大别山超高压变质带中牛凸岭地区低温-高压榴辉岩的发现及其意义

石永红,林伟,王清晨. 大别山超高压变质带中牛凸岭地区低温-高压榴辉岩的发现及其意义[J]. 岩石学报, 2008, 24(6): 1288-1296.
引用本文: 石永红,林伟,王清晨. 大别山超高压变质带中牛凸岭地区低温-高压榴辉岩的发现及其意义[J]. 岩石学报, 2008, 24(6): 1288-1296.
SHI YongHong,LIN Wei,WANG QingChen. The discovery of low-temperature and high-pressure eclogites across Niutuling area in the ultrahigh pressure eclogite Unit and its significance[J]. Acta Petrologica Sinica, 2008, 24(6): 1288-1296.
Citation: SHI YongHong,LIN Wei,WANG QingChen. The discovery of low-temperature and high-pressure eclogites across Niutuling area in the ultrahigh pressure eclogite Unit and its significance[J]. Acta Petrologica Sinica, 2008, 24(6): 1288-1296.

大别山超高压变质带中牛凸岭地区低温-高压榴辉岩的发现及其意义

  • 基金项目:

    国家自然科学基金

The discovery of low-temperature and high-pressure eclogites across Niutuling area in the ultrahigh pressure eclogite Unit and its significance

  • 依据时南大别超高压带腹地的榴辉岩野外地质调查、岩相学和热力学的研究表明,南大别腹地--牛凸岭地区榴辉岩属于低温高压榴辉岩,并未经历超高压变质作用.该地区榴辉岩的共生围岩主要为片岩、片麻岩和斜长角闪岩,石榴石多为自形-半自形,内含大量的早期矿物包体,峰期变质温压条件分别为:T=360~520℃;P=1.3~2.4GPa.对比南大别超高压榴辉岩形成的变质条件,两者压力差可达0.7GPa,约20km厚的地壳深度缺失.结合构造分析牛凸岭单元更类似于桐城-源潭铺高压块体,推测其属于构造上层部位岩片.
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  • [1]

    Bohlen ST and Boettcher AL. 1982. The quartz = coesite transformation: A precise determination and effects of other components. Journal of Geophysical Research, 87 : 7073 - 7078

    [2]

    Bundy FR. 1980. The P, T phase and reaction diagram for elemental carbon. Journal of Geophysical Research, 85, 6930 -6936

    [3]

    Carswell DA, O\\'Brien PJ, Wilson RN and Zhai M. 1997. Thermobarometry of phengite-bearing eclogites in the Dabie Mountains of Central China. J. Metamorphic. Geol. , 15 : 239 - 252

    [4]

    Carswell DA. 1990. Eclogite Facies Rocks. Blackie, New York, 12

    [5]

    Castelli D, Rolfo F, Compagnoni R and Xu ST. 1998. Metamrophic veins with kyanite and quartz in the Zhu-Jia-Chong, Dabie Shah, China. Island Are, 7:159 - 173

    [6]

    Cawthron RG and Collerson KD. 1974. The recalculation of pyroxene end-member parameters and estimation of ferrous and ferric iron content from electron microprobe analyses. American Mineralogist, 59 : 1023 - 1208

    [7]

    Chen Y, Ye K and Wu CM. 2005. Reviews on applying common-used geothermobarometers for eclogites. Acta Perologica Sinica, 21 (4) : 1067 -1080 (in Chinese with English abstract)

    [8]

    Cuthber SJ Carswell EJ Krogh-Ravana E and Wain A. 2000. Eclogites and eclogites in the Western Gneiss Region, Norwegain Caledonides. Lithos, 52:165 - 195

    [9]

    Dong SW, Wang XF and Huang DZ. 1996. Discovery for low-grade metamorphic rocks in ultrahigh pressure metamorphic zone in Dabie Mountains and its significance. Chinese Science Bulletin, 41 (9): 815 - 820( in Chinese with English abstract)

    [10]

    Droop GTB. 1987. A general equation for estimating Fe^3 + concentrations in ferromagnesian silicates and oxides from microprobe analyses, using stoichiometric criteria. Mineralogical Magazine, 51 : 431 - 435.

