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Volume 36 Issue 6
Dec 2025
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Article Contents
Yue Gao, Laixi Tong, Zhao Liu, Chao Li, Jinhai Luo. Microstructures, Quartz Fabrics, Flow Vorticity Analyses and Zircon U-Pb Ages of the Tuerhongshate Ductile Shear Zone, Eastern Irtysh Tectonic Belt, Southern Chinese Altai Orogen, and Tectonic Implications. Journal of Earth Science, 2025, 36(6): 2411-2425. doi: 10.1007/s12583-025-0285-3
Citation: Yue Gao, Laixi Tong, Zhao Liu, Chao Li, Jinhai Luo. Microstructures, Quartz Fabrics, Flow Vorticity Analyses and Zircon U-Pb Ages of the Tuerhongshate Ductile Shear Zone, Eastern Irtysh Tectonic Belt, Southern Chinese Altai Orogen, and Tectonic Implications. Journal of Earth Science, 2025, 36(6): 2411-2425. doi: 10.1007/s12583-025-0285-3

Microstructures, Quartz Fabrics, Flow Vorticity Analyses and Zircon U-Pb Ages of the Tuerhongshate Ductile Shear Zone, Eastern Irtysh Tectonic Belt, Southern Chinese Altai Orogen, and Tectonic Implications

doi: 10.1007/s12583-025-0285-3
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  • Corresponding author: Laixi Tong, tonglx@nwu.edu.cn
  • Received Date: 10 Dec 2024
  • Accepted Date: 25 May 2025
  • Issue Publish Date: 30 Dec 2025
  • The Irtysh tectonic belt lies on the southern margin of the Chinese Altai Orogen. Several secondary shear zones with NW-SE strikes have developed in this tectonic belt, and the deformation processes are of great significance to understanding the tectonic regime of the Altai Orogen in the Late Paleozoic. The Tuerhongshate ductile shear zone is located in the eastern Irtysh tectonic belt with obvious deformed structures. The felsic rocks are strongly mylonitized, exhibiting S-C fabrics, asymmetric rotational porphyroclasts, and bookshelf structures of the plagioclases, indicating a sinistral shear sense. The deformation mechanisms, lattice preferred orientations (LPOs) of quartz, and opening angles of quartz c-axis suggest that the deformation temperatures range from 400 to 500 ℃, consistent with higher-greenschist to lower-amphibolite facies conditions. The calculated kinematic vorticity values (Wk) of the studied samples range from 0.53 to 0.89 and indicate general shear to simple shear, based on rotational rigid porphyroclast method and oblique grain-shaped/quartz c-axis fabric method. The U-Pb ages of magmatic zircons in felsic mylonites indicate that the sinistral shear occurred after 296.7 ± 3.0 Ma (Early Permian) in the Tuerhongshate shear zone and persisted for approximately 13 Ma. Combined with the tectonic setting and the observed sinistral strike-slip shear indicators in the mylonite zone, these features demonstrate that the Irtysh tectonic belt was in a post-orogenic and strike-slip environment following the closure of the Irtysh Ocean.

     

  • Electronic Supplementary Materials: Supplementary materials (Table S1) are available in the online version of this article at https://doi.org/10.1007/s12583-025-0285-3.
    Conflict of Interest
    The authors declare that they have no conflict of interest.
