

地学前缘 ›› 2025, Vol. 32 ›› Issue (6): 377-395.DOI: 10.13745/j.esf.sf.2025.10.57
李丽婵1(
), 赵志丹1,*(
), 唐演2, 刘栋1, 王珍珍1, 王青1, 朱弟成1, 莫宣学1
收稿日期:2025-10-16
修回日期:2025-10-20
出版日期:2025-11-25
发布日期:2025-11-12
通信作者:
赵志丹
作者简介:李丽婵(2000—),女,硕士,矿物学、岩石学、矿床学专业。E-mail: llc973963473@163.com
基金资助:
LI Lichan1(
), ZHAO Zhidan1,*(
), TANG Yan2, LIU Dong1, WANG Zhenzhen1, WANG Qing1, ZHU Dicheng1, MO Xuanxue1
Received:2025-10-16
Revised:2025-10-20
Online:2025-11-25
Published:2025-11-12
Contact:
ZHAO Zhidan
摘要:
脉岩是与同期岩浆作用具有相似矿物成分的小型侵入体,在冈底斯南部发育的中新世脉岩具有不同的产状、年龄,蕴含了岩浆作用和构造作用的双重信息。本文选择了日喀则谢通门县的脉岩为研究对象,开展地球化学、年代学以及Lu-Hf同位素研究,对脉岩的成因,构造特征、源区特性和地球动力学意义进行了详细讨论。识别出脉岩的锆石U-Pb年龄为15.2~14.5 Ma,为中新世后碰撞脉岩。脉岩具有较高的MgO含量、Mg#和不相容元素含量,同时表现出高Sr、低Y和Yb、较高的Sr/Y值、富集轻稀土元素和大离子亲石元素、亏损重稀土元素和高场强元素的埃达克质岩石地球化学特征。综合地球化学特征和构造特征推测成因模式为下地壳的拆沉引发了南拉萨地体的重力垮塌,导致南北向与东西向叠加的构造伸展。拆沉至软流圈的下地壳发生部分熔融并混入地幔组分,熔体沿伸展形成的正断裂和裂谷上侵,构成时空相近的两种方向的日喀则闪长玢岩脉。
中图分类号:
李丽婵, 赵志丹, 唐演, 刘栋, 王珍珍, 王青, 朱弟成, 莫宣学. 青藏高原南部日喀则地区中新世脉岩地球化学和岩石成因[J]. 地学前缘, 2025, 32(6): 377-395.
LI Lichan, ZHAO Zhidan, TANG Yan, LIU Dong, WANG Zhenzhen, WANG Qing, ZHU Dicheng, MO Xuanxue. Geochemistry and petrogenesis of Miocene dikes in the Shigatse area, southern Tibet[J]. Earth Science Frontiers, 2025, 32(6): 377-395.
图1 拉萨地体岩浆构造图及研究区地质图(a据文献[9]修改;b引自文献[39];c据《日喀则幅1∶25万区域地质图》修改) a—拉萨地体岩浆构造图;b—青藏高原及拉萨地体构造单元图,IYZS=印度-雅鲁藏布缝合带,LMF=洛巴堆—米拉山断裂,SNMZ=狮泉河—纳木错永珠蛇绿混杂岩带,BNS=班公湖—怒江缝合带,KF=喀喇昆仑断裂;c—日喀则谢通门区域地质简图。
Fig.1 Magmatic structure map of Lhasa terrane and geological map of the study area. a modified after [9]; b adapted from [39].
| 样品 | wB/% | ||||||||||||||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| SiO2 | TiO2 | Al2O3 | Fe2O3 | MnO | MgO | CaO | Na2O | K2O | P2O5 | LOI | |||||||||||||||||||||
| XT2101 | 56.9 | 0.78 | 16.6 | 6.08 | 0.08 | 3.97 | 5.79 | 4.14 | 1.27 | 0.27 | 3.96 | ||||||||||||||||||||
| XT2109 | 56.8 | 0.72 | 16.8 | 6.62 | 0.08 | 4.38 | 5.87 | 4.46 | 1.67 | 0.29 | 1.89 | ||||||||||||||||||||
| XT2113 | 58.2 | 0.63 | 15.8 | 5.62 | 0.1 | 4.76 | 5.48 | 4.41 | 1.82 | 0.2 | 2.72 | ||||||||||||||||||||
| XT2116 | 56.6 | 0.63 | 15.6 | 5.76 | 0.09 | 4.81 | 5.25 | 4.96 | 2.07 | 0.2 | 3.74 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Li | Be | Sc | V | Cr | Co | Ni | Cu | Zn | Ga | Rb | |||||||||||||||||||||
| XT2101 | 28.13 | 1.42 | 11.71 | 150.2 | 77.56 | 19.79 | 62.96 | 31.36 | 59.46 | 20.73 | 35.28 | ||||||||||||||||||||
| XT2109 | 16.97 | 1.75 | 12.02 | 134.7 | 78.04 | 22.1 | 77.2 | 65.16 | 48.41 | 20 | 29.4 | ||||||||||||||||||||
| XT2113 | 10.03 | 1.43 | 13.45 | 125.4 | 163.73 | 20.54 | 91.27 | 9.5 | 45.88 | 18.75 | 36.3 | ||||||||||||||||||||
| XT2116 | 25.94 | 1.22 | 13.81 | 129 | 178.65 | 23.48 | 95.93 | 16.61 | 54.21 | 18.72 | 50.68 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Sr | Y | Zr | Nb | Sn | Cs | Ba | La | Ce | Pr | Nd | |||||||||||||||||||||
| XT2101 | 830 | 11.23 | 95.61 | 4.34 | 1.45 | 3.61 | 447.5 | 18.9 | 40.9 | 5.04 | 21.4 | ||||||||||||||||||||
| XT2109 | 1202 | 12.16 | 112.11 | 5.08 | 0.83 | 0.6 | 741.2 | 26.7 | 56.2 | 7.02 | 28.4 | ||||||||||||||||||||
| XT2113 | 737.9 | 11.39 | 85.72 | 4.17 | 0.7 | 0.7 | 562.4 | 13.9 | 29.6 | 3.71 | 15.3 | ||||||||||||||||||||
| XT2116 | 784.2 | 11.44 | 94 | 3.69 | 0.79 | 1.31 | 488 | 14.7 | 31 | 3.84 | 15.8 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Sm | Eu | Gd | Tb | Dy | Ho | Er | Tm | Yb | Lu | Hf | |||||||||||||||||||||
