大兴安岭中部扎赉特旗晚三叠世A型花岗岩的发现及其地质意义

孙巍, 许逢明, 吴大天, 赵院冬, 秦涛, 马永非, 臧延庆, 司秋亮, 付俊彧, 宋维民. 2023. 大兴安岭中部扎赉特旗晚三叠世A型花岗岩的发现及其地质意义. 西北地质, 56(2): 80-91. doi: 10.12401/j.nwg.2022027
引用本文: 孙巍, 许逢明, 吴大天, 赵院冬, 秦涛, 马永非, 臧延庆, 司秋亮, 付俊彧, 宋维民. 2023. 大兴安岭中部扎赉特旗晚三叠世A型花岗岩的发现及其地质意义. 西北地质, 56(2): 80-91. doi: 10.12401/j.nwg.2022027
SUN Wei, XU Fengming, WU Datian, ZHAO Yuandong, QIN Tao, MA Yongfei, ZANG Yanqing, SI Qiuliang, FU Junyu, SONG Weimin. 2023. Discovery and Geological Significance of Late Triassic A–Type Granite in Jalaid Banner, Middle of Great Xing’an Range. Northwestern Geology, 56(2): 80-91. doi: 10.12401/j.nwg.2022027
Citation: SUN Wei, XU Fengming, WU Datian, ZHAO Yuandong, QIN Tao, MA Yongfei, ZANG Yanqing, SI Qiuliang, FU Junyu, SONG Weimin. 2023. Discovery and Geological Significance of Late Triassic A–Type Granite in Jalaid Banner, Middle of Great Xing’an Range. Northwestern Geology, 56(2): 80-91. doi: 10.12401/j.nwg.2022027

大兴安岭中部扎赉特旗晚三叠世A型花岗岩的发现及其地质意义

  • 基金项目: 中国地质调查局项目“塞尔维亚铜金资源调查”(DD20201162),“内蒙古1∶5万五家户、孟家沟、莫利根屯、扎赉特旗、巴彦高勒五幅区域地质调查”(DD20160048-03),“东北基础地质综合研究与片区总结”(1212011220435) 和“中国大地构造演化和国际亚洲大地构造图编制”(DD20190360)联合资助。
详细信息
    作者简介: 孙巍(1987−),男,博士,工程师,主要从事区域地质矿产调查研究。E−mail:soohiboy@126.com
    通讯作者: 许逢明(1985−),男,高级工程师,主要从事区域矿产地质调查。E−mail:839381949@qq.com
  • 中图分类号: P581

Discovery and Geological Significance of Late Triassic A–Type Granite in Jalaid Banner, Middle of Great Xing’an Range

More Information
  • 大兴安岭中部在三叠纪叠加了古亚洲洋和蒙古−鄂霍茨克洋的影响,其构造背景存较大争议。笔者对大兴安岭中部扎赉特旗中粗粒正长花岗岩进行岩石学、岩石地球化学、锆石LA−ICP−MS U−Pb测年和Lu−Hf同位素分析。结果显示:锆石U−Pb年龄加权平均值为(228.5±2.0)Ma(MSWD=2.8);岩石高Si、富Fe、高K、低Sr和Eu,相对富Nb和富Zr,高10000×Ga/Al(3.0~3.1);全岩锆饱和温度平均值为805 ℃;综合判定该套花岗岩为铝质A型花岗岩。该岩体的εHft)值为+5.28~+8.00,二阶段Hf模式年龄(TDM2)为683~832 Ma,指示花岗岩可能形成于新增生地壳物质的部分熔融。综合区域已有研究成果,表明扎赉特旗地区的古亚洲洋残余洋盆在二叠纪闭合并进入碰撞造山阶段,晚三叠世A型花岗岩的出现,标志着本区进入造山后伸展阶段。

  • 加载中
  • 图 1  大兴安岭中部晚二叠世—早三叠世沉积地层分布图(据李世超等,2017修改)

    Figure 1. 

    图 2  扎赉特旗地区地质图

    Figure 2. 

    图 3  簸箕山中粗粒正长花岗岩野外照片

    Figure 3. 

    图 4  中粗粒正长花岗岩的中粗粒结构及块状构造

    Figure 4. 

