南秦岭山阳-柞水矿集区构造-岩浆-成矿作用

闫臻, 王宗起, 陈雷, 刘树文, 任涛, 徐学义, 王瑞廷. 南秦岭山阳-柞水矿集区构造-岩浆-成矿作用[J]. 岩石学报, 2014, 30(2): 401-414.
引用本文: 闫臻, 王宗起, 陈雷, 刘树文, 任涛, 徐学义, 王瑞廷. 南秦岭山阳-柞水矿集区构造-岩浆-成矿作用[J]. 岩石学报, 2014, 30(2): 401-414.
YAN Zhen, WANG ZongQi, CHEN Lei, LIU ShuWen, REN Tao, XU XueYi, WANG RuiTing. Tectono-magmatism and metallogeneses of Shanyang-Zhashui ore concentration area in Qinling Orogen.[J]. Acta Petrologica Sinica, 2014, 30(2): 401-414.
Citation: YAN Zhen, WANG ZongQi, CHEN Lei, LIU ShuWen, REN Tao, XU XueYi, WANG RuiTing. Tectono-magmatism and metallogeneses of Shanyang-Zhashui ore concentration area in Qinling Orogen.[J]. Acta Petrologica Sinica, 2014, 30(2): 401-414.

南秦岭山阳-柞水矿集区构造-岩浆-成矿作用

  • 基金项目:

    本文受国家科技支撑计划课题(2011BAB04B05、2006BAB01A11)和国家自然科学基金项目(41172178)联合资助.

Tectono-magmatism and metallogeneses of Shanyang-Zhashui ore concentration area in Qinling Orogen.

  • 山阳-柞水矿集区是南秦岭成矿带主要矿集区之一。从新元古代到晚侏罗世-早白垩世,山阳-柞水地区经历了洋壳俯冲和陆陆碰撞的构造演化,在演化的不同阶段形成了不同矿化类型、矿化组合的Cu、PbZn、Ag、Fe、Mo、Au矿床。新元古代时期,由于洋壳的俯冲作用,山阳-柞水地区形成了与基性岩有关的钛磁铁矿;泥盆纪-二叠纪时期,古秦岭洋消减形成山阳-柞水弧前盆地的同时,也形成一系列沉积型Fe、Ag、PbZn矿床;三叠纪时期,华北、扬子板块全面碰撞并形成了与碰撞作用密切相关的晚三叠世斑岩型Mo矿和造山型Au矿;晚侏罗世-早白垩世时期,则形成了碰撞后伸展环境下的矽卡岩-斑岩型CuMo-Au矿床。山阳-柞水矿集区内的各种时代和类型的矿床是秦岭造山带不同阶段的构造-岩浆活动的产物,对真实、客观的理解秦岭地区的构造演化具有重要意义。
  • 加载中
  • [1]

    Cao XD and Hu YX. 2000. Qinling polygenic foreland basin in Late Caledonian to Early Variscan. Northwest Geoscience, 21(2): 1-14 (in Chinese with English abstract)

    [2]

    Chen JL, Xu XY, Wang HL, Wang ZQ, Zeng ZX, Li P and Wang C. 2008a. Geochemical characteristics and petrogenesis of Early Paleozoic adakitic rock in the west segment of North Qinling. Acta Geologica Sinica, 82(4): 475-484 (in Chinese with English abstract)

    [3]

    Chen JL, Xu XY, Wang HL, Wang ZQ, Zeng ZX, Wang C and Li P. 2008b. LA-ICP-MS zircon U-Pb dating of Tangzang quartz-diorite pluton in the west segment of North Qinling Mountains and it tectonic significance. Geoscience, 22(1): 45-52 (in Chinese with English abstract)

    [4]

    Chen L, Wang ZQ, Yan Z, Wu FF, Ren T and Guo YH. 2014. Metallogenesis of 150~140Ma porphyry-skarn CuMoFe(Au) deposit in Shanyang-zhashui ore concentration area, Qinling. Acta Petrologica Sinica, 30(2):415-436 (in Chinese with English abstract)

    [5]

    Chen ZL. 2009. General geological feature of Yindongzi polymetallic Ag deposit in Zhashui. Mineral Resource and Geology, 23(6): 519-523 (in Chinese with English abstract)

    [6]

    Dai JZ, Yu KP, Wang RT, Yuan HC, Wang L, Zhang XS and Li JB. 2014. Geological characteristics, Re-Os geochronology of Xinpu molybdenum deposit in Ningshan, southern Qinling and its implications. Acta Petrologica Sinica, in press (in Chinese with English abstract)

    [7]

    Dong Y, Zhang G, Neubauer F, Liu X, Genser J and Hauzenberger C. 2011. Tectonic evolution of the Qinling orogen, China: Review and synthesis. Journal of Asian Earth Sciences, 41(3): 213-237

    [8]

    Du DH. 1986. Study of the Devonian of the Qinba Area, Shannxi Province. Xi'an: Xi'an Jiaotong University Press, 1-230 (in Chinese)

    [9]

    Du YS. 1997. Devonian Sedimentary Geology of Qinling Orogenic Belt. Wuhan: China University of Geosciences Press, 1-130 (in Chinese)

    [10]

    Enkin RJ, Yang ZY, Chen Y and Courtillot V. 1992. Paleomagnetic constraints on the geodynamic history of the major blocks of China from Permian to present. Journal of Geophysical Research, 97(B10): 13953-13989

    [11]

    Fang WX and Liu JJ. 2013. Dynamics of the Late Paleozoic apart-pull basin and its relationship with mineralization of gold-silver-polymetallic-barite-siderite deposits in Zha-Shan-Shang, Shaanxi Province. Acta Sedimentologica Sinica, 31(2): 193-209 (in Chinese with English abstract)

    [12]

    Feng JZ, Wang DB, Wang XM, Zeng Y and Li T. 2004. Magmatic gold mineralization in the western Qinling Orogenic belt: Geology and metallogenesis of the Baguamiao, Liba and Xiaogouli gold deposits. Acta Geologica Sinica, 78(2): 529-533

