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    Volume 49 Issue 8
    Aug.  2024
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    Liu Fangkai, Feng Qinglai, Zhao Tianyu, Wunnaporn Punyawai, Jongkonnee Khanmanee, 2024. Late Devonian Post-Collisional Magmatic Rocks in Northern Thailand: Implication for the Tethyan Evolution. Earth Science, 49(8): 2736-2750. doi: 10.3799/dqkx.2023.033
    Citation: Liu Fangkai, Feng Qinglai, Zhao Tianyu, Wunnaporn Punyawai, Jongkonnee Khanmanee, 2024. Late Devonian Post-Collisional Magmatic Rocks in Northern Thailand: Implication for the Tethyan Evolution. Earth Science, 49(8): 2736-2750. doi: 10.3799/dqkx.2023.033

    Late Devonian Post-Collisional Magmatic Rocks in Northern Thailand: Implication for the Tethyan Evolution

    doi: 10.3799/dqkx.2023.033
    • Received Date: 2023-03-01
      Available Online: 2024-08-27
    • Publish Date: 2024-08-25
    • The studies of the Tethys tectonic belt in Southeast Asia mainly focus on the evolution of the Paleo-Tethys in the Late Paleozoic, while the studies of the Proto-Tethys evolution immediately are pretty weakThe present study focuses on zircon U-Pb geochronology, geochemistry and zircon Lu-Hf isotopes of granites and hornblende gabbros from northern Thailand. These magmatic rocks yielded zircon U-Pb weighted mean age of 367-361 Ma.The geologic age is the Late Devonian. The northern Thailand granites are the high-K calc-alkaline A2 type granites, with the geochemical characteristics of relatively enriched LILE and relatively depleted HFSE, with obvious negative anomalies of Nb, Ta, Sr and Ti. The Hf isotopes have positive εHf(t) values (+5.43-+10.91) with TDM2 ages of 1 015.0-668.9 Ma, indicating a juvenile mafic lower crust source.The hornblende gabbros showhigh Al2O3、Zr and Nbcontents, but low contents of TiO2 and Ni, with the geochemical characteristics ofrelatively enriched LILE and relatively depleted HFSE, with the distinctly negative Nb and Ta anomalies, similar to the characteristics of island arc calc-alkaline basalts. Positive εHf(t) values (+1.24-+9.11) and high Mg# (50.0-64.8) indicate that it originates from the depleted mantle wedge. Based on the U-Pb age, Hf isotope and geochemical characteristics of the magmatic rocks in northern Thailand, it is believed that they were formed in the Late Devonian post-collisional extension-related tectonic setting, which can be compared with the corresponding the Proto-Tethys geological records in eastern Myanmar and southwestern Yunnan. The results provide evidence for the evolution of the Proto-Tethys in southwest Yunnan and Southeast Asia.

       

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    • Bunopas, S., 1981. Paleogeographic History of Western Thailand and Adjacent Parts of South-East Asia: A Plate Tectonics Interpretation(Dissertation). Victoria University of Wellington, Wellington.
      Cai, H. M., Yang, H., Gong, X. K., 2019. Geochronology and Petrogenesis of Mafic-Intermediate Intrusions on the Northern Margin of the Central Tianshan (NW China): Implications for Tectonic Evolution. Journal of Earth Science, 30(2): 323-334. https://doi.org/10.1007/s12583-018-1205-6
      Dong, Y. P., He, D. F., Sun, S. S., et al., 2018. Subduction and Accretionary Tectonics of the East Kunlun Orogen, Western Segment of the Central China Orogenic System. Earth-Science Reviews, 186(B1): 231-261. https://doi.org/10.1016/j.earscirev.2017.12.006
      Eby, G. N., 1992. Chemical Subdivision of the A-Type Granitoids: Petrogenetic and Tectonic Implications. Geology, 20(7): 641. https://doi.org/10.1130/0091-7613(1992)020<0641:csotat>2.3.co;2 doi: 10.1130/0091-7613(1992)020<0641:csotat>2.3.co;2
      Elburg, M. A., Foden, J., 1999. Geochemical Response to Varying Tectonic Settings: An Example from Southern Sulawesi (Indonesia). Geochimica et Cosmochimica Acta, 63(7/8): 1155-1172. https://doi.org/10.1016/s0016-7037(98)00298-1
      Feng, Q. L., 2002. Stratigraphy of Volcanic Rocks in the Changning-Menglian Belt in Southwestern Yunnan China. Journal of Asian Earth Sciences, 20 (6): 657-664. https://doi.org/10.1016/S1367-9120(02)00006-8
      Feng, Q. L., Chonglakmani, C., Helmcke, D., et al., 2004. Ancient Tethys Pelagic Remnants in the Interior of Shan Tai Block, Northwestern Thailand: Radiolarian Biostratigraphy Evidence. Scientia Sinica(Terrae), 5: 429-435(in Chinese). https://doi.org/10.3321/j.issn:1006-9267.2004.05.005
      Hawkesworth, C., Turner, S., Gallagher, K., et al., 1995. Calc‐alkaline Magmatism, Lithospheric Thinning and Extension in the Basin and Range. Journal of Geophysical Research: Solid Earth, 100(B6): 10271-10286. https://doi.org/10.1029/94jb02508
      Hu, F. Y., Wu, F. Y., Wang, J. G., 2020. The Subduction of Paleo-Tethys Along a Continental Arc in Eastern Myanmar from Carboniferous to Triassic: New Insights from Zircon U-Pb and Hf Isotope Data. Geomyanmar 2020 International Congress Plus IGCP 668 & IGCP 679. January 7-8, Yangon, 38.