    图 5  簸箕山中粗粒正长花岗岩显微照片

    Figure 5. 

    图 6  簸箕山中粗粒正长花岗岩K2O–SiO2图解

    Figure 6. 

    图 7  簸箕山中粗粒正长花岗岩含铝指数图解

    Figure 7. 

    图 8  球粒陨石标准化的REE图(标准化数值据Taylor et al.,1985

    Figure 8. 

    图 9  原始地幔标准化的微量元素蛛网图(标准化数值据Sun et al.,1989

    Figure 9. 

    图 10  簸箕山中粗粒正长花岗岩锆石CL图像(A)及锆石谐和图(B)

    Figure 10. 

    图 11  簸箕山中粗粒正长花岗岩A型花岗岩判别图(据Whalen al.,1987Eby,1992

    Figure 11. 

    表 1  簸箕山中粗粒正长花岗岩主量元素(%)和微量元素(10−6)分析结果

    Table 1.  Major (%) and trace (10−6) elements compositions of Bojishan medium-coarse grained texture syenogranite

    样品号5458TWYQ15458TWYQ25458TWYQ35458TWYQ4样品号5458TWYQ15458TWYQ25458TWYQ35458TWYQ4
    SiO274.7873.6574.9474.92 Tm0.560.610.580.47
    TiO20.150.220.140.13Yb3.634.063.653.04
    Al2O312.5113.5012.8512.67Lu0.520.590.520.42
    Fe2O31.261.791.311.14Y32.8637.1734.9827.27
    FeO0.540.360.540.49∑REE319.72288.57345.22297.26
    MnO0.020.030.020.02LREE293.76260.84318.04275.82
    MgO0.100.060.040.06HREE25.9627.7327.1821.44
    CaO0.580.690.570.57(La/Yb)N11.9710.0813.1613.04
    Na2O3.863.793.793.64Eu*0.070.170.080.06
    K2O5.605.495.525.36Rb179.94175.58182.96178.48
    P2O50.020.060.020.02Ba153.07397.10158.09131.50
    LOI0.440.280.360.71Th15.9223.3520.1313.44
    Total99.8599.91100.1099.73U2.112.911.971.97
    TFeO1.671.971.721.52Nb16.1618.8215.4714.29
    TFeO/MgO17.2232.8740.8726.62Ta1.111.491.000.96
    K2O/Na2O1.451.451.461.47Sr51.36110.9251.6451.63
    A/NK1.011.111.051.07Zr216.01253.37194.14178.82
    A/CNK0.931.010.970.99Hf7.188.317.596.64
    La64.3360.6571.1158.60Cr20.4223.0316.7022.82
    Ce150.29120.81157.44146.66Ga20.0921.1920.8320.44
    Pr15.2215.0317.1613.66Co3.643.614.063.91
    Nd54.4754.3561.8848.93Ni2.592.971.701.84
    Sm9.259.5010.197.83Li2.804.412.502.35
    Eu0.200.490.260.15Be3.554.163.893.47
    Gd8.048.058.716.78Sc2.992.073.263.38
    Tb1.251.371.341.06Zr-Nb-Ce-Y415.32430.17402.03367.04
    Dy7.097.587.345.6610000Ga/Al3.032.973.063.05
    Ho1.181.341.240.98 锆石饱和温度803825798794
    Er3.694.113.803.04
    下载: 导出CSV

    表 2  簸箕山中粗粒正长花岗岩(样品5458TW)锆石LA–ICP–MS定年分析结果

    Table 2.  Results of zircon LA–ICP–MS dating analysis of Bojishan medium–coarse grained texture syenogranite (Sample 5458TW)

