西大别大悟地区闪长玢岩岩石地球化学特征及其构造意义

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[1] 曹正琦. 湖北大悟地区晚中生代脉岩及控矿构造研究[D]. 武汉: 中国地质大学, 2016, 1−147 CAO Zhengqi. Study on Late Mesozoic dike rocks and ore-controlling stru

[1]

曹正琦. 湖北大悟地区晚中生代脉岩及控矿构造研究[D]. 武汉: 中国地质大学, 2016, 1−147

CAO Zhengqi. Study on Late Mesozoic dike rocks and ore-controlling structures in Dawu area, Hubei Province [D]. Wuhan: China University of Geosciences, 2016, 1-147.

[2]

范裕, 周涛发, 袁峰等. 宁芜盆地闪长玢岩的形成时代及对成矿的指示意义[J]. 岩石学报, 2010, 26(9): 2715-2728

FAN Yu, ZHOU Taofa, YUAN Feng, et al. Geochronology of the diorite porphyrites in Ning-Wu basin and their metallogenic significances[J]. Acta Petrologica Sinica, 2010, 26(9): 2715-2728.

[3]

葛宁洁, 侯振辉, 李惠民, 等. 大别造山带岳西沙村镁铁超镁铁岩体的锆石U-Pb年龄[J]. 科学通报, 1999, 44(19): 2110-2114 doi: 10.3321/j.issn:0023-074X.1999.19.020

GE Ningjie, HOU Zhenghui, LI Huiming, et al. Zircon U-Pb age of mafic ultramafic granites in Yuexisha village, Dabie orogenic belt [J]. Chinese Science Bulletin, 1999, 44 (19): 2110-2114. doi: 10.3321/j.issn:0023-074X.1999.19.020

[4]

黄丹峰, 罗照华, 卢欣祥. 大别山北缘金刚台火山岩SHRIMP锆石U- P b年龄及构造意[J]. 地学前缘, 2010, 17(1): 1-9

HUANG Danfeng, LUO Zhaohua, LU Xinxiang. Zircon U-Pb Dating of the Linglong Volcanic Deposit in the Northern Dabie Mountains [J]. Earth Science Frontiers, 2010, 17 (1): 1-9.

[5]

刘清泉, 邵拥军, 张智慧, 等. 大别山姚冲花岗岩锆石U-Pb年龄、Hf同位素及地质意义[J]. 中国有色金属学报, 2015, 25 (2): 479-491 doi: 10.19476/j.ysxb.1004.0609.2015.02.027

LIU Qingquan, SHAO Yongjun, ZHANG Zhihui, et al. Zircon U-Pb Age, Hf Isotope and Geochronology Significance of the Yaochong Granite in the Dazhuangzi Gold Deposit, Shandong Province [J]. The Chinese Journal of Nonferrous Metals, 2015, 25 (2): 479-491. doi: 10.19476/j.ysxb.1004.0609.2015.02.027

[6]

刘福来, 薛怀民, 许志琴, 等. 大别超高压变质带的进变质, 超高压和退变质时代的准确限定: 以双河大理岩中榴辉岩锆石SHRIMP U-Pb定年为例[J]. 岩石学报, 2006, 22(7): 1761-1778 doi: 10.3969/j.issn.1000-0569.2006.07.002

LIU Fulai, XUE Huaiming, XU Zhiqing, et al. Precise restriction of progressive metamorphic, ultra-high pressure and retrograde metamorphic ages in the Dabie UHP metamorphic belt: A case study of SHRIMP zircon U-Pb dating of eclogites in Shuanghe marble [J]. Acta Petrologica Sinica, 2006, 22(7): 1761-1778. doi: 10.3969/j.issn.1000-0569.2006.07.002

[7]

刘军, 息朝庄, 黄波, 等. 柴达木西北缘大通沟南山北闪长岩年代学、地球化学特征及其地质意义[J]. 西北地质, 2022, 55(2): 93−105.

LIU Jun, XI Chaozhuang, HUANG Bo, et al. Geochronology, Geochemistry and Geological Significance of Thediorite in Datonggou Nanshanbei, Northwestern Qaidam Basin[J]. Northwestern Geology, 2022, 55(2): 93−105.