| XT2101 | 4.12 | 1.08 | 3.11 | 0.41 | 2.09 | 0.4 | 1.01 | 0.13 | 0.89 | 0.12 | 2.78 | ||||||||||||||||||||
| XT2109 | 4.78 | 1.33 | 3.37 | 0.44 | 2.25 | 0.41 | 1.12 | 0.16 | 1.06 | 0.16 | 3.13 | ||||||||||||||||||||
| XT2113 | 3.1 | 0.86 | 2.51 | 0.4 | 2 | 0.42 | 1.14 | 0.16 | 1.02 | 0.16 | 2.52 | ||||||||||||||||||||
| XT2116 | 3.18 | 0.82 | 2.43 | 0.38 | 2.02 | 0.44 | 1.16 | 0.17 | 1 | 0.17 | 2.67 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Ta | Tl | Pb | Th | U | ΣREE | Sr/Y | δEu | (La/Yb)N | Y/Yb | ||||||||||||||||||||||
| XT2101 | 0.25 | 0.25 | 7.65 | 3.73 | 0.82 | 99.58 | 73.88 | 0.88 | 15.24 | 12.6 | |||||||||||||||||||||
| XT2109 | 0.29 | 0.23 | 8.62 | 5.69 | 1.1 | 133.44 | 98.88 | 0.96 | 18.1 | 11.48 | |||||||||||||||||||||
| XT2113 | 0.29 | 0.21 | 5.66 | 3.7 | 0.57 | 74.38 | 64.79 | 0.92 | 9.84 | 11.21 | |||||||||||||||||||||
| XT2116 | 0.26 | 0.29 | 9.95 | 3.58 | 0.75 | 77.04 | 68.56 | 0.86 | 10.48 | 11.38 | |||||||||||||||||||||
表1 日喀则闪长玢岩脉全岩主量和微量元素数
Table 1 Whole-rock major and trace element data of the Shigatse diorite porphyry dikes
| 样品 | wB/% | ||||||||||||||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| SiO2 | TiO2 | Al2O3 | Fe2O3 | MnO | MgO | CaO | Na2O | K2O | P2O5 | LOI | |||||||||||||||||||||
| XT2101 | 56.9 | 0.78 | 16.6 | 6.08 | 0.08 | 3.97 | 5.79 | 4.14 | 1.27 | 0.27 | 3.96 | ||||||||||||||||||||
| XT2109 | 56.8 | 0.72 | 16.8 | 6.62 | 0.08 | 4.38 | 5.87 | 4.46 | 1.67 | 0.29 | 1.89 | ||||||||||||||||||||
| XT2113 | 58.2 | 0.63 | 15.8 | 5.62 | 0.1 | 4.76 | 5.48 | 4.41 | 1.82 | 0.2 | 2.72 | ||||||||||||||||||||
| XT2116 | 56.6 | 0.63 | 15.6 | 5.76 | 0.09 | 4.81 | 5.25 | 4.96 | 2.07 | 0.2 | 3.74 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Li | Be | Sc | V | Cr | Co | Ni | Cu | Zn | Ga | Rb | |||||||||||||||||||||
| XT2101 | 28.13 | 1.42 | 11.71 | 150.2 | 77.56 | 19.79 | 62.96 | 31.36 | 59.46 | 20.73 | 35.28 | ||||||||||||||||||||
| XT2109 | 16.97 | 1.75 | 12.02 | 134.7 | 78.04 | 22.1 | 77.2 | 65.16 | 48.41 | 20 | 29.4 | ||||||||||||||||||||
| XT2113 | 10.03 | 1.43 | 13.45 | 125.4 | 163.73 | 20.54 | 91.27 | 9.5 | 45.88 | 18.75 | 36.3 | ||||||||||||||||||||
| XT2116 | 25.94 | 1.22 | 13.81 | 129 | 178.65 | 23.48 | 95.93 | 16.61 | 54.21 | 18.72 | 50.68 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Sr | Y | Zr | Nb | Sn | Cs | Ba | La | Ce | Pr | Nd | |||||||||||||||||||||
| XT2101 | 830 | 11.23 | 95.61 | 4.34 | 1.45 | 3.61 | 447.5 | 18.9 | 40.9 | 5.04 | 21.4 | ||||||||||||||||||||
| XT2109 | 1202 | 12.16 | 112.11 | 5.08 | 0.83 | 0.6 | 741.2 | 26.7 | 56.2 | 7.02 | 28.4 | ||||||||||||||||||||
| XT2113 | 737.9 | 11.39 | 85.72 | 4.17 | 0.7 | 0.7 | 562.4 | 13.9 | 29.6 | 3.71 | 15.3 | ||||||||||||||||||||
| XT2116 | 784.2 | 11.44 | 94 | 3.69 | 0.79 | 1.31 | 488 | 14.7 | 31 | 3.84 | 15.8 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Sm | Eu | Gd | Tb | Dy | Ho | Er | Tm | Yb | Lu | Hf | |||||||||||||||||||||
| XT2101 | 4.12 | 1.08 | 3.11 | 0.41 | 2.09 | 0.4 | 1.01 | 0.13 | 0.89 | 0.12 | 2.78 | ||||||||||||||||||||
| XT2109 | 4.78 | 1.33 | 3.37 | 0.44 | 2.25 | 0.41 | 1.12 | 0.16 | 1.06 | 0.16 | 3.13 | ||||||||||||||||||||
| XT2113 | 3.1 | 0.86 | 2.51 | 0.4 | 2 | 0.42 | 1.14 | 0.16 | 1.02 | 0.16 | 2.52 | ||||||||||||||||||||
| XT2116 | 3.18 | 0.82 | 2.43 | 0.38 | 2.02 | 0.44 | 1.16 | 0.17 | 1 | 0.17 | 2.67 | ||||||||||||||||||||
| 样品 | wB/10-6 | ||||||||||||||||||||||||||||||
