• 中国出版政府奖提名奖

    中国百强科技报刊

    湖北出版政府奖

    中国高校百佳科技期刊

    中国最美期刊

    留言板

    尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

    姓名
    邮箱
    手机号码
    标题
    留言内容
    验证码

    黑龙江省东部早古生代地层的确定:地质与碎屑锆石U-Pb年代学证据

    高福红 杨扬 王枫 许文良

    高福红, 杨扬, 王枫, 许文良, 2014. 黑龙江省东部早古生代地层的确定:地质与碎屑锆石U-Pb年代学证据. 地球科学, 39(5): 499-508. doi: 10.3799/dqkx.2014.048
    引用本文: 高福红, 杨扬, 王枫, 许文良, 2014. 黑龙江省东部早古生代地层的确定:地质与碎屑锆石U-Pb年代学证据. 地球科学, 39(5): 499-508. doi: 10.3799/dqkx.2014.048
    Gao Fuhong, Yang Yang, Wang Feng, Xu Wenliang, 2014. Determination of the Early Paleozoic Strata in Eastern Heilongjiang Province: Evidence from Field Geology and Detrital Zircon U-Pb Geochronology. Earth Science, 39(5): 499-508. doi: 10.3799/dqkx.2014.048
    Citation: Gao Fuhong, Yang Yang, Wang Feng, Xu Wenliang, 2014. Determination of the Early Paleozoic Strata in Eastern Heilongjiang Province: Evidence from Field Geology and Detrital Zircon U-Pb Geochronology. Earth Science, 39(5): 499-508. doi: 10.3799/dqkx.2014.048

    黑龙江省东部早古生代地层的确定:地质与碎屑锆石U-Pb年代学证据

    doi: 10.3799/dqkx.2014.048
    基金项目: 

    国家自然科学基金 41272075

    国家自然科学基金 41072038

    地调局项目 12120113098200

    详细信息
      作者简介:

      高福红(1963-),女,教授,主要从事岩石学研究.E-mail: gaofh@jlu.edu.cn

    • 中图分类号: P597

    Determination of the Early Paleozoic Strata in Eastern Heilongjiang Province: Evidence from Field Geology and Detrital Zircon U-Pb Geochronology

    • 摘要: 通过研究黑龙江省东部早古生代地层晨明组和宝泉组碎屑锆石的U-Pb定年结果,讨论了晨明组和宝泉组的所属时代和物源.大多数锆石呈自形-半自形晶,显示出典型的岩浆生长环带或条痕状吸收,暗示其岩浆成因,极少数的锆石具有经变质作用形成的暗色增生边.定年结果表明:采自晨明组上部长石石英砂岩中碎屑锆石59个分析点产生了以下年龄组:561 Ma、621 Ma、683 Ma、752 Ma、803 Ma、822 Ma、851 Ma、900 Ma、922 Ma、954 Ma、1 781 Ma、1 865 Ma和1 933 Ma,这表明晨明组沉积于561 Ma之后.而以不整合接触关系覆盖于晨明组之上的宝泉组底部泥质板岩中碎屑锆石60个分析法点产生了425 Ma、450 Ma、485 Ma、900 Ma和1 750 Ma年龄众数.由上述地质关系和年代学测定结果,结合晚古生代地层中碎屑锆石的年龄组合,可以判定位于黑龙江省东部地区晨明组的形成时代介于561~510 Ma之间,这是首次在黑龙江省东部确定的具有确切年代学证据的早古生代地层.上述年龄组碎屑锆石的存在,表明其物源主要为该区新元古代和古元古代的地质体,这进一步揭示在早古生代期间,松嫩-张广才岭地块东缘可能存在前寒武纪残片.

       

    • 图  1  研究区地质(黑龙江省地矿局,1993)

      Fig.  1.  Geological sketch map of the study area

      图  2  晨明组和宝泉组岩性柱状图及采样位置

      Fig.  2.  Column diagram of the Chenming and Baoquan formations showing lithology and sampling location

      图  3  晨明组和宝泉组样品显微照片(正交偏光)

      Fig.  3.  Photomicrographs of analysed samples from the Chenming and Baoquan formations

      图  4  晨明组(a)与宝泉组(b)锆石中的阴极发光图像

      Fig.  4.  CL images of zircons from the Chengming (a) and Baoquan (b) formations

      图  5  晨明组和宝泉组锆石LA-ICP-MS U-Pb年龄谐和

      Fig.  5.  U-Pb concordia diagrams summarizing the LA-ICP-MS zircon data for the Chenming and Baoquan formations