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  • Andersen, T., 2002. Correction of Common Lead in U-Pb Analyses that do not Report 204Pb. Chemical Geology, 192(1/2): 59–79. https://doi.org/10.1016/s0009-2541(02)00195-x
    Briggs, S. M., Yin, A., Manning, C. E., et al., 2007. Late Paleozoic Tectonic History of the Ertix Fault in the Chinese Altai and Its Implications for the Development of the Central Asian Orogenic System. Geological Society of America Bulletin, 119(7/8): 944–960. https://doi.org/10.1130/b26044.1
    Broussolle, A., Sun, M., Schulmann, K., et al., 2019. Are the Chinese Altai "Terranes" the Result of Juxtaposition of Different Crustal Levels during Late Devonian and Permian Orogenesis? Gondwana Research, 66: 183–206. https://doi.org/10.1016/j.gr.2018.11.003
    Charvet, J., Shu, L. S., Laurent-Charvet, S., 2007. Paleozoic Structural and Geodynamic Evolution of Eastern Tianshan (NW China): Welding of the Tarim and Junggar Plates. Episodes, 30(3): 162–186. https://doi.org/10.1007/s00254-007-0834-3
    Chen, L. H., Han, B. F., 2006. Geochronology, Geochemistry and Sr-Nd-Pb Isotopic Composition of Mafic Intrusive Rocks in Wuqiagou Area, North Xinjiang: Constraints for Mantle Sources and Deep Processes. Acta Petrologica Sinica, 22(5): 1201–1214 (in Chinese with English Abstract)
    Dong, Z. C., Zhao, G. C., Pan, F., et al., 2019. Petrogenesis of the Qinghe Post-Orogenic Pluton and Its Implications for the Late Paleozoic Tectonic Evolution of the Altai Orogenic Belt. Acta Petrologica Sinica, 35(4): 1033–1057 (in Chinese with English Abstract)
    Eby, G. N., 1990. The A-Type Granitoids: A Review of Their Occurrence and Chemical Characteristics and Speculations on Their Petrogenesis. Lithos, 26(1/2): 115–134. https://doi.org/10.1016/0024-4937(90)90043-z
    Eby, G. N., 1992. Chemical Subdivision of the A-Type Granitoids: Petrogenetic and Tectonic Implications. Geology, 20(7): 641–644. https://doi.org/10.1130/0091-7613(1992)0200641:csotat>2.3.co;2 doi: 10.1130/0091-7613(1992)0200641:csotat>2.3.co;2
    Forte, A. M., Bailey, C. M., 2007. Testing the Utility of the Porphyroclast Hyperbolic Distribution Method of Kinematic Vorticity Analysis. Journal of Structural Geology, 29(6): 983–1001. https://doi.org/10.1016/j.jsg.2007.01.006
    Fossen, H., Cavalcante, G. C. G., 2017. Shear Zones—A Review. Earth-Science Reviews, 171: 434–455. https://doi.org/10.1016/j.earscirev.2017.05.002
    Fry, N., 1979. Random Point Distributions and Strain Measurement in Rocks. Tectonophysics, 60(1/2): 89–105. https://doi.org/10.1016/0040-1951(79)90135-5
    Gao, F. P., Zhou, G., Lei, Y. X., et al., 2010. Early Permian Granite Age and Geochemical Characteristics in Shaerbulake of Xinjiang's Altay Area and Its Geological Significance. Geological Bulletin of China, 29(9): 1281–1293 (in Chinese with English Abstract)
    Gao, S. N., 2019. The Study of Structural Geology and Chronology in Maanqiao and Shaliangzi Ductile Shear Zone in Middle Shangdan Orogenic Belt: [Dissertation]. Northwest University, Xi'an. 1–79. (in Chinese with English Abstract)
    Gomez-Rivas, E., Butler, R. W. H., Healy, D., et al., 2020. From Hot to Cold—The Temperature Dependence on Rock Deformation Processes: An Introduction. Journal of Structural Geology, 132: 103977. https://doi.org/10.1016/j.jsg.2020.103977
