • Chapman, J.B., M.N. Ducea, L. Profeta, and P.G. DeCelles. 2015. Tracking changes in crustal thickness during orogenic evolution with Sr/Y; an example from the Western U.S. Cordillera. Geology 43: 919–923.

    Article  Google Scholar 

  • Charles, N., R. Augier, C. Gumiaux, P. Monié, Y. Chen, M. Faure, and R. Zhu. 2013. Timing, duration and role of magmatism in wide rift systems: insights from the Jiaodong Peninsula (China, East Asia). Gondwana Research 24: 412–428.

    Article  Google Scholar 

  • Chen, S., S.Y. O’Reilly, X. Zhou, W.L. Griffin, G. Zhang, M. Sun, and M. Zhang. 2001. Thermal and petrological structure of the lithosphere beneath Hannuoba, Sino-Korean Craton, China: Evidence from xenoliths. Lithos 56: 267–301.

    Article  Google Scholar 

  • Chiaradia, M., D. Merino, and R. Spikings. 2009. Rapid transition to long-lived deep crustal magmatic maturation and the formation of giant porphyry-related mineralization (Yanacocha, Peru). Earth and Planetary Science Letters 288: 505–515.

    Article  Google Scholar 

  • Chung, S.L., D. Liu, J. Ji, M.F. Chu, H.Y. Lee, D.J. Wen, C.-H. Lo, T.Y. Lee, Q. Qian, and Q. Zhang. 2003. Adakites from continental collision zones: melting of thickened lower crust beneath southern Tibet. Geology 31 (11): 1021–1024.

    Article  Google Scholar 

  • Dai, L.Q., Z.F. Zhao, Y.F. Zheng, Y.J. An, and F. Zheng. 2017. Geochemical Distinction between Carbonate and Silicate Metasomatism in Generating the Mantle Sources of Alkali Basalts. Journal of Petrology 58: 863–884.

    Article  Google Scholar 

  • Dai, L.Q., Y.F. Zheng, and Z.F. Zhao. 2016. Termination time of peak decratonization in North China: Geochemical evidence from mafic igneous rocks. Lithos 240: 327–336.

    Article  Google Scholar 

  • Defant, M.J., and M.S. Drummond. 1990. Derivation of some modern arc magmas by melting of young subducted lithosphere. Nature 347: 662–665.

    Article  Google Scholar 

  • Deng, J., X.F. Liu, Q.F. Wang, and R.G. Pan. 2015. Origin of the Jiaodong-type **nli gold deposit, Jiaodong Peninsula, China: Constraints from fluid inclusion and C-D–O–S–Sr isotope compositions: Ore Geol. Rev. 65: 674–686.

    Google Scholar 

  • Deng, J., X.F. Liu, Q.F. Wang, Y. Dilek, and Y.Y. Liang. 2017. Isotopic characterization and petrogenetic modeling of the early cretaceous mafic Diking-Lithospheric extension in the north china craton, Eastern Asia. Geological Society of America Bulletin 129: 1379–1407.

    Article  Google Scholar 

  • Deng, J., Q.F. Wang, G.J. Li, and M. Santosh. 2014. Cenozoic tectono-magmatic and metallogenic processes in the Sanjiang region, southwestern China. Earth-Science Reviews, 268–299.

    Google Scholar 

  • Deng, J.F., S.G. Su, Y.L. Niu, C. Liu, G.C. Zhao, X.G. Zhao, S. Zhou, and Z.X. Wu. 2007. A possible model for the lithospheric thinning of North China Craton: evidence from the Yanshanian (Jura-Cretaceous) magmatism and tectonism: Lithos 96, 22–35.

    Google Scholar 

  • Doucet, L.S., A.H. Peslier, D.A. Ionov, A.D. Brandon, A.V. Golovin, A.G. Goncharov, and I.V. Ashchepkov. 2014. High water contents in the Siberian cratonic mantle linked to metasomatism: An FTIR study of Udachnaya peridotite xenoliths. Geochimica et Cosmochimica Acta 137: 159–187.

    Article  Google Scholar 

  • Duggen, S., K. Hoernle, P. Bogaard, and D. Garbe-Schonberg. 2005. Post-collisional transition from subduction-to intraplatetype magmatism in the westernmost Mediterranean: Evidence for continental-edge delamination of subcontinental lithosphere. Journal of Petrology 46: 1155–1201.

    Article  Google Scholar 

  • Elliott, T., T. Plank, A. Zindler, W. White, and B. Bourdon. 1997. Element transport from slab to volcanic front at the Mariana arc. Journal Geophysical Research 102: 14991–15019.

    Article  Google Scholar 

  • Ernst, R.E., J.W. Head, E. Parfitt, E. Grosfils, and L. Wilson. 1995. Giant radiating dyke swarms on Earth and Venus. Earth-Science Reviews 39: 1–58.

    Article  Google Scholar 

  • Farner, M.J., and C.T.A. Lee. 2017. Effects of crustal thickness on magmatic differentiation in subduction zone volcanism: A global study. Earth and Planetary Science Letters 470: 96–107.

    Article  Google Scholar 

  • Fischer, T.P. 2008. Fluxes of volatiles (H2O, CO2, N2, Cl, F) from arc volcanoes. Geochemical Journal 42: 21–38.

    Article  Google Scholar 

  • Furman, T., and D. Graham. 1999. Erosion of lithospheric mantle beneath the East African Rift system: Geochemical evidence from the Kivu volcanic province. Lithos 48: 237–262.

    Article  Google Scholar 

  • Gao, S., R.L. Rudnick, W. Xu, H. Yuan, Y. Liu, R.J. Walker, I.S. Puchtel, X. Liu, H. Huang, X. Wang, and J. Yang. 2008. Recycling deep cratonic lithosphere and generation of intraplate magmatism in the North China Craton. Earth and Planetary Science Letters 270: 41–53.

    Article  Google Scholar 

  • Gao, X.Y., T.P. Zhao, Z.W. Bao, and A.Y. Yang. 2014. Petrogenesis of the Early Cretaceous intermediate and felsic intrusions at the southern margin of the North China Craton: Implications for crust-mantle interaction. Lithos 206: 65–78.

    Article  Google Scholar 

  • Gao, Y., Y. Niu, M. Duan, Q. Xue, P. Sun, S. Chen, and Y. Chen. 2019. The petrogenesis and tectonic significance of the Early Cretaceous intraplate granites in eastern China: The Laoshan granite as an example. Lithos 328: 200–211.

    Article  Google Scholar 

  • Göğüş, O.H. 2015. Rifting and subsidence following lithospheric removal in continental back arcs. Geology 43: 3–6.

    Article  Google Scholar 

  • Goss, S.C., S.A. Wilde, F.Y. Wu, and J.H. Yang. 2010. The age, isotopic signature and significance of the youngest Mesozoic granitoids in the Jiaodong Terrane, Shandong Province, North China Craton. Lithos 120: 309–326.

    Article  Google Scholar 

  • Griffin, W.L., N.J. Pearson, E. Belousova, S.E. Jackson, E.V. Achterbergh, S.Y. O’Reilly, and S.R. Shee. 2000. The Hf isotope composition of cratonic mantle: LAM-MC-ICPMS analysis of zircon megacrysts in kimberlites: Geochim. Cosmochim. Acta 64: 133–147.

