• 中国科技核心期刊
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东昆仑夏日哈木地区二长花岗岩年代学、地球化学特征及地质意义

郭峰, 王盘喜, 卞孝东, 冯乃琦

郭峰, 王盘喜, 卞孝东, 等. 东昆仑夏日哈木地区二长花岗岩年代学、地球化学特征及地质意义[J]. 中国地质调查, 2020, 7(6): 51-60. DOI: 10.19388/j.zgdzdc.2020.06.07
引用本文: 郭峰, 王盘喜, 卞孝东, 等. 东昆仑夏日哈木地区二长花岗岩年代学、地球化学特征及地质意义[J]. 中国地质调查, 2020, 7(6): 51-60. DOI: 10.19388/j.zgdzdc.2020.06.07
GUO Feng, WANG Panxi, BIAN Xiaodong, et al. Geochronological and geochemical characteristics and geological significance of the monzogranite in Xiarihamu area of East Kunlun[J]. Geological Survey of China, 2020, 7(6): 51-60. DOI: 10.19388/j.zgdzdc.2020.06.07
Citation: GUO Feng, WANG Panxi, BIAN Xiaodong, et al. Geochronological and geochemical characteristics and geological significance of the monzogranite in Xiarihamu area of East Kunlun[J]. Geological Survey of China, 2020, 7(6): 51-60. DOI: 10.19388/j.zgdzdc.2020.06.07

东昆仑夏日哈木地区二长花岗岩年代学、地球化学特征及地质意义

基金项目: 中国地质调查局“青海祁漫塔格金属矿集区综合地质调查(编号: DD20160073)”和“长江中游黄石—萍乡—德兴矿山集中区综合地质调查(编号: DD20190269)”项目联合资助
详细信息
    作者简介:

    郭峰(1991—),男,实习研究员,主要从事区域地质调查研究工作。Email: gfeng1123@163.com。

    通信作者:

    王盘喜(1986—),男,高级工程师,主要从事地质勘查研究工作。Email: 4814053@qq.com。

  • 中图分类号: P588.121;P597.3;P595

Geochronological and geochemical characteristics and geological significance of the monzogranite in Xiarihamu area of East Kunlun