    测点号ThUTh/U同位素比值年龄(Ma)
    (10–6207Pb/206Pb±1δ207Pb/235U±1δ206Pb/238U±1δ207Pb/206Pb±1δ207Pb/235U±1δ206Pb/238U±1δ
    013789590.390.053640.001360.276280.007780.037190.000573675724862354
    023306860.480.051800.001360.262060.007140.036540.000402766423662312
    0340410100.400.051970.001200.261170.006400.036200.000312835623652292
    041653880.430.076820.005190.392500.029410.036360.000641117140336212304
    054906200.790.051210.001380.257330.006990.036340.000382506123362302
    061121870.600.054530.002350.270770.011110.036290.000463949424392303
    0741690.600.055050.005070.265060.024210.035070.00080413207239192225
    083397020.480.051540.001440.258070.007560.036110.000392656523362292
    091474070.360.050970.001810.256190.009630.036320.000602398323282304
    10311180.260.052740.002490.256700.011980.035120.00053317107232102233
    111233130.390.053710.002070.261610.010620.034760.000513675523692203
    1241210420.400.052330.001600.271090.008190.037530.000582987024472384
    132214970.450.054380.001590.278520.008540.036950.000433876524972343
    142374710.500.050510.001570.249610.007810.035700.000382177022662262
    151253240.390.050210.001700.245190.008260.035370.000472117822372243
    162737710.350.051890.001430.258540.006870.035790.000522806323362273
    171804240.420.048420.001490.245270.008270.036480.000491206822372313
    181273280.390.052020.001750.252910.008470.035230.000412877622972233
    19114211181.020.050180.001190.250170.006080.036030.000362115622752282
    201463640.400.048790.001560.236190.007350.035160.000342007421562232
    212254820.470.052900.002010.259980.010340.035470.000513248723582253
    221995230.380.051830.001370.273360.008130.038100.000552806424562413
    234068410.480.052200.001260.262850.006670.036600.000502955623752323
    24891930.460.051230.002150.257010.010830.036580.000552509823292323
    下载: 导出CSV

    表 3  簸箕山中粗粒正长花岗岩(样品5458TW)锆石Hf同位素数据分析结果

    Table 3.  Results of Lu–Hf isotopic compositions of Bojishan medium–coarse grained texture syenogranite (Sample 5458TW)

    测点号年龄(Ma)176Yb/177Hf176Lu/177Hf176Hf/177HfεHf(t)TDM1(Ma)TDM2(Ma)ƒLu/Hf
    032290.0512220.0015170.2828310.0000147.01599739−0.95
    062300.0342380.0010780.2827910.0000165.69649814−0.97
    072220.0661850.0021420.2828030.0000255.78651802−0.94
    082290.0544290.0016380.2828600.0000198.00560683−0.95
    102230.0380900.0012690.2828340.0000217.04591733−0.96
    122380.0366580.0011390.2828150.0000146.69617764−0.97
    132340.0677040.0021310.2828070.0000176.17645790−0.94
    152240.0479400.0015890.2827850.0000175.28667832−0.95
    162270.0474220.0014210.2828070.0000146.12633787−0.96
    172310.0409450.0012590.2828130.0000166.47621771−0.96
    182230.0169700.0005200.2828240.0000156.80593746−0.98
    192280.0763780.0023460.2828370.0000207.07605735−0.93
    202230.0220400.0006830.2828070.0000156.16620782−0.98
    242320.0462000.0014690.2828310.0000167.10598737−0.96
    下载: 导出CSV
  • 卜建军, 何卫红, 张克信, 等. 古亚洲洋的演化: 来自古生物地层学方面的证据[J]. 地球科学, 2020, 45(3): 711-727

    BU Jianjun, HE Weihong, ZHANG Kexin, et al. Evolution of the Paleo-Asian Ocean: Evidences from Paleontology and Stratigraphy[J]. Earth Science, 2020, 45(3): 711-727.

    葛文春, 吴福元, 周长勇, 等. 大兴安岭中部乌兰浩特地区中生代花岗岩的锆石U-Pb年龄及地质意义[J]. 岩石学报, 2005, 21(3): 749-762 doi: 10.3969/j.issn.1000-0569.2005.03.015

    GE Wenchun, WU Fuyuan, ZHOU Changyong, et al. Zircon U-Pb Ages and its Significance of the Mesozoic Granites in the Wulanhaote Region, Central Da Hinggan Mountain[J]. Acta Petrologica Sinica, 2005, 21(3): 749-762. doi: 10.3969/j.issn.1000-0569.2005.03.015

    贺锋, 徐立权, 苏宏伟, 等. 内蒙古西部甜水井地区中二叠世A型花岗岩[J]. 西北地质, 2004, 37(3): 7-14 doi: 10.3969/j.issn.1009-6248.2004.03.002