    Article  Google Scholar 

  • Guo, F., W.M. Fan, Y.J. Wang, M. Zhang. 2004. Origin of early Cretaceous calc-alkaline lamprophyres from the Sulu orogen in eastern China: implications for enrichment processes beneath continental collisional belt. Lithos 78: 291–305.

    Google Scholar 

  • Guo, F., W.M. Fan, C.W. Li, C.Y. Wang, H.X. Li, L. Zhao, and J.Y. Li. 2014. Hf-Nd-O isotopic evidence for melting of recycled sediments beneath the Sulu Orogen, North China. Chemical Geology 381: 243–258.

    Article  Google Scholar 

  • Guo, F., E. Nakamuru, W.M. Fan, K. Kobayoshi, and C.W. Li. 2007. Generation of Palaeocene adakitic andesites by magma mixing, Yanji Area, NE China. Journal of Petrology 80: 1–32.

    Google Scholar 

  • Halls, H.C. 1982. The importance and potential of mafic dyke swarms in studies of geodynamic processes. Geoscience Canada 9: 145–154.

    Google Scholar 

  • He, L. 2014. Numerical modeling of convective erosion and peridotite–melt interaction in big mantle wedge: Implications for the destruction of the North China Craton. Journal of Geophysical Research: Solid Earth 119: 2013J–10657J.

    Google Scholar 

  • Hermann, J., and D. Rubatto. 2009. Accessory phase control on the trace element signature of sediment melts in subduction zones. Chemical Geology 265: 512–526.

    Article  Google Scholar 

  • Hofmann, A.W. 2003. Sampling mantle heterogeneity through oceanic basalts: isotopes and trace elements. In The Mantle and Core. Treatise on Geochemistry ed by Carlson R.W.,. ElservierPergamon, Oxford, pp. 61–101.

    Google Scholar 

  • Hou, G.T., M. Santosh, X.L. Qian, G.S. Lister, and J.H. Li. 2008. Configuration of the Late Paleoproterozoic supercontinent Columbia: Insights from radiating mafic dyke swarms. Gondwana Research 14: 395–409.

    Article  Google Scholar 

  • Hu, F., M.N. Ducea, S. Liu, and J.B. Chapman. 2017. Quantifying crustal thickness in continental collisional belts: global perspective and a geologic application. Scientific Reports 7 (1): 1–10.

    Google Scholar 

  • Huang, X.L., J.W. Zhong, and Y.G. Xu. 2012. Two tales of the continental lithospheric mantle prior to the destruction of the North China Craton: Insights from Early Cretaceous mafic intrusions in western Shandong, east China: Geochim. Cosmochim. Acta 96: 193–214.

    Article  Google Scholar 

  • Huang, X.L., Y.G. Xu, and D.Y. Liu. 2004. Geochronology, petrology and geochemistry of the granulite xenoliths from Nushan, east China: Implication for a heterogeneous lower crust beneath the Sino-Korean Craton. Geochimica et Cosmochimica Acta 68: 127–149.

    Article  Google Scholar 

  • Ionov, D.A., W.L. Griffin, and S.Y. O’Reilly. 1997. Volatile-bearing minerals and lithophile trace elements in the upper mantle: Chem. Geology 141: 153–184.

    Google Scholar 

  • Jahn, B.M., D. Liu, Y. Wan, B. Song, and J. Wu. 2008. Archean crustal evolution of the Jiaodong Peninsula, China, as revealed by zircon SHRIMP geochronology, elemental and Nd-isotope geochemistry. American Journal of Science 308 (3): 232–269.

    Article  Google Scholar 

  • Jiang, N., J. Chen, J. Guo, and G. Chang. 2012. In situ zircon U-Pb, oxygen and hafnium isotopic compositions of jurassic granites from the North China Craton: Evidence for Triassic subduction of continental crust and subsequent metamorphism-related 18O depletion. Lithos 142–143: 84–94.

    Article  Google Scholar 

  • Jiang, P., K.F. Yang, H.R. Fan, X. Liu, Y.C. Cai, and Y.H. Yang. 2016. Titanite-scale insights into multi-stage magma mixing in Early Cretaceous of NW Jiaodong terrane, North China Craton. Lithos 258: 197–214.

    Article  Google Scholar 

  • Jiang, Y.H., S.Y. Jiang, H.F. Ling, and P. Ni. 2010. Petrogenesis and tectonic implications of Late Jurassic shoshonitic lamprophyre dikes from the Liaodong Peninsula, NE China: Miner. Petrol 100: 127–151.

    Google Scholar 

  • Kawamoto, T., M. Yoshikawa, Y. Kumagai, Ma. H.T. Mirabueno, M. Okuno, and T. Kobayashi. 2013. Mantle wedge infiltrated with saline fluids from dehydration and decarbonation of subducting slab. Proceedings of the National Academy of Sciences 110: 9663–9668.

    Google Scholar 

  • Kelemen, P.B., J.K. Hanghø, and A.R. Greene. 2003. One View of the Geochemistry of Subduction-related Magmatic Arcs, with an Emphasis on Primitive Andesite and Lower Crust. Treatise on Geochemistry 3: 593–659.

    Google Scholar 

  • Keller, C.B., B. Schoene, M. Barboni, K.M. Samperton, and J.M. Husson. 2015. Volcanic-plutonic parity and the differentiation of the continental crust. Nature 523: 301–307.

    Article  Google Scholar 

  • Khan, P.K., S. Shamim, M. Mohanty, P. Kumar, and J. Banerjee. 2017. Myanmar-Andaman-Sumatra subduction margin revisited: Insights of arc-specific deformations. Journal of Earth Science 28: 683–694.

    Article  Google Scholar 

  • Kogiso, T., and M.M. Hirschmann. 2001. Experimental study of clinopyroxenite partial melting and the origin of ultra-calcic melt inclusions. Contributions to Mineralogy and Petrology 142: 347–360.

    Article  Google Scholar 

  • Kogiso, T., Y. Tatsumi, and S. Nakano. 1997. Trace element transport during dehydration processes in the subducted oceanic crust: 1. Experiments and implications for the origin of ocean island basalts. Earth and Planetary Science Letters 148: 193–205.

    Article  Google Scholar 

  • Kovács, I., J. Hermann, H.S.C. O’Neill, J.F. Gerald, M. Sambridge, and G. Horvath. 2008. Quantitative absorbance spectroscopy with unpolarized light: Part II. Experimental evaluation and development of a protocol for quantitative analysis of mineral IR spectra. American Mineralogist 93: 765–778.

    Article  Google Scholar 

  • Krüger, J.C., L.H. Romerr, and H. Kämpf. 2013. Late Cretaceous ultramafic lamprophyres and carbonatites from the Delitzsch Complex, Germany: Chem. Geology 353: 140–150.

    Google Scholar 

  • Li, H., M.X. Ling, X. Ding, H. Zhang, C.Y. Li, D.Y. Liu, and W.D. Sun. 2014. The geochemical characteristics of Haiyang A-type granite complex in Shandong, eastern China. Lithos 200–201: 142–156.