| Ta | Tl | Pb | Th | U | ΣREE | Sr/Y | δEu | (La/Yb)N | Y/Yb | ||||||||||||||||||||||
| XT2101 | 0.25 | 0.25 | 7.65 | 3.73 | 0.82 | 99.58 | 73.88 | 0.88 | 15.24 | 12.6 | |||||||||||||||||||||
| XT2109 | 0.29 | 0.23 | 8.62 | 5.69 | 1.1 | 133.44 | 98.88 | 0.96 | 18.1 | 11.48 | |||||||||||||||||||||
| XT2113 | 0.29 | 0.21 | 5.66 | 3.7 | 0.57 | 74.38 | 64.79 | 0.92 | 9.84 | 11.21 | |||||||||||||||||||||
| XT2116 | 0.26 | 0.29 | 9.95 | 3.58 | 0.75 | 77.04 | 68.56 | 0.86 | 10.48 | 11.38 | |||||||||||||||||||||
图4 日喀则脉岩主量元素分类图解(底图据文献[39]) a—侵入岩TAS图解;b—K2O-SiO2图解;c—K2O-Na2O图解;d—A/NK-A/CNK图解。拉萨地体埃达克质岩数据据文献[9,41-42]。图5数据来源同此图。
Fig.4 Whole rock major element classification diagrams of Shigatse diorite porphyry dikes. Base map adapted from [39].
图5 日喀则脉岩稀土元素与微量元素配分图解(标准化值据文献[43]) a—球粒陨石标准化稀土元素配分图解;b—原始地幔标准化不相容元素配分图解。
Fig.5 Whole rock rare earth element and incompatible element distribution diagrams of Shigatse diorite porphyry dikes. Standardized values adapted from [43].
| 测点号 | 176Yb/177Hf | 2σ | 176Lu/177Hf | 2σ | 176Hf/177Hf | 2σ | Age/Ma | εHf(t) | TDM/Ma | |
|---|---|---|---|---|---|---|---|---|---|---|
| XT2101 01 | 0.030 550 | 0.000 460 | 0.001 340 | 0.000 024 | 0.283 063 | 0.000 029 | 14.7 | 13.7 | 270 | 322 |
| XT2101 02 | 0.020 170 | 0.000 590 | 0.000 944 | 0.000 026 | 0.283 073 | 0.000 038 | 14.7 | 12.0 | 253 | 354 |
| XT2101 03 | 0.022 000 | 0.000 400 | 0.000 923 | 0.000 017 | 0.283 048 | 0.000 023 | 14.7 | 13.5 | 288 | 344 |
| XT2101 04 | 0.006 450 | 0.000 850 | 0.000 274 | 0.000 034 | 0.283 060 | 0.000 024 | 14.7 | 14.0 | 266 | 312 |
| XT2101 06 | 0.027 470 | 0.000 970 | 0.001 179 | 0.000 030 | 0.283 090 | 0.000 024 | 14.7 | 14.7 | 230 | 259 |
| XT2101 07 | 0.030 680 | 0.000 330 | 0.001 186 | 0.000 012 | 0.282 898 | 0.000 035 | 14.7 | 4.3 | 504 | 793 |
| XT2101 08 | 0.026 080 | 0.000 420 | 0.001 085 | 0.000 016 | 0.282 916 | 0.000 033 | 14.7 | 4.9 | 477 | 753 |
| XT2101 09 | 0.012 900 | 0.000 330 | 0.000 610 | 0.000 016 | 0.282 863 | 0.000 023 | 14.7 | 3.1 | 546 | 872 |
| XT2101 10 | 0.015 950 | 0.000 350 | 0.000 735 | 0.000 016 | 0.283 038 | 0.000 025 | 14.7 | 12.6 | 301 | 382 |
| XT2101 11 | 0.022 030 | 0.000 650 | 0.000 876 | 0.000 025 | 0.283 020 | 0.000 024 | 14.7 | 10.0 | 327 | 477 |
| XT2101 12 | 0.018 710 | 0.000 970 | 0.000 767 | 0.000 031 | 0.282 944 | 0.000 041 | 14.7 | 5.9 | 434 | 690 |
| XT2101 13 | 0.014 220 | 0.000 230 | 0.000 549 | 0.000 010 | 0.282 873 | 0.000 022 | 14.7 | 3.4 | 531 | 850 |
| XT2101 15 | 0.026 260 | 0.000 590 | 0.001 026 | 0.000 020 | 0.283 038 | 0.000 018 | 14.7 | 10.6 | 303 | 439 |
| XT2101 17 | 0.048 600 | 0.001 700 | 0.001 571 | 0.000 055 | 0.282 749 | 0.000 025 | 14.7 | -0.5 | 724 | 1118 |
| XT2101 18 | 0.017 770 | 0.000 360 | 0.000 759 | 0.000 011 | 0.282 863 | 0.000 021 | 14.7 | 3.1 | 548 | 872 |
| XT2109 01 | 0.038 980 | 0.000 400 | 0.001 682 | 0.000 016 | 0.283 024 | 0.000 032 | 14.7 | 12.2 | 329 | 416 |
| XT2109 02 | 0.056 120 | 0.000 810 | 0.002 039 | 0.000 028 | 0.282 919 | 0.000 026 | 14.7 | 5.1 | 485 | 746 |
| XT2109 03 | 0.033 200 | 0.001 200 | 0.001 196 | 0.000 034 | 0.282 885 | 0.000 026 | 14.7 | 3.8 | 523 | 823 |
| XT2109 04 | 0.047 490 | 0.000 310 | 0.001 799 | 0.000 015 | 0.283 040 | 0.000 027 | 14.7 | 10.7 | 306 | 435 |
| XT2109 05 | 0.139 240 | 0.000 910 | 0.004 528 | 0.000 021 | 0.283 058 | 0.000 020 | 14.7 | 11.0 | 303 | 406 |
| XT2109 06 | 0.068 600 | 0.001 300 | 0.002 685 | 0.000 050 | 0.283 053 | 0.000 023 | 14.7 | 11.1 | 295 | 409 |
