• 中国出版政府奖提名奖

    中国百强科技报刊

    湖北出版政府奖

    中国高校百佳科技期刊

    中国最美期刊

    Volume 38 Issue 1
    Jan.  2013
    Turn off MathJax
    Article Contents
    ZHANG Jin-yang, MA Chang-qian, WANG Ren-jing, TAO Ji-dong, 2013. Mineralogical, Geochronological and Geochemical Characteristics of Zhoukoudian Intrusion and Their Magmatic Source and Evolution. Earth Science, 38(1): 68-86. doi: 10.3799/dqkx.2013.007
    Citation: ZHANG Jin-yang, MA Chang-qian, WANG Ren-jing, TAO Ji-dong, 2013. Mineralogical, Geochronological and Geochemical Characteristics of Zhoukoudian Intrusion and Their Magmatic Source and Evolution. Earth Science, 38(1): 68-86. doi: 10.3799/dqkx.2013.007

    Mineralogical, Geochronological and Geochemical Characteristics of Zhoukoudian Intrusion and Their Magmatic Source and Evolution

    doi: 10.3799/dqkx.2013.007
    • Received Date: 2012-05-28
    • Publish Date: 2013-01-15
    • Zhoukoudian intrusion contains intermediate-acidic rocks with three magmatic pulses. LA-ICPMS zircon U-Pb ages of quartz diorite and diorite-porphyry are 131.6±2.1 Ma and 128.1±1.4 Ma, respectively. All kinds of rocks are metaluminous and show high-K calc-alkaline affinity with high Mg#. Their LREE, Ba, K, and Sr contents are high and HREE, Ta, Nb, P, and Ti are low with no Eu anomaly, high (La/Yb)N and Sr/Y ratios. Zoned plagioclase with large mantle is common in granodiorite (second pulse) and mafic microgranular enclaves. Two such zoned plagioclase crystals are studied: One from granodiorite with high An compositions in cores and reverse-, normal-zoning outwardly in well-developed mantles; the other from mafic microgranular enclave with low An compositions in cores and beginning with dusty zoning and then showing normal-zoning in mantles, together with shape, size, quantity, reverse vein, statistics of mineral contents, mineral compositions, geochemistry, zoned structure, dyke-like swarms of mafic microgranular enclaves, a genesis of magma mingling between basic and acid magma is suggested. Magma mingling attained local equilibrium around enclaves and happened during whole solidified process of granodiorite due to multiple pulses of basic magma. The rocks from Zhoukoudian intrusion are adakitic and are partially melted within thickened lower crust. (Er/Lu)N and Nb/Ta ratios increase from quartz diorite-granodiorite to intermediate-acidic dykes, which indicates that residual minerals in source region changed from amphibole+garnet to garnet+rutile and the source became deeper.

       