    [13]

    Gao CL, Huang ZG and Fang YM. 2009. South QInling in the Devonian: Juxtaposition of peripheral foreland basins and new-born oceanic basins. Petroleum Geology and Experiment, 31(2): 136-141 (in Chinese with English abstract)

    [14]

    Gao S, Zhang B, Gu X, Xie Q, Gao Q, Gao C and Guo X. 1995. Silurian-Devonian provenance changes of South Qinling basins: Implications for accretion of the Yangtze (South China) to the North China cratons. Tectonophysics, 250(1): 183-197

    [15]

    Gong HJ, Zhu LM, Li BY, Li B and Guo B. 2009a. Zircon U-Pb ages and Hf isotopic characteristics and their geological significance of the Shahewan, Caoping and Zhashui granitic plutons in the South Qinling orogen. Acta Petrologica Sinica, 25(2): 248-264 (in Chinese with English abstract)

    [16]

    Gong HJ, Zhu LM, Li BY, Li B, Guo B and Wang JQ. 2009b. Zircon U-Pb ages and Hf isotopic composition of the Dongjiangkou granitic pluton and its mafic enclaves in the South Qinling terrain. Acta Petrologica Sinica, 25(11): 3029-3045 (in Chinese with English abstract)

    [17]

    Guo XQ, Yan Z, Wang ZQ, Fu CL and Chen L. 2014. Geological background and geochronology of Lijiabian titanomagnetite deposit in Shanyang-Zhashui aera, Shaanxi. Acta Petrologica Sinica, 30(2):437-450 (in Chinese with English abstract)

    [18]

    Hacker BR, Ratschbacher L and Liu JG. 2004. Subduction, collision and exhumation in the ultrahigh pressure Qinling-Dabie orogen. In: Malpas J, Fletcher CJN, Ali JR and Aitchison JC (eds.). Aspects of the Tectonic Evolution of China. Geological Society Special Publication, 6: 157-175

    [19]

    He ZJ, Niu BG and Ren JS. 2005. Tectonic discriminations of sandstones geochemistry from the Middle-Late Devonian Liuling Group in Shanyang area, southern Shaanxi. Chinese Journal of Geology, 40(4): 594-607 (in Chinese with English abstract)

    [20]

    Hou MT, Yan Z and Gao HX. 2010. Mineralization, geological features, and prospecting indicators of the copper (molybdenum) in southern margin of Taibai rock-mass. Northwestern Geology, 43(1): 75-85 (in Chinese with English abstract)

    [21]

    Hou ZQ, Zheng YC, Yang ZM and Yang ZS. 2012. Metal logenesis of continental collision setting: Part I. Gangdese Cenozoic porphyry Cu-Mo systems in Tibet. Mineral Deposit, 31(4): 647-670 (in Chinese with English abstract)

    [22]

    HsÜ KJ and Wang Q. 1987. Tectonic evolution of Qinling Mountains, China. Eclogae Geol. Helv., 80(3): 735-752

    [23]

    Hu JM, Cui JT, Meng QR and Zhang HY. 2004. The U-Pb age of zircons separated from the Zhashui granite in Qinling Orogen and its significance. Geological Review, 50(3): 323-329 (in Chinese with English abstract)

    [24]

    Hu QQ, Wang YT, Wang RT, Li JH, Dai JZ and Wang SY. 2012. Ore-forming time of the Erlihe Pb-Zn deposit in the Fengxian-Taibai ore concentration area, Shaanxi Province: Evidence from the Rb-Sr isotopic dating of sphalerites. Acta Petrologica Sinica, 28(1): 258-266 (in Chinese with English abstract)

    [25]

    Ji RS, Qin DY and Gao CL. 1997. Orogenic Belts and Basins in the Eastern Qinling. Xi'an: Xi'an Cartographic Publishing House, 1-197 (in Chinese)

    [26]

    Krner A, Zhang GW, Zhuo DW and Sun Y. 1993. Granites in the Tongbai area, Qinling belt, China: Geochemistry, petrology, single zircon geochronology and implications for the tectonic evolution of Eastern Asia. Tectonics, 12(1): 245-255

    [27]

    Li CY, Liu YW, Zhu BQ, Feng YM and Wu HQ. 1978. Tectonic history of the Qinling and Qilian mountains. In: Papers on Geology for International Exchange, Volume 1, Regional Geology and Geological Mechanics. Beijing: Geological Publishing House, 174-187 (in Chinese)

    [28]

    Li JZ, Cao XD and Yang JL. 1994. Sedimentation and Evolution of Phanerozoic Oceanic Basins in the Qinling Orogenic Belt. Beijing: Geological Publishing House, 1-206 (in Chinese)

    [29]

    Li N, Chen YJ, Zhang H, Zhao TP, Deng XH, Wang Y and Ni ZY. 2007. Molybdenum deposits in East Qinling. Earth Science Frontiers, 14(5): 186-198 (in Chinese with English abstract)

    [30]

    Li Q, Liu S, Wang Z, Wang D, Yan Z, Yang K and Wu F. 2011. Late Jurassic Cu-Mo mineralization at the Zhashui-Shanyang district, South Qinling, China: Constraints from Re-Os molybdenite and laser ablation-inductively coupled plasma mass spectrometry U-Pb zircon dating. Acta Geologica Sinica, 85(3): 661-672

    [31]

    Li ZJ. 1986. The geochemical study of the small intermediate-acidic intrusions in Zhashui-Shanyang metallogenic benle, Shaanxi Province. Earth Science, 11(4): 375-379 (in Chinese with English abstract)

    [32]

    Lin ZW, Qin Y, Zhou ZJ, Yue SW, Zeng QT and Wang LX. 2013. Zircon U-Pb dating and geochemistry of the volcanic rocks at Huachanggou area, Mian-Lue suture, South Qinling. Acta Petrologica Sinica, 29(1): 83-94 (in Chinese with English abstract)

    [33]

