赣东北婺源地区中生代花岗岩体的构造背景研究

胡鹏, 曾威, 段明, 王佳营. 2023. 赣东北婺源地区中生代花岗岩体的构造背景研究[J]. 华北地质, 46(1): 33-41. doi: 10.19948/j.12-1471/P.2023.01.04
引用本文: 胡鹏, 曾威, 段明, 王佳营. 2023. 赣东北婺源地区中生代花岗岩体的构造背景研究[J]. 华北地质, 46(1): 33-41. doi: 10.19948/j.12-1471/P.2023.01.04
HU Peng, ZENG Wei, DUAN Ming, WANG Jia-ying. 2023. Research on tectonic setting of Mesozoic granitoids in the Wuyuan county area, northeastern Jiangxi province. North China Geology, 46(1): 33-41. doi: 10.19948/j.12-1471/P.2023.01.04
Citation: HU Peng, ZENG Wei, DUAN Ming, WANG Jia-ying. 2023. Research on tectonic setting of Mesozoic granitoids in the Wuyuan county area, northeastern Jiangxi province. North China Geology, 46(1): 33-41. doi: 10.19948/j.12-1471/P.2023.01.04

赣东北婺源地区中生代花岗岩体的构造背景研究

  • 基金项目:

    中国地质调查局项目“天山-华北陆块铀钍等矿产资源调查(DD20190813)”;“硬岩型铀钍等矿产资源远景调查与勘查示范(DD20160129)”

详细信息
    作者简介: 胡鹏(1989-),男,工程师,地质学专业,从事矿产地质调查与研究工作,E-mail:824901364@qq.com
  • 中图分类号: P534.5;P588.121;P548

Research on tectonic setting of Mesozoic granitoids in the Wuyuan county area, northeastern Jiangxi province

  • 邦彦坑岩体、段莘岩体和青山岭岩体位于江南造山带东段。邦彦坑花岗岩特征为高硅(SiO2=65.56%~71.36%);富铝(Al2O3=14.12%~16.58%);低镁(MgO=1.08~1.33);富钾(K2O=3.42%~4.56%);弱的Eu 负异常(δEu 为0.65~0.92);(La/Yb)N较高(13.92~19.09);特征元素Y含量较低(13.8×10-6~17.9×10-6);富集元素Sr(335.9×10-6~484×10-6);高的K2O/Na2O(1.07~1.62);低的Mg#(0.23~0.27)、Cr(6.83~13.02)、Ni(3.81~6.13)、Ce/Pb 比值(1.60~3.46),明显的Nb、Ta 负异常,指示其为壳源,C 型埃达克岩,为构造加厚下地壳基性岩的部分熔融形成。段莘和青山岭花岗岩有富硅、富钾、贫钙、贫镁和过铝质的特征,LREE与HREE均表现出平缓的右倾趋势,强烈的Eu负异常。呈现出经典右倾“V”字形,Rb、Th、Ta 等不相容元素富集,Zr 轻微亏损,Ba、Sr、Eu 强烈负异常,10 000×Ga/Al=3.12~3.44,属于是A2型花岗岩,为后造山伸展作用的产物。赣东北印支期造山后有地壳加厚现象,由晚侏罗世到白垩世早期区域构造应力发生转变,由构造加厚的挤压环境开始转变为造山后伸展环境。
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  • [1]

    张旗.关于C 型埃达克岩成因的再探讨[J].岩石矿物学杂志, 2011, 30(14):739-747.

    [2]

    余超.辽北清原地区英云闪长岩年代学、地球化学特征及其地质意义[J].地质调查与研究, 2019, 42(01):20-31.

    [3]

    WHALEN J B, CURRIE K L, CHAPPELL B W.A-type granites: Geochemical characteristics, discrimination and petrogenesis[J].Contributions to Mineralogy & Petrology, 1987, 95(4):407-419.

    [4]

    ROGERS J J W, GREENBERG J E.Late-orogenic, Postorogenic, and AnorogenicGranites: Distinction by Major-Element and Trace-Element Chemistry and Possible Origins[J].Journal of Geology, 1990, 98(3):291-309.

    [5]

    EBY G N.The A-type granitoids: A review of their occurrence and chemical characteristics and speculation on their petrogenesis[J].Lithos, 1990, 26(1-2):115-134.

    [6]

    EBY G N.Chemical subdivision of the A-type granitoids:Petrologic and tectonic implications[J].Geology, 1992, 20(7):641-644.

    [7]

    胡鹏,陈能松,徐先兵,等.赣皖交界婺源地区中生代花岗岩体的锆石LA-ICP-MS U-Pb 年龄及其地质意义[J].地质科技情报,2014,33(4):24-30.

    [8]

    LIU Y S, ZONG K Q, KELEMEN P B, et al.Geochemistry and magmatic history of eclogites and ultramafic rocks from the Chinese continental scientific drill hole: Subduction and ultra-high-pressure metamorphism of lower crustal cumulates[J].Chemical Geology, 2008, 247(1-2):133-153.

    [9]

    RICKWOOD P C.Boundary lines within petrologic diagrams which use oxides of major and minor elements[J].Lithos, 1989, 22(4):247-263.

    [10]

    MANIAR P D, PICCOLI P M.Tectonic discrimination of granitoids[J].Geological Society of American Bulletin, 1989, 101(5):635-643.

    [11]

    SUN S S, MCDONOUGH W F.Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes[J].Geological Society Special publications, 1989, 42(1):313-345.

    [12]

    RICKWOOD P C.Boundary lines within petrologic diagrams which use oxides of major and minor elements[J].Lithos, 1989, 22(4):247-263.

    [13]

    张旗,王焰,刘伟,等.埃达克岩的特征及其意义[J].地质通报,2002,21(7):431-435.