    • loading
    • Allen, C.M., 1991. Local Equilibrium of Mafic Enclaves and Granitoids of the Turtle Pluton, Southeast California: Mineral, Chemical, and Isotopic Evidence. American Mineralogist, 76, 574-588. http://www.researchgate.net/publication/236554899_Local_equilibrium_of_mafic_enclaves_and_granitoids_of_the_Turtle_pluton_southeast_California_Mineral_chemical_and_isotopic_evidence
      Cai, J.H., Yang, G.H., Mou, B.L., et al., 2005. Zircon U-Pb Age, Sr-Nd-Pb Isotopic Compositions and Trace Element of Fangshan Complex in Beijing and Their Petrogenesis Significance. Acta Petrologica Sinica, 21(3): 776-788 (in Chinese with English abstract).
      Carlier, G., Lorand, J.P., 2008. Zr-Rich Accessory Minerals (Titanite, Perrierite, Zirconolite, Baddeleyite) Record Strong Oxidation Associated with Magma Mixing in the South Peruvian Potassic Province. Lithos, 104: 54-70. doi: 10.1016/j.lithos.2007.11.008
      Castro, A., 2001. Plagioclase Mornphologies in Assimilation Experiments. Implications for Disequilibrium Melting in the Generation of Granodiorite Rocks. Mineralogy and Petrology, 71(1-2): 31-49. doi: 10.1007/s007100170044
      Chappell, B.W., White, A.J.R., Wyborn, D., 1987. The Importance of Residual Source Material (Restite) in Granite Petrogenesis. Journal of Petrology, 28: 1111-1138. doi: 10.1093/petrology/28.6.1111
      Chen, B., Liu, C.Q., Tian, W., 2006. Magma-Mixing between Mantle- and Crustal-Derived Melts in the Process of Mesozoic Magmatism, Taihangshan: Constraints from Petrology and Geochemistry. Earth Science Frontiers, 13(2): 140-147 (in Chinese with English abstract). http://www.cqvip.com/QK/98600X/20062/21391287.html
      Chen, B., Zhai, M.G., Shao, J.A., 2003. Petrogenesis and Significance of the Mesozoic North Taihang Complex: Major and Trace Element Evidence. Science in China (Seri. D), 46(9): 941-953. doi: 10.1007/BF02991340
      Cortés, J.A., 2009. On the Harker Variation Diagrams; A Comment on "the Statistical Analysis of Compositional Data. Where Are We and Where Should We Be Heading?" by Aitchison and Egozcue (2005). Mathematical Geosciences, 41(7), 817-828. doi: 10.1007/s11004-009-9222-8
      Dahlquist, J.A., 2002. Mafic Microgranular Enclaves: Early Segregation from Metaluminous Magma (Sierra de Chepes), Pampean Ranges, NW Argentina. Journal of South American Earth Sciences, 15: 643-655. doi: 10.1016/S0895-9811(02)00112-8
      Deng, J.F., 1978. Thermodynamic Calculations for Metamorphic Reactions Involved in the Formation of Sillimanite-Hornfels. Geochimica, 3: 234-241 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQHX197803007.htm
      Dodge, F.C.W., Kistler, R.W., 1990. Some Additional Observations on Inclusions in the Granitic Rocks of the Sierra Nevada. Journal of Geophysical Research, 95: 17841-17848. doi: 10.1029/JB095iB11p17841
      Fan, Q.C., Zhang, H.F., Sui, J.L., et al., 2005. Magma Underplating and Hannuoba Present Crust-Mantle Transitional Zone Composition: Xenolith Petrological and Geochemical Evidence. Science in China (Seri. D), 48(8): 1089-1105. http://www.cnki.com.cn/Article/CJFDTotal-JDXG200508001.htm
      Forster, H.J., Tischendorf, G., Trumbull, R.B., 1997. An Evaluation of the Rb vs. (Y+Nb) Discrimination Diagram to Infer Tectonic Setting of Silicic Igneous Rocks. Lithos, 40: 261-293. doi: 10.1016/S0024-4937(97)00032-7