| XT2109 07 | 0.012 630 | 0.000 220 | 0.000 537 | 0.000 008 | 0.282 876 | 0.000 027 | 14.7 | 3.5 | 526 | 843 |
| XT2109 08 | 0.034 201 | 0.000 610 | 0.001 294 | 0.000 017 | 0.282 810 | 0.000 027 | 14.7 | 1.9 | 631 | 974 |
| XT2109 09 | 0.027 900 | 0.001 400 | 0.001 153 | 0.000 060 | 0.283 050 | 0.000 021 | 14.7 | 13.1 | 287 | 354 |
| XT2109 10 | 0.019 310 | 0.000 780 | 0.000 758 | 0.000 021 | 0.282 879 | 0.000 024 | 14.7 | 3.6 | 525 | 836 |
| XT2109 11 | 0.013 470 | 0.000 120 | 0.000 545 | 0.000 005 | 0.282 866 | 0.000 021 | 14.7 | 3.1 | 541 | 867 |
| XT2109 12 | 0.031 500 | 0.002 500 | 0.001 194 | 0.000 083 | 0.283 038 | 0.000 032 | 14.7 | 10.6 | 304 | 440 |
| XT2109 13 | 0.045 550 | 0.000 830 | 0.001 555 | 0.000 022 | 0.282 910 | 0.000 025 | 14.7 | 4.7 | 492 | 767 |
| XT2109 14 | 0.063 600 | 0.001 400 | 0.002 421 | 0.000 052 | 0.283 078 | 0.000 026 | 14.7 | 11.9 | 255 | 354 |
| XT2109 15 | 0.067 900 | 0.001 200 | 0.002 442 | 0.000 042 | 0.282 985 | 0.000 029 | 14.7 | 7.4 | 393 | 596 |
| XT2109 16 | 0.044 400 | 0.002 400 | 0.001 421 | 0.000 076 | 0.282 903 | 0.000 022 | 14.7 | 4.5 | 500 | 782 |
| XT2109 17 | 0.066 500 | 0.001 400 | 0.002 437 | 0.000 045 | 0.283 059 | 0.000 021 | 14.7 | 11.3 | 284 | 395 |
| XT2109 18 | 0.021 700 | 0.000 270 | 0.000 831 | 0.000 008 | 0.282 879 | 0.000 023 | 14.7 | 3.7 | 526 | 835 |
| XT2113 01 | 0.039 540 | 0.000 580 | 0.001 534 | 0.000 020 | 0.283 101 | 0.000 020 | 14.5 | 12.9 | 216 | 294 |
| XT2113 02 | 0.021 630 | 0.000 290 | 0.000 750 | 0.000 008 | 0.282 764 | 0.000 020 | 14.5 | -0.4 | 687 | 1096 |
| XT2113 03 | 0.052 080 | 0.000 200 | 0.001 742 | 0.000 009 | 0.282 886 | 0.000 022 | 14.5 | 3.9 | 529 | 821 |
| XT2113 04 | 0.059 000 | 0.000 660 | 0.002 005 | 0.000 019 | 0.282 930 | 0.000 019 | 14.5 | 5.4 | 469 | 721 |
| XT2113 05 | 0.057 330 | 0.000 510 | 0.002 039 | 0.000 022 | 0.282 924 | 0.000 022 | 14.5 | 5.2 | 478 | 735 |
| XT2113 06 | 0.067 280 | 0.000 580 | 0.002 440 | 0.000 025 | 0.282 957 | 0.000 026 | 14.5 | 6.4 | 435 | 660 |
| XT2113 07 | 0.061 650 | 0.000 550 | 0.002 091 | 0.000 012 | 0.282 921 | 0.000 022 | 14.5 | 5.1 | 483 | 741 |
| XT2113 08 | 0.040 210 | 0.000 100 | 0.001 389 | 0.000 005 | 0.282 921 | 0.000 021 | 14.5 | 5.1 | 474 | 741 |
| XT2113 09 | 0.044 200 | 0.001 100 | 0.001 571 | 0.000 047 | 0.282 991 | 0.000 025 | 14.5 | 7.6 | 375 | 583 |
| XT2113 10 | 0.028 704 | 0.000 039 | 0.001 141 | 0.000 001 | 0.283 055 | 0.000 019 | 14.5 | 13.3 | 280 | 342 |
| XT2113 11 | 0.037 800 | 0.001 100 | 0.001 569 | 0.000 045 | 0.283 047 | 0.000 018 | 14.5 | 13.1 | 294 | 359 |
| XT2113 12 | 0.034 540 | 0.000 390 | 0.001 423 | 0.000 014 | 0.283 054 | 0.000 022 | 14.5 | 13.3 | 283 | 344 |
| XT2113 13 | 0.035 900 | 0.000 790 | 0.001 471 | 0.000 034 | 0.283 042 | 0.000 024 | 14.5 | 13.0 | 301 | 368 |
| XT2113 14 | 0.021 480 | 0.000 360 | 0.000 910 | 0.000 013 | 0.283 059 | 0.000 024 | 14.5 | 13.4 | 272 | 333 |
| XT2113 15 | 0.048 140 | 0.000 800 | 0.001 993 | 0.000 021 | 0.283 062 | 0.000 022 | 14.5 | 13.6 | 276 | 327 |
| XT2113 16 | 0.029 160 | 0.000 380 | 0.001 203 | 0.000 013 | 0.283 064 | 0.000 025 | 14.5 | 13.7 | 267 | 318 |
| 测点号 | 176Yb/177Hf | 2σ | 176Lu/177Hf | 2σ | 176Hf/177Hf | 2σ | Age/Ma | εHf(t) | TDM/Ma | |
| XT2113 17 | 0.030 010 | 0.000 410 | 0.001 204 | 0.000 018 | 0.283 064 | 0.000 019 | 14.5 | 13.8 | 267 | 317 |