    [14]

    DEFANT M J, DRUMMOND M S.Derivation of some modern arc magmas by melting of young subductedlithosphere[J].Nature, 1990, 347(6294):662-665.

    [15]

    MARTIN H, SMITHIES R H, RAPP R, et al.An overview of adakite, tonalite-trondhjemite-granodiorite(TTG), and sanukitoid: Relationships and some implications for crustal evolution[J].Lithos, 2005, 79(1-2):1-24.

    [16]

    张旗,王焰,钱青,等.中国东部燕山期埃达克岩的征及其构造-成矿意义[J].岩石学报,2001,17(2):236-244.

    [17]

    WANG Q, WYMAN D A, XU J F, et al.Partial melting of thickened or delaminated lower crust in the middle of eastern China: implications for Cu-Au mineralization[J].Journal of Geology, 2007, 115(2):149-161.

    [18]

    ZENG L, GAO L, XIE K, et al.Mid-Eocene high Sr/Y granites in the Northern Himalayan Gneiss Domes: Melting thickened lower continental crust[J].Earth & Planetary Science Letters, 2011, 303(3-4):251-266.

    [19]

    CHIARADIA, MASSIMO.Crustal thickness control on Sr/Y signatures of recent arc magmas: an Earth scale perspective[J].Scientific Reports, 2015, 5(1):8115.

    [20]

    CHIARADIA M.Adakite-like magmas from fractional crystallization and melting-assimilation of mafic lower crust(Eocene Macuchi arc, Western Cordillera, Ecuador)[J].Chemical Geology, 2009, 265(3-4):0-487.

    [21]

    CASTILLO P R.Adakite Petrogenesis[J].Lithos, 2012, 134-135:304-316.

    [22]

    KAY R W, KAY S M.Delamination and Delamination Magmatism[J].Tectonophysics, 1993, 219(1-3):177-189.

    [23]

    KAY S M, RAMOS V A, MARQUEZ M.Evidence in Cerro Pampa volcanic rocks of slab melting prior to ridge-trench collision in southern South America[J].Journal of Geology, 1993, 101(6):703-714.

    [24]

    WANG Q, WYMAN D A, XU J F, et al.Petrogenesis of Cretaceous adakitic and shoshonitic igneous rocks in the Luzong area, Anhui Province(eastern China): Implications for geodynamics and Cu-Au mineralization[J].Lithos, 2006, 89(3-4):424-446.

    [25]

    GAO S, RUDNICK R L, YUAN H L, et al.Recycling lower continental crust in the North China craton[J].Nature, 2004, 432(7019):892-897.

    [26]

    翁望飞,支利庚,蔡连友,等.皖南中生代高钾钙碱性埃达克岩地球化学特征及岩石成因[J].地质调查与研究,2011,35(2):98-107.

    [27]

    吴锁平,王梅英,戚开静.A 型花岗岩研究现状及其评述[J].岩石矿物学杂志,2007,26(1):57-66.

    [28]

    刘昌实,陈小明,王汝成,等.广东龙口南昆山铝质A 型花岗岩的成因[J].岩石矿物学杂志,2003,22(1):1-10.

    [29]

    洪大卫,王式洸,韩宝福,等.碱性花岗岩的构造环境分类及其鉴别标志[J].中国科学(B辑),1995,25(4):418-426.

    [30]

    GREEN T H.Significance of Nb/Ta as an indicator of geochemical processes in the crust-mantle system[J].Chemical Geology, 1995, 120(3):347-359.

    [31]

    BARTH M G, MCDONOUGH W F, RUDNICK R L.Tracking the budget of Nb and Ta in the continental crust[J].Chemical Geology, 2000, 165(3):197-213.

    [32]

    陈能松,王新宇,张宏飞,等.柴-欧微地块花岗岩地球化学和Nd-Sr-Pb 同位素组成:基底性质和构造属性启示[J].地球科学-中国地质大学学报,2007,32(1):7-21.

    [33]

    BATCHELOR R A, BOWDEN P.Petrogenetic interpretation of granitoid rock series using multicationicparameters[J].Chemical geology, 1985, 48(1):43-55.

    [34]

    WANG Y J, FAN W M, CAWOOD P A, et al.Indosinian high-strain deformation for the Yunkaidashan tectonic belt, south China: Kinematics and 40Ar/39Ar geochronological constraints[J].Tectonics, 2007, 26(6):TC6008-TC6008.

    [35]

    SHU L S, FAURE M, WANG B, et al.Late Palaeozoic-Early Mesozoic geological features of South China: response to the Indosinian collision events in Southeast Asia[J].ComptesRendus Geoscience, 2008, 340(2):151-165.

    [36]

    KESSELMANS R P W, WIJNBERG J B P A, GROOT A D, et al.Understanding Mesozoic accretion in Southeast Asia:Significance of Triassic thermotectonism(Indosinian orogeny)in Vietnam[J].Geology, 2001, 29(29):211-214.

    [37]

    ZHOU X M, SUN T, SHEN W Z, et al.Petrogenesis of Mesozoic granitoids and volcanic rocks in South China:a response to tectonicevolution[J].Episodes, 2006, 29(1):26-33.

    [38]

    张岳桥,徐先兵,贾东,等.华南早中生代从印支期碰撞构造体系向燕山期俯冲构造体系转换的形变记录[J].地学前缘,2009,16(1):234-247.

    [39]

    徐先兵,张岳桥,贾东,等.华南早中生代大地构造过程[J].中国地质,2009,36(3):573-593.

    [40]

    LI Z X, LI X H.Formation of the 1300 km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China: A flat-slab subduction model[J].Geology, 2007, 35(2):179-182.

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收稿日期:  2021-12-20

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