    Article  Google Scholar 

  • Li, X.H., Z.X. Li, W.X. Li, X.C. Wang, and Y. Gao. 2013. Revisiting the “C-type adakites” of the Lower Yangtze River Belt, central eastern China: in-situ zircon Hf–O isotope and geochemical constraints. Chemical Geology 345: 1–15.

    Article  Google Scholar 

  • Li, X.C., H.R. Fan, M. Santosh, F.F. Hu, K.F. Yang, T.G. Lan, Y.S. Liu, and Y.H. Yang. 2012. An evolving magma chamber within extending lithosphere: An integrated geochemical, isotopic and zircon U-Pb geochronological study of the Gushan granite, eastern North China Craton. Journal of Asian Earth Sciences 50: 27–43.

    Article  Google Scholar 

  • Li, X.H., H.R. Fan, F.F. Hu, P. Hollings, K.F. Yang, and X. Liu. 2019. Linking lithospheric thinning and magmatic evolution of Late Jurassic to Early Cretaceous granitoids in the Jiaobei Terrane, southeastern North China Craton. Lithos 324: 280–296.

    Article  Google Scholar 

  • Li, Z.X., and X.H. Li. 2007. Formation of the 1300-km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China: A flat-slab subduction model. Geology 35: 179–182.

    Article  Google Scholar 

  • Liang, Y.Y., J. Deng, X.F. Liu, Q.F. Wang, Y. Ma, T.X. Gao, and L.H. Zhao. 2019. Water contents of early cretaceous mafic dikes in the Jiaodong Peninsula, Eastern North China craton: Insights into an enriched lithospheric mantle source metasomatized by Paleo–Pacific plate subduction–related fluids. Journal of Geology 127: 262–343.

    Google Scholar 

  • Liang, Y.Y., J. Deng, X.F. Liu, Q.F. Wang, C. Qin, Y. Li, Y. Yang, and M. Zhou. 2018. Major and trace element, and Sr isotope compositions of clinopyroxene phenocrysts in mafic dykes on Jiaodong Peninsula, southeastern North China Craton: Insights into magma mixing and source metasomatism. Lithos 302–303: 480–495.

    Article  Google Scholar 

  • Liang, Y.Y., W.H. Guo, Y. Ma, and E.Q. Zhao. 2020a. Geochemical evidence for thickening and thinning of lower crust beneath the jiaodong peninsula: Implications for late mesozoic destruction of the Eastern North China Craton. Lithosphere. https://doi.org/10.2113/2020/8831664.

    Article  Google Scholar 

  • Liang, Y.Y., X.F. Liu, C. Qin, Y. Li, J. Chen, J.Y. Jiang. 2017. Petrogenesis of early cretaceous mafic dikes in southeastern Jiaolai basin, Jiaodong Peninsula China. International Geology Review 59: 131–150.

    Google Scholar 

  • Liang, Y.Y., X.F. Liu, Q.F. Wang, R. Zhao, and Y. Ma. 2020b. Late Mesozoic magmatism in the Jiaodong Peninsula, East China: Implications for crust–mantle interactions and lithospheric thinning of the eastern North China Craton. Geoscience Frontiers 11: 895–914.

    Article  Google Scholar 

  • Liang, Y.Y., J. Deng, X.F. Liu, Q.F. Wang, Y. Ma, T.X. Gao, E.Q. Zhao, and Z.H. Zhou. 2020c. Geochronology and geochemistry of the Palaeoproterozoic mafic dikes in the Jiaobei terrane: implications for tectonic evolution of the Jiao-Liao-Ji Belt, eastern North China Craton. International Geology Review. https://doi.org/10.1080/00206814.2020.1746932.

  • Liu, X.F., J. Deng, Y.Y. Liang, Q.F. Wang, G.J. Li, Y. Ma, L.J. Xu, Y.H. Lu. 2020. Geochemical, mineralogical and chronological studies of mafic intermediate dykes in the Jiaodong Peninsula: implications for Late Mesozoic mantle source metasomatism and lithospheric thinning of the eastern North China Craton. International Geology Review 62: 2239–2260.

    Google Scholar 

  • Liu, D., Z. Zhidan, Z. Di-Cheng, N. Yaoling, D.J. Depaolo, T., M.H., M. Xuanxue, D. Guochen, S. Zhou, G.S. Chen, C.Z. Zhao, and J.L. Liu. 2014. Postcollisional potassic and ultrapotassic rocks in southern Tibet: Mantle and crustal origins in response to India–Asia collision and convergence: Geochim. Cosmochim. Acta 143: 207–231.

    Google Scholar 

  • Liu, J., Q.K. **a, E. Deloule, J. Ingrin, H. Chen, and M. Feng. 2015. Water content and oxygen isotopic composition of alkali basalts from the taihang mountains, china: Recycled oceanic components in the mantle source. Journal of Petrology 56: 681–702.

    Article  Google Scholar 

  • Liu, P.H., F.L. Liu, C.H. Liu, F. Wang, J.H. Liu, H. Yang, J. Cai, and J.R. Shi. 2013. Petrogenesis, P-T-t path, and tectonic significance of high-pressure mafic granulites from the Jiaobei terrane, North China Craton. Precambrian Research 233: 237–258.

    Article  Google Scholar 

  • Liu, S., R. Hu, S. Gao, C. Feng, B. Yu, G. Feng, Y. Qi, T. Wang, and I.M. Coulson. 2009. Petrogenesis of Late Mesozoic mafic dykes in the Jiaodong Peninsula, eastern North China Craton and implications for the foundering of lower crust: Lithos 113, 621–639.

    Google Scholar 

  • Liu, S., R.Z. Hu, S. Gao, C.X. Feng, L. Qi, H. Zhong, T. **ao, Y.Q. Qi, T. Wang, and I.M. Coulson. 2008. Zircon U-Pb geochronology and major, trace elemental and Sr–Nd–Pb isotopic geochemistry of mafic dykes in western Shandong Province, east China: constrains on their petrogenesis and geodynamic significance. Chemical Geology 38: 329–345.

    Article  Google Scholar 

  • Liu, S.C., Q.K. **a, S.H. Choi, E. Deloule, P. Li, and J. Liu. 2016. Continuous supply of recycled Pacific oceanic materials in the source of Cenozoic basalts in SE China: the Zhejiang case. Contributions to Mineralogy and Petrology 171: 100.

    Article  Google Scholar 

  • Liu, X.F., Q.F. Wang, Q.Z. Zhang, S.J. Yang, Y.U. Liang, Y. Zhang, Y. Li, and T. Guan. 2017. Genesis of the Permian karstic **guo bauxite deposit, western Guangxi China. Mineralium Deposita 7: 1–18.

    Google Scholar 

  • Liu, Y.S., S. Gao, Z.C. Hu, C.G. Gao, K.Q. Zong, and D.B. Wang. 2010. Continental and oceanic crust recycling-induced meltperidotite interactions in the Trans-North China orogen: U-Pb dating, hf isotopes and trace elements in zircons from mantle xenoliths. Journal of Petrology 51: 537–571.