| XT2113 18 | 0.028 320 | 0.000 170 | 0.001 197 | 0.000 007 | 0.283 038 | 0.000 019 | 14.5 | 12.8 | 304 | 379 |
| XT2113 19 | 0.029 950 | 0.000 840 | 0.001 200 | 0.000 033 | 0.283 062 | 0.000 023 | 14.5 | 13.5 | 270 | 327 |
| XT2113 20 | 0.015 976 | 0.000 062 | 0.000 687 | 0.000 003 | 0.283 039 | 0.000 025 | 14.5 | 13.1 | 299 | 366 |
| XT2113 21 | 0.027 390 | 0.000 360 | 0.001 144 | 0.000 014 | 0.283 056 | 0.000 022 | 14.5 | 13.5 | 278 | 336 |
| XT2113 22 | 0.049 290 | 0.000 360 | 0.001 810 | 0.000 011 | 0.282 939 | 0.000 021 | 14.5 | 5.8 | 453 | 700 |
| XT2113 23 | 0.052 340 | 0.000 200 | 0.001 751 | 0.000 004 | 0.282 924 | 0.000 019 | 14.5 | 5.2 | 474 | 734 |
| XT2113 24 | 0.061 190 | 0.000 240 | 0.002 158 | 0.000 015 | 0.282 948 | 0.000 021 | 14.5 | 6.1 | 444 | 680 |
| XT2116 01 | 0.054 280 | 0.000 470 | 0.002 087 | 0.000 013 | 0.282 953 | 0.000 024 | 15.2 | 6.3 | 436 | 668 |
| XT2116 02 | 0.039 700 | 0.001 000 | 0.001 486 | 0.000 041 | 0.282 952 | 0.000 030 | 15.2 | 6.3 | 431 | 670 |
| XT2116 03 | 0.016 500 | 0.001 000 | 0.000 636 | 0.000 036 | 0.282 854 | 0.000 029 | 15.2 | 2.8 | 559 | 893 |
| XT2116 04 | 0.028 870 | 0.000 860 | 0.001 115 | 0.000 034 | 0.282 924 | 0.000 022 | 15.2 | 5.2 | 466 | 735 |
| XT2116 05 | 0.010 560 | 0.000 310 | 0.000 407 | 0.000 010 | 0.282 893 | 0.000 019 | 15.2 | 4.2 | 501 | 801 |
| XT2116 06 | 0.027 650 | 0.000 250 | 0.001 034 | 0.000 013 | 0.282 905 | 0.000 023 | 15.2 | 4.6 | 492 | 777 |
| XT2116 07 | 0.027 590 | 0.000 320 | 0.001 138 | 0.000 009 | 0.283 021 | 0.000 049 | 15.2 | 8.6 | 328 | 515 |
| XT2116 08 | 0.008 250 | 0.000 110 | 0.000 338 | 0.000 003 | 0.282 875 | 0.000 020 | 15.2 | 3.4 | 525 | 847 |
| XT2116 09 | 0.039 460 | 0.000 460 | 0.001 554 | 0.000 017 | 0.282 879 | 0.000 021 | 15.2 | 3.7 | 537 | 835 |
| XT2116 10 | 0.014 920 | 0.000 260 | 0.000 583 | 0.000 008 | 0.282 849 | 0.000 020 | 15.2 | 2.6 | 565 | 904 |
| XT2116 11 | 0.031 100 | 0.000 630 | 0.001 151 | 0.000 021 | 0.282 918 | 0.000 027 | 15.2 | 5.0 | 475 | 748 |
| XT2116 12 | 0.028 430 | 0.000 170 | 0.001 166 | 0.000 005 | 0.282 890 | 0.000 027 | 15.2 | 4.0 | 515 | 811 |
| XT2116 13 | 0.031 120 | 0.000 560 | 0.001 195 | 0.000 013 | 0.282 890 | 0.000 026 | 15.2 | 4.0 | 516 | 812 |
| XT2116 14 | 0.039 980 | 0.000 950 | 0.001 471 | 0.000 042 | 0.282 907 | 0.000 024 | 15.2 | 4.7 | 495 | 772 |
| XT2116 15 | 0.016 610 | 0.000 250 | 0.000 678 | 0.000 007 | 0.282 880 | 0.000 026 | 15.2 | 3.8 | 523 | 831 |
| XT2116 16 | 0.018 960 | 0.000 210 | 0.000 759 | 0.000 009 | 0.282 887 | 0.000 025 | 15.2 | 3.9 | 514 | 818 |
| XT2116 17 | 0.017 200 | 0.000 130 | 0.000 674 | 0.000 004 | 0.282 894 | 0.000 021 | 15.2 | 4.0 | 503 | 807 |
| XT2116 18 | 0.016 920 | 0.000 340 | 0.000 628 | 0.000 013 | 0.282 887 | 0.000 022 | 15.2 | 4.0 | 512 | 816 |
表3 日喀则闪长玢岩脉锆石Hf同位素数据
Table 3 Hafnium isotopic compositions of zircons of the Shigatse diorite porphyry dikes
| 测点号 | 176Yb/177Hf | 2σ | 176Lu/177Hf | 2σ | 176Hf/177Hf | 2σ | Age/Ma | εHf(t) | TDM/Ma | |
|---|---|---|---|---|---|---|---|---|---|---|
| XT2101 01 | 0.030 550 | 0.000 460 | 0.001 340 | 0.000 024 | 0.283 063 | 0.000 029 | 14.7 | 13.7 | 270 | 322 |
| XT2101 02 | 0.020 170 | 0.000 590 | 0.000 944 | 0.000 026 | 0.283 073 | 0.000 038 | 14.7 | 12.0 | 253 | 354 |
| XT2101 03 | 0.022 000 | 0.000 400 | 0.000 923 | 0.000 017 | 0.283 048 | 0.000 023 | 14.7 | 13.5 | 288 | 344 |