    HE Feng, XU Liquan, SU Hongwei, et al. Characteristics and tectonic setting of Middle-Permian A-type granites in Tianshuijing area, west of Inner Mongolia[J]. Northwestern Geology, 2004, 37(3): 7-14. doi: 10.3969/j.issn.1009-6248.2004.03.002

    贺宏云, 李英雷, 刘汇川, 等. 大兴安岭东南段中三叠世岩浆岩年代学、地球化学特征及其对古亚洲洋构造演化时限的制约[J]. 地质通报, 2020, 39(7): 1046-1061

    HE Hongyun, LI Yinglei, LIU Huichuan, et al. Geochronology and Geochemistry of the Middle Triassic Magmatic Rocks in the Southeastern Part of the Da Hinggan Mountains and their Constraints on the Tectonic Evolution of Paleo- Asian Ocean[J]. Geological Bulletin of China, 2020, 39(7): 1046-1061.

    纪政, 葛文春, 杨浩, 等. 大兴安岭中段晚三叠世安第斯型安山岩: 蒙古-鄂霍茨克大洋板片南向俯冲作用的产物[J]. 岩石学报, 2018, 34(10): 2917-2930

    JI Zhen, GE Wenchun, YANG Hao, et al. The Late Triassic Andean-type Andesite from the Central Great Xing'an Range: Products of the Southward Subduction of the Mongol-Okhotsk Oceanic Plate[J]. Acta Petrologica Sinica, 2018, 34(10): 2917-2930.

    焦光磊, 李永军, 易善鑫, 等. 西准噶尔由后碰撞向板内体制转变的地质记录--来自克西克A型花岗岩的证据[J]. 西北地质, 2013, 46(3): 39-49 doi: 10.3969/j.issn.1009-6248.2013.03.002

    JIAO Guanglei, LI Yongjun, YI Shanxin, et al. The Geological Record of the Post-collision Shift to Intraplate System in West Junggar: Evidence from Kexike A-type Granite[J]. Northwestern Geology, 2013, 46(3): 39-49. doi: 10.3969/j.issn.1009-6248.2013.03.002

    李锦轶, 高立明, 孙桂华, 等. 内蒙古东部双井子中三叠世同碰撞壳源花岗岩的确定及其对西伯利亚与中朝古板块碰撞时限的约束[J]. 岩石学报, 2007, 23(3): 565-582

    LI Jinyi, GAO Liming, SUN Guihua, et al. Shuangjingzi Middle Triassic Syn- collisional Crust- derived Granite in the East Inner Mongolia and its Constraint on the Timing of Collision Between Siberian and Sino-Korean Paleo-plates[J]. Acta Petrologica Sinica, 2017, 23(3): 565-582.

    李锦轶, 刘建峰, 曲军峰, 等. 中国东北地区古生代构造单元: 地块还是造山带?[J]地球科学, 2019, 44(10): 3157-3177 doi: 10.3799/dqkx.2019.980

    LI Jinyi, LIU Jianfeng, QU Junfeng, et al. Paleozoic Tectonic Units of Northeast China: Continental Blocks or Orogenic Belts?[J] Earth Science, 2019, 44(10): 3157-3177.https://doi.org/10.3799/dqkx.2019.980. doi: 10.3799/dqkx.2019.980

    李小伟, 莫宣学, 赵志丹, 等. 关于A型花岗岩判别过程中若干问题的讨论[J]. 地质通报, 2010, 29(2/3): 278-285

    LI Xiaowei, MO Xuanxue, ZHAO Zhidan, et al. A Discussion on How to Discriminate A-type Granite[J]. Geological Bulletin of China, 2010, 29(2/3): 278-285.

    李世超, 张凌宇, 李鹏川, 等. 大兴安岭中段早三叠世O型埃达克岩的发现及其大地构造意义[J]. 地球科学, 2017, 42(12): 2117-2128 doi: 10.3799/dqkx.2017.136

    LI Shichao, ZHANG Lingyu, LI Pengchuan, et al. Discovery and Tectonic Implications of Early Triassic O-Type Adakite in Middle of Great Xing’an Range[J]. Earth Science, 2017, 42(12): 2117-2128. doi:10.3799/dqkx.2017.136.

