The amalgamation of the supercontinent of North China Craton at the end of Neo-Archaean and its breakup during late Palaeoproterozoic and Meso-Proterozoic (original) (raw)

References

  1. Cheng, Y. Q., Zhang, S. G., Notes on the metamorphic series and metamorphic belts of various metamorphic epochs of China and related problems (in Chinese), Regional Geology of China, 1982, 2: 1.
    Google Scholar
  2. Zhai, M. G., Geochemical characteristics of a typical Archean geological terrain in China (in Chinese with English abstract), Bull. Northwest Univ., 1990, 1: 68.
    Google Scholar
  3. Zhao, Z. P. et al., Precambrian Crustal Evolution of Sino-Korean Paraplatform (in Chinese), Beijing: Science Press, 1993
    Google Scholar
  4. Shen, Q. H., Xu, H. F., Zhang, Z. Q. et al., Granulites of Early Precambrian in China (in Chinese), Beijing: Geologial Publishing House, 1992, 389–400.
    Google Scholar
  5. Passchier, C. M., Myers, J. S., Kroner, A., Field Geology of High-Grade Gneiss Terrains, New York: Springer-Verlag, 1990, 1150.
    Google Scholar
  6. Goodwin, A. M., Precambrian Geology, The Dynamic Evolution of the Continental Crust, New York: Academic Press, 1991, 661.
    Google Scholar
  7. Zhai M. G., Windley, B. F., Sills, J. D., Archaean gneisses, amphibolites, banded iron-formation from Anshan area of Liaoning, NE China: their geochemistry, metamorphism and petrogenesis, Precamb. Res., 1990, 46: 195.
    Article Google Scholar
  8. Qian X. L., Archaean cratonization in the northern China, collage of terrains and model of plate tectonic movement, Proceedings of 70 Anniversary of Founding of the Geological Society of China (in Chinese), Beijing: Science and Technology Press, 1992, 93–97.
    Google Scholar
  9. Shen, Q. H., Qian, X. L., Archean Rock Associations, Episodes and Tectonic Evolution of China (in Chinese with English abstract), Acta Geoscientia Sinica, 1995, 2: 113.
    Google Scholar
  10. Wu, J. S., Geng, Y. S., Shen, Q. H. et al., Archean Geology Characteristics and Tectonic Evolution of Sino-Korea Paleo-continent (in Chinese), Beijing: Geological Publishing House, 1998, 192–211.
    Google Scholar
  11. Zhai, M. G., Guo, J. H., Yan, Y. H. et al., The preliminary study and discovery of high pressure granulites in North China, Science in China, Ser. B, (in Chinese with English abstract), 1992, (12), 1350.
    Google Scholar
  12. Li, J. H., He, W. Y., Qian, X. L., Genetic mechanism and tectonic setting of Proterozoic mafic dyke swarm: its implication to palaeo-plate reconstruction, Geological Journal of Universities (in Chinese), 1997, 3(3): 2.
    Google Scholar
  13. Wang, R. M., Lai, X. Y., Dong, W. D. et al., Some evidence of the Late Archean collision zone in northernwest Hebei Province, Geological Evolution of the Granulite Terrain in the Northern part of the the North China Craton (in Chinese), Beijing: China Seismological Press, 1994, 7–20.
    Google Scholar
  14. Guo, J. H., Zhai, M. G., Li, J. H. et al., Nature of the Early Precambrian Sanggan Structure Zone in the North China Craton: Evidence from Rock Association, Acta Petrologica Sinica (in Chinese with English abstract), 1996, 12(2): 193.
    Google Scholar
  15. Zhang, F. Q., Liu, J. Z., Ouyang, Z. Y., Basement structure and its dynamic analysis of the North China Craton. Chinese Science Bulletin, 2000, in press.
  16. Zhai, M. G., The 1.8 Ga thermal event in the the North China Craton: a record of early upwelling mantle plumes, Crustal Evolution in Northeast Asian (eds. Lee, B. J., Lee, S. K., Kim, J. et al.) KIGMM, Taejon, 1992, 2–3.
    Google Scholar
  17. Li, J. H., Super Continent Cycling and Early Precambrian Tectonic Evolution, Earth Science Frontiers (in Chinese with English abstract), 1998, 5: 141–151.