    Ling WL, Chen JP, Wang XH and Zhou HW. 2002. Geochemical features of the Neoproterozoic igneous rocks from the Wudang region and their implications for the construction of the Jinning tectonic evolution along the South Qinling orogenic belt. Acta Petrologica Sinica, 18(1): 25-36 (in Chinese with English abstract)

    [34]

    Liu L, Gao JL and Yang L. 2013. Analysis on the geologic characteristics of Yaohuogou bedded skarn copper deposit in Zhanshan basin and its formation causes. Mineral Engineering Research, 27(2): 70-74 (in Chinese with English abstract)

    [35]

    Liu RY, Niu BG, He ZJ and Ren JS. 2011. LA-ICP-MS zircon U-Pb geochronology of the eastern part of the Xiaomaoling composite intrusives in Zhashui area, Shaanxi, China. Geological Bulletin of China, 2011, 30(2-3): 448-460 (in Chinese with English abstract)

    [36]

    Luo XC, Hu MA, Wang SY, Hu ZG and Jiang MX. 1997. Metallogenic characteristics of submarine exhalation-sedimentary Ag-Pb polymetalic deposit in Yindong area, Shannxi Province. Earth Science, 22(2): 185-189 (in Chinese with English abstract)

    [37]

    Mattauer M, Matte P, Malavielle J, Tapponnier P, Maluski H, Xu ZQ, Lu YL and Tang YQ. 1985. Tectonics of the Qinling belt: Build up and evolution of eastern Asia. Nature, 317(6037): 496-500

    [38]

    Meng QR, Men ZC and Cui Zl. 1995. Reorganization of a missing Late Paleozoic old land in the northern margin of the South Qinling. Chinese Science Bulletin, 40: 254-246 (in Chinese)

    [39]

    Meng QR and Zhang GW. 1999. Timing of collision of the North and South China blocks: Controversy and reconciliation. Geology, 27: 185-189

    [40]

    Niu BG, He ZJ, Ren JS, Wang J and Deng P. 2006. SHRIMP U-Pb ages of zircons from the intrusions in the western Douling-Xiaomaoling uplift and their geological significances. Geological Review, 52(6): 826-835 (in Chinese with English abstract)

    [41]

    Pei XZ. 1997. Composition and Tectonic Evolution of the Shangdan Structural Zone in the East Qinling, China. Xi'an: Xi'an Cartographic Publishing House, 29-98 (in Chinese)

    [42]

    Peng HL, Yang YC, Wang HM and Zhang MS. 2012. Geochemistry and tectonic significance of the Xiaomoling island arc volcanic rocks. Geology of Shaanxi, 22(1): 11-16 (in Chinese with English abstract)

    [43]

    Qiu JX. 1993. The Alkaline Rocks in Qin-Bashan Area. Beijing: Geological Publishing House, 1-183 (in Chinese)

    [44]

    Ratschbacher L, Hacker BR, Calvert A, Webb LE, Crimmer JC, McWilliams MO, Ireland T, Dong S and Hu J. 2003. Tectonics of the Qinling (Central China): Tectonostratigraphy, geochronology, and deformation history. Tectonophysics, 366(1-2): 1-53

    [45]

    Ren JS, Zhang ZK, Niu BG and Liu ZG. 1991. On the Qinling orogenic belt integration of the Sino-Korean and Yangtze blocks. In: Ye LJ, Qian XL and Zhang GW (eds.). A Selection of Papers Presented at the Conference on the Qinling Orogenic Belt. Xi'an: Northwest University Press, 99-110 (in Chinese)

    [46]

    Ren T, Wang RT, Wang XY, Xia CL and Guo YH. 2009. A way and method for prospecting copper deposit of the Zhashui-Shanyang sedimentary basin in the Qinling orogenic belt. Acta Geologica Sinica, 83(11): 1730-1738 (in Chinese with English abstract)

    [47]

    Rui ZY, Huang ZK, Qi GM, Xu Y and Zhang HT. 1983. Porphyry Copper (Molybedenum) Deposit of China. Beijing: Geological Publishing House, 1-350 (in Chinese)

    [48]

    Sengr AMC. 1985. East Asian tectonic collage. Nature, 318(6041): 16-17

    [49]

    Sun WD, Li SG, Sun Y, Zhang GW and Zhang ZQ. 1996. Chronology and geochemistry of a lava pillow in the Erlangping Group at Xixia in the North Qinling Mountains. Geological Review, 42(2): 144-153 (in Chinese with English abstract)

    [50]

    Sun WD, Li SG, Chen YD and Li YJ. 2003. Timing of syn-orogenic granitoids in the South Qinling, Central China: Constraints on the evolution of the Qinling-Dabie orogenic belt. Journal of Geology, 110: 457-468

    [51]

    Wan YW. 1980. Mineralization characteristics and ore deposit model of intermediate-acid granitoid porphyry from Shangyang region. Regional Characteristics of Qinling, 3: 1-36 (in Chinese with English abstract)

    [52]

    Wang DB, Shao SC, Feng JZ and Wang XM. 2002. 39Ar/40Ar dating of three typical gold deposits in southern Qinling and its implication. Transactions of Nonferrous Metals Society of China, 12(3): 498-503

    [53]

    Wang DS, Wang RT, Dai JZ, Wang CA, Li JH and Chen LX. 2009. "Dual ore-controlling factors" characteristics of metallic deposits in the Qinling Orogenic Belt. Acta Geologica Sinica, 83(11): 1719-1729 (in Chinese with English abstract)

    [54]

    Wang HZ, Xu CY and Zhou ZG. 1982. Tectonic development of the continental margins on both sides of the palaeo-Qinling marine realm. Acta Geologica Sinica, 56(3): 270-80 (in Chinese with English abstract)

    [55]

    Wang T, Zhang GW, Wang XX and Li WP. 1999. A possible dynamic characteristics of more continental blocks, ocean basin and weak subduction and the granite evolution: An example from the granites in the core of the Qinling orogenic belt, Central China. Journal of Nanjing University (Natural Sciences), 35(6): 599-667 (in Chinese with English abstract)

    [56]

