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    南阿尔金高压-超高温麻粒岩变质作用:大陆地壳超深俯冲与折返过程的记录

    董杰 魏春景 张建新

    董杰, 魏春景, 张建新, 2019. 南阿尔金高压-超高温麻粒岩变质作用:大陆地壳超深俯冲与折返过程的记录. 地球科学, 44(12): 4004-4008. doi: 10.3799/dqkx.2019.233
    引用本文: 董杰, 魏春景, 张建新, 2019. 南阿尔金高压-超高温麻粒岩变质作用:大陆地壳超深俯冲与折返过程的记录. 地球科学, 44(12): 4004-4008. doi: 10.3799/dqkx.2019.233
    Dong Jie, Wei Chunjing, Zhang Jianxin, 2019. Metamorphism of High Pressure-Ultrahigh Temperature (HP-UHT) Granulites from South Altyn Orogen: Records for Ultradeep Subduction and Exhumation of Continental Crust. Earth Science, 44(12): 4004-4008. doi: 10.3799/dqkx.2019.233
    Citation: Dong Jie, Wei Chunjing, Zhang Jianxin, 2019. Metamorphism of High Pressure-Ultrahigh Temperature (HP-UHT) Granulites from South Altyn Orogen: Records for Ultradeep Subduction and Exhumation of Continental Crust. Earth Science, 44(12): 4004-4008. doi: 10.3799/dqkx.2019.233

    南阿尔金高压-超高温麻粒岩变质作用:大陆地壳超深俯冲与折返过程的记录

    doi: 10.3799/dqkx.2019.233
    基金项目: 

    科技部“973”项目 2015CB856105

    详细信息
      作者简介:

      董杰(1993-), 男, 博士, 岩石学专业

      通讯作者:

      魏春景

    • 中图分类号: P581

    Metamorphism of High Pressure-Ultrahigh Temperature (HP-UHT) Granulites from South Altyn Orogen: Records for Ultradeep Subduction and Exhumation of Continental Crust

    • 摘要: 南阿尔金造山带是目前报道的具有最深俯冲记录的大陆超高压变质带,其内出露有高压-超高温麻粒岩,它们对深入理解大陆地壳岩石超深俯冲与折返过程具有重要意义.介绍了对南阿尔金巴什瓦克地区长英质麻粒岩和基性麻粒岩的岩相学、矿物化学、相平衡模拟及锆石U-Pb年代学研究成果.其中基性麻粒岩主要记录了深俯冲大陆地壳折返过程的变质演化:包括高压榴辉岩相、高压-超高温麻粒岩相、低压-超高温麻粒岩相及随后的近等压降温演化阶段;长英质麻粒岩除了记录与基性麻粒岩相似的折返过程外,还记录了从角闪岩相到超高压榴辉岩相的进变质演化过程.结合已有研究资料,确定超高压榴辉岩阶段峰期条件> 7~9 GPa和>1 000℃,可达到斯石英稳定域.锆石年代学显示两种岩石类型的原岩和变质年龄均分别在900 Ma和500 Ma左右.变质作用与年代学研究表明,南阿尔金大陆地壳岩石在早古生代发生超深俯冲至200~300 km后,折返至加厚地壳底部发生高压-超高温变质作用,随后被快速抬升至地壳浅部发生低压-超高温变质作用并经历迅速冷却.

       

    • 图  1  长英质麻粒岩(a)、含假蓝宝石基性麻粒岩(b,c)及普通石榴单辉麻粒岩(d)镜下特征显微照片

      Grt.石榴石;Cpx.单斜辉石;Amp.角闪石;Ky.蓝晶石;Bi.黑云母;Spr.假蓝宝石;Spl.尖晶石;Rt.金红石;Pl.斜长石;Ilm.钛铁矿;Crn.刚玉;Qz.石英;据Dong et al., 2018, 2019(修改)

      Fig.  1.  Microtextures of felsic granulites (a), sapphirine-bearing mafic granulites (b, c) and common garnet-clinopyroxene mafic granulites (d)

      图  2  南阿尔金长英质麻粒岩石榴石核-幔-边成分环带特征

      XPrp.镁铝榴石;XGrs.钙铝榴石;XAlm.铁铝榴石;XSps.锰铝榴石;据Dong et al. (2018)修改

      Fig.  2.  Chemical zoning profiles of the garnet porphyroblast from a felsic granulite in South Altyn orogen

      图  3  南阿尔金长英质麻粒岩(a)和基性麻粒岩(b)4阶段(I~IV)P-T演化轨迹

      L05、L07代表的温压条件/轨迹分别引自Liu et al.(2005, 2007);图a花岗岩干固相线引自Stern et al.(1975);图b玄武岩干固相线,石榴石、斜长石消失线引自Green and Ringwood(1967);矿物相变反应线及固相线引自Dong et al.(2018, 2019)中THERMOCALC计算结果;AM.角闪岩相;(H)GN.(高压)麻粒岩相;EC.榴辉岩相;UHP.超高压榴辉岩相;LP/HP-UHT.低压/高压-超高温麻粒岩相;Hol.Hollandite;Wa.K-wadeite;Kfs.钾长石;Omp.绿辉石;Sil.矽线石;Coe.柯石英;Sti.斯石英;Dia.金刚石;Gr.石墨;其他矿物缩写见图 1;据Dong et al.(2018, 2019)修改