| XT2101 04 | 0.006 450 | 0.000 850 | 0.000 274 | 0.000 034 | 0.283 060 | 0.000 024 | 14.7 | 14.0 | 266 | 312 |
| XT2101 06 | 0.027 470 | 0.000 970 | 0.001 179 | 0.000 030 | 0.283 090 | 0.000 024 | 14.7 | 14.7 | 230 | 259 |
| XT2101 07 | 0.030 680 | 0.000 330 | 0.001 186 | 0.000 012 | 0.282 898 | 0.000 035 | 14.7 | 4.3 | 504 | 793 |
| XT2101 08 | 0.026 080 | 0.000 420 | 0.001 085 | 0.000 016 | 0.282 916 | 0.000 033 | 14.7 | 4.9 | 477 | 753 |
| XT2101 09 | 0.012 900 | 0.000 330 | 0.000 610 | 0.000 016 | 0.282 863 | 0.000 023 | 14.7 | 3.1 | 546 | 872 |
| XT2101 10 | 0.015 950 | 0.000 350 | 0.000 735 | 0.000 016 | 0.283 038 | 0.000 025 | 14.7 | 12.6 | 301 | 382 |
| XT2101 11 | 0.022 030 | 0.000 650 | 0.000 876 | 0.000 025 | 0.283 020 | 0.000 024 | 14.7 | 10.0 | 327 | 477 |
| XT2101 12 | 0.018 710 | 0.000 970 | 0.000 767 | 0.000 031 | 0.282 944 | 0.000 041 | 14.7 | 5.9 | 434 | 690 |
| XT2101 13 | 0.014 220 | 0.000 230 | 0.000 549 | 0.000 010 | 0.282 873 | 0.000 022 | 14.7 | 3.4 | 531 | 850 |
| XT2101 15 | 0.026 260 | 0.000 590 | 0.001 026 | 0.000 020 | 0.283 038 | 0.000 018 | 14.7 | 10.6 | 303 | 439 |
| XT2101 17 | 0.048 600 | 0.001 700 | 0.001 571 | 0.000 055 | 0.282 749 | 0.000 025 | 14.7 | -0.5 | 724 | 1118 |
| XT2101 18 | 0.017 770 | 0.000 360 | 0.000 759 | 0.000 011 | 0.282 863 | 0.000 021 | 14.7 | 3.1 | 548 | 872 |
| XT2109 01 | 0.038 980 | 0.000 400 | 0.001 682 | 0.000 016 | 0.283 024 | 0.000 032 | 14.7 | 12.2 | 329 | 416 |
| XT2109 02 | 0.056 120 | 0.000 810 | 0.002 039 | 0.000 028 | 0.282 919 | 0.000 026 | 14.7 | 5.1 | 485 | 746 |
| XT2109 03 | 0.033 200 | 0.001 200 | 0.001 196 | 0.000 034 | 0.282 885 | 0.000 026 | 14.7 | 3.8 | 523 | 823 |
| XT2109 04 | 0.047 490 | 0.000 310 | 0.001 799 | 0.000 015 | 0.283 040 | 0.000 027 | 14.7 | 10.7 | 306 | 435 |
| XT2109 05 | 0.139 240 | 0.000 910 | 0.004 528 | 0.000 021 | 0.283 058 | 0.000 020 | 14.7 | 11.0 | 303 | 406 |
| XT2109 06 | 0.068 600 | 0.001 300 | 0.002 685 | 0.000 050 | 0.283 053 | 0.000 023 | 14.7 | 11.1 | 295 | 409 |
| XT2109 07 | 0.012 630 | 0.000 220 | 0.000 537 | 0.000 008 | 0.282 876 | 0.000 027 | 14.7 | 3.5 | 526 | 843 |
| XT2109 08 | 0.034 201 | 0.000 610 | 0.001 294 | 0.000 017 | 0.282 810 | 0.000 027 | 14.7 | 1.9 | 631 | 974 |
| XT2109 09 | 0.027 900 | 0.001 400 | 0.001 153 | 0.000 060 | 0.283 050 | 0.000 021 | 14.7 | 13.1 | 287 | 354 |
| XT2109 10 | 0.019 310 | 0.000 780 | 0.000 758 | 0.000 021 | 0.282 879 | 0.000 024 | 14.7 | 3.6 | 525 | 836 |
| XT2109 11 | 0.013 470 | 0.000 120 | 0.000 545 | 0.000 005 | 0.282 866 | 0.000 021 | 14.7 | 3.1 | 541 | 867 |
| XT2109 12 | 0.031 500 | 0.002 500 | 0.001 194 | 0.000 083 | 0.283 038 | 0.000 032 | 14.7 | 10.6 | 304 | 440 |
| XT2109 13 | 0.045 550 | 0.000 830 | 0.001 555 | 0.000 022 | 0.282 910 | 0.000 025 | 14.7 | 4.7 | 492 | 767 |
| XT2109 14 | 0.063 600 | 0.001 400 | 0.002 421 | 0.000 052 | 0.283 078 | 0.000 026 | 14.7 | 11.9 | 255 | 354 |
| XT2109 15 | 0.067 900 | 0.001 200 | 0.002 442 | 0.000 042 | 0.282 985 | 0.000 029 | 14.7 | 7.4 | 393 | 596 |
| XT2109 16 | 0.044 400 | 0.002 400 | 0.001 421 | 0.000 076 | 0.282 903 | 0.000 022 | 14.7 | 4.5 | 500 | 782 |
| XT2109 17 | 0.066 500 | 0.001 400 | 0.002 437 | 0.000 045 | 0.283 059 | 0.000 021 | 14.7 | 11.3 | 284 | 395 |
| XT2109 18 | 0.021 700 | 0.000 270 | 0.000 831 | 0.000 008 | 0.282 879 | 0.000 023 | 14.7 | 3.7 | 526 | 835 |
| XT2113 01 | 0.039 540 | 0.000 580 | 0.001 534 | 0.000 020 | 0.283 101 | 0.000 020 | 14.5 | 12.9 | 216 | 294 |