    李斌, 陈井胜, 刘淼, 等. 内蒙古敖汉旗斜长角闪岩锆石U-Pb年龄及地球化学特征[J]. 西北地质, 2017, 50(1): 227-238 doi: 10.3969/j.issn.1009-6248.2017.01.019

    LI Bin, CHEN Jingsheng, LIU Miao, et al. Zircon U-Pb Ages and Geochemical Characteristics of the Plagioclase Amphibolite in the Aohan Banner, Inner Mongolia[J]. Northwestern Geology, 2017, 50(1): 227-238. doi: 10.3969/j.issn.1009-6248.2017.01.019

    梁天意, 刘敬党, 李猛猛, 等. 大兴安岭中段上二叠统林西组核形石的发现及其地质意义[J]. 地质论评, 2021, 67(3): 1-19

    LIANG Tianyi, LIU Jingdang, LI Mengmeng, et al. Discovery of Oncolitic in the Upper Permian Linxi Formation in Central Great Xing’ an Mountains and its Geological Significances[J]. Geological Review, 2021, 67(3): 1-19.

    马永非, 刘永江, 温泉波, 等. 大兴安岭中段晚三叠世哈达陶勒盖组火山岩成因及构造背景[J]. 地球科学, 2017, 42(12): 2146-2173

    MA Yongfei, LIU Yongjiang, WEN Quanbo, et al. Petrogenesis and Tectonic Settings of Volcanic Rocks from Late Triassic Hadataolegai Fm. at Central Part of Great Xing’an Range[J]. Earth Science, 2017, 42(12): 2146-2173.

    孙德有, 吴福元, 李惠民, 等. 小兴安岭西北部造山后A型花岗岩的时代及与索伦山-贺根山-扎赉特碰撞拼合带东延的关系[J]. 科学通报, 2000, 45(20): 2217-2222.

    SUN Deyou, WU Fuyuan, LI Huimin, et al. Emplacement Age of the Post- Ogenic A- type Granites in Northwestern Lesser Xing’an Ranges, and its Relationship to the Eastward Extension of Suolunshan- Hegenshan- Zhalaite collisional suture zone[J]. Chinese Science Bulletin, 2000, 45(20): 2217–2222.

    孙德有, 吴福元, 高山. 小兴安岭东部清水岩体的锆石激光探针U-Pb年龄测定[J]. 地球学报, 2004, 25(02): 213-218 doi: 10.3321/j.issn:1006-3021.2004.02.023

    SUN Deyou, WU Fuyuan, GAO Shan. LA-ICP-MS Zircon U-Pb Age of the Qingshui Pluton in the East Xiao Hinggan Mountains[J]. Acta Geoscientica Sinica, 2004, 25(02): 213-218. doi: 10.3321/j.issn:1006-3021.2004.02.023

    孙德有, 吴福元, 高山, 等. 吉林中部晚三叠世和早侏罗世两期铝质A型花岗岩的厘定及对吉黑东部构造格局的制约[J]. 地学前缘, 2005, 12(2): 263-275 doi: 10.3321/j.issn:1005-2321.2005.02.028

    SUN Deyou, WU Fuyuan, GAO Shan, et al. Confirmation of Two Episodes of A-type Granite Emplacement During Late Triassic and Early Jurassic in the Central Jilin Province, and their Constraints on the Structural Pattern of Eastern Jilin-Heilongjiang Area, China[J]. Earth Science Frontiers, 2005, 12(2): 263-275. doi: 10.3321/j.issn:1005-2321.2005.02.028

    田树刚, 张永生, 王俊涛, 等. 兴安-内蒙古地区晚古生代生物礁及其构造和油气意义[J]. 中国科学(地球科学), 2011, 41(4): 493–503.

    TIAN Shugang, ZHANG Yongsheng, WANG Juntao, et al. Late Paleozoic Reefs and their Significance for Tectonics and Oil-gas Exploration in the Hinggan-Inner Mongolia area[J]. Science China Earth Sciences, 2011, 41(4): 493–503..