    Wang T, Wang XX, Zhang GW, Pei XZ and Zhang CL. 2003. Remnants of a Neoproterozoic collisional orogenic belt in the core of the Phanerozoic Qinling orogenic belt (China). Gondwana Research, 26(4): 699-710

    [57]

    Wang T, Pei XZ, Wang XX and Hu NG. 2005. Orogen-parallel westward oblique uplift of the Qinling complex in the core of the Qinling orogen (China): An example of oblique extrusion of deep-seated metamorphic rocks in a convergent orogen. Journal of Geology, 113: 181-200

    [58]

    Wang T, Zhang ZQ, Wang XX and Zhang CL. 2005. Neoproterozoic collisional deformation in the core of the Qinling orogen and its age: Constrained by zircon SHRIMP dating of strongly deformed syncollisional granites and weakly deformed granitic veins. Acta Geologica Sinica, 79(2): 220-231 (in Chinese with English abstract)

    [59]

    Wang T, Wang XX, Tian W, Zhang CL, Li WP and Li S. 2009. North Qinling Paleozoic granite associations and their variation in space and time: Implications for orogenic processes in the orogens of Central China. Science in China (Series D), 52(9): 1359-1384, doi: 10.1007/s11430-009-0129-5

    [60]

    Wang T, Wang ZQ, Yan Z, Yan QR, Zhang YL and Xiang ZJ. 2009. Geochemical characteristics and zircon SHRIMP U-Pb dating of Sehe granite in Shanyang County, Shaanxi Province and its geological significance. Acta Geologica Sinica, 83(11): 1657-1665 (in Chinese with English abstract)

    [61]

    Wang XX, Wang T, Qi QJ and Li S. 2011. Temporal-spatial variations, origin and their tectonic significance of the Late Mesozoic granites in the Qinling, Central China. Acta Petrologica Sinica, 27(6): 1573-1593 (in Chinese with English abstract)

    [62]

    Wang ZQ, Wang T, Yan Z and Yan QR. 2002. Late Paleozoic fore-arc accretionary piggyback type basin system in the south Qinling, Central China. Geological Bulletin of China, 21(8-9): 456-464 (in Chinese with English abstract)

    [63]

    Wang ZQ, Yan QR, Yan Z, Wang T, Jiang CF, Gao LD, Li QG, Chen JL, Zhang YL, Liu P, Xie CL and Xiang ZJ. 2009. New division of the main tectonic units of the Qinling Orogenic Belt, Central China. Acta Geologica Sinica, 83(11): 1527-1546 (in Chinese with English abstract)

    [64]

    Wu FF, Wang ZQ, Wang T, Yan Z and Chen L. 2012. SHRIMP zircons U-Pb age and geochemical characteristics of the Banbanshan K-feldspar granite in Shangyang, southern Qinling orogenic belt. Journal of Mineralogy and Petrology, 32(2): 63-73 (in Chinese with English abstract)

    [65]

    Wu FF, Wang ZQ, Yan Z, Chen L, Xia CL, Guo YH and Peng YM. 2014. Geochemical characters, zircon U-Pb ages and Lu-Hf isotopic composition of the intermediate-acidic plutons in the Shanyang-Zhashui area, Qinling orogenic belt. Acta Petrologica Sinica, 30(2): 451-471 (in Chinese with English abstract)

    [66]

    Xiao B, Li Q, Liu S, Wang Z, Yang P, Chen J and Xu X. 2013. Highly fractionated Late Triassic I-type granites and related molybdenum mineralization in the Qinling orogenic belt: Geochemical and U-Pb-Hf and Re-Os isotope constraints. Ore Geology Review, 56: 220-233, doi: 10.1016/j.oregeorev.2013.07.003

    [67]

    Xie GQ, Ren T, Li JB, Wang RT, Xian CL, Gou YH, Dai JZ and Shen ZC. 2012. Zircon U-Pb age and petrogenesis of ore-bearing granitoid for the Chigou Cu-Mo deposit from the Zhashan basin, Shaanxi Province. Acta Petrologica Sinica, 28(1): 15-26 (in Chinese with English abstract)

    [68]

    Xu ZQ, Lu YL, Tang YQ, Mattauer M, Matte PH, Malavieille J, Tapponnier P and Maluski H. 1986. Deformation characteristics and tectonic evolution of the eastern Qinling orogenic belt. Acta Geologica Sinica, 60(3): 237-247 (in Chinese with English abstract)

    [69]

    Xue F, Lerch MF, Krner A, Reischmann T. 1996. Tectonic evolution of the east Qinling Mountains, China, in the Paleozoic: A review and new tectonic model. Tectonophysics, 253(3-4): 271-284

    [70]

    Yan M, Liu SW, Li QG, Yang PT, Wang W, Guo RR, Bai X and Deng ZB. 2014. LA-ICP-MS zircon U-Pb chronology and Lu-Hf isotopic features of the Mihunzhen pluton in the South Qinling tectonic belt. Acta Petrologica Sinica, 30(2):390-400 (in Chinese with English abstract)

    [71]

    Yan QR, Wang ZQ, Chen JL Yan Z, Wang T, Li QG, Jiang CF and Zhang QQ. 2007a. Tectonic setting and SHRIMP age of volcanic rocks in the Xieyuguan and Caotangou Groups: Implications for the North Qinling Orogenic Belt. Acta Geologica Sinica, 81(4): 488-500 (in Chinese with English abstract)

    [72]

    Yan QR, Wang ZQ, Yan Z, Xiang ZJ, Chen JL and Wang T. 2007b. SHRIMP analyses for ophiolitic-mafic blocks in the Kangxian-Mianxian section of the Mianxian-Lueyang melange: Their geological implications. Geological Review, 53(6): 755-764 (in Chinese with English abstract)

    [73]

    Yan Z, Wang ZQ, Yan QR, Wang T, Xiao WJ, Li JL, Han FL, Chen JL and Yang YC. 2006. Devonian sedimentary environments and provenances of the Qinling orogen: Constraints on Late Paleozoic southward accretion of the North China craton. International Geology Review, 48(7): 585-618

    [74]