      图  6  碎屑锆石U-Pb年龄频率

      Fig.  6.  Relative probability of detrital zircons

      表  1  黑龙江省东部晨明组和宝泉组锆石LA-ICP-MS U-Pb定年数据(年龄单位:Ma)

      Table  1.   LA-ICP-MS zircon U-Pb dating results for the Chenming and Baoquan formations in eastern Heilongjiang Province

      序号
      Th
      (10-6)
      U
      (10-6)
      Th/U 207Pb/206Pb 207Pb/235U 206Pb/238U 207Pb/206Pb 207Pb/235U 206Pb/238U
      比值 比值 比值 年龄 年龄 年龄
      12HCM1-2长石石英砂岩(晨明组)
      12HCM1-2-01 210 302 0.70 0.070 23 0.003 41 1.327 23 0.061 69 0.136 02 0.003 28 935 57 858 27 822 19
      12HCM1-2-02 105 197 0.53 0.069 08 0.005 08 1.554 88 0.115 98 0.159 66 0.004 01 901 112 952 46 955 22
      12HCM1-2-03 456 512 0.89 0.069 66 0.002 49 1.494 74 0.049 03 0.153 73 0.002 91 918 37 928 20 922 16
      12HCM1-2-04 108 186 0.58 0.067 72 0.004 06 1.337 78 0.076 34 0.141 87 0.002 69 860 87 862 33 855 15
      12HCM1-2-05 73 200 0.37 0.118 43 0.004 29 5.919 71 0.208 21 0.355 84 0.005 21 1 933 42 1 964 31 1 962 25
      12HCM1-2-06 282 505 0.56 0.109 23 0.004 29 5.133 43 0.194 52 0.334 53 0.005 15 1787 47 1842 32 1860 25
      12HCM1-2-07 191 330 0.58 0.071 41 0.003 18 1.587 06 0.068 58 0.159 59 0.002 55 969 62 965 27 954 14
      12HCM1-2-08 368 591 0.62 0.113 00 0.004 83 4.992 54 0.199 51 0.315 77 0.006 32 1 848 44 1 818 34 1 769 31
      12HCM1-2-09 420 1119 0.38 0.114 67 0.003 15 5.550 22 0.166 00 0.344 53 0.005 20 1 875 32 1 908 26 1 908 25
      12HCM1-2-10 193 241 0.80 0.068 65 0.004 20 1.426 29 0.084 49 0.149 68 0.002 61 888 94 900 35 899 15
      12HCM1-2-11 181 319 0.57 0.067 23 0.005 94 1.302 66 0.104 36 0.141 16 0.003 77 845 122 847 46 851 21
      12HCM1-2-12 208 265 0.78 0.062 85 0.006 56 1.073 32 0.111 37 0.124 00 0.003 43 703 176 740 55 754 20
      12HCM1-2-13 116 390 0.30 0.067 08 0.003 18 0.940 10 0.043 83 0.101 16 0.001 43 840 74 673 23 621 8
      12HCM1-2-14 525 679 0.77 0.070 49 0.002 33 1.562 45 0.051 09 0.159 58 0.001 84 943 48 955 20 954 10
      12HCM1-2-15 121 268 0.45 0.070 01 0.004 84 1.493 11 0.106 30 0.153 52 0.004 02 929 103 928 43 921 22
      12HCM1-2-16 594 590 1.01 0.067 61 0.002 87 1.324 37 0.056 14 0.141 25 0.001 96 857 65 856 25 852 11
      12HCM1-2-17 296 717 0.41 0.060 53 0.003 14 0.759 82 0.037 27 0.090 97 0.001 48 622 78 574 22 561 9
      12HCM1-2-18 65 552 0.12 0.069 08 0.003 82 1.333 44 0.069 36 0.139 99 0.002 61 901 117 860 30 845 15
      12HCM1-2-19 150 461 0.33 0.118 57 0.005 78 5.551 68 0.263 86 0.336 87 0.005 65 1 935 61 1 909 41 1 872 27
      12HCM1-2-20 410 351 1.17 0.063 68 0.003 48 1.194 97 0.066 18 0.135 80 0.002 07 731 92 798 31 821 12
      12HCM1-2-21 83 930 0.09 0.067 58 0.003 36 1.328 52 0.065 53 0.141 62 0.003 24 856 65 858 29 854 18
      12HCM1-2-22 1 030 1 448 0.71 0.062 38 0.002 76 0.789 44 0.032 36 0.091 03 0.001 21 687 65 591 18 562 7
      12HCM1-2-23 457 912 0.50 0.108 65 0.003 05 5.008 01 0.141 34 0.329 79 0.003 50 1 777 36 1 821 24 1 837 17
      12HCM1-2-24 451 1 045 0.43 0.108 97 0.003 30 5.125 60 0.151 65 0.336 54 0.003 75 1 782 38 1 840 25 1 870 18