      Gagnevin, D., Daly, J.S., Poli, G., 2008. Insights into Granite Petrogenesis from Quantitative Assessment of the Field Dstribution of Enclaves, Xenoliths and K-Feldspar Megacrysts in the Monte Capanne Pluton, Italy. Mineralogical Magazine, 72(4): 925-940. doi: 10.1180/minmag.2008.072.4.925
      Gan, G.L., 1993. Mineral-Melt Element Partition Coefficients: Data and Major Variation Regularities. Acta Petrologica et Mineralogica, 12(2): 144-181 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-YSKW199302006.htm
      Gao, S., Rudnick, R.L., Yuan, H.L., et al., 2004. Recycling Lower Continental Crust in the North China Craton. Nature, 432: 892-897. doi: 10.1038/nature03162
      Ge, X.Y., Li, X.H., Chen, Z.G., et al., 2002. Geochemistry and Petrogenesis of Jurassic High Sr Low Y Granitoids in Eastern China: Constrains on Crustal Thickness. Chinese Science Bulletin, 47(11): 962-968. doi: 10.1360/02tb9216
      He, Z.L., 1935. The Granitic Intrusion from the Western Mountain. The State-Run Central Academia Cluster Publishes, Beijing, 5 (in Chinese).
      Holden, P., Halliday, A.N., Stephes, W.E., 1987. Neodymium and Strontium Isotope Content of Microdiorite Enclaves Points to Mantle Input to Granitoid Production. Nature, 330(5): 53-56. doi: 10.1038/330053a0
      Huang, F.S., Jiang, C.Y., 1985. Geological Geochemical Characteristics of Fang Shan Intrusion and Origin Research. Journal of Chang'an University Earth Science Edition, 7(3): 9-29 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-XAGX198503002.htm
      Izbekov, P.E., Eichelberger, J.C., Patino, L.C., et al., 2002. Calcic Cores of Plagioclase Phenocrysts in Andesite from Karymsky Volcano: Evidence for Rapid Introduction by Basaltic Replenishment. Geology, 30(9): 799-802. doi:10.1130/0091-7613(2002)030<0799:CCOPPI>2.0.CO;2
      Janoušek, V., Braithwaite, C.J.R., Bowes, D.R., 2004. Magma-Mixing in the Genesis of Hercynian Calc-aAkaline Granitoids: An Integrated Petrographic and Geochemical Study of the Sázava Intrusion, Central Bohemian Pluton, Czech Republic. Lithos, 78: 67-99. doi: 10.1016/j.lithos.2004.04.046
      Lesher, C.E., 1990. Decoupling of Chemical and Isotopic Exchange during Magma Mixing. Nature, 344(15), 235-237. doi: 10.1038/344235a0
      Liu, B., Ba, J., Zhang, L., et al., 2008. Zircon LA-ICP-MS U-Pb Dating of Metamorphism and Anatexis of the Guandi Complex, Zhoukoudian Area, Beijing. Geological Science and Technology Information, 27(6): 37-42 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DZKQ200806008.htm
      Liu, G.H., Wu, J.S., 1987. Metamorphic Zones of the Fangshan Area in Beijing. Bulletin of the Chinese Academy of Geological Sciences, 16: 113-137 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQXB198702010.htm
      Liu, Y.S., Gao, S., Hu, Z.C., et al., 2010. Continental and Oceanic Crust Recycling-Induced Melt-Peridotite Interactions in the Trans-North China Orogen: U-Pb Dating, Hf Isotopes and Trace Elements in Zircons of Mantle Xenoliths. Journal of Petrology, 51: 537-571. doi: 10.1093/petrology/egp082
      Liu, Y.S., Zong, K.Q., Kelemen, P.B., et al., 2008. Geochemistry and Magmatic History of Eclogites and Ultramafic Rocks from the Chinese Continental Scientific Drill Hole: Subduction and Ultrahigh-Pressure Metamorphism of Lower Crustal Cumulates. Chemical Geology, 247: 133-153. doi: 10.1016/j.chemgeo.2007.10.016
      Loomis, T.P., 1982. Numerical Simulations of Crystallization Processes of Plagioclase in Complex Melts: The Origin of Major and Oscillatory Zoning in Plagioclase. Contributions to Mineralogy and Petrology, 81: 219-229. doi: 10.1007/BF00371299