    Han, B. F., Ji, J. Q., Song, B., et al., 2004. SHRIMP Zircon U-Pb Ages of Kalatongke No. 1 and Huangshandong Cu-Ni-Bearing Mafic-Ultramafic Complexes, North Xinjiang, and Geological Implications. Chinese Science Bulletin, 49(22): 2424–2429 (in Chinese)
    Han, B. F., Ji, J. Q., Song, B., et al., 2006. Late Paleozoic Vertical Growth of Continental Crust around the Junggar Basin, Xinjiang, China (Part Ⅰ): Timing of Post-Collisionai Plutonism. Acta Petrologica Sinica, 22(5): 1077–1086 (in Chinese with English Abstract)
    Hu, W. W., 2022. Structural and Geochronological Constraints on the Irtysh Shear Zone in Central Asia: Implications for the Geodynamics of the Arc-Arc Collision: [Dissertation]. Institute of Geochemistry of Guangzhou, University of Chinese Academy of Sciences, Guangzhou. 1–174 (in Chinese with English Abstract)
    Hu, W. W., Li, P. F., Yuan, C., et al., 2023. Structural and Geochronological Constraints on the Collision between the Chinese Altai and the West Junggar in Central Asia: Implication for Deformation Response and Geodynamic Evolution of Arc-Arc Collision in 4D. Tectonics, 42(9): e2023TC007770. https://doi.org/10.1029/2023tc007770
    Jessup, M. J., Law, R. D., Frassi, C., 2007. The Rigid Grain Net (RGN): An Alternative Method for Estimating Mean Kinematic Vorticity Number (Wm). Journal of Structural Geology, 29(3): 411–421. https://doi.org/10.1016/j.jsg.2006.11.003
    Jiang, Y. D., Schulmann, K., Sun, M., et al., 2019. Structural and Geochronological Constraints on Devonian Suprasubduction Tectonic Switching and Permian Collisional Dynamics in the Chinese Altai, Central Asia. Tectonics, 38(1): 253–280. https://doi.org/10.1029/2018tc005231
    Law, R. D., 2014. Deformation Thermometry Based on Quartz c-Axis Fabrics and Recrystallization Microstructures: A Review. Journal of Structural Geology, 66: 129–161. https://doi.org/10.1016/j.jsg.2014.05.023
    Law, R. D., Searle, M. P., Simpson, R. L., 2004. Strain, Deformation Temperatures and Vorticity of Flow at the Top of the Greater Himalayan Slab, Everest Massif, Tibet. Journal of the Geological Society, 161(2): 305–320. https://doi.org/10.1144/0016-764903-047
    Li, J. Y., 2004. Late Neoproterozoic and Paleozoic Tectonic Framework and Evolution of Eastern Xinjiang, NW China. Geological Review, 50(3): 304–322 (in Chinese with English Abstract)
    Li, P. F., Sun, M., Rosenbaum, G., et al., 2015a. Structural Evolution of the Irtysh Shear Zone (Northwestern China) and Implications for the Amalgamation of Arc Systems in the Central Asian Orogenic Belt. Journal of Structural Geology, 80: 142–156. https://doi.org/10.1016/j.jsg.2015.08.008
    Li, P. F., Yuan, C., Sun, M., et al., 2015b. Thermochronological Constraints on the Late Paleozoic Tectonic Evolution of the Southern Chinese Altai. Journal of Asian Earth Sciences, 113: 51–60. https://doi.org/10.1016/j.jseaes.2014.11.004
    Li, P. F., Sun, M., Rosenbaum, G., et al., 2016. Transpressional Deformation, Strain Partitioning and Fold Superimposition in the Southern Chinese Altai, Central Asian Orogenic Belt. Journal of Structural Geology, 87: 64–80. https://doi.org/10.1016/j.jsg.2016.04.006