      12HCM1-2-25 240 196 1.22 0.066 48 0.003 98 1.210 11 0.069 25 0.132 88 0.002 18 821 92 805 32 804 12
      12HCM1-2-26 221 637 0.35 0.058 64 0.002 97 0.742 22 0.038 16 0.090 99 0.001 62 554 81 564 22 561 10
      12HCM1-2-27 513 1 034 0.50 0.061 32 0.002 29 0.780 03 0.031 41 0.090 92 0.001 33 651 61 586 18 561 8
      12HCM1-2-28 268 300 0.89 0.063 31 0.005 52 0.962 12 0.080 74 0.111 44 0.003 23 719 129 684 42 681 19
      12HCM1-2-29 380 556 0.68 0.070 99 0.002 81 1.338 56 0.054 16 0.135 84 0.002 06 957 58 863 24 821 12
      12HCM1-2-30 648 713 0.91 0.065 24 0.002 30 1.232 05 0.043 27 0.136 05 0.001 51 782 55 815 20 822 9
      12HCM1-2-31 171 1 479 0.12 0.114 00 0.003 88 4.586 81 0.150 53 0.292 17 0.008 00 1 864 27 1 747 27 1 652 40
      12HCM1-2-32 225 554 0.41 0.118 48 0.003 51 5.556 67 0.163 53 0.336 52 0.003 36 1 933 38 1 909 25 1 870 16
      12HCM1-2-33 413 926 0.45 0.153 72 0.003 97 1.286 93 0.267 33 0.478 95 0.005 11 2 388 30 2 461 24 2 523 22
      12HCM1-2-34 328 532 0.62 0.070 41 0.003 67 1.340 57 0.072 20 0.135 74 0.002 03 940 86 863 31 821 12
      12HCM1-2-35 289 659 0.44 0.064 42 0.002 84 1.271 41 0.054 62 0.140 91 0.002 37 756 62 833 24 850 13
      12HCM1-2-36 232 717 0.32 0.060 59 0.002 70 0.773 42 0.034 01 0.091 00 0.001 27 625 71 582 19 561 7
      12HCM1-2-37 203 479 0.42 0.063 95 0.002 60 1.267 16 0.049 99 0.141 22 0.001 95 740 60 831 22 852 11
      12HCM1-2-38 231 276 0.84 0.064 94 0.003 47 1.231 83 0.065 91 0.135 65 0.001 89 772 89 815 30 820 11
      12HCM1-2-39 523 643 0.81 0.060 93 0.002 92 1.165 14 0.057 85 0.136 55 0.002 17 637 79 784 27 825 12
      12HCM1-2-40 217 267 0.81 0.061 71 0.004 16 0.846 54 0.049 88 0.101 23 0.001 80 664 96 623 27 622 11
      12HCM1-2-41 391 597 0.65 0.054 18 0.002 62 0.928 01 0.042 95 0.123 87 0.001 76 379 78 667 23 753 10
      12HCM1-2-42 124 192 0.65 0.061 07 0.006 08 0.921 99 0.081 98 0.112 05 0.002 60 642 152 663 43 685 15
      12HCM1-2-43 142 780 0.18 0.099 31 0.003 52 4.494 37 0.155 35 0.326 91 0.005 67 1 611 39 1 730 29 1 823 28
      12HCM1-2-44 721 675 1.07 0.058 45 0.002 88 1.109 23 0.051 80 0.136 67 0.003 02 547 64 758 25 826 17
      12HCM1-2-45 199 365 0.55 0.052 74 0.005 01 0.903 03 0.082 43 0.123 53 0.002 49 318 170 653 44 751 14
      12HCM1-2-46 212 676 0.31 0.064 99 0.003 77 1.276 34 0.068 08 0.141 18 0.002 54 774 82 835 30 851 14
      12HCM1-2-47 312 797 0.39 0.071 35 0.003 53 1.404 42 0.065 28 0.141 36 0.002 88 967 62 891 28 852 16
      12HCM1-2-48 583 634 0.92 0.069 47 0.006 68 0.882 87 0.081 37 0.091 22 0.002 48 913 146 643 44 563 15
      12HCM1-2-49 211 434 0.49 0.073 72 0.003 24 1.530 49 0.065 77 0.150 07 0.002 34 1034 61 943 26 901 13
      12HCM1-2-50 221 262 0.84 0.074 22 0.003 75 1.544 51 0.077 78 0.149 83 0.002 23 1 047 77 948 31 900 13
      12HCM1-2-51 429 609 0.71 0.066 33 0.003 65 0.839 23 0.047 75 0.090 95 0.001 83 817 85 619 26 561 11
      12HCM1-2-52 1 045 1 086 0.96 0.069 81 0.002 32 1.324 38 0.045 21 0.135 97 0.001 75 923 49 856 20 822 10