    Article  Google Scholar 

  • Liu, Y.S., S. Gao, S.Y. **, S.H. Hu, M. Sun, and Z.B. Zhao. 2001. Geochemistry of lower crustal xenoliths from Neogene Hannuoba basalt, North China Craton: Implications for petrogenesis and lower crustal composition. Geochimica et Cosmochimica Acta 65: 2589–2604.

    Article  Google Scholar 

  • Liu, Y.S., S. Gao, C.A. Lee, S.H. Hu, X.M. Liu, and H.L. Yuan. 2005. Melt-peridotite interactions: links between garnet pyroxenite and high-Mg# signature of continental crust. Earth and Planetary Science Letters 234: 39–57.

    Article  Google Scholar 

  • Lloyd, F.E. 1981. Upper-mantle metasomatism beneath a continental rift: clinopyroxenes in alkaline mafic lavas and nodules from South-West Uganda. Mineralogical Magazine 44: 315–323.

    Article  Google Scholar 

  • Long, X., S.A. Wilde, Q. Wang, C. Yuan, X.C. Wang, J. Li, Z.Q. Jiang, and W. Dan. 2015. Partial melting of thickened continental crust in central Tibet: Evidence from geochemistry and geochronology of Eocene adakitic rhyolites in the northern Qiangtang Terrane. Earth and Planetary Science Letters 414: 30–44.

    Article  Google Scholar 

  • Ma, L., S.Y. Jiang, and A. Hofman. 2014. Lithospheric and asthenospheric sources of lamprophyres in the Jiaodong Peninsula: A consequence of rapid lithospheric thinning beneath the North China Craton? Geochimica et Cosmochimica Acta 124: 250–271.

    Article  Google Scholar 

  • Ma, L., S.Y. Jiang, A.W. Hofman, Y.G. Xu, B.Z. Dai, and M.L. Hou. 2016a. Rapid lithospheric thinning of the North China Craton: New evidence from cretaceous mafic dykes in the Jiaodong Peninsula. Chemical Geology 432: 1–15.

    Article  Google Scholar 

  • Ma, L., S.Y. Jiang, B.Z. Dai, Y.H. Jiang, M.L. Hou, W. Pu, and B. Xu. 2013. Multiple sources for the origin of Late Jurassic Linglong adakitic granite in the Shandong Peninsula, eastern China: zircon U-Pb geochronological, geochemical and Sr–Nd–Hf isotopic evidence. Lithos 162: 251–263.

    Article  Google Scholar 

  • Ma, Q., Y.G. Xu, J.P. Zheng, W.L. Griffin, L.B. Hong, and L. Ma. 2016b. Coexisting early Cretaceous high-Mg andesites and adakitic rocks in the North China Craton: The role of water in intraplate magmatism and cratonic destruction. Journal of Petrology 57: 1279–1308.

    Article  Google Scholar 

  • Mao, J.W., F. Pirajno, and N. Cook. 2011. Mesozoic metallogeny in East China and corresponding geodynamic settings—An introduction to the special issue: Ore Geology Reviews 43, 1–7.

    Google Scholar 

  • Martin, H., R.H. Smithies, R. Rapp, J.F. Moyen, and D. Champion. 2005. An overview of adakite, tonalite-trondhjemite-granodiorite (TTG), and sanukitoid: relationships and some implications for crustal evolution. Lithos 79: 1–24.

    Article  Google Scholar 

  • Mckenzie, D.P., and M.J. Bickle. 1988. The volume and composition of melt generated by extension of the lithosphere. Journal of Petrology 29: 625–679.

    Article  Google Scholar 

  • Menzies, M.A., Y.G. Xu, H.F. Zhang, and W.M. Fan. 2007. Integration of geology, geophysics and geochemistry: A key to understanding the North China Craton: Lithos 96, 1–21.

    Google Scholar 

  • Monecke, T., P. Dulski, and U. Kempe. 2007. Origin of convex tetrads in rare earth element patterns of hydrothermally altered siliceous igneous rocks from the Zinnwald Sn–W deposit Germany. Geochimica et Cosmochimica Acta 71 (2): 335–353.

    Article  Google Scholar 

  • Morimoto, N., J. Fabries, A.K. Ferguson, I.V. Ginzburg, M. Ross, F.A. Seifert, J. Zussman, K. Aoki, and G. Gottardi. 1988. Nomenclature of pyroxenes. American Mineralogist 73: 1123–1133.

    Google Scholar 

  • Müntener, O., P.B. Keleman, and T.L. Grove. 2001. The role of H2O during crystallization of primitive arc magmas under the uppermost mantle conditions and genesis of igneous pyroxenites: An experimental study. Contributions to Mineralogy and Petrology 141: 643–658.

    Article  Google Scholar 

  • Nakamura, E., and I. Kushiro. 1998. Trace element diffusion in jadeite and diopside melts at high pressures and its geochemical implication. Geochimica et Cosmochimica Acta 62: 3151–3160.

    Article  Google Scholar 

  • Pang, C.J., X.C. Wang, Y.G. Xu, S.N. Wen, Y.S. Kuang, and L.B. Hong. 2015. Pyroxenite-derived Early Cretaceous lavas in the Liaodong Peninsula: Implication for metasomatism and thinning of the lithospheric mantle beneath North China Craton. Lithos 227: 77–93.

    Article  Google Scholar 

  • Perugini, D., C.P. De Campos, D.B. Dingwell, M. Petrelli, and G. Poli. 2008. Trace element mobility during magma mixing: preliminary experimental results. Chemical Geology 256: 146–157.

    Article  Google Scholar 

  • Pilet, S., J. Hernandez, and B. Villemant. 2002. Evidence for high silicic melt circulation and metasomatic events in the mantle beneath alkaline provinces: the Na-Fe-augitic green-core pyroxenes in the tertiary alkali basalts of the Cantal massif (French Massif Central). Mineralogy and Petrology 76: 39–62.

    Article  Google Scholar 

  • Plank, T., K.A. Kelley, M.M. Zimmer, E.H. Hauri, and P.J. Wallace. 2013. Why do mafic arc magmas contain 4 wt% water on average? Earth Planet. Science Letters 364: 168–179.

    Google Scholar 

  • Plank, T., and C.H. Langmuir. 1998. The chemical composition of subducting sediment and its consequences for the crust and mantle. Chemical Geology 145: 325–394.

    Article  Google Scholar 

  • Profeta, L., M.N. Ducea, J.B. Chapman, S.R. Paterson, S.M.H. Gonzales, M. Kirsch, L. Petrescu, and P.G. DeCelles. 2015. Quantifying crustal thickness over time in magmatic arcs. Scientifc Reports 5: 17786.

    Article  Google Scholar 

  • Putirka, K., H. Mikaelian, F. Ryerson, and H. Shaw. 2003. New clinopyroxene-liquid thermobarometers for mafic, evolved and volatile-bearing lava compositions, with applications to lavas from Tibet and the Snake River Plain. American Mineralogist 88: 1542–1554.

    Article  Google Scholar 

  • Rapp, R.P., N. Shimizu, and M.D. Norman. 2003. Growth of early continental crust by partial melting of eclogite. Nature 425: 605–609.