      Ma, C.Q., 1988. The Magm-Dynamic Mechanism of Emplacement and Compositional Zonation of the Zhoukoudian Stock, Beijing. Acta Geological Sinica, 62(4): 329-341 (in Chinese with English abstract).
      Ma, C.Q., Ming, H.L., Yang, K.G., 2004. An Ordovician Magmatic Arc at the Northern Foot of Dabie Mountains: Evidence from Geochronology and Geochemistry of Intrusive Rocks. Acta Petrologica Sinica, 20(3): 393-402 (in Chinese with English abstract). http://www.oalib.com/paper/1472430
      Ma, C.Q., Wang, R.J., 1990. The Characteristic Features and Origin of K-Feldspar Megacrysts in the Zhoukoudian Pluton, Beijing. Acta Mineralogica Sinica, 10(4): 323-331 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-KWXB199004004.htm
      Ma, C.Q., Wang, R.J., Qiu, J.X., 1992. Enclaves as Indicators of the Origin of Granitoid Magma and Repeater Magma Mingling: An Example from The Zhoukoudian Intrusion, Beijing. Geological Review, 38(2): 109-119 (in Chinese with English abstract). http://search.cnki.net/down/default.aspx?filename=DZLP199202001&dbcode=CJFD&year=1992&dflag=pdfdown
      Ma, C.Q., Wang, R.J., Yang, K.G., 1996. Magmatic Thermodynamic Structures of the Zhoukoudian Granodioritic Intrusion in the Western Hills of Beijing, Field Trip Guide of 30th International Geological Congress. Geological Publishing House, Beijing, 1-14.
      Ma, F., Mu, Z.G., Liu, Y.L., 2003. Fangshan Intrusion, Beijing: Constraints from Trace and Rare Earth Elements As Well As Sr-Isotope Composition. Acta Geosicientia Sinica, 24(2): 105-110 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQXB200302001.htm
      Macpherson, C.G., Dreher, S.T., Thirlwall, M.F., 2006. Adakites without Slab Melting: High Pressure Differentiation of Island Arc Magma, Mindanao, the Philippines. Earth and Planetary Science Letters, 243(3-4), 581-593. doi: 10.1016/j.epsl.2005.12.034
      Middlemost, E.A.K., 1985. Magmas and Magmatic Rocks: An Introduction to Igneous Petrology. Longman, London.
      Middlemost, E.A.K., 1994. Naming Materials in the Magma/Igneous Rock System. Earth Science Reviews, 37: 215-224. doi: 10.1016/0012-8252(94)90029-9
      Morgan, D.J., Jerram, D.A., Chertkoff, D.G., et al., 2007. Combining CSD and Isotopic Microanalysis: Magma Supply and Mixing Processes at Stromboli Volcano, Aeolian Islands, Italy. Earth and Planetary Science Letters, 260: 419-431. doi: 10.1016/j.epsl.2007.05.037
      Pearce, J.A., Harris, B.W., Tindle, A.G., 1984. Trace Element Discrimination Diagrams for the Tectonic Interpretation of Granitic Rocks. Journal of Petrology, 25(4): 956-983. doi: 10.1093/petrology/25.4.956
      Peccerillo, A., Taylor, S.R., 1976. Geochemistry of Eocene Calc-Alkaline Volcanic Rocks from the Kastamonu Area, Northern Turkey. Contributions to Mineralogy and Petrology, 58: 63-81. doi: 10.1007/BF00384745
      Perugini, D., Poli, G., Christofides, G., et al., 2003. Magma Mixing in the Sithonia Plutonic Complex, Greece: Evidence From Mafic Microgranular Enclaves. Mineralogy and Petrology, 78: 173-200. doi: 10.1007/s00710-002-0225-0
      Perugini, D., Poli, G., Valentini, L., 2005. Strange Attractors in Plagioclase Oscillatory Zoning: Petrological Implications. Contributions to Mineralogy and Petrology, 149: 482-497. doi: 10.1007/s00410-005-0667-6