      Hu, P. Y., Li, C., Xie, C. M., et al., 2013. Albite Ranites in Taoxinghu Ophiolite in Central Qiangtang, Qinghai-Tibet Plateau, China: Evidences of Paleo-Tethys Oceanic Crust Subduction. Acta Petrologica Sinica, 29 (12): 4404-4414(in Chinese with Enxglish abstract).
      Lehmann, B., Zhao, X. F., Zhou, M. F., et al., 2013. Mid-Silurian Back-Arc Spreading at the Northeastern Margin of Gondwana: The Dapingzhang Dacite-Hosted Massive Sulfide Deposit, Lancangjiang Zone, Southwestern Yunnan, China. Gondwana Research, 24(2): 648-663. https://doi.org/10.1016/j.gr.2012.12.018
      Liu, B. P., Feng, Q. L., Chonglakmani, C., et al., 2002. Framework of Paleo-Tethyan ArchipelagoOcean of Western Yunnan and its Elongation Toward North and South. Earth Science Frontiers, 9(3): 161-171 (in Chinese).
      Liu, G. C., Sun, Z. B., Zi, J. W., et al., 2021. Proto-Tethys Ophiolitic Mélange in SW Yunnan: Constraints from Zircon U-Pb Geochronology and Geochemistry. Geoscience Frontiers, 12(5): 287-303. https://doi.org/10.1016/j.gsf.2021.101200
      Mao, X. C., Wang, L. Q., Bing, L. I., et al., 2012. Discovery of the Late Silurian volcanic Rocks in the Dazhonghe Area, Yunxian-Jinggu Volcanic Arc Belt, Western Yunnan, China and Its Geological Significance. Acta Petologica Sinica, 28(5): 1517-1528 (in Chinese with English abstract).
      Metcalfe, I., 2011. Tectonic Framework and Phanerozoic Evolution of Sundaland. Gondwana Research, 19(1): 3-21. https://doi.org/10.1016/j.gr.2010.02.016
      Middlemost, E. A. K., 1994. Naming Materials in the Magma/igneous Rock System. Earth-Science Reviews, 37(3/4): 215-224. https://doi.org/10.1016/0012-8252(94)90029-9
      Nie, X. M., Feng, Q. L., Metcalfe, I., et al., 2016. Discovery of a Late Devonian Magmatic Arc in the Southern Lancangjiang Zone, Western Yunnan: Geochemical and Zircon U-Pb Geochronological Constraints on the Evolution of Tethyan Ocean Basins in SW China. Journal of Asian Earth Sciences, 118(1): 32-50. https://doi.org/10.1016/j.jseaes.2015.12.026
      Pan, G. T., Wang, L. Q., Li, R. D., et al., 2012. Tectonic Model of Archipelagic Arc-Basin Systems: The Key to the Continental Geology. Sedimentary Geology and Tethyan Geology, 32(3): 1-20 (in Chinese with English abstract).
      Pearce, J., 1996. Sources and Settings of Granitic Rocks. Episodes, 19(4): 120-125. https://doi.org/10.18814/epiiugs/1996/v19i4/005
      Pearce, J. A., Cann, J. R., 1973. Tectonic Setting of Basic Volcanic Rocks Determined Using Trace Element Analyses. Earth and Planetary Science Letters, 19(2): 290-300. https://doi.org/10.1016/0012-821x(73)90129-5
      Piyasin, S., 1972. Geology of Lampang Sheet NE 47-4 Scale 1∶250, 000. Technical Report (Vol. 14). Geological Survey Division, Department of Mineral Resources, Bangkok, Thailand.