    汪岩, 付俊彧, 那福超, 等. 内蒙古扎赉特旗辉长岩-闪长岩地球化学特征和LA-ICP-MS锆石U-Pb年龄[J]. 地质通报, 2013, 32(10): 1525-1535 doi: 10.3969/j.issn.1671-2552.2013.10.004

    WANG Yan, FU Junyu, NA Fuchao, et al. Geochemical Characteristics and Zircon U-Pb Age of the Gabbro-Dioritein Jalaid Banner of Inner Mongolia and their Geological Significance[J]. Geological Bulletin of China, 2013, 32(10): 1525-1535. doi: 10.3969/j.issn.1671-2552.2013.10.004

    汪洋, 焦永玲, 仝立华, 等. 再论A型花岗岩的实质---与张旗先生等商榷[J]. 岩石矿物学杂志, 2013, 32(2): 260-266 doi: 10.3969/j.issn.1000-6524.2013.02.013

    WANG Yang, JIAO Yongling, TONG Lihua, et al. The Essence of A-type Granitoids: A Discussion on the Opinions Held by Prof. Zhang Qi and Some other Researchers[J]. Acta Petrologica et Mineralogica, 2013, 32(2): 260-266. doi: 10.3969/j.issn.1000-6524.2013.02.013

    王俊涛, 张永生, 宋天锐, 等. 内蒙古扎赉特旗中二叠统岩石地层、生物地层特征及沉积环境分析[J]. 地层学杂志, 2011, 35(4): 375-375

    WANG Juntao, ZHANG Yongsheng, SONG Tianyue, et al. The Middle Permian Lithostratigraphy, Biostratigraphy and Sedimentary Environments of the Jlaid Qi, Inner Mongolia[J]. Journal of Stratigraphy, 2011, 35(4): 375-375.

    吴福元, 李献华, 杨进辉, 等. 花岗岩成因研究的若干问题[J]. 岩石学报, 2007, 23(6): 1217-1238 doi: 10.3969/j.issn.1000-0569.2007.06.001

    WU Fuyuan, LI Xianhua, YANG Jinhui, et al. Discussions on the Petrogenesis of Granites[J]. Acta Petrologica Sinica, 2007, 23(6): 1217-1238. doi: 10.3969/j.issn.1000-0569.2007.06.001

    许文良, 孙晨阳, 唐杰, 等. 兴蒙造山带的基底属性与构造演化过程[J]. 地球科学, 2019, 44(5): 1620-1646

    XU Wenliang, SUN Chenyang, TANG Jie, et al. Basement Nature and Tectonic Evolution of the Xing’ an-Mongolian Orogenic Belt[J]. Earth Science, 2019, 44(5): 1620-1646.

    张旗, 冉皞, 李承东. A型花岗岩的实质是什么?[J]岩石矿物学杂志, 2012, 31(4): 621-626 doi: 10.3969/j.issn.1000-6524.2012.04.014

    ZHANG Qi, RAN Hao, LI Chengdong. D. A-type Granite: What is the Essence?[J] Acta Petrologica et Mineralogica, 2012, 31(4): 621-626. doi: 10.3969/j.issn.1000-6524.2012.04.014

    张薇洁. A型花岗岩成因的热力学模拟[D]. 北京: 中国地质大学(北京), 2020

    ZHANG Weijie. Thermodynamic Modeling of the Origin of A-type Granites [D]. Beijing: China University of Geosciences (Beijing), 2020.

    张武, 傅晓平, 丁秋红, 等. 内蒙古扎赉特旗德发屯地区下三叠统老龙头组的新发现[J]. 地层学杂志, 2006, 30(1): 26-33 doi: 10.3969/j.issn.0253-4959.2006.01.004

    ZHANG Wu, FU Xiaoping, DING Qiuhong, et al. A New Knowledge of the Lower Triassic Laolongtou Formation in the Defatun Area, Jalaid Qi, Inner Mongolia[J]. Journal of Stratigraphy, 2006, 30(1): 26-33. doi: 10.3969/j.issn.0253-4959.2006.01.004

    赵芝. 大兴安岭北部晚古生代岩浆作用及其构造意义[D]. 长春: 吉林大学, 2011

    ZHAO Zhi. Late Paleozoic Magmatism and Its Tectonic Significance in the Northern Great Xing’an Range, Northeastern China [D]. Changchun: Jilin University, 2011.