    Li, P. F., Sun, M., Rosenbaum, G., et al., 2017. Late Paleozoic Closure of the Ob-Zaisan Ocean along the Irtysh Shear Zone (NW China): Implications for Arc Amalgamation and Oroclinal Bending in the Central Asian Orogenic Belt. Geological Society of America Bulletin, 129(5/6): 547–569. https://doi.org/10.1130/b31541.1
    Lin, W., Faure, M., Shi, Y. H., et al., 2009. Palaeozoic Tectonics of the South-Western Chinese Tianshan: New Insights from a Structural Study of the High-Pressure/Low-Temperature Metamorphic Belt. International Journal of Earth Sciences, 98(6): 1259–1274. https://doi.org/10.1007/s00531-008-0371-7
    Lin, X. W., Zhang, Y. F., Chen, G. C., et al., 2023. LA-ICP-MS U-Pb Geochronology, Geochemistry and Petrography of Akebulake Pluton in Southern Altay Orogenic Belt: An Example for Magma Mixing. Earth Science, 48(10): 3597–3612. https://doi.org/10.3799/dqkx.2021.215 (in Chinese with English Abstract)
    Liu, F., Wang, Z. Y., Lin, W., et al., 2013. Structure Deformation and Tectonic Significance of Erqis Fault Zone in the Southern Margin of Chinese Altay. Acta Petrologica Sinica, 29(5): 1811–1824 (in Chinese with English Abstract)
    Liu, X. J., Xu, J. F., Wang, S. Q., et al., 2009. Geochemistry and Dating of E-MORB Type Mafic Rocks from Dalabute Ophiolite in West Junggar, Xinjiang and Geological Implications. Acta Petrologica Sinica, 25(6): 1373–1389 (in Chinese with English Abstract)
    Liu, X. M., Gao, S., Diwu, C. R., et al., 2007. Simultaneous in-situ Determination of U-Pb Age and Trace Elements in Zircon by LA-ICP-MS in 20 μm Spot Size. Chinese Science Bulletin, (2): 228–235 (in Chinese)
    Ludwig, K. R., 2008. User's Manual for Isoplot 3.0: A Geochronological Toolkit for Microsoft Excel. Berkeley Geochronology Center Special Publication, No. 4. 1–77
    Oriolo, S., Wemmer, K., Oyhantçabal, P., et al., 2018. Geochronology of Shear Zones—A Review. Earth-Science Reviews, 185: 665–683. https://doi.org/10.1016/j.earscirev.2018.07.007
    Passchier, C. W., 1986. Flow in Natural Shear Zones—The Consequences of Spinning Flow Regimes. Earth and Planetary Science Letters, 77(1): 70–80. https://doi.org/10.1016/0012-821x(86)90133-0
    Passchier, C. W., 1987. Stable Positions of Rigid Objects in Non-Coaxial Flow—A Study in Vorticity Analysis. Journal of Structural Geology, 9(5/6): 679–690. https://doi.org/10.1016/0191-8141(87)90152-0
    Passchier, C. W., Simpson, C., 1986. Porphyroclast Systems as Kinematic Indicators. Journal of Structural Geology, 8: 831–843. https://doi.org/10.1016/0191-8141(86)90029-5
    Passchier, C. W., Trouw, R. A. J., 2005. Microtectonics. Springer Berlin, Heidelberg. https://doi.org/10.1007/3-540-29359-0
    Qu, G. S., Zhang, J. J., 1992. The Large Shear Arc-Shaped Thrust Systems and Their Strain Reconstruction in the Altay Mountains. Geoscience, 6(2): 188–200 (in Chinese with English Abstract)
    Qu, G. S., Zhang, J. J., 1994. Oblique Thrust Systems in the Altay Orogen, China. Journal of Southeast Asian Earth Sciences, 9(3): 277–287. https://doi.org/10.1016/0743-9547(94)90035-3
    Regional Geological Survey Team of Xinjiang Geological Bureau, 1978. Regional Geological Survey Report of the People's Republic of China (Fuyun Sheet). Geological Publishing House, Beijing (in Chinese)