      Qian, Q., Zhong, S.L., Li, T.Y., et al., 2002. Geochemical Characteristics and Petrogenesis of the Badaling High Ba-Sr Granitoids: A Comparison of Igneous Rocks from North China and the Dabie-Sulu Orogen. Acta Petrologica Sinica, 18(3): 275-292 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-YSXB200203001.htm
      Qin, F., Xu, X.X., Luo, Z.H., 2006. Mixing and Mingling in Petrogenesis of the Fangshan Intrusion, Beijing. Acta Petrologica Sinica, 22(12): 2957-2970 (in Chinese with English abstract). http://www.researchgate.net/publication/286221578_Mixing_and_mingling_in_petrogenesis_of_the_Fangshan_intrusion_Beijing
      Rapp, R.P., Shimizu, N., Norman, M.D., et al., 1999. Reaction between Slab-Derived Melts and Peridotite in the Mantle Wedge: Experimental Constraints at 3.8 GPa. Chemical Geology, 160: 335-356. doi: 10.1016/S0009-2541(99)00106-0
      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: 891-931. doi: 10.1093/petrology/36.4.891
      Rushmer, T., 1991. Partial Melting of Two Amphibolites: Contrasting Experimental Results Under Fluid-Absent Conditions. Contributions to Mineralogy and Petrology, 107: 41-59. doi: 10.1007/BF00311184
      Sen, C., Dunn, T., 1994. Dehydration Melting of a Basaltic Composition Amphibolite at 1.5 and 2.0 GPa: Implications for the Origin of Adakites. Contributions to Mineralogy and Petrology, 117: 394-409. doi: 10.1007/BF00307273
      Sparks, R.S.J., Marshall, L.A., 1986. Thermal and Mechanical Constraints on Mixing between Mafic and Silicic Magmas. Journal of Volcanology and Geothermal Research, 29(1-4): 99-124. doi: 10.1016/0377-0273(86)90041-7
      Streck, M.J., Leeman, W.P., Chesley, J., 2007. High-Magnesian Andesite from Mount Shasta: A Product of Magma Mixing and Contamination, Not a Primitive Mantle Melt. Geology, 35(4), 351-354. doi: 10.1130/G23286A.1
      Sun, J.F., Yang, J.H., Wu, F.Y., 2008. Magma Mixing Origin of the Fangshan Pluton: Mineral in situ Hf and Nd Isotopic Evidences. Bulletin of Mineralogy, Petrology and Geochemistry, 27(Suppl. ): 388 (in Chinese).
      Sun, J.F., Yang, J.H., Wu, F.Y., et al., 2010. Magma Mixing Controlling the Origin of the Early Cretaceous Fangshan Ganitic Pluton, North China Craton: In Situ U-Pb Age and Sr-, Nd-, Hf- and O-Isotope Evidence. Lithos, 120: 421-438. doi: 10.1016/j.lithos.2010.09.002
      Tao, J.D., Ma, C.Q., Zhang, J.Y., et al., 2009. Evolution of Enclaves in Beijing Fangshan Granodiorite and Genesis of Dioritic Microgranular Enclaves. Geological Science and Technology Information, 28(2): 33-41(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DZKQ200902006.htm
      Tsuchiyama, A., 1985. Dissolution Kinetics of Plagioclase in Melt of the System Diopside-Albite-Anorthite, and the Origin of Dusty Plagioclase in Andesites. Contributions to Mineralogy and Petrology, 89: 1-16. doi: 10.1007/BF01177585
      Vernon, R.H., 1990. Crystallization and Hybridism in Microgranitoid Enclave Magmas: Microstructural Evidence. Journal of Geophysical Research, 95: 17849-17859. doi: 10.1029/JB095iB11p17849
      Wang, D.Z., Xie, L., 2008. Magma Mingling: Evidence from Enclaves. Geological Journal of China Universities, 14(1): 16-21 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-GXDX200801004.htm
      Wang, D.Z., Zhou, X.M., Xu, X.S., et al., 1992. On Geneses of Microgranitoid Enclaves. Journal of Guilin College of Geology, 12(3): 235-241 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-GLGX199203007.htm