    Yan Z, Wang ZQ, Wang T, Yan QR, Xiao WJ, Li JL, Han FL and Chen JL. 2007. Tectonic setting of Devonian sediments in the Qinling orogen: Constraints from detrital modes and geochemistry of clastic rocks. Acta Petrologica Sinica, 23(5): 1023-1042 (in Chinese with English abstract)

    [75]

    Yan Z, Wang ZQ, Chen JL, Yan QR, Wang T and Zhang YL. 2009. Geochemistry and SHRIMP zircon U-Pb dating of amphibolites from the Danfeng Group in the Wuguan area, North Qinling Terrane and their tectonic significance. Acta Geologica Sinica, 3(11): 1633-1646 (in Chinese with English abstract)

    [76]

    Yan Z, Wang Z, Chen J, Yan Q and Wang T. 2010. Detrital record of Neoproterozoic arc-magmatism along the NW margin of the Yangtze Block, China: U-Pb geochronology and petrography of sandstones. Journal of Asian Earth Sciences, 37(1): 322-334

    [77]

    Yan Z, Wang Z, Yan Q, Wang T and Guo X. 2012. Geochemical constraints on the provenance and depositional setting of the Devonian Liuling Group, East Qinling Mountains, Central China: Implications for the tectonic evolution of the Qinling orogenic belt. Journal of Sedimentary Research, 82(1): 9-20

    [78]

    Yang K, Liu SW, Li QG, Wang ZQ, Han YG, Wu FH and Zhang F. 2009. LA-ICPMS zircon U-Pb geochronology and geological significance of Zhashui granitoids and Dongjiangkou granitoids from Qinling, Central China. Acta Scientiarum Naturalium Universitatis Pekinensis, 45(5): 841-847 (in Chinese with English abstract)

    [79]

    Yang Z, Dong YP, Zhou DW, Yu J and Ma HY. 2008. Geochemistry and geological significance of basic rocks in the Xiaomoling complex in the Zhashui area, South Qinling, China. Geological Bulletin of China, 27(5): 611-617 (in Chinese with English abstract)

    [80]

    Yang ZH. 1991. Tectonic Facies and Mineralization of Marginal Translational Basins. Beijing: Science Press, 1-228 (in Chinese)

    [81]

    Yin A and Nie S. 1993. An indentation model for the north and south China collision and the development of the Tanlu and Honam Fault systems, eastern Asia. Tectonics, 12(4): 801-813

    [82]

    Yu ZP and Meng QR. 1995. Late Paleozoic sedimentary and tectonic evolution of the Shangdan suture zone, eastern Qinling, China. Journal of Southeast Asian Earth Science, 11(3): 237-242

    [83]

    Yu ZP, Sun Y and Zhang GW. 1988. The Forearc Sedimentary System in the Danfeng Area, the Qinliing Mountains. In: Zhang GW (ed.). Formation and Evolution of the Qinling Orogen. Xi'an: Northwest University Press, 75-85 (in Chinese)

    [84]

    Zhang BR, Chen DX, Li ZJ, Gu XM, Jiang JY, Hu YK, Li FL, Guo WY and Li YC. 1989. Region Geochemistry of Shanyang-Zhashui Metallogenic Belt, Shaanxi Province. Wuhan: Press of China University of Geosciences, 1-221 (in Chinese)

    [85]

    Zhang CL, Liu L, Zhang GW, Wang T, Chen DL, Yuan HL, Liu XM and Yan YX. 2004. Determination of Neoproterozoic post-collisional granites in the North Qinling Mountains and its tectonic significance. Earth Science Frontiers, 11(3): 33-42 (in Chinese with English abstract)

    [86]

    Zhang CL, Wang T and Wang XX. 2008. Origin and tectonic setting of the Early Mesozoic granitoids in Qinling orogenic belt. Geological Journal of China Universities, 14(3): 304-316 (in Chinese with English abstract)

    [87]

    Zhang EP, Niu DY, Huo YG, Zhang LF and Li YG. 1993. Geologic Tectonic Features of Qinling-Dabashan Mountains and Adjacent Regions. Beijing: Geological Publishing House, 1-291 (in Chinese)

    [88]

    Zhang F, Liu SW, Li QG et al. 2011. Re-Os and U-Pb geochronology of the Erlihe Pb-Zn deposit, Qinling orogenic belt, central China, and constraints on its deposit genesis. Acta Geologica Sinica, 85(3): 673-682

    [89]

    Zhang GW, Mei ZC and Li TH. 1988. The ancient passive continental margin in south of the Qinling Orogenic Belt. In: Zhang GW (ed.). Formation and Evolution of the Qinling Orogen. Xi'an: Northwest University Press, 86-98 (in Chinese)

    [90]

    Zhang GW, Zhang BR, Yuan XC and Xiao QH. 2001. Qinling Orogenic Belt and Continental Dynamics. Beijing: Science Press, 1-855 (in Chinese)

    [91]

    Zhang HF, Gao S, Zhang B, Luo T and Lin W. 1997. Pb isotopes of granitoids suggest Devonian accretion of Yangtze (South China) craton of North China craton. Geology, 25(11): 1015-1018

    [92]

    Zhang SH, Han FL, Wang GB, Wang BY, Cui JT, Bian XW, Wang XP, Wu WR, Chen JY and Zhang L. 2010. Relationship between the convergency of the plates formed in the Jinningian and Caledonian periods and the metallogenesis in Qinling orogenic zone. Geology and Shannxi, 28(2): 2-10 (in Chinese with English abstract)

    [93]

    Zhang XS, Dai JZ, Wang RT, Wang P, Guo YH, Huo YT and Wang C. 2012. Characteristics of Ling(shuigou)-Chi(gou)-Se(hepu) metallogenic belt in Zhashan area of Shaanxi Province and their regional ore-prospecting significance. Geology in China, 39(6): 1727-1742 (in Chinese with English abstract)

    [94]

    Zhang YL. 1992. Geological features and the metallogentic conditions of acid-intermediate acid small rock bodies in Xiaohekou area of Shangyang County, Shaanxi Province. Shaanxi Geology, 20(2): 27-38 (in Chinese with English abstract)

