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Volume 20 Issue 2
Apr 2009
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Suhua Cheng, Xingyun Lai, Zhendong You. P-T Paths Derived from Garnet Growth Zoning in Danba Domal Metamorphic Terrain, Sichuan Province, West China. Journal of Earth Science, 2009, 20(2): 219-240. doi: 10.1007/s12583-009-0022-3
Citation: Suhua Cheng, Xingyun Lai, Zhendong You. P-T Paths Derived from Garnet Growth Zoning in Danba Domal Metamorphic Terrain, Sichuan Province, West China. Journal of Earth Science, 2009, 20(2): 219-240. doi: 10.1007/s12583-009-0022-3

P-T Paths Derived from Garnet Growth Zoning in Danba Domal Metamorphic Terrain, Sichuan Province, West China

doi: 10.1007/s12583-009-0022-3
Funds:

the National Natural Science Foundation of China 40472097

the National Natural Science Foundation of China 90814006

Research Fund for the Doctoral Program of Higher Education of China 20070491516

More Information
  • Corresponding author: Cheng Suhua, suhua@cugb.edu.cn
  • Received Date: 06 Dec 2008
  • Accepted Date: 06 Jan 2009
  • Danba (丹巴) domal metamorphic terrain belongs to Songpan (松潘)-Ganze (甘孜) orogenic belt, where typical Barrovian and Buchan metamorphic zones are preserved. The former included chlorite, biotite, garnet, staurolite, kyanite and sillimanite zones, while the latter only developed silimanite+muscovite and sillimanite+K-feldspar zones. Integrated study has been carried on metamorphic reactions of garnet production and consumption, P-T paths and P-T-X-M phase relation and thermal tectonic model for Danba metamorphic zones. Petrological textures in thin sections show that garnet production and consumption in kyanite-sillimanite zone is mainly attributed to Chl+Ms+Pl+Q= Grt+Bt+H 2O and kyanite=sillimanite respectively. Based on mineral compositions, the geothermobarometry gives an average P, T condition of (4.9±0.3)×10 8 Pa, 543±30 ℃ for the first growth stage of the garnet and (5.8±0.3)×10 8 Pa, 534±29 ℃ for the second stage of garnet growth respectively. Anti-counter clockwise P- T paths were drawn using Gibbs method by NCMnKFMASH system for sample G98686 in the kyanite zone. The P- T- X-M modeling for the first mineral assemblages shows that the prediction is similar to the measured values in gossular, almandine and spessartine but mole fraction of pyrope and Fe/(Fe+Mg) deviated far from the contours; while that for the second mineral assemblages exhibits that the prediction is consistent with the measured value of pyrope, grossular content and Fe/(Fe+Mg) of garnet. A thermal tectonic model that there are at least three structure levels across the thrust-decollement zones is presented according to the P- T paths, metamorphic grades and deformation styles for the staurolite-kyanite zone of the Barrovian type metamorphism, which will provide some constraints for the evolution of the nappe complex.

     