    Article  Google Scholar 

  • Richards, J.P., and R. Kerrich. 2007. Special paper: Adakite-like rocks: their diverse origins and questionable role in metallogenesis. Economic Geology 102: 537–576.

    Article  Google Scholar 

  • Rivalenti, G., R. Vannucci, E. Rampone, M. Mazzucchelli, G.B. Piccardo, E.M. Piccirillo, and L. Ottolini. 1996. Peridotite clinopyroxene chemistry reflects mantle processes rather than continental versus oceanic settings. Earth and Planetary Science Letters 139: 423–437.

    Article  Google Scholar 

  • Rock, N.M. 1987. The nature and origin of lamprophyres: an overview. Geological Society, London, Special Publications 30: 191–226.

    Article  Google Scholar 

  • Rudnick, R.L., and S. Gao. 2003. Composition of the continental crust. Treatise on geochemistry 3: 659.

    Google Scholar 

  • Skjerlie, K.P., and A.E. Patino Douce. 2002. The fluid-absent partial melting of a zoisite-bearing quartz eclogite from 10 to 32 GPa; Implications for melting in thickened continental crust and for subduction-zone processes. Journal of Petrology 43: 291–314.

    Article  Google Scholar 

  • Smith, M.E., E.J. Cassel, B.R. Jicha, B.S. Singer, and A.S. Canada. 2017. Hinterland drainage closure and lake formation in response to middle Eocene Farallon slab removal Nevada, USA. Earth and Planetary Science Letters 479: 156–169.

    Article  Google Scholar 

  • Spandler, C., and C. Pirard. 2013. Element recycling from subducting slabs to arc crust: A review. Lithos 170–171: 208–223.

    Article  Google Scholar 

  • Streck, M.J., W.P. Leeman, and J. Chesley. 2007. High-magnesian andesite from Mount Shasta: A product of magma mixing and contamination, not a primitive mantle melt. Geology 35: 351–354.

    Article  Google Scholar 

  • Sun, W.D., X. Ding, Y.H. Hu, and X.H. Li. 2007. The golden transformation of the Cretaceous plate subduction in the west Pacific. Earth and Planetary Science Letters 262: 533–542.

    Article  Google Scholar 

  • Sun, J.G., S.X. Hu, H.F. Ling, and Y. Ye. 2000. Study on element geochemistry and diagenesis of high-potassium-potassium dyke rocks in two types of gold ore fields in northwestern Jiaozhou. Geochimica 29: 143–152.

    Google Scholar 

  • Tahmasbi, Z., M. Kiani, and A.A. Khalaji. 2016. Petrology and geochemistry of diabasic dikes and andesitic-basaltic lavas in Noorabad-Harsin ophiolite, SE of Kermanshah Iran. Journal of Earth Science 27: 935–944.

    Article  Google Scholar 

  • Tan, J., J.H. Wei, Y.G. Li, W.J. Tan, G. Dazhao, and C. Yang. 2007. Geochemical Characteristics of Late Mesozoic Dikes, Jiaodong Peninsula, North China Craton: Petrogenesis and Geodynamic Setting: Int. Geology Reviews 49: 931–946.

    Article  Google Scholar 

  • Tan, J., J.H. Wei, Y.J. Li, L.B. Fu, H.M. Li, W.J. Shi, and N. Tian. 2015. Origin and geodynamic significance of fault-hosted massive sulfide gold deposits from the Guocheng-Liaoshang metallogenic belt, eastern Jiaodong Peninsula: Rb–Sr dating, and H-O–S–Pb isotopic constraints. Ore Geology Reviews 65: 687–700.

    Article  Google Scholar 

  • Tan, J., J.H. Wei, W.J. Shi, B. Feng, Y.J. Li, and L.B. Fu. 2013. Origin of dyke swarms by mixing of metasomatized subcontinental lithospheric mantle-derived and lower crustal magmas in the Guocheng fault belt, Jiaodong Peninsula, North China Craton. Geological Journal 48: 516–530.

    Article  Google Scholar 

  • Tang, H.Y., J.P. Zheng, and C.M. Yu. 2008. Age and composition of the Rushan intrusive complex in the northern Sulu orogen, eastern China: petrogenesis and lithospheric mantle evolution: Geol. Mag. 1: 1–17.

    Google Scholar 

  • Tang, L., and M. Santosh. 2018. Neoarchean-Paleoproterozoic terrane assembly and Wilson cycle in the North China Craton: an overview from the central segment of the Trans-North China Orogen. Earth-Science Reviews 182: 1–27.

    Article  Google Scholar 

  • Tatsumi, Y. 2000. Continental crust formation by crustal delamination in subduction zones and complementary accumulation of the enriched mantle I component in the mantle. Geochemistry, Geophysics, Geosystems 1: 2000G–2094G.

    Article  Google Scholar 

  • Thirlwall, M.F., T.E. Smith, A.M. Graham, N. Theodorou, P. Hollings, J.P. Davidson, and R.J. Arculus. 1994. High field strength element anomalies in arc lavas: Source or process?. Journal of Petrology 35: 819–838.

    Google Scholar 

  • Tsuchiya, N., S. Suzuki, J.I. Kimura, and H. Kagami. 2005. Evidence for slab melt/mantle reaction: petrogenesis of Early Cretaceous and Eocene high-Mg andesites from the Kitakami Mountains, Japan. Lithos 79: 179–206.

    Article  Google Scholar 

  • Turner, S., N. Arnaud, J. Liu, N. Rogers, C. Hawkesworth, N. Harris, S. Kelley, P. Van Calsteren, and W. Deng. 1996. Post-collision, shoshonitic volcanism on the Tibetan Plateau: Implications for convective thinning of the lithosphere and the source of ocean island basalts. Journal of Petrology 37: 45–71.

    Article  Google Scholar 

  • Wade, J.A., T. Plank, E.H. Hauri, K.A. Kelley, K. Roggensack, and M. Zimmer. 2008. Prediction of magmatic water contents via measurement of H2O in clinopyroxene phenocrysts. Geology 36: 799–802.

    Article  Google Scholar 

  • Wallace, P.J. 2005. Volatiles in subduction zone magmas: concentrations and fluxes based on melt inclusion and volcanic gas data. Journal of Volcanology and Geothermal Research 140: 217–240.

    Article  Google Scholar 

  • Wang, C.M., Y. Lu, X. He, M. Jessell, Q. Wang, and J. Zhang. 2016a. The Paleoproterozoic diorite dykes in the southern margin of the North China Craton: Insight into rift-related magmatism. Precambrian Research 277: 26–46.

    Article  Google Scholar 

  • Wang, H., S. Wang, Z. Xu, B. Fu, Z. Zhao, Z. Li, and J. Li. 2018. Geochemical and Sr–Nd–Pb–Hf–O isotopic compositions of the Tiezhai complex: Implications for lithosphere destruction of the North China Craton. Gondwana Research 61: 203–221.

    Article  Google Scholar 

  • Wang, H., Z. Xu, X. Lu, B. Fu, J. Lu, X. Yang, and Z. Zhao. 2016b. Two-types of Early Cretaceous adakitic porphyries from the Luxi terrane, eastern North China Block: Melting of subducted Paleo-Pacificslab and delaminated newly underplated lower crust. Lithos 240: 140–154.