      12HCM1-2-53 573 886 0.65 0.063 74 0.002 96 0.805 56 0.037 06 0.091 04 0.001 43 733 71 600 21 562 8
      12HCM1-2-54 934 962 0.97 0.060 62 0.002 65 0.849 62 0.036 97 0.101 13 0.001 52 626 68 624 20 621 9
      12HCM1-2-55 230 271 0.85 0.066 99 0.004 36 1.299 21 0.080 86 0.141 20 0.002 69 837 98 845 36 851 15
      12HCM1-2-56 438 505 0.87 0.057 93 0.003 35 0.728 04 0.043 24 0.090 57 0.001 61 527 99 555 25 559 10
      12HCM1-2-57 126 1 443 0.09 0.066 48 0.002 28 1.301 04 0.042 95 0.141 22 0.002 07 821 44 846 19 852 12
      12HCM1-2-58 910 994 0.92 0.065 61 0.002 13 1.209 35 0.038 42 0.132 61 0.001 45 794 48 805 18 803 8
      12HCM1-2-59 325 504 0.65 0.065 11 0.004 17 1.105 80 0.067 32 0.123 72 0.002 47 778 94 756 32 752 14
      HCM1-2泥质板岩(宝泉组)
      HCM1-2-01 82 169 0.48 0.077 00 0.001 91 1.580 03 0.038 88 0.149 11 0.001 35 1 121 35 962 15 896 8
      HCM1-2-02 209 724 0.29 0.059 69 0.001 42 0.599 63 0.013 76 0.072 99 0.000 66 592 34 477 9 454 4
      HCM1-2-03 196 562 0.35 0.059 85 0.002 20 0.566 70 0.023 95 0.068 18 0.000 91 598 68 456 16 425 5
      HCM1-2-04 275 738 0.37 0.058 53 0.001 42 0.552 70 0.013 13 0.068 44 0.000 51 549 39 447 9 427 3
      HCM1-2-05 224 631 0.35 0.056 81 0.001 72 0.534 37 0.016 86 0.068 20 0.001 02 484 44 435 11 425 6
      HCM1-2-06 300 760 0.40 0.060 40 0.003 45 0.595 60 0.033 27 0.071 52 0.000 84 618 127 474 21 445 5
      HCM1-2-07 356 859 0.41 0.059 32 0.001 29 0.593 68 0.013 63 0.072 33 0.000 49 579 38 473 9 450 3
      HCM1-2-08 293 725 0.40 0.055 15 0.001 73 0.520 05 0.016 86 0.068 25 0.000 89 418 49 425 11 426 5
      HCM1-2-09 293 774 0.38 0.058 16 0.001 34 0.583 13 0.014 17 0.072 59 0.000 81 536 34 466 9 452 5
      HCM1-2-10 92 353 0.26 0.057 60 0.002 32 0.570 71 0.022 01 0.071 86 0.000 83 515 91 458 14 447 5
      HCM1-2-11 333 963 0.35 0.070 82 0.001 06 1.558 73 0.025 41 0.159 26 0.001 39 952 19 954 10 953 8
      HCM1-2-12 306 793 0.39 0.057 47 0.001 48 0.575 37 0.014 86 0.072 51 0.000 70 509 40 461 10 451 4
      HCM1-2-13 287 725 0.40 0.059 22 0.001 14 0.594 81 0.011 64 0.072 79 0.000 75 575 25 474 7 453 5
      HCM1-2-14 436 1 132 0.39 0.057 29 0.000 91 0.571 58 0.009 22 0.072 27 0.000 70 503 19 459 6 450 4
      HCM1-2-15 394 1 279 0.31 0.061 75 0.001 11 0.582 40 0.011 30 0.068 24 0.000 76 665 23 466 7 426 5
      HCM1-2-16 416 895 0.46 0.056 52 0.001 40 0.533 57 0.013 42 0.068 32 0.000 72 473 37 434 9 426 4
      HCM1-2-17 261 687 0.38 0.055 28 0.001 05 0.552 30 0.010 37 0.072 37 0.000 52 424 29 447 7 450 3
      HCM1-2-18 286 741 0.39 0.058 44 0.001 15 0.585 79 0.012 01 0.072 48 0.000 52 546 32 468 8 451 3
      HCM1-2-19 535 966 0.55 0.058 36 0.001 35 0.632 07 0.015 50 0.078 28 0.000 75 543 37 497 10 486 4
      HCM1-2-20 556 940 0.59 0.054 69 0.001 59 0.547 17 0.014 51 0.072 59 0.000 80 399 40 443 10 452 5
      HCM1-2-21 284 308 0.92 0.063 61 0.002 05 0.595 23 0.018 20 0.068 18 0.000 75 729 46 474 12 425 5
      HCM1-2-22 49 105 0.47 0.106 57 0.002 83 4.553 05 0.119 01 0.309 73 0.003 69 1 742 31 1 741 22 1 739 18