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  • Armstrong, T. R., Tracy, R. J., Hames, W. E., 1992. Contrasting Styles of Taconian, Eastern Acadian and Western Acadian Metamorphism, Central and Western New England. Journal of Metamorphic Geology, 10(3): 415–426 doi: 10.1111/j.1525-1314.1992.tb00093.x
    Berman, R. G., 1990. Mixing Properties of Ca-Mg-Fe-Mn Garnets. Am. Mineral. , 75: 328–344
    Bureau of Geological Mineral Resources of Sichuan Province, China, 1994. Development, Evolution and Mineralization of Danba-Yajiang Metamorphic Domes on the Western Margin of Yangtze Plate. 11 (in Chinese)
    Cheng, S. H., Lai, X. Y., 2005. Medium-Low Pressure Metamorphism and P-T Paths in Danba Domain, Sichuan Province of the Western China. Acta Petrologica Sinica, 21(3): 819–828 (in Chinese with English Abstract)
    Dewey, J. F., Shackleton, R. M., Chang, C. F., et al., 1988. The Tectonic Evolution of the Tibet Plateau. Philosophical Transactions of the Royal Society of London, (A327): 379–413
    Ganguly, J., Saxena, S. K., 1984. Mixing Properties of Aluminosilicate Garnets: Constraints from Natural and Experi mental Data, and Applications to Geothermobarometry. Am. Mineral. , 69: 88–97
    Ghent, E. D., Stout, M. Z., 1981. Metamorphism at the Base of the Semail Ophiolite, Southern Omen Mountains. J. Geophys. Res. , 86: 2557–2571 doi: 10.1029/JB086iB04p02557
    Goscombe, B., Hand, M., 2000. Contrasting P-T Paths in the Eastern Himalaya, Nepal: Inverted Isograds in a Paired Metamorphic Mountain Belt. Journal of Petrology, 41(12): 1673–1719 doi: 10.1093/petrology/41.12.1673
    Harte, B., Hudson, N. F. C., 1979. Pelite Facies Series and the Temperatures and Pressures of Dalradian Metamorphism in East Scotland. Geol. Soc. Lond. , (8): 323–337 http://www.onacademic.com/detail/journal_1000036824068810_cf93.html
    Hodges, K. V., Crowley, P. D., 1985. Error Estimation and Empirical Geothermobarometry for Pelitic Systems. Am. Mineral. , 70: 671–680 http://gateway.proquest.com/openurl?res_dat=xri:pqm&ctx_ver=Z39.88-2004&rfr_id=info:xri/sid:baidu&rft_val_fmt=info:ofi/fmt:kev:mtx:article&genre=article&jtitle=American%20Mineralogist&atitle=Error%20estimation%20and%20empirical%20geothermobarometry%20for%20pelitic%20systems
    Hodges, K. V., Spear, F. S., 1982. Geothermomery, Geobarometry and the Al2SiO5 Triple Point at Mt. Moosilauke, New Hampshire. Am. Mineral. , 67: 1118–1134 http://rruff.geo.arizona.edu/doclib/am/vol67/AM67_1118.pdf
    Hoisch, T. D., 1987. Heat Transport by Fluids during Late Cretaceous Regional Metamorphism in the Big Maria Mountains, Southeastern California. Geol. Soc. Amer. Bull. , 98: 549–553 doi: 10.1130/0016-7606(1987)98<549:HTBFDL>2.0.CO;2
    Hoisch, T. D., 1991. Eqilibria within the Mineral Assemblage Quartz+Muscovite+Garnet+Plagioclase, and Implications for the Mixing Properties of Actahedrally-Coodinated Cations in Muscovite and Biotite. Contrib. Mineral. Petrol. , 108: 43–54 doi: 10.1007/BF00307325
    Holdaway, M. J., 1971. Stability of Andalusite and the Aluminum Silicate Phase Diagram. Am. J. Science, 271(2): 97–131 doi: 10.2475/ajs.271.2.97
    Hou, L., Fu, X., Huang, M., et al., 1994. The Evolution and Mineralization of Fornix Metamorphosed of Danba, Yajiang in the Western Margin of Yangtze Platform. Geological Bureau of Sichuan Province Press, Chengdu (in Chinese)
    Huang, M. H., Buick, I. S., Hou, L. W., 2003a. Tectonometamorphic Evolution of the Eastern Tibet Plateau: Evidence from the Central Songpan-Garze Orogenic Belt, Western China. Journal of Petrology, 44(2): 255–278 doi: 10.1093/petrology/44.2.255
    Huang, M. H., Buick, I. S., Maas, R., et al., 2001. Polyphase Metamorphism in the Danba Domal Terrain, Songpan-Garze Orogenic Belt (China): P-T-t-d Paths and Constraints from U-Pb, Sm-Nd and Rb-Sr Geochronology. Gondwana Research, 4(4): 634–635 doi: 10.1016/S1342-937X(05)70437-8
    Huang, M. H., Maas, R., Buick I. S., et al., 2003b. Crustal Response to Continental Collisions between the Tibet, Indian, South China and North China Blocks: Geochronological Constraints from the Songpan-Garze Orogenic Belt, Western China. J. Metamorphic Geol. , 21(3): 223–240 doi: 10.1046/j.1525-1314.2003.00438.x
    Indares, A., Martingole, J., 1985. Biotite-Garnet Geothermometry in the Granulite Facies: The Influence of Ti and Al Biotite. Am. Mineral. , 70: 272–278
    Kohn, M. J., Orange, D. L., Spear, F. S., et al., 1992. Pressure, Temperature, and Structural Evolution of West-Central New Hampshire: Hot Thrusts over Cold Basement. Journal of Petrology, 33(3): 521–556 doi: 10.1093/petrology/33.3.521
    Kohn, M. J., Spear, F. S., Dalziel, I. W., 1993. Metamorphic P-T Paths from Cordillera Darwin, a Core Complex in Tierra del Fuego, Chile. Journal of Petrology, 34(3): 519–542 doi: 10.1093/petrology/34.3.519
    Koziol, A. M., 1989. Recalibration of the Garnet-Plagioclase-Al2SiO5-Quartz (GASP) Geobarometer and Application to Natural Parageneses. EOS, 70: 493