      Wang, R.J., Ma, C.Q., 1989. Features and Emplacement of the Zhoukoudian Stock, Beijing. Journal of China University of Geosciences, 14(4): 399-406 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQKX198904009.htm
      Wang, R.J., Ma, C.Q., Li, Z.Z., et al., 1990. Thermodynamic Structures and Emplacement Mechanism of the Zhoukoudian Intrusion. Regional Geology of China, 1: 1-7 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-ZQYD199001000.htm
      Wang, S.P., 1950. Petrogenesis Study on the Fangshan Intrusions. Geological Review, 15: 13-32 (in Chinese).
      Wang, S.S., 1983. Age Determinations of 40Ar-40K, 40Ar-39Ar and Radiogenic 40Ar Released Characteristics on K-Ar Geostandards of China. Chinese Journal of Geology, 4: 315-323 (in Chinese with English abstract). http://ci.nii.ac.jp/naid/80001776549/
      Wang, Y., Deng, J.F., Ji, G.Y., 2004. A Perspective on the Geotectonic Setting of Early Cretaceous Adakite-Like Rocks in the Lower Reaches of Yangtze River and Its Significance for Copper-Gold Mineralization. Acta Petrologica Sinica, 20(2): 297-314 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-YSXB200402010.htm
      Wood, D.A., Joron, J.L., Treuil, M., et al., 1979. Elemental and Sr Isotope Variations in Basic Lavas from Iceland and the Surrounding Ocean Floor. Contributions to Mineralogy and Petrology, 70: 319-339. doi: 10.1007/BF00375360
      Wood, D.A., Tarney, J., Weaver, B.L., 1981. Trace Element Variations in Atlantic Ocean Basalts and Proterozoic Dykes From Northwest Scotland: Their Bearing Upon the Nature and Geochemical Evolution of the Upper Mantle. Tectonophysics, 75: 91-112. doi: 10.1016/0040-1951(81)90211-0
      Wu, F.Y., Li, X.H., Yang, J.H., et al., 2007. Discussions on the Petrogenesis of Granites. Acta Petrologica Sinica, 23(6): 1217-1238 (in Chinese with English abstract). http://www.oalib.com/paper/1492686
      Xiong, X.L., Adam, J., Green, T.H., et al., 2006. Trace Element Characteristics of Partial Melts Produced by Melting of Metabasalts at High Pressures: Constraints on the Formation Condition of Adakitic Melts. Science in China Series D-Earth Science, 49(9): 915-925. doi: 10.1007/s11430-006-0915-2
      Xu, W.L., Gao, S., Wang, Q.H., et al., 2006. Mesozoic Crustal Thickening of the Eastern North China Craton: Evidence from Eclogite Xenoliths and Petrologic Implications. Geology, 34(9): 721-724. doi: 10.1130/G22551.1
      Xu, W.L., Yang, C.H., Yang, D.B., et al., 2006. Mesozoic High-Mg Diorites in Eastern North China Craton: Constraints on the Mechanism of Lithospheric Thinning. Earth Science Frontiers, 13(2): 120-129 (in Chinese with English abstract). http://www.researchgate.net/publication/291796536_Mesozoic_high-Mg_diorites_in_eastern_North_China_craton_Constraints_on_the_mechanism_of_lithospheric_thinning
      Yan, D.P., Zhou, M.F., Song, H.L., et al., 2005. A Geochronological Constraint to the Guandi Complex, Western Hills of Beijing, and Its Implications for the Tectonic Evolution. Earth Science Frontiers, 21: 332-337 (in Chinese with English abstract). http://www.researchgate.net/publication/285500523_A_geochronological_constraint_to_the_Guandi_complex_Western_Hills_of_Beijing_and_its_implications_for_the_tectonic_evolution
      Yan, D.P., Zhou, M.F., Song, H.L., et al., 2006. Mesozoic Extensional Structures of the Fangshan Tectonic Dome and Their Subsequent Reworking during Collisional Accretion of the North China Block. Journal of the Geological Society, 163(1): 127-142. doi: 10.1144/0016-764904-154