      Qian, X., Wang, Y. J., Feng, Q. L., et al., 2016. Petrogenesis and Tectonic Implication of the Late Triassic Post-Collisional Volcanic Rocks in Chiang Khong, NW Thailand. Lithos, 248-251(ⅩⅤ-ⅩⅤⅡ): 418-431. https://doi.org/10.1016/j.lithos.2016.01.024
      Rapp, R. P., Watson, E. B., 1995. Dehydration Melting of Metabasalt at 8-32 Kbar: Implications for Continental Growth and Crust-Mantle Recycling. Journal of Petrology, 36(4): 891-931. https://doi.org/10.1093/petrology/36.4.891
      Rickwood, P. C., 1989. Boundary Lines within Petrologic Diagrams which Use Oxides of Major and Minor Elements. Lithos, 22(4): 247-263. https://doi.org/10.1016/0024-4937(89)90028-5
      San, W., Feng, Q. L., Ye, M. S., et al., 2022. Early Carboniferous Magmatic Rocks in Eastern Myanmar: Implications for The Tethyan Evolution. Journal of Earth Science, 1-35[2022-10-26]. https://doi.org/10.1007/s12583-022-1723-0
      Song, S. G., Bi, H. Z., Qi, S. S., et al., 2018. HP-UHP Metamorphic Belt in the East Kunlun Orogen: Final Closure of the Proto-Tethys Ocean and Formation of the Pan-North-China Continent. Journal of Petrology, 59(11): 2043-2060. https://doi.org/10.1093/petrology/egy089
      Song, S. G., Niu, Y. L., Su, L., et al., 2014. Continental Orogenesis from Ocean Subduction, Continent Collision/subduction, to Orogen Collapse, and Orogen Recycling: The Example of the North Qaidam UHPM Belt, NW China. Earth-Science Reviews, 129(S1): 59-84. https://doi.org/10.1016/j.earscirev.2013.11.010
      Wang, Y. J., Qian, X., Cawood, P. A., et al., 2021. Corrigendum to "Closure of the East Paleotethyan Ocean and Amalgamation of the Eastern Cimmerian and Southeast Asia Continental Fragments". Earth-Science Reviews, 217: 103636. https://doi.org/10.1016/j.earscirev. 2017. 09.013 doi: 10.1016/j.earscirev.2017.09.013
      Wang, Y. J., Zhang, A. M., Fan, W. M., et al., 2013. Origin of Paleosubduction-Modified Mantle for Silurian Gabbro in the Cathaysia Block: Geochronological and Geochemical Evidence. Lithos, 160-161(3-5): 37-54. https://doi.org/10.1016/j.lithos.2012.11.004
      Wang, L. Q., Pan, G. T., Li, C., et al., 2008. SHRIMP U-Pb Zircon Dating of EopaleozoicCumulate in Guoganjianian Mt. from Central Qiangtang Area of Northern Tibet: Considering the Evolvement of Proto- and Paleo-Tethys. Geological Bulletion of China, 27(12): 2045-2056(in Chinese with English abstract).
      Wei, Y. H., Gan, Z. Q., Liu, G. C., et al., 2021. The Stratigraphic Sequence and Geological Time of Dawazi Formation in Western Simao Block. Earth Science, 46(2): 418-431(in Chinese with English abstract).
      Whalen, J. B., Currie, K. L., Chappell, B. W., 1987. A-Type Granites: Geochemical Characteristics, Discrimination and Petrogenesis. Contributions to Mineralogy and Petrology, 95(4): 407-419. https://doi.org/10.1007/bf00402202
      Wood, D. A., Joron, J. L., Treuil, M., 1979. A Re-Appraisal of the Use of Trace Elements to Classify and Discriminate between Magma Series Erupted in Different Tectonic Settings. Earth and Planetary Science Letters, 45(2): 326-336. https://doi.org/10.1016/0012-821x(79)90133-x
      Wu, Y. W., Li, C., Dong, Y. S., et al., 2009. Petrological Characteristics of Taoxinghu Early Paleozoic Ophiolite in Central Qiangtang, Northern Tibet, China. Geological Bulletin of China, 28(9): 1290-1296 (in Chinese with English abstract). doi: 10.3969/j.issn.1671-2552.2009.09.018
      Xia, L. Q., Xia, Z. C., Xu, X. Y., 2007. The Discrimination between Continental Basalt and Island Arc Basalt Based on Geochemical Method. Acta Petrologica et Mineralogica, 1: 77-89 (in Chinese with English abstract).