      HCM1-2-23 221 751 0.29 0.058 02 0.001 40 0.626 95 0.014 93 0.078 27 0.000 59 531 39 494 9 486 4
      HCM1-2-24 298 791 0.38 0.058 22 0.001 52 0.583 14 0.016 64 0.072 33 0.000 90 538 41 466 11 450 5
      HCM1-2-25 635 906 0.70 0.056 81 0.001 46 0.569 11 0.014 20 0.072 57 0.000 80 484 36 457 9 452 5
      HCM1-2-26 355 680 0.52 0.059 14 0.001 39 0.591 50 0.013 85 0.072 34 0.000 51 572 39 472 9 450 3
      HCM1-2-27 139 157 0.88 0.065 67 0.003 17 0.652 31 0.028 65 0.072 55 0.000 97 796 70 510 18 451 6
      HCM1-2-28 170 552 0.31 0.061 06 0.001 38 0.611 28 0.013 98 0.072 43 0.000 58 641 35 484 9 451 4
      HCM1-2-29 265 676 0.39 0.058 53 0.001 75 0.588 52 0.018 69 0.072 61 0.000 94 550 47 470 12 452 6
      HCM1-2-30 243 633 0.38 0.056 80 0.001 44 0.568 89 0.014 62 0.072 51 0.000 74 484 39 457 9 451 4
      HCM1-2-B01 336 822 0.41 0.057 93 0.001 92 0.550 47 0.017 99 0.068 22 0.000 71 527 53 445 12 425 4
      HCM1-2-B02 328 939 0.35 0.056 48 0.001 92 0.570 06 0.019 55 0.072 38 0.000 86 471 55 458 13 450 5
      HCM1-2-B03 405 1 223 0.33 0.059 02 0.003 27 0.558 01 0.028 91 0.068 41 0.001 02 568 87 450 19 427 6
      HCM1-2-B04 341 974 0.35 0.055 82 0.001 98 0.559 82 0.019 61 0.072 34 0.001 04 445 52 451 13 450 6
      HCM1-2-B05 447 1 365 0.33 0.055 76 0.001 61 0.562 41 0.016 80 0.072 33 0.000 86 443 45 453 11 450 5
      HCM1-2-B06 393 1 142 0.34 0.056 12 0.001 95 0.532 69 0.018 21 0.068 21 0.000 73 457 57 434 12 425 4
      HCM1-2-B07 517 1 417 0.36 0.059 34 0.002 35 0.601 31 0.026 44 0.072 44 0.001 19 580 67 478 17 451 7
      HCM1-2-B08 453 1 545 0.29 0.056 41 0.001 84 0.564 91 0.017 21 0.072 31 0.000 90 469 45 455 11 450 5
      HCM1-2-B09 222 713 0.31 0.054 02 0.001 82 0.584 48 0.019 08 0.078 18 0.000 95 372 51 467 12 485 6
      HCM1-2-B10 436 1 354 0.32 0.053 10 0.001 85 0.536 80 0.019 36 0.072 58 0.000 99 333 57 436 13 452 6
      HCM1-2-B11 524 1 385 0.38 0.054 55 0.001 61 0.548 88 0.015 91 0.072 40 0.000 96 394 41 444 10 451 6
      HCM1-2-B12 613 981 0.62 0.066 12 0.002 43 0.718 31 0.025 95 0.078 22 0.000 72 590 144 501 25 481 5
      HCM1-2-B13 417 1 167 0.36 0.053 66 0.001 98 0.541 02 0.019 58 0.072 53 0.000 93 357 58 439 13 451 6
      HCM1-2-B14 350 834 0.42 0.058 93 0.002 00 0.593 16 0.020 44 0.072 45 0.000 87 564 54 473 13 451 5
      HCM1-2-B15 374 878 0.43 0.052 97 0.002 04 0.532 96 0.020 21 0.072 55 0.001 04 328 60 434 13 451 6
      HCM1-2-B16 370 1 048 0.35 0.053 56 0.001 99 0.506 74 0.018 47 0.068 18 0.001 09 352 53 416 12 425 7
      HCM1-2-B17 446 1 125 0.40 0.060 36 0.001 97 0.571 66 0.016 76 0.068 07 0.000 91 617 40 459 11 425 5
      HCM1-2-B18 813 2 233 0.36 0.054 89 0.001 26 0.553 02 0.012 90 0.072 39 0.000 74 408 34 447 8 451 4
      HCM1-2-B19 452 1 218 0.37 0.058 44 0.002 00 0.552 13 0.018 16 0.068 21 0.001 18 546 42 446 12 425 7
      HCM1-2-B20 615 1 167 0.53 0.076 56 0.002 83 0.723 45 0.026 88 0.067 90 0.000 88 902 123 502 22 419 5
      HCM1-2-B21 648 1 896 0.34 0.055 47 0.001 28 0.527 71 0.012 28 0.068 28 0.000 65 431 35 430 8 426 4