  • 摘要: 东昆仑夏日哈木地区首次发现了早泥盆世二长花岗岩,对其开展年代学和地球化学特征研究,进一步探讨其岩石成因和构造地质背景。二长花岗岩锆石U-Pb年龄为(412.1±5.7) Ma(MSWD=0.95),形成于早泥盆世早期; 岩石为过弱铝质亚碱性花岗岩,富SiO2(含量为71.41%~72.46%)、K2O(含量为5.27%~6.16%),贫Fe2O3(含量为1.86%~2.05%)、P2O5(含量为0.08%~0.12%),富集轻稀土元素,具明显的负Eu异常; 在原始地幔标准化微量元素蛛网图上可以看出,岩石明显富集Rb、Th、Zr、Hf,强烈亏损Nb、Sr、P、Ti、Ba。夏日哈木地区二长花岗岩属于I型花岗岩,其源岩可能由幔源岩浆底侵加热下地壳岩石致其部分熔融而形成,处于由同碰撞向后碰撞转换的构造环境,说明东昆仑夏日哈木地区在早泥盆世早期已进入伸展阶段。
    Abstract: The Early Devonian monzogranite was reported for the first time in Xiarihamu area of East Kunlun, so the authors investigated its geochronological and geochemical characteristics to further explore the petrogensis and tectonic setting. The U-Pb of zircon age of the monzogranite is (412.1 ± 5.7) Ma (MSWD = 0.95), which formed in early Early Devonian, and the monzogranite belongs to slightly peraluminous subalkaline series. The monzogranite is characterized by high SiO2 (71.41% ~ 72.46%) and K2O (5.27% ~ 6.16%), low Fe2O3(1.86% ~ 2.05%) and P2O5(0.08% ~ 0.12%), and high LREE with obvious negative Eu anomalies. Rb, Th, Zr and Hf are obviously enriched, while Nb, Sr, P, Ti and Ba are strongly depleted on the primitive mantle-normalized trace element spider diagram. The monzogranite in Xiarihamu area belongs to I-type granite, and the magma of the source rock may come from the partial melting of the lower crust materials caused by the underplating heating of mantle-derived magma. The monzogranite was formed in the tectonic environment of syn-collision converting to post-collision, suggesting that Xiarihamu area of East Kunlun had been in the post-orogenic extension stage since early Early Devonian.
  • [1] 杨经绥,许志琴,马昌前,等.复合造山作用和中国中央造山带的科学问题[J].中国地质,2010,37(1):1-11.
    [2] 王艺龙,李艳军,魏俊浩,等.东昆仑五龙沟地区晚志留世A型花岗岩成因:U-Pb年代学、地球化学、Nd及Hf同位素制约[J].地球科学,2018,43(4):1219-1236.
    [3] 莫宣学,罗照华,邓晋福,等.东昆仑造山带花岗岩及地壳生长[J].高校地质学报,2007,13(3):403-414.
    [4] 刘彬,马昌前,张金阳,等.东昆仑造山带东段早泥盆世侵入岩的成因及其对早古生代造山作用的指示[J].岩石学报,2012,28(6):1785-1807.
    [5] 王冠,孙丰月,李碧乐,等.东昆仑夏日哈木矿区早泥盆世正长花岗岩锆石U-Pb年代学、地球化学及其动力学意义[J].大地构造与成矿学,2013,37(4):685-697.
    [6] 刘彬,马昌前,郭盼,等.东昆仑中泥盆世A型花岗岩的确定及其构造意义[J].地球科学,2013,38(5):947-962.
    [7] 范亚洲,孟繁聪,段雪鹏,等.东昆仑西段夏日哈木榴辉岩原岩属性及陆(弧)陆碰撞[J].地质学报,2018,92(3):482-502.
    [8] 杨经绥,王希斌,史仁灯,等.青藏高原北部东昆仑南缘德尔尼蛇绿岩:一个被肢解了的古特提斯洋壳[J].中国地质,2004,31(3):225-239.
    [9] 张志炳,李文渊,张照伟,等.东昆仑夏日哈木岩浆铜镍硫化物矿床铬尖晶石特征及其指示意义[J].矿物岩石地球化学通报,2016,35(5):966-975.
    [10] 孟繁聪,崔美慧,贾丽辉,等.东昆仑造山带早古生代的大陆碰撞:来自榴辉岩原岩性质的证据[J].岩石学报,2015,31(12):3581-3594.
    [11] 田广阔,孟繁聪,范亚洲,等.东昆仑早古生代造山后花岗岩的特征——以大干沟花岗岩为例[J].岩石矿物学杂志,2016,35(3):371-390.
    [12] 王冠,孙丰月,李碧乐,等.东昆仑夏日哈木铜镍矿镁铁质-超镁铁质岩体岩相学、锆石U-Pb年代学、地球化学及其构造意义[J].地学前缘,2014,21(6):381-401.
    [13] 姜常义,凌锦兰,周伟,等.东昆仑夏日哈木镁铁质-超镁铁质岩体岩石成因与拉张型岛弧背景[J].岩石学报,2014,31(4):1117-1136.
    [14] 王冠,孙丰月,李碧乐,等.东昆仑夏日哈木矿区闪长岩锆石U-Pb年代学、地球化学及其地质意义[J].吉林大学学报:地球科学版,2014,44(3):876-891.
    [15] 国家地质实验测试中心.GB/T 14506—2010硅酸盐岩石化学分析方法[S].北京:中国标准出版社,2011.