    Article  Google Scholar 

  • Wang, Q.F., J. Deng, X.F. Liu, R. Zhao, and S.H. Cai. 2016c. 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.

    Article  Google Scholar 

  • Wang, Z.L., L.Q. Yang, J. Deng, M. Santosh, H.F. Zhang, Y. Liu, R.H. Li, T. Huang, X.L. Zheng, and H. Zhao. 2014. Gold-hosting high Ba-Sr granitoids in the **ncheng gold deposit, Jiaodong Peninsula, East China: Petrogenesis and tectonic setting. Journal of Asian Earth Sciences 95: 274–299.

    Article  Google Scholar 

  • Wei, H.H., J.L. Liu, and Q.R. Meng. 2010. Structural and sedimentary evolution of the southern Songliao basin, northeast China and implications for hydrocarbon prospectivity. AAPG Bulletin 94: 533–566.

    Article  Google Scholar 

  • Woodhead, J.D., J.M. Hergt, J.P. Davidson, and S.M. Eggins. 2001. Hafnium isotope evidence for ‘conservative’ elemen mobility during subduction zone processes: Earth Planet. Science Letters 192: 331–346.

    Google Scholar 

  • Woods, S.C., S. Mackwell, and D. Dyar. 2000. Hydrogen in diopside: diffusion profles. American Mineralogist 85: 480–487.

    Article  Google Scholar 

  • Woolley, A.R., S.C. Bergman, A.D. Edgar, M.J. Le, Bas, R.H. Mitchell, N.M.S. Rock, and B.H. Scott Smith. 1996.Classification of lamprophyres, lamproites, kimberlites, and the kalsilitic, melilitic, and leucitic rocks: Can. Mineral 34: 175–186.

    Google Scholar 

  • Workman, R.K., and S.R. Hart. 2005. Major and trace element composition of the depleted MORB mantle (DMM). Earth and Planetary Science Letters 231: 53–72.

    Article  Google Scholar 

  • Wu, F.Y., J.Q. Lin, S.A. Wilde, X.O. Zhang, and J.H. Yang. 2005. Nature and significance of the early cretaceous giant igneous event in Eastern China. Earth and Planetary Science Letters 233: 103–119.

    Article  Google Scholar 

  • Wu, F.Y., Y.G. Xu, S. Gao, and J.P. Zheng. 2008. Lithospheric thinning and destruction of North China Craton: Acta Petrol. Sin. 24: 1145–1174. (in Chinese with English abstract).

    Google Scholar 

  • Wu, F.Y., Y.H. Yang, L.W. **e, J.H. Yang, and P. Xu. 2006. Hf isotopic compositions of the standard zircons and baddeleyites used in U-Pb geochronology: Chem. Geology 234: 105–126.

    Google Scholar 

  • **a, Q.K., J. Liu, S.C. Liu, I. Kovács, M. Feng, and L. Dang. 2013. High water content in mesozoic primitive basalts of the North China Craton and implications on the destruction of cratonic mantle lithosphere. Earth Planetary Science Letters 361: 85–97.

    Article  Google Scholar 

  • **a, Q.K., Y.M. Sheng, X.Z. Yang, and H.M. Yu. 2005. Heterogeneity of water in garnets from UHP eclogites, eastern Dabieshan, China. Chemical Geology 224: 237–246.

    Article  Google Scholar 

  • **a, Q.K., X.Z. Yang, E. Deloule, Y.M. Sheng, and Y.T. Hao. 2006. Water in the lower crustal granulite xenoliths from Nushan, eastern China. Journal of Geophysical Research: Solid Earth 111: B11202.

    Article  Google Scholar 

  • **e, S.W., Y.B. Wu, Z.M. Zhang, Y.C. Qin, X.C. Liu, H. Wang, Z.W. Qin, Q. Liu, and S.H. Yang. 2012. U-Pb ages and trace elements of detrital zircons from early cretaceous sedimentary rocks in the Jiaolai basin, north margin of the sulu UHP terrane: Provenances and tectonic implications. Lithos 154: 346–360.

    Google Scholar 

  • Xu, H.J., C.Q. Ma, Y.R. Song, J.F. Zhang, and K. Ye. 2012a. Early Cretaceous intermediate-mafic dykes in the Dabie orogen, eastern China: Petrogenesis and implications for crust–mantle interaction. Lithos 154: 83–99.

    Article  Google Scholar 

  • Xu, J.F., R. Shinjo, M.J. Defant, Q. Wang, and R.P. Rapp. 2002. Origin of Mesozoic adakitic intrusive rocks in the Ningzhen area of east China: PARTIAL melting of delaminated lower continental crust? Geology 30: 1111–1114.

    Article  Google Scholar 

  • Xu, R., Y.S. Liu, X.R. Tong, Z.C. Hu, K.Q. Zong, and S. Gao. 2013a. In-situ trace elements and Li and Sr isotopes in peridotite xenoliths from Kuandian, North China Craton: Insights into Pacific slab subduction-related mantle modification. Chemical Geology 354: 107–123.

    Article  Google Scholar 

  • Xu, W.L., Q.J. Zhou, F.P. Pei, D.B. Yang, S. Gao, Q.L. Li, and Y.H. Yang. 2013b. Destruction of the North China Craton: Delamination or thermal/chemical erosion? Mineral chemistry and oxygen isotope insights from websterite xenoliths. Gondwana Research 23: 119–129.

    Article  Google Scholar 

  • Xu, Y.G. 2001. Thermo-tectonic destruction of the Archaean lithospheric keel beneath the Sino-Korean Craton in China: Evidence, timing and mechanism. Physics and Chemistry of the Earth, Part A: Solid Earth and Geodesy 26: 747–757.

    Article  Google Scholar 

  • Xu, Y.G. 2014. Recycled oceanic crust in the source of 90–40 Ma basalts in North and Northeast China: Evidence, provenance and significance: Geochim. Cosmochim. Acta 143: 49–67.

    Article  Google Scholar 

  • Xu, Y.G., X.L. Huang, J.L. Ma, Y.B. Wang, Y. Iizuka, J.F. Xu, Q. Wang, and X.Y. Wu. 2004. Crust–mantle interaction during the tectono-thermal reactivation of the North China Craton: constraints from SHRIMP zircon U-Pb chronology and geochemistry of Mesozoic plutons from Western Shandong: Contrib. Mineralogy and Petrology 147: 750–767.

    Article  Google Scholar 

  • Xu, Y.G., X.L. Huang, M.A. Menzies, and G.R. Wang. 2003. Highly magnesian olivines and greencore clinopyroxenes in ultrapotassic lavas from western Yunnan, China: evidence for a complex hybrid origin. European Journal of Mineralogy 15: 965–975.

    Article  Google Scholar 

  • Xu, Y.G., J.L. Ma, F.A. Frey, M.D. Feigenson, and J.F. Liu. 2005. Role of lithosphere–asthenosphere interaction in the genesis of Quaternary alkali and tholeiitic basalts from Datong, western North China Craton: Chem. Geol. 224: 247–271.