    [11]

    Faure M, Wei L, Scharer U, Shu L, Sun Y and Amaud N. 2003. Continental subduetion and exhumation of UHP rocks:Structural and geochronological insights from the Dabieshan ( East China). Lithos, 70:21 -241

    [12]

    Faure M, Wei L, Shu L, Sun Y and Scharer U. 1999. Tectonics of the Dabieshan (eastern China) and possible exhumation mechanism of ultra high-pressure rocks. Terra Nova, 11 (6) : 251 -258

    [13]

    Franz L, Romer RL, Klemd R, Schimd R, Oberhanshli R, Wagner T and Dong S. 2001. Eclogite-facies quartz veins within metabasites of the Dabie Shan ( eastern China ) : Pressure-temperature-time-deformation path, composition of the fluid phase and fluid flow during exhumation of high-pressure rocks. Contributions to Mineralogys and Petrology, 141 : 322 -346

    [14]

    Hacker BR, Ratsehbacer L, Webb L, Trevor I, Doug W and Dong SW. 1998. U-Pb zircon ages contain the architecture of the ultrahigh- pressure Qingling-Dabie orogen, China. Earth and Planetary Science Letters, 161 : 215 -231

    [15]

    Harker BR,Ratschbacher L, Webb L, McWilliams MO, Ireland T, Calvert A,Dong S, Wenk HR and Chateigner D. 2000. Exhumation of ultrahigh-pressure continental crust in east central China: Late Triassic-Early Jurassic tectonic unroofing. Journal of Geophysical research, 105 : 13339 - 13364

    [16]

    Holland TJB. 1980. The reaction albite = jadeite + quartz determined experimentally in the range 600℃- 1200℃. American Mineralogist, 65 : 125 - 134

    [17]

    Kretz R. 1983. Symbols for rock-forming minerals. American Mineralogist, 68 : 277 - 279

    [18]

    Krogh-Ravna E. 2000. The garnet-clinopyroxene Fe^2 + -Mg geothermometer: An updated calibration. J. metamorphic. Geol. , 18:211 -219

    [19]

    Krogh-Ravna EJ and Terry R. 2004. Geothermobarometry of UHP and HP eclogites and schists an evaluation of equilibria among garnet clinopyroxene kyanite phengite coesite/quartz. J. metamorphic. Geol. ,22:579-592

    [20]

    Li XP, Zheng YF, Wu YB, Chen FU, Gong B and Li YL. 2004. Low-T eclogite in the Dabie terrane of China: petrological and isotopic constraints on fluid activity and radiometric dating. Contributions to Mineralogs and Petrology, 148(4) : 443 -470

    [21]

    Lin W, Enami M, Faure M, Scharer U and Arnaud N. 2007. Survival of eclogite xenolith in a Cretaceous granite intruding the Central Dabieshan migmatite gneiss dome ( Eastern China) and its tectonic implications. International journal of Earth Sciences, 96(4) : 707 - 724

    [22]

    Lin W, Faure M, Wang Q, Monie P and Panis D. 2005. Polyphase deformation in the Feidong Zhangbaling Massif ( Eastern China) and its place in the collision between North China and South China Blocks. Journal of Asia Earth Sciences, 25:121 - 136

    [23]

    Lin W, Shi YH, Faure M and Wang QC. 2008. Exhumation tectonics of HP-UHP orogenic belt in Eastern China: New structural-petrological insights from Tongcheng massif, E. Dabieshan. (In submitted)

    [24]

    Lin W, Wang QC and Shi YH. 2005. Architecture, kinematics and deformation analysis in Dabie-Sulu collision zone. Acta Petrologica Sinica, 21 (4) : 1195 - 1214 ( in Chinese with English abstract)

    [25]

    Lin W, Wang QC, Faure M, Sun Y, Shu L and Scharer U. 2003. Different deformation stages of the Dabieshan Mountains and UHP rocks exhumation mechanism. Acta Geologica Sinica, 77 ( 1 ) : 44 - 45 (in Chinese with English abstract)

    [26]

    Liou JG, Zhang RY and Jahn B. 1997. Petrology, geochemistry and isotope data on a ultrahigh-pressure jadeite quartzite from Shuanghe, Dabie Mountains, East-central China. Lithos, 41:59-78

    [27]

    Liu JB, Ye K and Maruyama S. 2001. Mineral inclusions in zircon from gneisses in the ultrahigh-pressure zone of the Dabie Mountains, China. Journal of Geology, 109 : 523 - 535

    [28]

    Liu X and Wang Q. 1998. Quartz-eclogite in Shuanghe area of the Dabie Mountains: Hot or Cold? Scientia Geologica Sinica, 7 (4): 569 - 575

    [29]

    Liu X, Wei C, Li S, Dong S and Liu J. 2004. Thermobaric structure of a traverse across western Dabieshan : Implications for collision tectonics between the Sino-Korean and Yangtze cratons. J. metamorphic. Geol. 22:361 379