    Google Scholar
  18. Zhao, G. C., Wilde, S. A., Cawood, P. A., Review of 2.1–1.8 Ga orogens and cratons in North America, Baltica, Siberia, Central Australia, Antarctica and North China: A pre-Rodinia supercontinent? Earth Science Reviews, 2000, in press.
  19. Bai, J., Huang, X. G., Dai, F. Y. et al., The Precambrian Evolution of China (in Chinese), Beijing: Geological Publishing House, 1996, 36–38.
    Google Scholar
  20. Liu, J. Z., Ouyang, Z. Y., Zhang, F. Q. et al., Upper mantle inhomogeneity of the North China Craton and its genesis: Nd isotopic evidence, Chinese Science Bulletin, 1998, 43(20): 2229.
    Google Scholar
  21. Guan, Z. N., An, Y. L., Wu, C. J., Magnetic interface inversion and deducing of deep structure of North China area, Corpus of Investment Geophysics and Geochemistry, Regional Geophysical Research of China (eds. Wang Maoji, Cheng Jiayin), Sixth Volume, Beijing Geological Publishing House, 1987, 80–101.
    Google Scholar
  22. Wu, C. H., Zhong, C. T., Early Proterozoic SW-NE collison model for the central part of the North China Craton: Implications for tectonic regime of the khondalite downward into lower crust in Jinmeng high-grade region. Progress in Precambrian Research (in Chinese with English abstract), 1998, 21(3): 28.
    Google Scholar
  23. Zhang, G. W., Bai, Y. B., Sun, Y. et al., Composition and evolution of the Archaean crust in central Henan, China, Precamb. Res., 1985, 27: 7.
    Article Google Scholar
  24. Yang, Z. D., Pan, X. S., Yang, Y. F., Tectonics and Minerals of Alashan Fault-Block and Adjacent Area (in Chinese), Beijing: Science Press, 1988, 46–80.
    Google Scholar
  25. Zhai, M. G., Two types of Archean meta-basalts and their geotectonic significance. Scientia Geologica Sinica (in Chinese with English abstract), 1991, 3: 222.
    Google Scholar
  26. Wan, Y. S., Geng, Y. S., Wu, J. S. et al., Geochemical characteristics of Precambrian basalts of the North China Craton, Corpus on Early Precambrian research of the North China Craton (ed. Chen, Y. Q.) (in Chinese), Beijing: Geological Publishing House, 1998, 39–59.
    Google Scholar
  27. Zhang, Z. Q., Shen, Q. H., Geng, Y. S. et al., Geochemistry and ages of Archaean metamorphic rocks in northwestern Hebei Province, China, and formation time of the paleocrust in the region, Acta Petrologica Sinica (in Chinese with English abstract), 1996, 12(2): 315.
    Google Scholar
  28. Lai, X. Y., Wang, R. M., Chen, Z. Z., Petrology and Geochemistry of high grade greenstone belt of the Zhangjiakou area, Hebei, China, Geological Evolution of the Granulite Terrain in Northern Part of the North China Craton (eds. Qian X. L., Wang, R. M.) (in Chinese), Beijing: China Seismological Press, 1994, 157–175.
    Google Scholar
  29. Sun, Y., Protolith recovery and tectonic environment discussion of Taihua high grade metamorphic belt, southwest part of North China terrain, Bull. Northwest Univ. (in Chinese with English abstract), 1985, 1: 70.
    Google Scholar
  30. Wang, R. M., Two types of Archean Grey Gneiss in North China and their Geological Significance, Acta Geologica Sinica (in Chinese with English abstract), 1994, 68(2): 119.
    Google Scholar
  31. Geng, Y. S., Archean granite pluton events of Qianan area, East Hebei Province and its evolution, Corpus on Early Precambrian research of the North China Craton (ed. Chen, Y. Q.) (in Chinese), Beijing: Geological Publishing House, 1998, 105–122.
    Google Scholar
  32. Zhang, Z. Q., On main growth epoch of early Precambrian crust of the North China Craton based on the Sm−Nd isotopic characteristics, Corpus on Early Precambrian research of the North China Craton (ed. Chen, Y. Q.) (in Chinese), Beijing: Geogical Publishing House, 1998, 133–136.
    Google Scholar
  33. Lu, S. N., Yang, C. L., Li, H. K. et al., Sm−Nd Isotopic information of the metamorphosed Precambrian basement of North China platform, Jour. Geol. & Min. Res. North China (in Chinese with English abstract), 1995, 10(2): 143.