    [95]

    Zhao Z and Coe RS. 1987. Palaeomagnetic constraints on the collision and rotation of North and South China. Nature, 327(6118): 141-144

    [96]

    Zhou DW, Zhang CL, Liu L, Wang JL and Liu YY. 1988. Sm-Nd dating of basic dykes from Wudang block and a discussion of related questions. Acta Geoscientia Sinica, 19(1): 25-30 (in Chinese with English abstract)

    [97]

    Zhou DW, Zhang CL, Liu L, Wang JL, Wang Y and Liu JP. 2000. Synthetic study on Proterozoic basic dyke warms in the Qinling Orogenic belt and its adjacent block as well as a discussion about some questions related to them. Acta Petrologica Sinica, 16(1): 22-28 (in Chinese with English abstract)

    [98]

    Zhou MF, Kennedy AK, Sun M, Malpas J and Lesher CM. 2002. Neoproterozoic arc-related mafic intrusions along the northern margin of South China: Implications for the accretion of Rodinia. Journal of Geology, 110: 611-618

    [99]

    Zhu HP, Li H, Zhang DQ and Liu P. 2005. Evidences of the epigenetic mineralization process and geochemical features of Mujiazhuang copper deposit. North Western Geology, 38(2): 54-61 (in Chinese with English abstract)

    [100]

    Zhu LM, Zhang GW, Chen YJ, Ding ZJ, Guo B, Wang F and Lee B. 2011. Zircon U-Pb ages and geochemistry of the Wenquan Mo-bearing granitioids in West Qinling, China: Constraints on the geodynamic setting for the newly discovered Wenquan Mo deposit. Ore Geology Reviews, 39(1-2): 46-62

    [101]

    曹宣铎, 胡云绪. 2000. 秦岭加里东晚期-华力西期早期复式前陆盆地. 西北地质科学, 20(2): 1-14

    [102]

    陈隽璐, 徐学义, 王洪亮, 王宗起, 曾佐勋, 李平, 王超. 2008a. 北秦岭西段早古生代埃达克岩地球化学特征及岩石成因. 地质学报, 82(4): 475-484

    [103]

    陈隽璐, 徐学义, 王洪亮, 王宗起, 曾佐勋, 王超, 李平. 2008b. 北秦岭西段唐藏石英闪长岩岩体的形成时代及其地质意义. 现代地质, 22(1): 45-52

    [104]

    陈雷, 王宗起, 闫臻, 吴发富, 任涛, 郭延辉. 2014. 秦岭山阳-柞水矿集区150~140Ma斑岩-矽卡岩型CuMoFe(Au)矿床成矿作用研究. 岩石学报, 30(2):415-436

    [105]

    陈在劳. 2009. 陕西柞水银硐子银多金属矿床基本地质特征. 矿床与地质, 23(6): 519-523

    [106]

    代军治, 鱼康平, 王瑞廷, 袁海潮, 王磊, 张西社, 李剑斌. 2014. 南秦岭宁陕地区新铺钼矿地质特征、辉钼矿Re-Os年龄及地质意义. 岩石学报, 待刊

    [107]

    杜定汉. 1986. 陕西秦巴地区泥盆系研究. 西安: 西安交通大学出版社, 1-230

    [108]

    杜远生. 1997. 秦岭造山带泥盆纪沉积地质学研究. 武汉: 中国地质大学出版社, 1-130

    [109]

    方维萱, 刘家军. 2013. 陕西柞-山-商晚古生代拉分断陷盆地动力学与成矿作用. 沉积学报, 31(2): 193-209

    [110]

    高长林, 黄泽光, 方成名. 2009. 南秦岭泥盆纪: 周缘前陆盆地和新生海洋盆地并列. 石油实验地质, 31(2): 136-141

    [111]

    弓虎军, 朱赖民, 李博亚, 李犇, 郭波, 王建其. 2009a. 南秦岭地体东江口花岗岩及其基性包体的锆石U-Pb年龄和Hf同位素组成. 岩石学报, 25(11): 3029-3045

    [112]

    弓虎军, 朱赖民, 李博亚, 李犇, 郭波. 2009b. 南秦岭沙河湾、曹坪和柞水岩体锆石U-Pb年龄、Hf同位素特征及其地质意义. 岩石学报, 25(2): 248-264

    [113]

    郭现轻, 闫臻, 王宗起, 付长垒, 陈雷. 2014. 山阳-柞水地区李家砭钛磁铁矿矿床成矿地质背景及年代学研究. 岩石学报, 30(2):437-450

    [114]

    和政军, 牛宝贵, 任纪舜. 2005. 陕南山阳地区刘岭群砂岩岩石地球化学特征及其构造背景分析. 地质科学, 40(4): 594-607

    [115]

    侯满堂, 闫臻, 高怀雄. 2010. 太白岩体南缘铜(钼)矿化地质特征及找矿标志. 西北地质, 43(1): 75-85

    [116]

    侯增谦, 郑远川, 杨志明, 杨竹森. 2012. 大陆碰撞成矿作用: I. 冈底斯新生代斑岩成矿系统. 矿床地质, 31(4): 647-670

    [117]

    胡健民, 崔建堂, 孟庆任, 赵长缨. 2004. 秦岭柞水岩体锆石U-Pb年龄及其地质意义. 地质论评, 50(3): 323-329

    [118]

    胡乔青, 王义天, 王瑞廷, 李建华, 代军治, 王双彦. 2012. 陕西省凤太矿集区二里河铅锌矿床的成矿时代: 来自闪锌矿Rb-Sr同位素年龄的证据. 岩石学报, 28(1): 258-266

    [119]

    吉让寿, 秦德余, 高长林. 1997. 东秦岭造山带与盆地. 西安: 西安地图出版社, 1-197

    [120]

    李春昱, 刘仰文, 朱宝清, 冯益民, 吴汉泉. 1978. 秦岭及祁连山构造发展史. 见: 国际交流地质学术论文集(1). 区域构造、地质力学. 北京: 地质出版社, 174-187

    [121]