| XT2113 02 | 0.021 630 | 0.000 290 | 0.000 750 | 0.000 008 | 0.282 764 | 0.000 020 | 14.5 | -0.4 | 687 | 1096 |
| XT2113 03 | 0.052 080 | 0.000 200 | 0.001 742 | 0.000 009 | 0.282 886 | 0.000 022 | 14.5 | 3.9 | 529 | 821 |
| XT2113 04 | 0.059 000 | 0.000 660 | 0.002 005 | 0.000 019 | 0.282 930 | 0.000 019 | 14.5 | 5.4 | 469 | 721 |
| XT2113 05 | 0.057 330 | 0.000 510 | 0.002 039 | 0.000 022 | 0.282 924 | 0.000 022 | 14.5 | 5.2 | 478 | 735 |
| XT2113 06 | 0.067 280 | 0.000 580 | 0.002 440 | 0.000 025 | 0.282 957 | 0.000 026 | 14.5 | 6.4 | 435 | 660 |
| XT2113 07 | 0.061 650 | 0.000 550 | 0.002 091 | 0.000 012 | 0.282 921 | 0.000 022 | 14.5 | 5.1 | 483 | 741 |
| XT2113 08 | 0.040 210 | 0.000 100 | 0.001 389 | 0.000 005 | 0.282 921 | 0.000 021 | 14.5 | 5.1 | 474 | 741 |
| XT2113 09 | 0.044 200 | 0.001 100 | 0.001 571 | 0.000 047 | 0.282 991 | 0.000 025 | 14.5 | 7.6 | 375 | 583 |
| XT2113 10 | 0.028 704 | 0.000 039 | 0.001 141 | 0.000 001 | 0.283 055 | 0.000 019 | 14.5 | 13.3 | 280 | 342 |
| XT2113 11 | 0.037 800 | 0.001 100 | 0.001 569 | 0.000 045 | 0.283 047 | 0.000 018 | 14.5 | 13.1 | 294 | 359 |
| XT2113 12 | 0.034 540 | 0.000 390 | 0.001 423 | 0.000 014 | 0.283 054 | 0.000 022 | 14.5 | 13.3 | 283 | 344 |
| XT2113 13 | 0.035 900 | 0.000 790 | 0.001 471 | 0.000 034 | 0.283 042 | 0.000 024 | 14.5 | 13.0 | 301 | 368 |
| XT2113 14 | 0.021 480 | 0.000 360 | 0.000 910 | 0.000 013 | 0.283 059 | 0.000 024 | 14.5 | 13.4 | 272 | 333 |
| XT2113 15 | 0.048 140 | 0.000 800 | 0.001 993 | 0.000 021 | 0.283 062 | 0.000 022 | 14.5 | 13.6 | 276 | 327 |
| XT2113 16 | 0.029 160 | 0.000 380 | 0.001 203 | 0.000 013 | 0.283 064 | 0.000 025 | 14.5 | 13.7 | 267 | 318 |
| 测点号 | 176Yb/177Hf | 2σ | 176Lu/177Hf | 2σ | 176Hf/177Hf | 2σ | Age/Ma | εHf(t) | TDM/Ma | |
| XT2113 17 | 0.030 010 | 0.000 410 | 0.001 204 | 0.000 018 | 0.283 064 | 0.000 019 | 14.5 | 13.8 | 267 | 317 |
| XT2113 18 | 0.028 320 | 0.000 170 | 0.001 197 | 0.000 007 | 0.283 038 | 0.000 019 | 14.5 | 12.8 | 304 | 379 |
| XT2113 19 | 0.029 950 | 0.000 840 | 0.001 200 | 0.000 033 | 0.283 062 | 0.000 023 | 14.5 | 13.5 | 270 | 327 |
| XT2113 20 | 0.015 976 | 0.000 062 | 0.000 687 | 0.000 003 | 0.283 039 | 0.000 025 | 14.5 | 13.1 | 299 | 366 |
| XT2113 21 | 0.027 390 | 0.000 360 | 0.001 144 | 0.000 014 | 0.283 056 | 0.000 022 | 14.5 | 13.5 | 278 | 336 |
| XT2113 22 | 0.049 290 | 0.000 360 | 0.001 810 | 0.000 011 | 0.282 939 | 0.000 021 | 14.5 | 5.8 | 453 | 700 |
| XT2113 23 | 0.052 340 | 0.000 200 | 0.001 751 | 0.000 004 | 0.282 924 | 0.000 019 | 14.5 | 5.2 | 474 | 734 |
| XT2113 24 | 0.061 190 | 0.000 240 | 0.002 158 | 0.000 015 | 0.282 948 | 0.000 021 | 14.5 | 6.1 | 444 | 680 |
| XT2116 01 | 0.054 280 | 0.000 470 | 0.002 087 | 0.000 013 | 0.282 953 | 0.000 024 | 15.2 | 6.3 | 436 | 668 |
| XT2116 02 | 0.039 700 | 0.001 000 | 0.001 486 | 0.000 041 | 0.282 952 | 0.000 030 | 15.2 | 6.3 | 431 | 670 |
| XT2116 03 | 0.016 500 | 0.001 000 | 0.000 636 | 0.000 036 | 0.282 854 | 0.000 029 | 15.2 | 2.8 | 559 | 893 |
| XT2116 04 | 0.028 870 | 0.000 860 | 0.001 115 | 0.000 034 | 0.282 924 | 0.000 022 | 15.2 | 5.2 | 466 | 735 |
| XT2116 05 | 0.010 560 | 0.000 310 | 0.000 407 | 0.000 010 | 0.282 893 | 0.000 019 | 15.2 | 4.2 | 501 | 801 |
| XT2116 06 | 0.027 650 | 0.000 250 | 0.001 034 | 0.000 013 | 0.282 905 | 0.000 023 | 15.2 | 4.6 | 492 | 777 |