    Google Scholar 

  • Xu, Z., Y.F. Zheng, Z.F. Zhao, and B. Gong. 2014. The hydrous properties of subcontinental lithospheric mantle: Constraints from water content and hydrogen isotope composition of phenocrysts from Cenozoic continental basalt in North China. Geochimica et Cosmochimica Acta 143: 285–302.

    Article  Google Scholar 

  • Yan, Q., and X. Shi. 2016. Geochronology of the Laoshan granitic complex in eastern China and its tectonic implications. Geological Journal 51: 137–148.

    Article  Google Scholar 

  • Yan, Q.S., I. Metcalfe, X.F. Shi, P.Y. Zhang, and F.C. Li. 2019. Early Cretaceous granitic rocks from the southern Jiaodong Peninsula, eastern China: implications for lithospheric extension. International Geology Review 67: 821–838.

    Article  Google Scholar 

  • Yang, D.B., W.L. Xu, G.C. Zhao, T.F. Huo, J.P. Shi, and H.T. Yang. 2016a. Tectonic implications of Early Cretaceous low-Mg adakitic rocks generated by partial melting of thickened lower continental crust at the southern margin of the central North China Craton. Gondwana Research 38: 220–237.

    Article  Google Scholar 

  • Yang, J.H., S.L. Chung, M.G. Zhai, and X.H. Zhou. 2004. Geochemical and Sr–Nd–Pb isotopic compositions of mafic dykes from the Jiaodong Peninsula, China: evidence for vein-plus-peridotite melting in the lithospheric mantle. Lithos 73: 145–160.

    Article  Google Scholar 

  • Yang, J.H., J.F. Sun, F. Chen, S.A. Wilde, and F.Y. Wu. 2007a. Sources and petrogenesis of late Triassic dolerite dikes in the Liaodong Peninsula: Implications for post-collisional lithosphere thinning of the eastern North China Craton. Journal of Petrology 48: 1973–1997.

    Article  Google Scholar 

  • Yang, J.H., J.F. Sun, J.H. Zhang, and S.A. Wilde. 2012a. Petrogenesis of Late Triassic intrusive rocks in the northern Liaodong Peninsula related to decratonization of the North China Craton: Zircon U-Pb age and Hf–O isotope evidence. Lithos 153: 108–128.

    Article  Google Scholar 

  • Yang, J.H., F.Y. Wu, S.L. Chung, S.A. Wilde, M. Chu, C.H. Lo, and B. Song. 2005. Petrogenesis of Early Cretaceous intrusions in the Sulu ultrahigh-pressure orogenic belt, east China and their relationship to lithospheric thinning: Chem. Geology 222: 200–231.

    Google Scholar 

  • Yang, J.H., M.F. Zhu, W. Liu, and M.G. Zhai. 2003. Geochemistry and petrogenesis of Guojialing granodiorites from the northwestern Jiaodong Peninsula, eastern China. Acta Petrologica Sinica 4 (19): 692–700. (in Chinese with English abstract).

    Google Scholar 

  • Yang, L.Q., J. Deng, L.N. Guo, Z.L. Wang, X.Z. Li, and J.L. Li. 2016b. Origin and evolution of ore fluid, and gold-deposition processes at the giant Taishang gold deposit, Jiaodong Peninsula, eastern China. Ore Geology Reviews 72: 585–602.

    Article  Google Scholar 

  • Yang, Q.Y., M. Santosh, J.F. Shen, and S.R. Li. 2014. Juvenile vs. recycled crust in NE China: Zircon U-Pb geochronology, Hf isotope and an integrated model for Mesozoic gold mineralization in the Jiaodong Peninsula. Gondwana Research 25: 1445–1468.

    Article  Google Scholar 

  • Yang, X.Z., E. Deloule, Q.K. **a, Q.C. Fan, and M. Feng. 2008. Water contrast between Precambrian and Phanerozoic continental lower crust in eastern China. Journal of Geophysical Research: Solid Earth 113: B8207.

    Article  Google Scholar 

  • Ye, K., B.L. Cong, and D.N. Ye. 2000. The possible subduction of continental material to depths greater than 200 km. Nature 407: 734–736.

    Article  Google Scholar 

  • Ying, J.F., H.F. Zhang, and Y.J. Tang. 2010. Lower crustal xenoliths from Junan, Shandong province and their bearing on the nature of the lower crust beneath the North China Craton. Lithos 119: 363–376.

    Article  Google Scholar 

  • Zeng, Y.C., J.L. Chen, J.F. Xu, M. Lei, and Q.W. **ong. 2017. Origin of Miocene Cu-bearing porphyries in the Zhunuo region of the southern Lhasa subterrane: Constraints from geochronology and geochemistry. Gondwana Research 41: 51–64.

    Article  Google Scholar 

  • Zeng, Y.C., J.L. Chen, J.F. Xu, B.D. Wang, and F. Huang. 2016. Sediment melting during subduction initiation: Geochronological and geochemical evidence from the Darutso high-Mg andesites within ophiolite melange, central Tibet. Geochemistry, Geophysics, Geosystems 17: 4859–4877.

    Article  Google Scholar 

  • Zeng, Y.C., J.F. Xu, J.L. Chen, B.D. Wang, Z.Q. Kang, and F. Huang. 2018. Geochronological and geochemical constraints on the origin of the Yunzhug ophiolite in the Shiquanhe–Yunzhug–Namu Tso ophiolite belt, Lhasa Terrane, Tibetan Plateau. Lithos 300: 250–260.

    Article  Google Scholar 

  • Zeng, Y.C., J.F. Xu, F. Huang, M.J. Li, and Q. Chen. 2019. Generation of the 105–100 Ma Dagze volcanic rocks in the north Lhasa Terrane by lower crustal melting at different temperature and depth: Implications for tectonic transition. Geological Society of America Bulletin, 10–1130.

    Google Scholar 

  • Zhai, M.G., and A.G. Bian. 2000. The Neoarchean Super-Continent cohere and Late Paleoproterozoic- Mesoproterozoic disintegration of the North China Craton. Science in China (Series D) 30 (S1): 129–137. (in Chinese with English abstract).

    Google Scholar 

  • Zhang, H. 2012. Destruction of ancient lower crust through magma underplating beneath Jiaodong Peninsula, North China Craton: U-Pb and Hf isotopic evidence from granulite xenoliths. Gondwana Research 21: 281–292.

    Article  Google Scholar 

  • Zhang, H.F., M. Sun, X.H. Zhou, W.M. Fan, M.G. Zhai, and J.F. Yin. 2002. Mesozoic lithosphere destruction beneath the North China Craton:evidence from major-, trace-element and Sr–Nd–Pb isotope studies of Fangcheng basalts. Contributions to Mineralogy and Petrology 144: 241–253.

    Article  Google Scholar 

  • Zhang, H.F., J.F. Ying, G. Shimoda, N.T. Kita, Y. Morishita, J.A. Shao, and Y.J. Tang. 2007. Importance of melt circulation and crust-mantle interaction in the lithospheric evolution beneath the North China Craton: Evidence from Mesozoic basalt-borne clinopyroxene xenocrysts and pyroxenite xenoliths. Lithos 96: 67–89.