      Xie, S. W., Liu, F. L., Wang, F., 2021. Petrogenesis of Late Devonian Volcanic Rocks in the Jinghong Area, SouthwesternSanjiang Region and its Geological Implications. Acta Petrologica Sinica, 37 (2): 481-496 (in Chinese with English abstract).
      Xin, Y. J., Li, J. H., Dong, S. W., et al., 2017. Neoproterozoic Post-Collisional Extension of the Central Jiangnan Orogen: Geochemical, Geochronological, and Lu-Hf Isotopic Constraints from the Ca. 820-800 Ma Magmatic Rocks. Precambrian Research, 294: 91-110. https://doi.org/10.1016/j.precamres.2017.03.018
      Xu, F. M., Sun, W., Wu, D. T., et al., 2022. The Petrogenesis of Late Carboniferous Monzogranite in Mianduhe Area, Northern Great Xing'an Range: Evidence from Zircon U-Pb Ages, Hf Isotopic and Geochemical Features. Earth Science, 47(8): 2839-2855(in Chinese with English abstract).
      Zhai, Q. G., Wang, J., Li, C., et al, 2010. SHRIMP U-Pb Dating and Hf Isotopic Analyses of Middle Ordovician Meta-Cumulate Gabbro in Central Qiangtang, Northern Tibetan Plateau. Scientia Sinica(Terrae), 40(5): 565-573(in Chinese).
      冯庆来, Chonglakmani, C., Helmcke, D., 等, 2004. 泰国西北部掸泰地块内部古特提斯远洋残迹: 放射虫生物地层学证据. 中国科学(D辑: 地球科学), 5: 429-435. https://www.cnki.com.cn/Article/CJFDTOTAL-JDXK200405004.htm
      胡培远, 李才, 解超明, 等, 2013. 藏北羌塘中部桃形湖蛇绿岩中钠长花岗岩——古特提斯洋壳消减的证据. 岩石学报, 29(12): 4404-4414. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201312024.htm
      刘本培, 冯庆来, Chonglakmani C., 等, 2002. 滇西古特提斯多岛洋的结构及其南北延伸. 地学前缘, 9(3): 161-171. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200203027.htm
      毛晓长, 王立全, 李冰, 等, 2012. 云县-景谷火山弧带大中河晚志留世火山岩的发现及其地质意义. 岩石学报, 28(5): 1517-1528. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201205016.htm
      潘桂棠, 王立全, 李荣社, 等, 2012. 多岛弧盆系构造模式: 认识大陆地质的关键. 沉积与特提斯地质, 32(3): 1-20. https://www.cnki.com.cn/Article/CJFDTOTAL-TTSD201203000.htm
      王立全, 潘桂棠, 李才, 等, 2008. 藏北羌塘中部果干加年山早古生代堆晶辉长岩的锆石SHRIMP U-Pb年龄——兼论原-古特提斯洋的演化. 地质通报, 27(12): 2045-2056. https://www.cnki.com.cn/Article/CJFDTOTAL-ZQYD200812012.htm
      魏月华, 甘正勤, 刘桂春, 等, 2021. 思茅地块西缘大凹子组地层序列及地质时代. 地球科学, 46(2): 418-431. doi: 10.3799/dqkx.2020.066
      吴彦旺, 李才, 董永胜, 等, 2009. 藏北羌塘中部桃形湖早古生代蛇绿岩的岩石学特征. 地质通报, 8(9): 1290-1296. https://www.cnki.com.cn/Article/CJFDTOTAL-ZQYD200909019.htm
      夏林圻, 夏祖春, 徐学义, 等, 2007. 利用地球化学方法判别大陆玄武岩和岛弧玄武岩. 岩石矿物学杂志, 1: 77-89. https://www.cnki.com.cn/Article/CJFDTOTAL-YSKW200701010.htm
      谢士稳, 刘福来, 王舫, 2021. 西南三江杂岩带景洪南部地区晚泥盆世火山岩的发现及意义. 岩石学报, 37(02): 481-496. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB202102009.htm
      许逢明, 孙巍, 吴大天, 等, 2022. 大兴安岭北段免渡河地区晚石炭世二长花岗岩成因: 锆石U-Pb年代学、Hf同位素和地球化学证据. 地球科学, 47(8): 2839-2855. doi: 10.3799/dqkx.2021.162
      翟庆国, 王军, 李才, 等, 2010. 青藏高原羌塘中部中奥陶世变质堆晶辉长岩锆石SHRIMP年代学及Hf同位素特征. 中国科学: 地球科学, 40(5): 565-573. https://www.cnki.com.cn/Article/CJFDTOTAL-JDXK201005006.htm
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