    李晋僧, 曹宣铎, 杨家禄. 1994. 秦岭显生宙古海盆沉积和演化. 北京: 地质出版社, 1-206

    [122]

    李诺, 陈衍景, 张辉, 赵太平, 邓小华, 王运, 倪智勇. 2007. 东秦岭斑岩钼矿带的地质特征和成矿构造背景. 地学前缘, 14(5): 186-198

    [123]

    李泽九. 1986. 陕西柞水-山阳成矿带中酸性小岩体的地球化学研究. 地球科学, 11(4): 375-379

    [124]

    林振文, 秦艳, 周振菊, 岳素伟, 曾庆涛, 王立新. 2013. 南秦岭勉略带铧厂沟火山岩锆石U-Pb年代学及地球化学研究. 岩石学报, 29(1): 83-94

    [125]

    凌文黎, 程建萍, 王歆华, 周汉文. 2002. 武当地区新元古代岩浆岩地球化学特征及其对南秦岭晋宁期区域构造性质的指示. 岩石学报, 18(1): 25-36

    [126]

    刘林, 高建利, 杨莉. 2012. 柞山盆地窑火沟铜矿地质特征及成因分析. 矿业工程研究, 27(2): 70-74

    [127]

    刘仁燕, 牛宝贵, 和政军, 任纪舜. 2011. 陕西柞水地区小茅岭复式岩体东段LA-ICP-MS锆石U-Pb定年. 地质通报, 30(2-3): 448-460

    [128]

    罗学常, 胡明安, 王思源, 胡祖桂, 蒋明霞. 1997. 陕西柞水银硐子铅锌多金属矿床的控矿因素及成因研究. 地球科学, 22(2): 185-189

    [129]

    孟庆任, 梅志超, 于在平, 崔智林. 1995. 秦岭板块北缘一个消失了的泥盆纪古陆. 科学通报, 40(3): 254-256

    [130]

    牛宝贵, 和政军, 任纪舜, 王军, 邓平. 2006. 秦岭地区陡岭-小茅岭隆起带西段几个岩体的SHRIMP锆石U-Pb测年及其地质意义. 地质论评, 52(6): 826-835

    [131]

    裴先治. 1997. 东秦岭商丹构造带的组成与构造演化. 西安: 西安地图出版社, 29-98

    [132]

    彭海练, 杨永成, 王惠民, 张满社. 2004. 镇安县云镇小磨岭岛弧火山岩地球化学及其大地构造意义. 陕西地质, 22(1): 11-16

    [133]

    邱家骧. 1993. 秦巴碱性岩. 北京: 地质出版社, 1-183

    [134]

    任纪舜, 张正坤, 牛宝贵, 刘志刚. 1991. 论秦岭造山带-中朝与扬子陆块的拼合过程. 见: 叶连俊, 钱祥麟, 张国伟主编. 秦岭造山带学术讨论会论文选集. 西安: 西北大学出版社, 99-110

    [135]

    任涛, 王瑞廷, 王向阳, 夏长玲, 郭延辉. 2009. 秦岭造山带柞水-山阳沉积盆地铜矿勘查思路与方法. 地质学报, 83(11): 1730-1738

    [136]

    芮宗瑶, 黄崇轲, 齐国明, 徐钰, 张洪涛. 1984. 中国斑岩铜(钼)矿床. 北京: 地质出版社, 1-350

    [137]

    孙卫东, 李曙光, 孙勇, 张国伟, 张宗清. 1996. 北秦岭西峡二郎坪群枕状熔岩中一个岩枕的年代学和地球化学研究. 地质论评, 42(2): 144-153

    [138]

    万义文. 1980. 山阳一带中酸性斑岩体的成矿特点与成矿模式. 秦岭区测, (3): 1-36

    [139]

    王东生, 王瑞廷, 代军治, 王长安, 李建华, 陈荔湘. 2009. 秦岭造山带金属矿床的"二元控矿"特征. 地质学报, 83(11): 1719-1729

    [140]

    王鸿祯, 徐成彦, 周正国. 1982. 东秦岭古海域两侧大陆边缘区的构造发展. 地质学报, 56(3): 270-279

    [141]

    王涛, 张国伟, 王晓霞, 李伍平. 1999. 一种可能的多陆块、小洋盆、弱俯冲的动力学特征及其花岗岩演化特点——以秦岭造山带核部及其花岗岩为例. 南京大学学报(自然科学版), 35(6): 599-667

    [142]

    王涛, 张宗清, 王晓霞, 王彦斌, 张成立. 2005. 秦岭造山带核部新元古代碰撞变形及其时代——强变形同碰撞花岗岩与弱变形脉体锆石SHRIMP年龄限定. 地质学报, 79(2): 220-231

    [143]

    王涛, 王宗起, 闫臻, 闫全人, 张英利, 向忠金. 2009. 山阳色河花岗岩地球化学特征和锆石SHRIMP U-Pb年代学. 地质学报, 83(11): 1657-1665

    [144]

    王晓霞, 王涛, 齐秋菊, 李舢. 2011. 秦岭晚中生代花岗岩时空分布、成因演变及构造意义. 岩石学报, 27(6): 1573-1593

    [145]

    王宗起, 王涛, 闫臻, 闫全人. 2002. 秦岭晚古生代弧前增生的背驮型盆地体系. 地质通报, 21(8-9): 456-464

    [146]

    王宗起, 闫全人, 闫臻, 王涛, 姜春发, 高联达, 李秋根, 陈隽璐, 张英利, 刘平, 谢春林, 向忠金. 2009. 秦岭造山带主要大地构造单元的新划分. 地质学报, 83(11): 1527-1546

    [147]

    吴发富, 王宗起, 王涛, 闫臻, 陈雷. 2012. 南秦岭山阳板板山钾长花岗岩体SHRIMP锆石U-Pb年龄与地球化学特征. 矿物岩石, 32(2): 63-73

    [148]

    吴发富, 王宗起, 闫臻, 陈雷, 夏长玲, 郭延辉, 彭远民. 2014. 秦岭山阳-柞水地区燕山期中酸性侵入岩地球化学特征、锆石U-Pb年龄及Lu-Hf同位素组成. 岩石学报, 30(2): 451-471