[8]

李曙光, 洪吉安, 李惠民, 等. 大别山辉石岩—辉长岩体的锆石U-Pb年龄及其地质意义[J]. 高校地质学报, 1999, (3): 351-355

LI Shuguang, HONG Jiean, LI Huiming, et al. Zircon U-Pb age of pyroxenite-gabbro pluton in Dabie mountain and its geological significance[J]. Geological Journal of China Universities, 1999, (3): 351-355.

[9]

李曙光, 李秋立, 侯振辉, 等. 大别山超高压变质岩的冷却史及折返机制[J]. 岩石学报, 2005, 21(04): 91-98

LI Shuguang, LI Qiuli, HOU Zhenghui, et al. Cooling-history and reentrant mechanism of ultra-high pressure metamorphic rocks in Dabie Mountains [J]. Acta Petrologica Sinica, 2005,21 (04): 91-98.

[10]

马昌前, 杨坤光, 明厚利, 等. 大别山中生代地壳从挤压转向伸展的时间: 花岗岩的证据[J]. 中国科学: 地球科学, 2003, 33(9): 811-827.

[11]

穆可斌, 裴先治, 李瑞保, 等. 南秦岭白龙江群中花岗岩脉群年代学、地球化学特征及地质意义[J]. 西北地质, 2019, 52(3): 111-135. doi: 10.19751/j. cnki. 61-1149/p. 2019.03. 010

MU Kebin, PEI Xianzhi, LI Ruibao, et al. Geochronology, Geochemistry and Geological Significance of the Granite Veins in the Bailongjiang Group, South Qinling[J]. Northwestern Geology, 2019, 52(3): 111-135. doi: 10.19751/j.cnki.61-1149/p.2019.03.010

[12]

彭松柏, 刘松峰, 林木森, 等. 华夏早古生代俯冲作用(Ⅱ): 大爽高镁-镁质安山岩新证据[J]. 地球科学, 2016, 41(6): 931-947

PENG Songbo, LIU Songfeng, LIN Mushen, et al. Early Paleozoic subduction in the Cathaysia (Ⅱ): New evidence for Dashuang high magnesium and magnesitic andesite [J]. Earth Science, 2016, 41 (6): 931-947.

[13]

戚学祥, 旷宏伟, 陈培良, 等. 长江中下游燕山期侵入岩地球化学特征及其地质意义[J]. 资源调查与环境, 2002, 23(1): 8

QI Xuexiang, KUANG Hongwei, CHEN Peiliang, et al. Geochemical characteristics and geological significance of Yanshanian intrusive rocks in the middle and lower reaches of the Yangtze River [J]. Resources Survey and Environment, 2002, 23(1): 8.

[14]

任志, 周涛发, 袁峰, 等. 安徽沙坪沟钥矿区中酸性侵入岩期次研究—年代学及岩石化学约束[J]. 岩石学报, 2014, 30 (4): 1097-1116

REN Zhi, ZHOU Taofa, YUAN Feng, et al. Geochronology and Geochemical Constraints of the Xilaokou Gold Deposit, Shandong Province [J]. Acta Petrologica Sinica, 2014, 30 (4): 1097-1116.

[15]

索书田, 桑隆康, 韩郁箐, 等. 大别山前寒武纪变质地体岩石学与构造学[M].武汉: 中国地质大学出版社, 1993

SUO Shutian, SANG Longkang, HAN Yuqing, et al. Petrology and Tectonics of Precambrian Metamorphic Terrane in Dabie Mountains[M].Wuhan: China University of Geosciences Press, 1993.

[16]

孙书勤, 汪云亮, 张成江. 玄武岩类岩石大地构造环境的Th、Nb、Zr判别[J]. 地质论评, 2003, (01): 40-47 doi: 10.3321/j.issn:0371-5736.2003.01.006

SUN Shuqing, WANG Yunliang, ZHANG Chengjiang. Discrimination of Th, Nb, Zr in tectonic setting of basaltic rocks [J]. Geological Review, 2003, (01): 40-47. doi: 10.3321/j.issn:0371-5736.2003.01.006

[17]

汪云亮, 张成江, 修淑芝. 玄武岩类形成的大地构造环境的Th/Hf-Ta/Hf图解判别[J]. 岩石学报, 2001, 17(3): 413-421

WANG Yunliang, ZHANG Chengjiang, XIU Shuzi. Th/Hf-Ta/Hf identification of tectonic setting of basalts[J]. Acta Petrologica Sinica, 2001, 17(3): 413-421.