      Yan, D.P., Zhou, M.F., Zhao, D.G., et al., 2011. Origin, Ascent and Oblique Emplacement of Magmas in a Thickened Crust: An Example From the Cretaceous Fangshan Adakitic Pluton, Beijing. Lithos, 124, 102-120. doi: 10.1016/j.lithos.2010.11.015
      Yang, Z.W., 1928. Zhoukoudian Granite in the Western Mountain of Beijing. Academical Record of Geology Department of Peking University, 3: 10-14 (in Chinese).
      Ye, L.F., 1920. Geology of Westhill in Beijing. Ministry of Commerce and Agriculture, Beijing, 30-31 (in Chinese).
      Zhang, D.Q., 1981. The Characteristics and Origin of the Dioritic Inclusions in the Fangshan-Intrusion, Beijing. Geological Review, 27: 143-149 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DZLP198102008.htm
      Zhang, Q., Qian, Q., Wang, E.Q., et al., 2001a. An East China Plateau in Mid-Late Yanshanian Period: Implication from Adakites. Scientia Geologica Sinica, 36(2): 248-255 (in Chinese with English abstract). http://www.researchgate.net/publication/303564342_An_East_China_plateau_in_Mid-Late_Yanshanian_Period_Implicationfrom_adakites
      Zhang, Q., Wang, Y., Qian, Q., et al., 2001b. The Characteristics and Tectonic-Metallogenic Significances of the Adakites in Yanshan Period from Eastern China. Acta Petrologica Sinica, 17(2): 236-244 (in Chinese with English abstract). http://www.researchgate.net/publication/279686768_the_characteristics_and_tectonic-metallogenic_significances_of_the_adakites_in_yanshan_period_from_eastern_china
      Zhang, Q., Wang, Y., Xiong, X.L., et al., 2008. Adakite and Granite: Challenge and Opportunity. China Land Press, Beijing (in Chinese).
      Zhao, W.X., 2003. Geology of Zhoukoudian and Field Geological Working Methods, Advanced Technology Application. China University of Geosceiences Press, Wuhan (in Chinese).
      Zhao, Z.H., Xiong, X.L., Wang, Q., et al., 2008. Some Aspects on Geochemistry of Nb and Ta. Geochimica, 37(4): 304-320 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQHX200804004.htm
      Zheng, S.C., Huang, F.S., Jiang, C.Y., et al., 1987. Oxygen, Hydrogen and Carbon Isotope Studies for Fangshan Granitic Intrusion. Acta Petrologica Sinica, 3: 13-22 (in Chinese with English abstract).
      蔡剑辉, 阎国翰, 牟保磊, 等, 2005. 北京房山岩体锆石U-Pb年龄和Sr、Nd、Pb同位素与微量元素特征及成因探讨. 岩石学报, 21(3): 776-788. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200503018.htm
      陈斌, 刘超群, 田伟, 2006. 太行山中生代岩浆作用过程中的壳幔岩浆混合作用: 岩石学和地球化学证据. 地学前缘, 13(2): 140-147. doi: 10.3321/j.issn:1005-2321.2006.02.012
      邓晋福, 1978. 硅线石角岩形成时变质反应的热力学计算. 地球化学, 3: 234-241. doi: 10.3321/j.issn:0379-1726.1978.03.009
      干国樑, 1993. 矿物-熔体间元素分配系数资料及主要变化规律. 岩石矿物学杂志, 12(2): 144-181. https://www.cnki.com.cn/Article/CJFDTOTAL-YSKW199302006.htm
      何作霖, 1935. 西山花岗岩侵入体. 北平: 国立中央研究院丛刊, 5.
      黄福生, 姜常义, 1985. 房山岩体的地质-地球化学特征及其成因探讨. 西安地质学院学报, 7(3): 9-29. https://www.cnki.com.cn/Article/CJFDTOTAL-XAGX198503002.htm
      刘兵, 巴金, 张璐, 等, 2008. 北京周口店官地杂岩变质-深熔作用的锆石LA-ICP-MS U-Pb定年. 地质科技情报, 27(6): 37-42. doi: 10.3969/j.issn.1000-7849.2008.06.007
      刘国惠, 伍家善, 1987. 北京房山地区的变质带. 中国地质科学院院报, 16: 113-137. https://www.cnki.com.cn/Article/CJFDTOTAL-DQXB198702010.htm
      马昌前, 1988. 北京周口店岩株侵位和成分分带的岩浆动力学机理. 地质学报, 62(4): 329-341. https://www.cnki.com.cn/Article/CJFDTOTAL-DZXE198804004.htm
      马昌前, 明厚利, 杨坤光, 2004. 大别山北麓的奥陶纪岩浆弧: 侵入岩年代学和地球化学证据. 岩石学报, 20(3): 393-402. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200403003.htm