      HCM1-2-B22 386 1 053 0.37 0.057 58 0.001 48 0.578 92 0.014 60 0.072 35 0.000 70 514 38 464 9 450 4
      HCM1-2-B23 532 1 215 0.44 0.056 12 0.002 23 0.565 88 0.023 65 0.072 43 0.001 35 457 60 455 15 451 8
      HCM1-2-B24 472 1 501 0.31 0.056 66 0.001 70 0.572 88 0.017 24 0.072 54 0.000 89 478 45 460 11 451 5
      HCM1-2-B25 545 2 128 0.26 0.054 84 0.001 49 0.554 80 0.016 20 0.072 52 0.001 03 406 40 448 11 451 6
      HCM1-2-B26 402 1 038 0.39 0.064 44 0.002 45 0.613 07 0.022 45 0.068 44 0.000 78 541 121 442 19 423 5
      HCM1-2-B27 368 966 0.38 0.057 08 0.001 83 0.593 27 0.019 08 0.074 53 0.000 85 495 51 473 12 463 5
      HCM1-2-B28 499 1 301 0.38 0.056 71 0.001 47 0.571 90 0.014 94 0.072 32 0.000 71 480 40 459 10 450 4
      HCM1-2-B29 416 1 027 0.41 0.057 00 0.001 91 0.541 33 0.017 70 0.068 20 0.000 78 492 52 439 12 425 5
      HCM1-2-B30 325 768 0.42 0.064 09 0.002 36 0.649 26 0.027 06 0.072 29 0.001 30 745 58 508 17 450 8
      下载: 导出CSV
    • Anderson, T., 2002. Correction of Common Lead in U-Pb Analyses that do not Report 204Pb. Chemical Geology, 192: 59-79. doi: 10.1016/S0009-2541(02)00195-X
      Bruguier, O., Lancelet, J.R., 1997. U-Pb Dating on Single Detrital Zircon Grains from the Triassic Songpan-Ganze Flysch (Central China): Provenance and Tectonic Correlations. Earth and Planetary Science Letters, 152: 217-231. doi: 10.1016/S0012-821X(97)00138-6
      Feng, J., 2012. Tectonic Properties of Yichun-Yanshou Tectonic Zone during Early Paleozoic(Dissertation). Jinlin University, Changchun (in Chinese with English abstract).
      Han, G.Q., Liu, Y.J., Neubauer, F., et al., 2011. Origin of Terranes in the Eastern Central Asian Orogenic Belt, NE China: U-Pb Ages of Detrital Zircons from Ordovician-Devonian Sandstones, North Da Xing'an Mts. Tectonophysics, 511(3-4): 109-124. doi: 10.1016/j.tecto.2011.09.002
      Heilongjiang Bureau of Geology and Mineral Resources, 1993. Regional Geology of Heilongjiang Province. Geological Publishing House, Beijing(in Chinese).
      Li, J.Y., 2006. Peimian Geodynamic Setting of Northeast China and Adjacent Regions: Closure of the Paleo-Asian Ocean and Subduction of the Paleo-Pacific Plate. Journal of Asian Earth Sciences, 26: 207-224. doi: 10.1016/j.jseaes.2005.09.001
      Li, J.Y., Zhang, J., Yang, T.N., et al., 2009. Crustal Tectonic Division and Evolution of the Southern Part of the North Asian Orogenic Region and Iis Adjacent Areas. Journal of Jilin University (Earth Science Edition), 39(4): 584-605(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-CCDZ200904002.htm
      Li, W.M., Akira, T., Liu, Y.J., et al., 2009. 40Ar/39Ar Ages of the High-P/T Metamorphic Rocks of the Heilongjiang Complex in the Jiamusi Massif, Northeastern China. Journal of Mineralogical and Petrological Sciences, 104: 110-116. doi: 10.2465/jmps.081022g