      Fig.  3.  Metamorphic P-T paths of felsic granulites (a) and mafic granulites (b) from South Altyn orogen

    • Dong, J., Wei, C.J., Clarke, G.L., et al., 2018.Metamorphic Evolution during Deep Subduction and Exhumation of Continental Crust:Insights from Felsic Granulites in South Altyn Tagh, West China.Journal of Petrology, 59(10):1965-1900. https://doi.org/10.1093/petrology/egy086
      Dong, J., Wei, C.J., Zhang, J.X., 2019.Ultra High Temperature Metamorphism of Mafic Granulites from South Altyn Orogen, West China:A Result from the Rapid Exhumation of Deeply Subducted Continental Crust.Journal of Metamorphic Geology, 37(3):315-338. https://doi.org/10.1111/jmg.12464
      Green, D.H., Ringwood, A.E., 1967.An Experimental Investigation of the Gabbro to Eclogite Transformation and Its Petrological Applications.Geochimica et Cosmochimica Acta, 31(5):767-833. https://doi.org/10.1016/s0016-7037(67)80031-0
      Hermann, J., Rubatto, D., 2014.4.9-Subduction of Continental Crust to Mantle Depth: Geochemistry of Ultrahigh-Pressure Rocks.In: Hermann, J., Rubatto, D., eds., Treatise on Geochemistry.Elsevier, Holland.
      Liu, L., Sun, Y., Luo, J.H., et al., 2004.Ultra-High Pressure Metamorphism of Granitic Gneiss in the Yinggelisayi Area, Altun Mountains, NW China.Science in China (Series D), 47(4):338-346. doi: 10.1360/02YD0466
      Liu, L., Chen, D.L., Zhang, A.D., et al., 2005.Ultrahigh Pressure (> 7 GPa) Gneissic K-Feldspar (-Bearing) Garnet Clinopyroxenite in the Altyn Tagh, NW China:Evidence from Clinopyroxene Exsolution in Garnet.Science in China (Series D), 48(7):1000-1010. doi: 10.1360/04yd0166
      Liu, L., Zhang, J.F., Green, H.W., et al., 2007.Evidence of Former Stishovite in Metamorphosed Sediments, Implying Subduction to > 350 km.Earth and Planetary Science Letters, 263(3-4):180-191. https://doi.org/10.1016/j.epsl.2007.08.010
      Liu, L., Wang, C., Chen, D.L., et al., 2009.Petrology and Geochronology of HP-UHP Rocks from the South Altyn Tagh, Northwestern China.Journal of Asian Earth Sciences, 35(3-4):232-244. https://doi.org/10.1016/j.jseaes.2008.10.007
      O'Brien, P.J., 2008.Challenges in High-Pressure Granulite Metamorphism in the Era of Pseudosections:Reaction Textures, Compositional Zoning and Tectonic Interpretation with Examples from the Bohemian Massif.Journal of Metamorphic Geology, 26(2):235-251. https://doi.org/10.1111/j.1525-1314.2007.00758.x
      Stern, C.R., Huang, W.L., Wyllie, P.J., 1975.Basalt-Andesite-Rhyolite-H2O:Crystallization Intervals with Excess H2O and H2O-Undersaturated Liquidus Surfaces to 35 kolbras, with Implications for Magma Genesis.Earth and Planetary Science Letters, 28(2):189-196. https://doi.org/10.1016/0012-821x(75)90226-5
      Ye, K., Cong, B.L., Ye, D.N., 2000.The Possible Subduction of Continental Material to Depths Greater than 200 km.Nature, 407:734-736. https://doi.org/10.1038/35037566
      Zhang, J.X., Mattinson, C.G., Meng, F.C., et al., 2005.An Early Palaeozoic HP/HT Granulite-Garnet Peridotite Association in the South Altyn Tagh, NW China:P-T History and U-Pb Geochronology.Journal of Metamorphic Geology, 23(7):491-510. https://doi.org/10.1111/j.1525-1314.2005.00585.x
      Zhang, J.X., Mattinson, C.G., Yu, S.Y., et al., 2014.Combined Rutile-Zircon Thermometry and U-Pb Geochronology:New Constraints on Early Paleozoic HP/UHT Granulite in the South Altyn Tagh, North Tibet, China.Lithos, 200-201:241-257. https://doi.org/10.1016/j.lithos.2014.05.006
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    出版历程
    • 收稿日期:  2019-08-19
    • 刊出日期:  2019-12-15

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