[18]

王世明, 马昌前, 王琳燕, 等. 大别山早白垩世基性脉岩SHRIMP锆石U-Pb定年、地球化学特征及成因[J]. 地球科学(中国地质大学学报), 2010, (04): 572-584

WANG Shiming, MA Changqian, WANG Lingyan, et al. SHRIMP zircon U-Pb dating and geochemical characteristics of the Early Cretaceous basic dike rocks in the Dabie Mountains, Shandong Province [J]. Journal of China University of Geosciences, 2010, (04): 572-584.

[19]

汪晶, 吴明安, 李小东, 等. 庐枞盆地早白垩世闪长玢岩锆石U-Pb年龄、地球化学特征及其成矿指示意义[J]. Acta Geologica Sinica, 2014, 88(4): 547-561

WANG Jing, WU Mingan, LI Xiaodong, et al. Zircon U-Pb Dating, Geochemical Characteristics of Early-Cretaceous Diorite-Porphyrites in Luzhong Basin and Their Implications for Mineralization[J]. Acta Geologica Sinica, 2014, 88(4): 547-561.

[20]

吴开彬, 邓新, 杨坤光. 北大别白垩纪花岗岩多期侵位与造山带演化的关系[J]. 地球科学, 2013, (S1): 43-52

WU Kaining, DENG Xin, YANG Kunguang. Relationship between multi-stage emplacement of Cretaceous granites and evolution of orogenic belt in Beibei [J]. Earth Science, 2013, (S1): 43-52.

[21]

吴元保, 陈道公, E. DELOULE, 等. 北大别片麻岩的锆石U-Pb年龄离子探针测定及其地质意义[J]. 地质论评, 2001, 47(3): 239-244 doi: 10.3321/j.issn:0371-5736.2001.03.004

WU Yuanbao, CHEN Ddaogong, E. Deloule, et al. Zircon U-Pb Dating and Ion Probe Determination of Gneiss in Dazhuangzi Gold Deposit, Shandong Province and Its Geological Significance [J]. Geological Review, 2001, 47(3): 239-244. doi: 10.3321/j.issn:0371-5736.2001.03.004

[22]

袁峰, 周涛发, 范裕, 等. 庐枞盆地中生代火山岩的起源、演化及形成背景[J]. 岩石学报, 2008, 24(8): ;1691-1702

YUAN Feng, ZHOU Taofa, FAN Yu, et al. Source, Evolution and Tectonic Setting of Mesozoic Volcanic Rocks in Luzong Basin, Anhui Province[J]. Acta Petrologica Sinica, 2008, 24(8);1691-1702.

[23]

赵子福, 郑永飞, 魏春生, 等. 大别山沙村和椒子岩基性-超基性岩锆石Il-Pb定年、元素和碳氧同位素地球化学研究北大别片麻岩的锆石U-Pb年龄离子探针测定及其地质意义[J]. 高校地质学, 2003, 9: 139-162

ZHAO Zifu, ZHENG Yongfei, WEI Chunsheng, et al. Zircon U-Pb dating, element and carbon and oxygen isotopic geochemistry of shacun hejiaozi basic-ultrabasic rocks in Dabie Mountains and its geological significance [J]. Geology of Universities, 2003, 9: 139-162.

[24]

赵子福, 郑永飞, 魏春生, 等. 大别山中生代中酸性岩浆岩锆石U-Pb定年、元素和氧同位素地球化学研究[J]. 岩石学报, 2004, 20(5): 1151-1174 doi: 10.3321/j.issn:1000-0569.2004.05.012

ZHAO Zifu, ZHENG Yongfei, WEI Chunsheng, et al. Zircon U-Pb dating and oxygen isotopic geochemistry of the Mesozoic magmatic rocks in the Dabie Mountains, Shandong Province [J]. Acta Petrologica Sinica, 2004, 20(5): 1151-1174. doi: 10.3321/j.issn:1000-0569.2004.05.012

[25]

俞胜, 赵斌斌, 贾轩, 等.北山造山带南缘一条山北闪长岩地球化学、年代学特征及其构造意义[J]. 西北地质, 2022, 55(4): 267−279.