      Liu, Y.S., Gao, S., Hu, Z.C., et al., 2010. Continental and Oceanic Crust Recycling-Induced Melt-Peridotite Interactions in the Trans-North China Orogen: U-Pb Dating, Hf Isotopes and Trace Elements in Zircons of Mantle Xenoliths. Journal of Petrology, 51: 537-571. doi: 10.1093/petrology/egp082
      Liu, Y.S., Hu, Z.C., Gao, S., et al., 2008. In Situ Analysis of Major and Trace Elements of Anhydrous Minerals by LA-ICP-MS without Applying an Internal Standard. Chemical Geology, 257: 34-43. doi: 10.1016/j.chemgeo.2008.08.004
      Lü, Z.C., Duan, G.Z., Hao, L.B., et al., 2001. Magmatism and Its Tectonic Significance in the Manzhouli-E'ergona Region. J. Mineral. Petrol. , 21(1): 77-85(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-KWYS200101016.htm
      Lü, Z.C., Duan, G.Z., Hao, L.B., et al., 2002. Geochemistry and Tectonic Setting of Metamorphic Detrital Rock of Jiageda Group. Journal of Jilin University (Earth Science Edition), 32(2): 111-115(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-CCDZ200202001.htm
      Ludwig, K.R., 2003. ISOPLOT 3: A Geochronological Toolkit for Microsoft Excel. Berkeley Geochronology Centre Special Publication, Berkeley, 74.
      Miao, L.C., Liu, D.Y., Zhang, F.Q., et al., 2007. Zircon SHRIMP U-Pb Ages of the "Xinghuadukou Group" in Hanjiayuanzi and Xinlin Areas and the "Zhalantun Group" in Inner Mongolia, Da Hinggan Mountains. Chinese Science Bulletin, 52: 1112-1134. Doi: 10.1007/s11434-007-0131-2
      Miao, L.C., Qiu, Y.M., McNaughton, N.J., et al., 2003. SHRIMP U-Pb Zircon Ages of Granitoids in the Wulashan Gold Deposit, Inner Mongolia, China: Timing of Mineralization and Tectonic Implications. International Geology Review, 45: 548-562. doi: 10.2747/0020-6814.45.6.548
      Meng, E., Xu, W.L., Pei, F.P., et al., 2010. Detrital-Zircon Geochronology of Late Paleozoic Sedimentary Rocks in Eastern Heilongjiang Province, NE China: Implications for the Tectonic Evolution of the Eastern Segment of the Central Asian Orogenic Belt. Tectonophysics, 53: 1231-1245. doi: 10.1016/j.tecto.2009.11.015
      Sengör, A.M.C., Natal'in, B.A., Burtman, V.S., 1993. Evolution of the Altaid Tectonic Collage and Paleozoic Crustal Growth in Eurasia. Nature, 364: 299-307. doi: 10.1038/364299a0
      Tang, J., Xu, W.L., Wang, F., et al., 2013. Geochronology and Geochemistry of Neoproterozoic magmatism in the Erguna Massif, NE China: Petrogenesis and Implications for the Breakup of the Rodinia Supercontinent. Precambrian Research, 224: 597-611. doi: 10.1016/j.precamres.2012.10.019
      Wang, F., Xu, W.L., Meng, E., et al., 2012a. Early Paleozoic Amalgamation of the Songnen-Zhangguangcai Range and Jiamusi Massifs in the Eastern Segment of the Central Asian Orogenic Belt: Geochronological and Geochemical Evidence from Granitoids and Rhyolites. Journal of Asian Earth Sciences, 49: 234-248. doi: 10.1016/j.jseaes.2011.09.022
      Wang, F., Xu, W.L., Gao, F.H., et al., 2012b. Tectonic History of the Zhangguangcailing Group in Eastern Heilongjiang Province, NE China: Constraints from U-Pb Geochronology of Detrital and Magmatic Zircons. Tectonophysics, 566-567: 105-122. doi: 10.1016/j.tecto.2012.07.018