    Sheir, F., Li, W., Zhang, L., et al., 2024. Structural Geology and Chronology of Shear Zones along the Shangdan Suture in Qinling Orogenic Belt, China: Implications for Late Mesozoic Intra-Continental Deformation of East Asia. Journal of Earth Science, 35(2): 376–393. https://doi.org/10.1007/s12583-022-1753-7
    Sun, G. H., Li, J. Y., Yang, T. N., et al., 2009. Zircon SHRIMP U-Pb Dating of Two Linear Granite Plutons in Southern Altay Mountains and Its Tectonic Implications. Geology in China, 36(5): 976–987 (in Chinese with English Abstract)
    Tong, L. X., Chen, Y. B., Xu, Y. G., et al., 2013. Zircon U-Pb Ages of the Ultrahigh-Temperature Metapelitic Granulite from the Altai Orogen, NW China, and Geological Implications. Acta Petrologica Sinica, 29(10): 3435–3445 (in Chinese with English Abstract)
    Tong, L. X., Xu, Y. G., Cawood, P. A., et al., 2014. Anticlockwise P-T Evolution at ~280 Ma Recorded from Ultrahigh-Temperature Metapelitic Granulite in the Chinese Altai Orogenic Belt, a Possible Link with the Tarim Mantle Plume? Journal of Asian Earth Sciences, 94: 1–11. https://doi.org/10.1016/j.jseaes.2014.07.043
    Tong, Y., Hong, D. W., Wang, T., et al., 2006a. TIMS U-Pb Zircon Ages of Fuyun Post-Orogenic Linear Granite Plutons on the Southern Margin of Altay Orogenic Belt and Their Implications. Acta Petrologica et Mineralogica, 25(2): 85–89 (in Chinese with English Abstract)
    Tong, Y., Wang, T., Hong, D. W., et al., 2006b. Pb Isotopic Composition of Granitoids from the Altay Orogen (China): Evidence for Mantle-Derived Origin and Continental Growth. Acta Geologica Sinica, 80(4): 517–528 (in Chinese with English Abstract)
    Tong, Y., Wang, T., Kovach, V. P., et al., 2006c. Age and Origin of the Takeshiken Postorogenic Alkali-Rich Intrusive Rocks in Southern Altai, near the Mongolian Border in China and Its Implications for Continental Growth. Acta Petrologica Sinica, 22(5): 1267–1278 (in Chinese with English Abstract)
    Tong, Y., Wang, T., Jahn, B. M., et al., 2014. Post-Accretionary Permian Granitoids in the Chinese Altai Orogen: Geochronology, Petrogenesis and Tectonic Implications. American Journal of Science, 314(1): 80–109. https://doi.org/10.2475/01.2014.03
    Tong, Y., Wang, T., Siebel, W., et al., 2012. Recognition of Early Carboniferous Alkaline Granite in the Southern Altai Orogen: Post-Orogenic Processes Constrained by U-Pb Zircon Ages, Nd Isotopes, and Geochemical Data. International Journal of Earth Sciences, 101(4): 937–950. https://doi.org/10.1007/s00531-011-0700-0
    Wallis, S. R., Platt, J. P., Knott, S. D., 1993. Recognition of Syn-Convergence Extension in Accretionary Wedges with Examples from the Calabrian Arc and the Eastern Alps. American Journal of Science, 293(5): 463–494. https://doi.org/10.2475/ajs.293.5.463
    Wallis, S., 1995. Vorticity Analysis and Recognition of Ductile Extension in the Sanbagawa Belt, SW Japan. Journal of Structural Geology, 17(8): 1077–1093. https://doi.org/10.1016/0191-8141(95)00005-x
    Wan, B., Xiao, W. J., Windley, B. F., et al., 2013. Permian Hornblende Gabbros in the Chinese Altai from a Subduction-Related Hydrous Parent Magma, Not from the Tarim Mantle Plume. Lithosphere, 5(3): 290–299. https://doi.org/10.1130/l261.1
    Wang, B., Chen, Y., Zhan, S., et al., 2007. Primary Carboniferous and Permian Paleomagnetic Results from the Yili Block (NW China) and Their Implications on the Geodynamic Evolution of Chinese Tianshan Belt. Earth and Planetary Science Letters, 263(3/4) : 288–308. https://doi.org/10.1016/j.epsl.2007.08.037