    Google Scholar
  34. Hu, S. L., Guo, J. H., Dai, T. M. et al., Continuous Laser-probe40Ar/39Ar age dating on Garnet and Plagioclase: Constraint to metamorphism of high pressure basic granulite from Sanggan area, the North China Craton, Acta Petrologica Sinica (in Chinese with English abstract), 1999, 15(4): 518.
    Google Scholar
  35. Zhai, M. G., Guo, J. H., Li, Y. G. et al., Eclogite-high-pressure granulite belt in northern edge of the Archaean North China Craton, J. China Univ. Geosciences, 1999, 9(1): 6.
    Google Scholar
  36. Heman, I. M., Global mafic magmatism at 2.45 Ga remants of an ancient large igneous province? Geology, 1997, 25: 299.
    Article Google Scholar
  37. Williams, M. L., Hanmer, S., Snoeyenbos, D., Structural, petrologic, and tectoinc setting of high and very high pressure metamorphic rocks, Striding-Athabasca mylonite zone, northern Sakatchewan, First Workshop on UHP Metamorphism and Tectonics (Abstract), Stanford: Stanford University Press, 1994, A13–15.
    Google Scholar
  38. Moskovchenko, N. I., Ovchinnikova, G. V., Kastrykina, V. M., High-pressure granulites of East Siberia in terms of Archaean and Proterozoic evolution. Precamb. Res., 1993, 62: 473.
    Article Google Scholar
  39. Smolov, A. P., Beryozkin, V. I., Retrograded eclogites in the Olekma granite-greenstone region, Aldan shield, Siberia, Precamb. Res., 1993, 62: 419.
    Article Google Scholar
  40. Li, J. H., Qian, X. L., Hou, G. T. et al., New understanding of Luliang orogene, Acta Geoscientia Sinica, 2000, 25(1): 15.
    Google Scholar
  41. Guo, J. H., Zhai, M. G., Mylonite of Granulite facies in Xuwujia, Nei Monggol, Scientia Geologica Sinica (in Chinese with English abstract), 1992, 2: 190.
    Google Scholar
  42. Xu, R. H., Zhu, M., Chen, F. K. et al., A geochronological study of the Longquanguan ductile shear zone, Quaternary Research (in Chinese with English abstract), 1995, 4: 332.
    Google Scholar
  43. Zhang, J. S., Extension and Uplift of the Datong-Huaian Granulite terrain, Geological Review (in Chinese with English abstract), 1997, 43(5): 503.
    Google Scholar
  44. Paek, R. J., Jon, G. P., Stratigraphy, Geology of Korea (Institute of Geology, State Academy of Sciences, DPRK), Pyongyang: Foreign Languages Books Publishing House, 1996.
    Google Scholar
  45. Zhang, G. W., Yu, Z. P., Dong, Y. P. et al., On Precambrian framework and evolution of Qinling Belt, Acta Petrologica Sinica (in Chinese with English abstract), 2000, 1: 11.
    Google Scholar
  46. Zhao, T. P., Zhou, M. F., Jin, C. W. et al., Discussion on the age of the Xiong'er Group in the southern margin of the North China Craton, Geological Science (in Chinese with English abstract) (in press).
  47. HaaPala, I., Ramo, A., Petrogenesis of the Proterozoic rapakivi granites of Finland, Geol. Soc. America Spec. Paper, 1990, 246: 275–286.
    Google Scholar
  48. Nelson, B. K., DePaolo, D. J., Rapid production of continental crust 1.7–1.9 b.y. ago: Nd and Sr isotopic evidence from the basement of the North America midcontinent, Geol. Soc. America Bulletin, 1985, 103: 522.
    Google Scholar
  49. Windley, B. F., Proterozoic anorogenic magmatism and its orogenic connections, J. Geol. Soc. London, 1993, 150: 39.
    Article Google Scholar
  50. Greenberg, G. K., Anorogenic granite associations as products of progressive continental evolution, Geological Association of Canada, Spec. Paper, 1990, 38, 1.
    Google Scholar
  51. Wang, K. Y., Hao, J., Carwood, P. et al., High-pressure metamorphism in kyanite-bearing schists from the original Jingangku Formation of the Wutaishan, Proceedings of the 30th IGC: Precambrian Geology and Metamorphic Petrology, 1997, 17: 213.
    Google Scholar

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