    Eby G. Nelson. Chemical Subdivision of the A-type Granitoids: Petrogenetic and Tectonic Implications[J]. Geology, 1992, 20(7): 641-644. doi: 10.1130/0091-7613(1992)020<0641:CSOTAT>2.3.CO;2

    Hu Zhaochu, Gao Shan. , Liu Yongsheng, et al. Signal Enhancement in Laser Ablation ICP-MS by Addition of Nitrogen in the Central Channel Gas[J]. Journal of Analytical Atomic Spectrometry, 2008, 23: 1093-1101. doi: 10.1039/b804760j

    Li, Xianhua, Li Zhengxiang, Li Wuxian, et al. U-Pb Zircon, Geochemical and Sr Nd Hf Isotopic Constraints on Age and Origin of Jurassic I-and A-type Granites from Central Guangdong, SE China: A Major Igneous Event in Response to Foundering of a Subducted Flat-slab?[J] Lithos, 2007, 96: 186-204. doi: 10.1016/j.lithos.2006.09.018

    Liu Huichuan, Li Yinglei, He Hongyun, et al. Two-phase Southward Subduction of the Mongol-Okhotsk Oceanic Plate Constrained by Permian-Jurassic Granitoids in the Erguna and Xing'an Massifs (NE China) [J]. Lithos, 2018, 304-307: 347-361. doi: 10.1016/j.lithos.2018.01.016

    Liu Yongsheng, Hu Zhaochu, Gao Shan, et al. In Situ Analysis of Major and Trace Elements of Anhydrous Minerals By LA- ICP-MS Without Applying an Internal Standard[J]. Chemical Geology, 2008, 257(1/2): 34-43.

    Sun S S, Mcdonough W F. Chemical and Isotopic Systematics of Oceanic Basalts: Implications for Mantle Composition and Processes[A]. In: Saunders A D, Norry M J. Magmatism in the Ocean Basins[M]. Geological Society Special Publications, 1989, 42: 313–345.

    Taylor S R, Mclennan S M. The Continental Crust: Its Composition and Evolution[M]. Oxford: Blackwell, 1985.

    Wang Limin, Chi Xiaoguo, Zhao Zhi, et al. Zircon U–Pb Geochronology and Geochemistry of the Maoliger Quartz Monzodiorites, Inner Mongolia, China: Implications for Carboniferous Arc Magmatism and Closure of the Palaeo-Asian Ocean[J]. International Geology Review, 2014, 56(12): 1435-1449. doi: 10.1080/00206814.2014.940611

    Whalen J B, Currie K L, Chappell B W. A-type Granites: Geochemical Characteristics, Discriminations and Petrogenesis[J]. Contributions to Mineralogy and Petrology, 1987, 95: 407-419. doi: 10.1007/BF00402202

    Wu Fuyuan, Sun Deyou, Li Huimin, et al. A-type Granites in Northeastern China: Age and Geochemical Constraints on their Petrogenesis[J]. Chemical Geology, 2002, 187(1-2): 143-173. doi: 10.1016/S0009-2541(02)00018-9

    Yang Hao, Ge Wenchun, Yu Qian, et al. Zircon U–Pb–Hf isotopes, Bulk-rock Geochemistry and Petrogenesis of Middle to Late Triassic I-type Granitoids in the Xing’an Block, Northeast China: Implications for Early Mesozoic Tectonic Evolution of the Central Great Xing’an Range[J]. Journal of Asian Earth Sciences, 2016, 119: 30-48. doi: 10.1016/j.jseaes.2016.01.012

    Zhong Hong, Zhu Weiguang, Chu Zhuyin, et al. Shrimp U Pb Zircon Geochronology, Geochemistry, and Nd Sr Isotopic Study of Contrasting Granites in the Emeishan Large Igneous Province, SW China[J]. Chemical Geology, 2006, 236: 112-133.

  • 加载中

(11)

(3)

计量
  • 文章访问数:  627
  • PDF下载数:  2
  • 施引文献:  0
出版历程
收稿日期:  2021-07-22
修回日期:  2022-03-25
刊出日期:  2023-04-20

目录