    Wang, T., Hong, D. W., Tong, Y., et al., 2005. Zircon U-Pb SHRIMP Age and Origin of Post-Orogenic Lamazhao Granite Pluton from Altai Orogen: Its Implications for Vertical Continental Growth. Acta Petrologica Sinica, 21(3): 640–650 (in Chinese with English Abstract)
    Wang, T., Huang, H., Song, P., et al., 2020. Studies of Crustal Growth and Deep Lithospheric Architecture and New Issues: Exemplified by the Central Asian Orogenic Belt (Northern Xinjiang). Earth Science, 45(7): 2326–2344. https://doi.org/10.3799/dqkx.2020.172 (in Chinese with English Abstract)
    Wei, C. J., Clarke, G., Tian, W., et al., 2007. Transition of Metamorphic Series from the Kyanite- to Andalusite-Types in the Altai Orogen, Xinjiang, China: Evidence from Petrography and Calculated KMnFMASH and KFMASH Phase Relations. Lithos, 96(3/4): 353–374. https://doi.org/10.1016/j.lithos.2006.11.004
    Windley, B. F., Alexeiev, D., Xiao, W. J., et al., 2007. Tectonic Models for Accretion of the Central Asian Orogenic Belt. Journal of the Geological Society, 164(1): 31–47. https://doi.org/10.1144/0016-76492006-022
    Windley, B. F., Kröner, A., Guo, J. H., et al., 2002. Neoproterozoic to Paleozoic Geology of the Altai Orogen, NW China: New Zircon Age Data and Tectonic Evolution. The Journal of Geology, 110(6): 719–737. https://doi.org/10.1086/342866
    Windley, B. F., Xiao, W. J., 2018. Ridge Subduction and Slab Windows in the Central Asian Orogenic Belt: Tectonic Implications for the Evolution of an Accretionary Orogen. Gondwana Research, 61: 73–87. https://doi.org/10.1016/j.gr.2018.05.003
    Wu, Y. B., Zheng, Y. F., 2004. Genesis of Zircon and Its Constraints on Interpretation of U-Pb Age. Chinese Science Bulletin, 49(16): 1589–1604 (in Chinese)
    Xiao, W. J., Windley, B. F., Yuan, C., et al., 2009. Paleozoic Multiple Subduction-Accretion Processes of the Southern Altaids. American Journal of Science, 309(3): 221–270. https://doi.org/10.2475/03.2009.02
    Xypolias, P., 2010. Vorticity Analysis in Shear Zones: A Review of Methods and Applications. Journal of Structural Geology, 32(12): 2072–2092. https://doi.org/10.1016/j.jsg.2010.08.009
    Yan, S. H., Chen, W., Wang, Y. T., et al., 2004. 40Ar/39Ar Dating and Its Significance of the Ertix Gold Metallogenic Beltin the Altay Orogen, Xinjiang. Acta Geologica Sinica, 78(4): 500–506 (in Chinese with English Abstract)
    Yang, G. X., Li, Y. J., Santosh, M., et al., 2013. Geochronology and Geochemistry of Basalts from the Karamay Ophiolitic Melange in West Junggar (NW China): Implications for Devonian-Carboniferous Intra-Oceanic Accretionary Tectonics of the Southern Altaids. Geological Society of America Bulletin, 125(3/4): 401–419. https://doi.org/10.1130/b30650.1
    Yang, G. X., Li, Y. J., Xiao, W. J., et al., 2015. OIB-Type Rocks within West Junggar Ophiolitic Mélanges: Evidence for the Accretion of Seamounts. Earth-Science Reviews, 150: 477–496. https://doi.org/10.1016/j.earscirev.2015.09.002
    Zhan, L. F., Cao, S. Y., Dong, Y. L., et al., 2023. Strain Localized Deformation Variation of a Small-Scale Ductile Shear Zone. Journal of Earth Science, 34(2): 409–430. https://doi.org/10.1007/s12583-022-1681-6