    [16] Li X H,Li Q L,Liu Y,et al.Precise Pb/Pb age determination of Phanerozoic baddeleyites by multi-collector SIMS[J].Geochm Cosmochim Acta,2009,41(5):386-389.
    [17] 柳小明,高山,袁洪林,等.193 nm LA-ICP-MS对国际地质标准参考物质中42种主量和微量元素的分析[J].岩石学报,2002,18(3):408-418.
    [18] 吴元保,郑永飞.锆石成因矿物学研究及其对U-Pb年龄解释的制约[J].科学通报,2004,49(16):1589-1604.
    [19] Middlemost E A K.Naming materials in the magma/igneous rock system[J].Earth Sci Rev,1994,37(3/4):215-224.
    [20] Maniar P D,Piccoli P M.Tectonic discrimination of granitoids[J].Geol Soc Am Bull,1989,101(5):635-643.
    [21] Peccerillo A,Taylor S R.Geochemistry of Eocene calc-alkaline volcanic rocks from the Kastamonu area,northern Turkey[J].Contrib Mineral Petrol,1976,58(1):63-81.
    [22] Sun S S,McDonough W F.Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and proce-sses[J].Geol Soc Spec Publ,1989,42(1):313-345.
    [23] 王珍珍,刘栋,赵志丹,等.冈底斯带南部桑日高分异I型花岗岩的岩石成因及其动力学意义[J].岩石学报,2017,33(8):2479-2493.
    [24] Whalen J B,Currie K L,Chappell B W.A-type granites:geochemical characteristics,discrimination and petrogenesis[J].Contrib Mineral Petrol,1987,95(4):407-419.
    [25] 吴锁平,王梅英,戚开静.A型花岗岩研究现状及其述评[J].岩石矿物学杂志,2007,26(1):57-66.
    [26] 朱弟成,莫宣学,王立全,等.西藏冈底斯东部察隅高分异I型花岗岩的成因:锆石U-Pb年代学、地球化学和Sr-Nd-Hf同位素约束[J].中国科学(D辑):地球科学,2009,39(7):833-848.
    [27] Pichavant M,Montel J M,Richard L R.Apatite solubility in peraluminous liquids:experimental data and an extension of the Harrison-Watson model[J].Geochim Cosmochim Acta,1992,56(10):3855-3861.
    [28] Taylor S R,McLennan S M.The Continental Crust:Its Composition and Evolution[M].Oxford:Blackwell,1985:57-72.
    [29] 郝娜娜,袁万明,张爱奎.东昆仑祁漫塔格晚志留世—早泥盆世花岗岩:年代学、地球化学及形成环境[J].地质论评,2014,60(1):201-215.
    [30] Eby G N.Chemical subdivision of the A-type granitoids: petrogenetic and tectonic implications[J].Geology,1992,20(7):641-644.
    [31] 袁万明,莫宣学,喻学惠,等.东昆仑印支期区域构造背景的花岗岩记录[J].地质论评,2000,46(2):203-211.
    [32] Lu S N,Yu H F,Jin W,et al.Microcontinents on the eastern margin of Tarim paleocontinent[J].Acta Petrol Mineral,2002,21(4):317-326.
    [33] 李怀坤,陆松年,相振群,等.东昆仑中部缝合带清水泉麻粒岩锆石SHRIMP U-Pb年代学研究[J].地学前缘,2006,13(6):311-321.
    [34] 陈能松,孙敏,张克信,等.东昆仑变闪长岩体的40Ar-39Ar和U-Pb年龄:角闪石过剩Ar和东昆仑早古生代岩浆岩带证据[J].科学通报,2000,45(21):2337-2342.
    [35] Du W,Jiang C Y,Xia M Z,et al.A newly discovered early Paleozoic ophiolite in Dagele, eastern Kunlun,China,and its geological significance[J].Geol J,2017,52(S1):425-435.
    [36] 吴少锋,陈礼标,任文恺,等.祁漫塔格地区更长环斑花岗岩的发现及其地质意义[J].青海大学学报:自然科学版,2012,30(5):49-54.
    [37] 国显正,贾群子,钱兵,等.东昆仑高压变质带榴辉岩和榴闪岩地球化学特征及形成动力学背景[J].地球科学与环境学报,2017,39(6):735-750.
    [38] Pearce J.Sources and settings of granitic rocks[J].Episodes,1996,19(4):120-125.
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  • 收稿日期:  2020-02-28
  • 修回日期:  2020-07-18
  • 刊出日期:  2020-12-19

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