      马昌前, 王人镜, 1990. 北京周口店岩体中钾长石巨晶的特征及成因. 矿物学报, 10(4): 323-331. doi: 10.3321/j.issn:1000-4734.1990.04.005
      马昌前, 王人镜, 邱家骧, 1992. 花岗质岩浆起源和多次岩浆混合的标志: 包体-以北京周口店岩体为例. 地质论评, 38(2): 109-119. doi: 10.3321/j.issn:0371-5736.1992.02.002
      马芳, 穆治国, 刘玉琳, 2003. 北京房山侵入岩体: 微量元素、稀土元素及Sr同位素组成对其成因的制约. 地球学报, 24(2): 105-110. https://www.cnki.com.cn/Article/CJFDTOTAL-DQXB200302001.htm
      钱青, 钟孙霖, 李通艺, 等, 2002. 八达岭基性岩和高Ba-Sr花岗岩地球化学特征及成因探讨: 华北和大别-苏鲁造山带中生代岩浆岩的对比. 岩石学报, 18(3): 275-292. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200203001.htm
      孙金凤, 杨进辉, 吴福元, 2008. 房山岩体的岩浆混合成因: 矿物原位微区Hf、Nd同位素证据. 矿物岩石地球化学通报, 27(增刊): 388.
      覃锋, 徐晓霞, 罗照华, 2006. 北京房山岩体形成过程中的岩浆混合作用证据. 岩石学报, 22(12): 2957-2970. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200612012.htm
      陶继东, 马昌前, 张金阳, 等, 2009. 北京房山花岗闪长岩体中包体的演化及闪长质微粒包体的成因. 地质科技情报, 28(2): 33-41. https://www.cnki.com.cn/Article/CJFDTOTAL-DZKQ200902006.htm
      王德滋, 谢磊, 2008. 岩浆混合作用: 来自岩石包体的证据. 高校地质学报, 14(1): 16-21. https://www.cnki.com.cn/Article/CJFDTOTAL-GXDX200801004.htm
      王德滋, 周新民, 徐夕生, 等, 1992. 微粒花岗岩类包体的成因. 桂林冶金地质学院学报, 12(3): 235-241. https://www.cnki.com.cn/Article/CJFDTOTAL-GLGX199203007.htm
      王人镜, 马昌前, 1989. 北京周口店侵入体特征及其侵位机制. 地球科学, 14(4): 399-406. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX198904009.htm
      王人镜, 马昌前, 李志中, 等, 1990. 周口店岩体热动力构造及定位机制研究. 中国区域地质, 1: 1-7. https://www.cnki.com.cn/Article/CJFDTOTAL-ZQYD199001000.htm
      王述平, 1950. 房山侵入体之岩石成因学的究研. 地质论评, 15: 13-32. https://www.cnki.com.cn/Article/CJFDTOTAL-DZLP1950Z1002.htm
      王松山, 1983. 我国K-Ar法标准样40Ar-40K和40Ar-39Ar年龄测定及放射性成因40Ar的析出特征. 地质科学, 4: 315-323. https://www.cnki.com.cn/Article/CJFDTOTAL-DZKX198304001.htm
      汪洋, 邓晋福, 姬广义, 2004. 长江中下游地区早白垩世埃达克质岩的大地构造背景及其成矿意义. 岩石学报, 20(2): 297-314. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200402010.htm
      吴福元, 李献华, 杨进辉, 等, 2007. 花岗岩成因研究的若干问题. 岩石学报, 23(6): 1217-1238. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200706000.htm
      许文良, 杨承海, 杨德彬, 等, 2006. 华北克拉通东部中生代高Mg闪长岩-对岩石圈减薄机制的制约. 地学前缘, 13(2): 120-129. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200602014.htm
      颜丹平, 周美夫, 宋鸿林, 等, 2005. 北京西山官地杂岩的形成时代及构造意义. 地学前缘, 21: 332-337. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200502018.htm
      杨增威, 1928. 北京西山周口店花岗岩. 北京大学地质系学会志, 3: 10-14.
      叶良辅, 1920. 北京西山地质志. 北京: 农商部地质调查所, 30-31.
      张德全, 1981. 北京房山侵入体闪长质包体的特征及其成因意义. 地质论评, 27: 143-149. https://www.cnki.com.cn/Article/CJFDTOTAL-DZLP198102008.htm
      张旗, 钱青, 王二七, 等, 2001a. 燕山中晚期的中国东部高原: 埃达克岩的启示. 地质科学, 36(2): 248-255. https://www.cnki.com.cn/Article/CJFDTOTAL-DZKX200102015.htm
      张旗, 王焰, 钱青, 等, 2001b. 中国东部燕山期埃达克岩的特征及其构造-成矿意义. 岩石学报, 17(2): 236-244. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200102007.htm
      张旗, 王焰, 熊小林, 等, 2008. 埃达克岩和花岗岩: 挑战与机遇. 北京: 中国大地出版社.
      赵温霞, 2003. 周口店地质及野外地质工作方法与高新技术应用. 武汉: 中国地质大学出版社.
      赵振华, 熊小林, 王强, 等, 2008. 铌与钽的某些地球化学问题. 地球化学, 37(4) : 304-320. https://www.cnki.com.cn/Article/CJFDTOTAL-DQHX200804004.htm
      郑斯成, 黄福生, 姜常义, 等, 1987. 房山花岗岩岩体氧氢碳的同位素研究. 岩石学报, 3: 13-22. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB198703002.htm
    • 加载中

    Catalog

      通讯作者: 陈斌, bchen63@163.com
      • 1. 

        沈阳化工大学材料科学与工程学院 沈阳 110142

      1. 本站搜索
      2. 百度学术搜索
      3. 万方数据库搜索
      4. CNKI搜索

      Figures(9)  / Tables(2)

      Article views (4850) PDF downloads(801) Cited by()
      Proportional views

      /

      DownLoad:  Full-Size Img  PowerPoint
      Return
      Return