    Zhang, C. L., Santosh, M., Zou, H. B., et al., 2012. Revisiting the "Irtish Tectonic Belt": Implications for the Paleozoic Tectonic Evolution of the Altai Orogen. Journal of Asian Earth Sciences, 52: 117–133. https://doi.org/10.1016/j.jseaes.2012.02.016
    Zhang, C. L., Zou, H. B., Yao, C. Y., et al., 2014. Origin of Permian Gabbroic Intrusions in the Southern Margin of the Altai Orogenic Belt: A Possible Link to the Permian Tarim Mantle Plume? Lithos, 204: 112–124. https://doi.org/10.1016/j.lithos.2014.05.019
    Zhang, C. W., Liu, Y. C., Wei, X. G., 1992. Ductile Shear Zones and Nappe-Gledeng Structure in Altay, Xinjiang. Journal of Chengdu College of Geology, 9(1): 1–7 (in Chinese with English Abstract)
    Zhang, J. J., Zheng, Y. D., 1993. Thrust Strike-Slip Tectonic Model of Altay. Journal of Peking University (Nature Science Edition), 29(6): 745–753 (in Chinese with English Abstract)
    Zhang, J. J., Zheng, Y. D., 1997. Basic Principles and Applications of Kinematic Vorticity and Polar Mohr Diagram. Geological Science and Technology Information, 16(3): 33–39 (in Chinese with English Abstract)
    Zhang, J. J., Zheng, Y. D., 1995. Kinematic Vorticity, Polar Mohr Circle and Their Application in Quantitative Analysis of General Shear Zones. Journal of Geomechanics, 1(3): 55–64 (in Chinese with English Abstract)
    Zhang, Q., Li, X., 2021. The Application and Associated Problems of EBSD Technique in Fabric Analysis. Acta Petrologica Sinica, 37(4): 1000–1014 (in Chinese with English Abstract)
    Zhang, Q., Teyssier, C., 2013. Flow Vorticity in Zhangbaling Transpressional Attachment Zone, SE China. Journal of Structural Geology, 48: 72–84. https://doi.org/10.1016/j.jsg.2012.12.006
    Zhang, X. L., Zhou, G., Luo, S. B., et al., 2007. The Characteristics of Mayinebo Ductile Shear Zone and Its Tectonic and Kinematic Analysis. Xinjiang Geology, 25(1): 26–33 (in Chinese with English Abstract)
    Zhou, G., Zhang, Z. C., Luo, S. B., et al., 2007a. Confirmation of High Temperature Strongly Peraluminous Mayin'ebo Granites in the South Margin of Altay, Xinjiang: Age, Geochemistry and Tectonic Implications. Acta Petrologica Sinica, 23(8): 9–20 (in Chinese with English Abstract)
    Zhou, G., Zhang, Z. C., Wang, X., et al., 2007b. Zircon U-Pb SHRIMP and 40Ar-39Ar Dating of the Granitic Mylonites in the Mayinebo Fault Belt of North Xinjiang and Its Geological Significance. Acta Geologica Sinica, 81(3): 359–369 (in Chinese with English Abstract)
    Zhou, G., Zhang, Z. C., Wu, G. G., et al., 2009. Postorogenic Extension and Continental Growth of the Northeastern Margin of the Junggar: Evidences from Petrography and Geochemistry of the Hadansun Intrusive Complex. Acta Geologica Sinica, 49(22): 2424–2429 (in Chinese with English Abstract)
    Zhuang, Y. X., 1994. The Pressure-Temperature-Space Time (PTSt) Evolution of Metamorphism and Development Mechanism of the Thermal-Structure-Gneiss Domes in the Chinese Altaides. Acta Geologica Sinica, 68(1): 35–47 (in Chinese with English Abstract)
    Zhu, Z. X., Li, S. Z., Li, S. L., 2005. The Characteristics of Sedimentary System Continental Facies Volcano in Later Carboniferous Batamayi Group, Zhifang Region, East Junggar. Xinjiang Geology, 23(1): 14–18 (in Chinese with English Abstract)
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