    [149]

    谢桂青, 任涛, 李剑斌, 王瑞廷, 夏长玲, 郭延辉, 代军治, 申志超. 2012. 陕西柞山盆地池沟铜钼矿区含矿岩体的锆石U-Pb年龄和岩石成因. 岩石学报, 28(1): 15-26

    [150]

    许志琴, 卢一伦, 汤耀庆, Mattauer M, Matte PH, Malavieille J, Tapponnier P, Maluski H. 1986. 东秦岭造山带的变形特征及构造演化. 地质学报, 60(3): 237-247

    [151]

    阎明, 刘树文, 李秋根, 杨朋涛, 王伟, 郭荣荣, 白翔, 邓正宾. 2014. 南秦岭迷魂阵岩体LA-ICP-MS锆石U-Pb年代学和Lu-Hf同位素特征. 岩石学报, 30(2):390-400

    [152]

    闫全人, 王宗起, 闫臻, 向忠金, 陈隽璐, 王涛. 2007a. 秦岭勉略构造混杂带康县-勉县段蛇绿岩块-铁镁质岩块的SHRIMP年代及其意义. 地质论评, 53(6): 755-764

    [153]

    闫全人, 王宗起, 陈隽璐, 闫臻, 王涛, 李秋根, 姜春发, 张宗清. 2007b. 北秦岭斜峪关群和草滩沟群火山岩成因的地球化学和同位素约束、SHRIMP年代及其意义. 地质学报, 81(4): 488-500

    [154]

    闫臻, 王宗起, 王涛, 闫全人, 肖文交, 李继亮, 韩芳林, 陈隽璐. 2007. 秦岭造山带泥盆系形成构造环境: 来自碎屑岩组成和地球化学方面的约束. 岩石学报, 23(5): 1023-1042

    [155]

    闫臻, 王宗起, 陈隽璐, 闫全人, 王涛, 张英利. 2009. 北秦岭武关地区丹凤群斜长角闪岩地球化学特征、锆石SHRIMP测年及其构造意义. 地质学报, 83(11): 1633-1646

    [156]

    杨恺, 刘树文, 李秋根, 王宗起, 韩以贵, 韩以贵, 吴峰辉, 张帆. 2009. 秦岭柞水岩体和东江口岩体的锆石U-Pb年代学及其意义. 北京大学学报(自然科学版), 45(5): 841-847

    [157]

    杨钊, 董云鹏, 周鼎武, 于君, 马海勇. 2008. 南秦岭柞水地区小磨岭杂岩基性岩类的地球化学特征及其地质意义. 地质通报, 27(5): 611-617

    [158]

    杨志华. 1991. 边缘转换盆地的构造岩相与成矿. 北京: 科学出版社, 1-228

    [159]

    于在平, 孙勇, 张国伟. 1988. 秦岭丹凤地区弧前沉积特征. 见: 张国伟主编. 秦岭造山带形成与演化. 西安: 西北大学出版社, 75-85

    [160]

    张本仁, 陈德兴, 李泽九, 谷晓明, 蒋敬业, 胡以铿, 李方林, 郭五寅, 李耀成. 1989. 陕西柞水山阳成矿带区域地球化学. 武汉: 中国地质大学出版社, 1-221

    [161]

    张成立, 刘良, 张国伟, 王涛, 陈丹玲, 袁洪林, 柳小明, 晏云翔. 2004. 北秦岭新元古代后碰撞花岗岩的确定及其构造意义. 地学前缘, 11(3): 33-42

    [162]

    张成立, 王涛, 王晓霞. 2008. 秦岭造山带早中生代花岗岩成因及其构造环境. 高校地质学报, 14(3): 304-316

    [163]

    张二朋, 牛道韫, 霍有光, 张兰芳, 李益桂. 1993. 秦巴及邻区地质-构造特征概论. 北京: 地质出版社, 1-291

    [164]

    张国伟, 梅志超, 李桃红. 1988. 秦岭造山带的南部古被动大陆边缘. 见: 张国伟等著. 秦岭造山带的形成及其演化. 西安: 西北大学出版社, 86-98

    [165]

    张国伟, 张本仁, 袁学诚, 肖庆辉. 2001. 秦岭造山带与大陆动力学. 北京: 科学出版社, 1-855

    [166]

    张拴厚, 韩芳林, 王根宝, 王北颖, 崔建堂, 边小卫, 王学平, 吴闻仁, 陈家义, 张琳. 2010. 秦岭造山带晋宁期加里东期板块汇聚及成矿关系. 陕西地质, 28(2): 2-10

    [167]

    张西社, 代军治, 王瑞廷, 王鹏, 郭延辉, 霍天云, 王超. 2012. 陕西柞-山地区冷(水沟)-池(沟)-色(河铺)金钼铜矿带特征及其区域找矿意义. 中国地质, 39(6): 1727-1742

    [168]

    张银龙. 2002. 陕西省山阳县小河口地区酸性-中酸性岩体地质特征及其成矿地质条件分析. 陕西地质, 20(2): 27-38

    [169]

    周鼎武, 张成立, 刘良, 王居里, 刘颖宇, 张宗清. 1998. 武当地块基性岩墙群的Sm-Nd 定年及其相关问题的讨论. 地球学报, 19(1): 25-30

    [170]

    周鼎武, 张成立, 刘良, 王居里, 王焰, 刘金平. 2000. 秦岭造山带及相邻地块元古代基性岩墙群研究综述及相关问题探讨. 岩石学报, 16(1): 22-27

    [171]

    朱华平, 李虹, 张德全, 刘平. 2005. 陕西穆家庄铜矿床后生成矿作用的流体地球化学证据. 西北地质, 38(2): 54-6

  • 加载中
计量
  • 文章访问数:  7081
  • PDF下载数:  9051
  • 施引文献:  0
出版历程
收稿日期:  2013-05-11
修回日期:  2013-10-11
刊出日期:  2014-02-28

目录