    Mattauer, M., Malavieille, J., Calassou, S., et al., 1992. The Songpan-Garze Triassic Belt of West Sichuan and Eastern Tibet-A Decollement Fold Belt on Passive Margin. Comptes Rendus Delacademe des Sciences Ⅱ, 314: 619–626 http://www.mendeley.com/research/songpan-garze-triassic-belt-west-sechuan-eastern-tibet-decollement-fold-belt-passive-margin/
    Menard, T., Spear, F. S., 1994. Metamorphic P-T Paths from Calcic Pelitic Schists from the Strafford Dome, Vermont. Journal of Metamorphic Geology, 12: 811–826 doi: 10.1111/j.1525-1314.1994.tb00061.x
    Newton, R. C., Wood, B. J., 1979. Thermodynamics of the Garnet-Plagioclase-Al2SiO5 Geobarometer. In: Newton, R. C., ed., Thermodynamics of Minerals and Melts. Springer Verlag, New York. 131–147
    Patino Douce, A. E., Harris, N., 1998. Experimental Constraints on Himalayan Anatexis. J. Petrol. , 39(4): 689–710 doi: 10.1093/petroj/39.4.689
    Powell, R., Holland, T. J. B., 1988. An Internally Consistent Thermodynamic Dataset with Uncertainties and Correlations: 3. Application to Geobarometry, Worked Examples and a Computer Program. J. Metamorphic Geol. , 6: 173–204 doi: 10.1111/j.1525-1314.1988.tb00415.x
    Powell, R., Holland, T., Worley, B., 1998. Calculating Phase Diagrams Involving Solid Solutions via Non-linear Equations with Examples Using THERMOCALC. J. Metamorphic Geol. , 16(4): 577–588 doi: 10.1111/j.1525-1314.1998.00157.x
    Reinhardt, J., Kleemann, U., 1994. Extensional Unroofing of Granulitic Lower Crust and Related Low-Pressure, High-Temperature Metamorphism in the Saxonian Granulite Massif, Germany. Tectonophysics, 238(1–4): 71–94 http://www.sciencedirect.com/science/article/pii/0040195194900507
    Sichuan Bureau of Geology, 2000. Survey of Regional Geology of Danba Sheet, Scale 1: 50 000 (in Chinese)
    Spear, F. S., 1988a. The Gibbs Method and Duhem's Theorem: The Quantitative Relationships among P, T, Chemical Potential, Phase Composition and Reaction Progress in Igneous and Metamorphic Systems. Contrib. Mineral. Petrol. , 99(2): 249–256 doi: 10.1007/BF00371465
    Spear, F. S., 1988b. Metamorphic Fractional Crystallization and Internal Metasomatism by Diffusional Homogenization of Zoned Garnets. Contrib. Mineral. Petrol. , 99(4): 507–517 doi: 10.1007/BF00371941
    Spear, F. S., 1989. Petrologic Determination of Metamorphic Pressure-Temperature-Time Paths. In: Spear, F. S., Peacock, S. M., eds., Metamorphic Pressure-Temperature- Time Paths. Short Course in Geology. Am. Geophys. Union, Washington, DC. 1–55
    Spear, F. S., 1993. Metamorphic Phase Equilibria and Pressure-Temperature-Time Paths. Mineralogical Society of America, Washington DC. 789 http://www.geosocindia.org/index.php/jgsi/article/download/68732/53958
    Spear, F. S., Hickmott, D. D., 1990. Metamorphic Consequences of Thrust Emplacement, Fall Mountain, New Hampshire. Geological Society of America Bulletin, 102: 1344–1360 doi: 10.1130/0016-7606(1990)102<1344:MCOTEF>2.3.CO;2
    Spear, F. S., Kohn, M. J., Cheney, J. T., 1999a. P-T Paths from Anatectic Pelites. Contrib. Mineral. Petrol. , 134(1): 17–32 doi: 10.1007/s004100050466
    Spear, F. S., Kohn, M. J., Paetzold, S. P., 1999b. Petrology of the Regional Sillimanite Zone, West-Central New Hampshire, U.S.A., with Implications for the Development of Inverted Isograds. American Mineralogist, 80: 361–376
    Spear, F. S., Kohn, M. J., Paetzold, S., 1995. Petrology of the Regional Sillimanite Zone, West-Central New Hampshire, USA, with Implications for the Development of Inverted Isograds. American Mineralogist, 80: 361–376 doi: 10.2138/am-1995-3-418
    Spear, F. S., Peacock, S. M., Kohn, M. J., et al., 1991. Computer Programs for Petrological P-T-t Path Calculations. Am. Mineral. , 76: 2009–2012 http://www.minsocam.org/ammin/AM76/AM76_2009.pdf
    Stephenson, B. J., Waters, D. J., Searle, M. P., 2000. Inverted Metamorphism and the Main Central Thrust: Field Relations and Thermobarometric Constraints from the Kishtwar Window, NW Indian Himalaya. Journal of Metamorphic Geology, 18(5): 571–590 doi: 10.1046/j.1525-1314.2000.00277.x
    Xu, Z. Q., Hou, L. W., Wang, Z. X., 1992. Orogenic Processes of the Songpan-Garze Orogenic Belt of China. Geological Publishing House, Beijing (in Chinese)
    You, Z. D., Cheng, S. H., Lai, X. Y., 2006. The Danba Domal Metamorphic Terrane, Western Sichuan, China. Earth Science Frontiers, 13(4): 148–159 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-DXQY200604012.htm
    Zhou, M. F., Yan, D. P., Kennedy, A. K., et al., 2002. SHRIMP U-Pb Zircon Geochronological and Geochemical Evidence for Neoproterozoic Arc-Magmatism along the Western Margin of the Yangtze Block, South China. Earth and Planetary Science Letters, 196(1–2): 51–67 http://www.sciencedirect.com/science/article/pii/S0012821X01005957
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