YU Sheng, ZHAO Binbin, JIA Xuan, et al. Geochemistry,Geochronology Characteristics and Tectonic Significance of Yitiaoshan Diorite in the Southern Margin of Beishan Orogenic Belt[J]. Northwestern Geology, 2022, 55(4): 267−279.

[26]

张凯, 王居里, 汪佩佩, 等. 南秦岭太平沟铜(金)矿相关花岗岩体锆石U-Pb年代学及岩石成因[J]. 西北地质, 2020, 53(4): 73-85. doi: 10.19751/j.cnki. 61-1149/p. 2020.04. 007.

ZHANG Kai, WANG Juli, WANG Peipei, et al. Zircon U-Pb Geochronology and Petrogenesis of Taipinggou Copper (Gold)-related Granites, South Qinling[J]. Northwestern Geology, 2020, 53(4): 73-85. doi: 10.19751/j.cnki.61-1149/p.2020.04.007.

[27]

Chen B, Jahn B M, Wei C J. Petrogenesis of Mesozoic granitoids in the Dabie UHP complex, Central China: trace element and Nd-Sr iso-tope evidence[J]. Lithos, 2002, 60: 67-88. doi: 10.1016/S0024-4937(01)00077-9

[28]

David A F, Carl S, Mark F, et al. Relationships between crustal partial melting, plutonism, orogeny, and exhumation: Idaho–Bitterroot batholith - ScienceDirect.[J]. Tectonophysics, 2001, 342(3-4): 313-350. doi: 10.1016/S0040-1951(01)00169-X

[29]

Fernandez A N and Barbarin B. Relative rheology of coeval mafic and felsic magmas: Nature of resulting interaction processes. Shape and mineral fabrics of mafic microgranular enclaves. In: Didier J, Barbarin B (eds. ) [J]. Enclaves and Granite Petrology, Amsterdam-Oxford-New York-Tokyo: Elsevier. 1991, 263−275.

[30]

Gibson I L, Kirkpatrick R J, Emmerman R, et al. The trace element composition of the lavas and dikes from a 3-km vertical section through the lava pile of eastern Iceland[J]. Journal of Geoph-ysical Research, 1982, 87: 6532-6546. doi: 10.1029/JB087iB08p06532

[31]

Gill J. Orogenic andesites and plate tectonics[M]. Springer-Verlag, 1981.

[32]

Green T H. Significance of Nb/Ta as an indicator of geochemical processes in the crust-mantle system[J]. Chemical Geology, 1995, 120(3-4): 347-359. doi: 10.1016/0009-2541(94)00145-X

[33]

Halls H c. The importance and potential of mafic dyke swarms in studies of geodynamic processes[J]. geoscience Canada, 1982, 9(3): 145-154.

[34]

Hacker B R, Ratschbacher L, Webb L, et al. U/Pb zircon ages constrain the architecture of the ultrahigh-pressure Qinling-Dabie Orogen, China[J]. Earth Planet. sci. lett, 1998, 161(1-4): 215-230. doi: 10.1016/S0012-821X(98)00152-6

[35]

Hacker B R and Wang Q C. Ar/Ar geochronology of ultrahigh-pressure metamorphism in central China[J]. Tectonics, 1995, 14: 994-1006. doi: 10.1029/95TC00932

[36]

Hofmann P F. United Plates of America, the birth of a craton: Early Proterozoic assembly and growth of Laurentia[J]. Annual Review of Earth and Planetary Sciences, 1988, 16(1): 543-603. doi: 10.1146/annurev.ea.16.050188.002551

[37]

Jahn B M, Wu F Y, Lo C H, et al, Crust-mantle interaction induced by deep subduction of the continental crust: Geochemical and Sr-Nd isotopic evidence from post-collisional mafic -Ultramafic intrusion of the northern Dabie complex, central china[J]. Chemical Geology, 1999, 157(1−2): 119−146. doi:10.1016/s0009-2541(98)00197-1.

[38]

Leech M L. Arrested orogenic development: eclogitization, delamination, and tectonic collapse[J]. Earth & Planetary Science Letters, 2001, 185(1-2): 149-159.

[39]

Maitre RW L, Bateman P, Dudek A, et al. A Classification of Igneous Rocks and Glossary of Terms[M]. Oxford: Blackwell, 1989, 1−193.