    Article  Google Scholar 

  • Zhang, J., Z.F. Zhao, Y.F. Zheng, and M. Dai. 2010. Postcollisional magmatism: Geochemical constraints on the petrogenesis of mesozoic granitoids in the Sulu orogen, China. Lithos 119: 512–536.

    Article  Google Scholar 

  • Zhang, Y.Q., S.W. Dong, and W. Shi. 2003. Cretaceous deformation history of the Tan-Lu fault zone in Shandong province, eastern China. Tectonophysics 363: 243–258.

    Google Scholar 

  • Zhang, Y.Q., J.L. Li, T. Zhang, S.W. Dong, and Y.J. Yin. 2008. Cretaceous to Paleocene tectonosedimentary evolution of the Jiaolai basin and the Contiguous areas of the Shandong Peninsula (North China) and its geodynamic implications. Acta Geologica Sinica 82: 1229–1257.

    Google Scholar 

  • Zhang, Y.Y., C. Yuan, M. Sun, X.P. Long, Y.P. Wang, Y.D. Jiang, and Z.F. Lin. 2017. Arc magmatism associated with steep subduction: Insights from trace element and Sr–Nd–Hf–B isotope systematics. Journal of Geophysical Research: Solid Earth 122: 1816–1834.

    Google Scholar 

  • Zhao, R., Q. Wang, J. Deng, M. Santosh, X. Liu, and H. Cheng. 2018. Late Mesozoic magmatism and sedimentation in the Jiaodong Peninsula: New constraints on lithospheric thinning of the North China Craton. Lithos 322: 312–324.

    Article  Google Scholar 

  • Zhao, R., Q.F. Wang, X.F. Liu, W. Wang, and R.G. Pan. 2016. Architecture of the Sulu crustal suture between the North China Craton and Yangtze Craton: Constraints from Mesozoic granitoids. Lithos 266–267: 348–361.

    Article  Google Scholar 

  • Zhao, Z.F., Y.F. Zheng, R.X. Chen, Q.X. **a, and Y.B. Wu. 2007b. Element mobility in mafic and felsic ultrahigh-pressure metamorphic rocks during continental collision. Geochimica et Cosmochimica Acta 71: 5244–5266.

    Article  Google Scholar 

  • Zhao, Z.F., Y.F. Zheng, J. Zhang, L.Q. Dai, Q. Li, and X. Liu. 2012. Syn-exhumation magmatism during continental collision: evidence from alkaline intrusives of Triassic age in the Sulu orogen. Chemical Geology 328: 70–88.

    Article  Google Scholar 

  • Zheng, J.P., and F.X. Lu. 1999. Petrologic characteristics of kimberlite-borne mantle xenoliths from the Shandong and Liaoning Peninsula: Paleozoic lithosphere mantle and its heterogeneity. Acta Geologica Sinica 15 (1): 65–74.

    Google Scholar 

  • Zheng, J.P., W.L. Griffin, S.Y. O’Reilly, C.M. Yu, H.F. Zhang, N. Pearson, and M. Zhang. 2007. 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. Geochimica et Cosmochimica Acta 71: 5203–5225.

    Article  Google Scholar 

  • Zheng, J.P., M. Sun, F.X. Lu, and N. Pearson. 2003. Mesozoic lower crustal xenoliths and their significance in lithospheric evolution beneath the Sino-korean Craton. Tectonophysics 361: 37–60.

    Article  Google Scholar 

  • Zheng, J.P., M. Sun, M.F. Zhou, and P. Robinson. 2005. Trace elemental and PGE geochemical constraints of Mesozoic and Cenozoic peridotitic xenoliths on lithospheric evolution of the North China Craton. Geochimica et Cosmochimica Acta 69: 3401–3418.

    Article  Google Scholar 

  • Zheng, Y.F. 2012. Metamorphic chemical geodynamics in continental subduction zones. Chemical Geology 328: 5–48.

    Article  Google Scholar 

  • Zhou, X.H., M. Sun, G.H. Zhang, and S.H. Chen. 2002. Continental crust and lithospheric mantle interaction beneath North China: isotopic evidence from granulite xenoliths in Hannuoba, Sino-Korean craton. Lithos 62: 111–124.

    Article  Google Scholar 

  • Zhou, X.M., and W.X. Li. 2000. Origin of Late Mesozoic igneous rocks in Southeastern China: Implications for lithosphere subduction and underplating of mafic magmas. Tectonophysics 326: 269–287.

    Article  Google Scholar 

  • Zhu, D.C., Q. Wang, P.A. Cawood, Z.D. Zhao, and X.X. Mo. 2017a. Raising the Gangdese Mountains in southern Tibet. Journal of Geophysical Research: Solid Earth 122: 214–223.

    Article  Google Scholar 

  • Zhu, G., Y. Chen, D.X. Jiang, and S.Z. Lin. 2015. Rapid change from compression to extension in the North China Craton during the Early Cretaceous: evidence from the Yunmengshan metamorphic core complex. Tectonophysics 656: 91–110.

    Article  Google Scholar 

  • Zhu, R.X., L. Chen, F.Y. Wu, and J.L. Liu. 2011, Timing, scale and mechanism of the destruction of the North China Craton. Science China Earth Sciences 54: 789–797.

    Google Scholar 

  • Zhu, R.X., H.F. Zhang, G. Zhu, Q.R. Meng, H.R. Fan, J.H. Yang, F.Y. Wu, Z.Y. Zhang, and T.Y. Zheng. 2017b. Craton destruction and related resources. International Journal of Earth Sciences 106: 2233–2257.

    Article  Google Scholar 

  • Zindler, A., and S. Hart. 1986. Chemical geodynamics. Ann. ReEarth Pl. Science 14: 493–571.

    Article  Google Scholar 

  • Zou, D.Y., Y.S. Liu, Z.C. Hu, S. Gao, K.Q. Zong, R. Xu, L.X. Deng, D.T. He, and C.G. Gao. 2014. Pyroxenite and peridotite xenoliths from Hexigten, Inner Mongolia: insights into the Paleo-Asian ocean subduction-related melt/fluid-peridotite interaction. Geochimica et Cosmochimica Acta 140: 435–454.

    Article  Google Scholar 

  • Zou, S.H., D. Xu, T. Deng, Q.Y. Huang, D. Yu, Z. Zhao, and T. Ye. 2019. Geochemical variations of the Late Mesozoic granitoids in the southern margin of North China Craton: A possible link to the tectonic transformation from compression to extension. Gondwana Research 75: 118–133.

    Article  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Yayun Liang .

Rights and permissions

Reprints and permissions

Copyright information

© 2021 The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.

About this chapter

Check for updates. Verify currency and authenticity via CrossMark

Cite this chapter

Liang, Y. (2021). Micro-Geochemistry of Clinopyroxene of the Mafic Dykes in the Jiaodong Peninsula: Implications for Petrogenesis and Geodynamic. In: Mineral Micro-Geochemistry Constraints on Petrogenesis and Genesis of Gold Deposit. Springer, Singapore. https://doi.org/10.1007/978-981-16-1022-6_3

Download citation

Publish with us

Policies and ethics

Navigation