      Wang, F., Xu, W.L., Gao, F.H., et al., 2013. Precambrian Terrane within the Songnen-Zhangguangcai Range Massif, NE China: Evidence from U-Pb Ages of Detrital Zircons from the Dongfengshan and Tadong Groups. Gondwana Research, 6: 1-12. doi: org/10.1016/j.gr.2013.06.017
      Wilde, S.A., Wu, F.Y., Zhang, X.Z., 2003. Late Pan-African Magmatism in Northeast China: U-Pb SHRIMP Zircon Evidence for Igneous Ages from the Mashan Complex. Precambrian Res. , 122: 311-327. doi: 10.1016/S0301-9268(02)00217-6
      Wilde, S.A., Zhang, X.Z., Wu, F.Y., 2000. Extension of a Newly-Identified 500 Ma Metamorphic Terrain in Northeast China: Furthur U-Pb SHRIMP Dating of Mashan Complex, Heilongjiang Province, China. Tectonophysics. , 328: 115-130. doi: 10.1016/S0040-1951(00)00180-3
      Wu, F.Y., Sun, D.Y., Ge, W.C., et al., 2011. Geochronology of the Phanerozoic Granitoids in Northeastern China. Journal of Asian Earth Sciences, 41: 1-30. doi: 10.1016/j.jseaes.2010.11.014
      Xu, M.J., Xu, W.L., Wang, F., et al., 2012. Age, Association and Provenance of the "Neoproterozoic" Fengshuigouhe Group in the Northwestern Lesser Xing'an Range, NE China: Constraints from Zircon U-Pb Geochronology. Journal of Earth Science, 23: 786-801. doi: 10.1007/s12583-012-0291-0
      Yu, J.J., Wang, F., Xu, W.L., et al., 2013. Late Permian Tectonic Evolution at the Southeastern Margin of the Songnen-Zhangguangcai Range Massif, NE China: Constraints from Geochronology and Geochemistry of Granitoids. Gondwana Research, 24: 635-647. doi: 10.1016/j.gr.2012.11.015
      Yuan, H.L., Gao, S., Liu, X.M., et al., 2004. Accurate U-Pb Age and Trace Element Determinations of Zircon by Laser Ablation Inductively Coupled Plasma Mass Spectrometry. Geostandard Newsletter, 28: 353-370. doi: 10.1111/j.1751-908X.2004.tb00755.x
      Zhou, J.B., Simon, A., Wilde, S.A., et al., 2011. A > 1 300 km Late Pan-African Metamorphic Belt in NE China: New Evidence from the Xing'an Block and Its Tectonic Implications. Tectonophysics, 509: 280-292. doi: 10.1016/j.tecto.2011.06.018
      Zhou, J.B., Wilde, S.A., Zhang, X.Z., et al., 2009. The Onset of Pacific Margin Accretion in NE China: Evidence from the Heilongjiang High-Pressure Metamorphic Belt. Tectonophysics, 478: 230-246. doi: 10.1016/j.tecto.2009.08.009
      冯坚, 2012. 伊春-延寿构造带早古生代构造属性研究(硕士学位论文). 长春: 吉林大学.
      黑龙江省地质矿产局, 1993. 黑龙江省区域地质志. 北京: 地质出版社.
      李锦轶, 张进, 杨天南, 等, 2009. 北亚造山区南部及其毗邻地区地壳构造分区与构造演化. 吉林大学学报(地球科学版), 39(4): 584-605. https://www.cnki.com.cn/Article/CJFDTOTAL-CCDZ200904002.htm
      吕志成, 段国正, 郝立波, 等, 2001. 满洲里—额尔古纳地区岩浆作用及其大地构造意义. 矿物岩石, 21(1): 77-85. doi: 10.3969/j.issn.1001-6872.2001.01.017
      吕志成, 段国正, 郝立波, 等, 2002. 佳疙瘩组变碎屑岩地球化学特征及古构造环境. 吉林大学学报(地球科学版), 32(2): 111-115. https://www.cnki.com.cn/Article/CJFDTOTAL-CCDZ200202001.htm
    • 加载中
    图(6) / 表(1)
    计量
    • 文章访问数:  3399
    • HTML全文浏览量:  616
    • PDF下载量:  554
    • 被引次数: 0
    出版历程
    • 收稿日期:  2013-11-19
    • 刊出日期:  2014-05-01

    目录

      /

      返回文章
      返回