[40]

Mcculloch M T, Gamble J A, McCulloch, M. T. & Gamble, J. A. Geochemical and geodynamical constraints on subduction zone magmatism. Earth Planet. Sci. Lett. 102, 358-374[J]. Earth and Planetary Science Letters, 1991, 102(3-4): 358-374. doi: 10.1016/0012-821X(91)90029-H

[41]

Mcdonough W F, Sun S S. The composition of the Earth[M]. Chemical Geology, 1995, 120(3−4): 223−253.

[42]

Ma C Q, Li Z C, Ehlers C, Yang KC and Wang RI. A post-collisional magmatic pluming system; Mesozoic granitoid plutons from the Dabieshan high-pressure and ultrahigh-pressure metamorphic zone, east-central China[J]. Lithos, 1998, 45: 431-456. doi:10. 1016/S0024-4937(98):00043-7

[43]

Pearce J A, Peate D W. Tectonic Implication of the composition of volcanic ARC magmas[J]. Annual Review of Earth and Planetary Sciences, 1995, 23(1): 251-285. doi:10.1146/annurev.ea.23.050195.001343.

[44]

Pearce T H. The TiO2 - K2O – P diagram : A method of discriminating between oceanic and nonoceanic basalt. [J]. Earth Planet. sci. lett, 1975, 24(3): 419-426. doi: 10.1016/0012-821X(75)90149-1

[45]

Pearce J A, Cann J R. Tectonic setting of basic volcanic rocks determined using trace element analyses[J]. Earth & Planetary Science Letters, 1973, 19(2): 290-300.

[46]

Poland M p, Fink J H, Tauxe L. Patteens of magma flow in segmented silicic dikes at summer coon volcano, Colorado[J]. AMS and Thin Section Analysis. Earth and Planetary Science Letters, 2004, 219(1-2): 155-169. doi:10.1016/s0012-821x(03)00706-4.

[47]

Li S, Xiao Y, Liou D, et al. Collision of the North China and Yangtse Blocks and formation of coesite-bearing eclogites: Timing and processes[J]. Chemical Geology, 1993, 109(1-4): 89-111. doi: 10.1016/0009-2541(93)90063-O

[48]

Rapp RP and Watson E B. Dehydration melting of meta-basalt at 8-32kbar: Implications for continental growth and crust-mantle recycling[J]. Journal of Petrology, 1995, 36(4): 891-931. doi: 10.1093/petrology/36.4.891

[49]

Rudnik R, Gao S. Composition of the continental crust. In: rudnik, R., ed., The crust Treatise on geochemistry [J]. Elservior, Amsterdam, 2003, 3-164,doi:10.1016/B0-08-043751-6/03016-4.

[50]

Taylor S R. Mclennan S M. The continental crust: its composition and evolution[J]. The Journal of Geology, 1985, 94(4): 57-72.

[51]

Whitney D L, Teyssier C, Fayon A K, et al. Tectonic controls on metamorphism, partial melting, and intrusion: timing and duration of regional metamorphism and magmatism in the Nide Massif, Turkey[J]. Tectonophysics, 2003, 376(1-2): 37-60. doi: 10.1016/j.tecto.2003.08.009

[52]

Westerman D S, Dini A, Innocenti F, et al. When and where did hybridization occur ?the case of the monte capanne pluton, italy[J]. Atlantic Geology, 2003, 39(2): 147-162,doi:10.4138/1177.

[53]

Winchester J A, Floyd P A. Geochemical magma type discrimination: application to altered and metamorphosed basic igneous rocks[J]. Earth and Planetary Science Letters, 1976, 28(3): 459-469. doi: 10.1016/0012-821X(76)90207-7

[54]

Xu haijin, Ma Chanqian, Ye Kai. Early Cretaceous granitiod and their implications for Collapse of the Dabie orogen, eastern China: SHRIMP zircon U-Pb dating and geochemistry [J]. Chem Geol., 2007, 240(3/4): 238-272.

[55]

Zhao Z F, Zheng Y F, Wei C S, et al. Zircon U- Pb Age, Element and C-O isotope geochemistry of Post-collisional Mafic-Ultramafic Rocks from the Dabie Orogen in East-central China[J]. Lithos, 2005, 83(1-2): 1-28. doi: 10.1016/j.lithos.2004.12.014

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