    [30]

    Massonne ILl and Schreyer W. 1987. Phengite geobarometry based on the limiting assemblage with K-feldspar, phlogopite, and Quartz. Contrib. Mineral. Petrol, 96:21-224

    [31]

    Massonne H-J and Schreyer W. 1989. Stability field of the high pressure assemblage talc + phengite and two new phengite barometers. European Journal of Mineralogy, 1 : 391 410

    [32]

    Nowlan EU, Schertl HP and Schreyer W. 2000. Garnet-omphacite- phengite thermobarometry of eclogites from the coesit-bearing unit of the sothem Dora-Maim Massif, Western Alps. Lithos, 52: 197-214

    [33]

    Okay AI, Xu ST and Sengor AMC. 1989. Coesite from the Dabie Shan eclogites, central China. Eur. J. Mineral. , 1 : 595 -598

    [34]

    Okay AI. 1993. Petrology of a diamond and coesite-bearing metamorphic terrain : Dabie Shan, China. Eur. J. Mineral, 5 : 659 - 675

    [35]

    Proyer A, Dachs E amd McCammon C. 2004. Pitfalls in geothermobarometry of eclogites: Fe^3 + and changes in the mineral chemistry of omphacite at ultrahigh pressure. Contribution Mineralogy Petrology. 147 : 305 - 318

    [36]

    Rolfo F, Compagnoni R, Wu W and Xu ST. 2004. A coherent lithostratigraphic unit in the coestie-eclogite complex of Dabie Shan, China: Geologic and petrologic evidence. Lithos, 73:71 -94

    [37]

    Rolfo F, Compagnoni R, Xu ST and Jiang LL. 2000. First report of felsie whiteschist in the ultrahigh-pressure metamorphic belt of Dabie Shan, China. Eur. J. Mineral, 12:883-898

    [38]

    Schmid R, Franz L, Oberhansli R and Dong SW. 2000. High-Si phengite, mineral chemistry and P-T evolution of ultra-high-pressure eclogites and calc-silicates from the Dabie Shan, eastern China. Geological Journal, 35 : 185 -207

    [39]

    Schmid R, Wilke M, Oberhansli R, Janssens K, Falkenberg G, Franz L and Gaab. 2003. Micro-XANS determination of ferric iron and its application in thermobarometry. Lithos, 70 : 381 - 392

    [40]

    Shi YH and Wang QC. 2006. Variation in peak P-T conditions across the upper contact of the UHP terrane, Dabieshan, China: Gradational or abrupt? Journal of metamorphic Geology, 24:803 822

    [41]

    Shi YH, Lin W and Wang QC. 2006. Peak P-T conditions for eclogites across the Tongcheng -Yuantanpu region and its tectonic setting. Acta Petrological Sinica, 22 ( 9 ) : 2315 - 2324 ( in Chinese with English abstract)

    [42]

    Shi YH, Song CZ and Zhao Q. 2008. Fe^2+ adjustment in omphacite and its influence on the P-T conditions estimates and classification for eclogites. Acta mineralogical Sinca (In press)

    [43]

    Tabata H, Maruyama S and Shi Z. 1998. Metamorphic zoning and thermal structure of the Dabie ultrahigh-pressure-high-pressure terrane, central China. Island Arc, 7 : 142 - 158

    [44]

    Wang X, Liou JG and Mao HK. 1989. Coesite-bearing eclogite from the Dabie mountains in central China. Geology, 17:1085 -1088

    [45]

    Wang X, Liou JG and Shigenori Maruyama. 1992. Coesite-bearing eclogites from the Dabie Mountains, central China: Petrogenesis, P-T paths, and implication for regional tectonics. J. Geol. , 100 : 231 - 250

    [46]

    Waters DJ and Martin HN. 1996. Update of Waters and Martin (1993). http://www. earth.ox. ac. uk/-davewa/research/eclogites/ecbar.html

    [47]

    Waters DJ and Martin HN. 1993. Geobarometry of phengite-bearing eclogites. Terra Abstracts 5, 410 -411

    [48]

    Xu Z. 1987. Etude tectonique et microtectonique de la chaine paleozoique et triasique des Quilings (Chine). These de doctora, Univ. Sci. Tech. Languedoc, Montpellier

    [49]

    Zheng YF, Zhou JB, Wu YB and Xie Z. 2005. Low-grade metamorphic rocks in the Dabie-Sulu orogenic belt: A passive-margin accretionary wedge deformed during continent subduction. International Geology Review, 47 : 851 - 871

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