| XT2116 07 | 0.027 590 | 0.000 320 | 0.001 138 | 0.000 009 | 0.283 021 | 0.000 049 | 15.2 | 8.6 | 328 | 515 |
| XT2116 08 | 0.008 250 | 0.000 110 | 0.000 338 | 0.000 003 | 0.282 875 | 0.000 020 | 15.2 | 3.4 | 525 | 847 |
| XT2116 09 | 0.039 460 | 0.000 460 | 0.001 554 | 0.000 017 | 0.282 879 | 0.000 021 | 15.2 | 3.7 | 537 | 835 |
| XT2116 10 | 0.014 920 | 0.000 260 | 0.000 583 | 0.000 008 | 0.282 849 | 0.000 020 | 15.2 | 2.6 | 565 | 904 |
| XT2116 11 | 0.031 100 | 0.000 630 | 0.001 151 | 0.000 021 | 0.282 918 | 0.000 027 | 15.2 | 5.0 | 475 | 748 |
| XT2116 12 | 0.028 430 | 0.000 170 | 0.001 166 | 0.000 005 | 0.282 890 | 0.000 027 | 15.2 | 4.0 | 515 | 811 |
| XT2116 13 | 0.031 120 | 0.000 560 | 0.001 195 | 0.000 013 | 0.282 890 | 0.000 026 | 15.2 | 4.0 | 516 | 812 |
| XT2116 14 | 0.039 980 | 0.000 950 | 0.001 471 | 0.000 042 | 0.282 907 | 0.000 024 | 15.2 | 4.7 | 495 | 772 |
| XT2116 15 | 0.016 610 | 0.000 250 | 0.000 678 | 0.000 007 | 0.282 880 | 0.000 026 | 15.2 | 3.8 | 523 | 831 |
| XT2116 16 | 0.018 960 | 0.000 210 | 0.000 759 | 0.000 009 | 0.282 887 | 0.000 025 | 15.2 | 3.9 | 514 | 818 |
| XT2116 17 | 0.017 200 | 0.000 130 | 0.000 674 | 0.000 004 | 0.282 894 | 0.000 021 | 15.2 | 4.0 | 503 | 807 |
| XT2116 18 | 0.016 920 | 0.000 340 | 0.000 628 | 0.000 013 | 0.282 887 | 0.000 022 | 15.2 | 4.0 | 512 | 816 |
图6 日喀则脉岩锆石微量元素特征(a据文献修改[44];b引自文献[45]) a—锆石稀土元素球粒陨石标准化配分图;b—锆石U/Yb-Y图解。
Fig.6 Zircon trace-element diagrams of Shigatse diorite porphyry dikes. a modified after [44]; b adapted from [45].
图8 日喀则脉岩埃达克判别图解(a据文献[54]修改;b引自文献[54]) a—Sr/Y-Y图解;b—(La/Yb)N-YbN图解。
Fig.8 Adakitic discrimination diagrams of Shigatse diorite porphyry dikes. a modified after [54]; b adapted from [54].
图9 日喀则脉岩成因判别图解(底图据文献[59];藏南中新世埃达克质岩数据据文献[55,58]) a—中新世脉岩Ni-Mg#图;b—MgO-SiO2图解;c—Mg#-SiO2图解;d—Ni-Cr图解。
Fig.9 Genetic discrimination diagrams of Shigatse diorite porphyry dikes. Base map adapted from [59] and the southern Tibet Miocene adakitic rocks data from [55,58].
| [1] | 莫宣学, 董国臣, 赵志丹, 等. 西藏冈底斯带花岗岩的时空分布特征及地壳生长演化信息[J]. 高校地质学报, 2005(3): 281-290. |
| [2] | ZHU D C, WANG Q, WEINBERG R F, et al. Continental crustal growth processes recorded in the Gangdese batholith, southern Tibet[J]. Annual Review of Earth and Planetary Sciences, 2023, 51(1): 155-188. |
| [3] | MO X X, DENG J F, HOU Z Q, et al. Magmatism and crustal evolution of the Tibetan Plateau[M]. Singapore: Springer Nature, 2024. |
| [4] | 张泽明, 丁慧霞, 董昕, 等. 冈底斯弧的岩浆作用: 从新特提斯俯冲到印度-亚洲碰撞[J]. 地学前缘, 2018, 25(6): 78-91. |
| [5] | 朱弟成, 王青, 李世民, 等. 大陆碰撞带岩浆成因与地壳演化[J]. 中国科学: 地球科学, 2025, 55(5): 1398-1423. |
| [6] | ZHU D C, WANG Q, WEINBERG R F, et al. Interplay between oceanic subduction and continental collision in building continental crust[J]. Nature Communications, 2022, 13(1): 7141. |
| [7] | 刘德民, 王杰, 姜淮, 等. 青藏高原形成演化动力机制及其远程效应[J]. 地学前缘, 2024, 31(1): 154-169. |
| [8] | SUN X, LU Y J, MCCUAIG T C, et al. Miocene ultrapotassic, high-Mg dioritic, and adakite-like rocks from Zhunuo in southern Tibet: implications for mantle metasomatism and porphyry copper mineralization in collisional orogens[J]. Journal of Petrology, 2018, 59(3): 341-386. |
| [9] | 刘栋, 赵志丹, 朱弟成, 等. 青藏高原南部拉萨地块中新世超钾质岩石中的锆石记录[J]. 岩石学报, 2013, 29(11): 3703-3715. |
| [10] | HOU Z Q, GAO Y F, QU X M, et al. Origin of adakitic intrusives generated during mid-Miocene east-west extension in southern Tibet[J]. Earth and Planetary Science Letters, 2004, 220(1/2): 139-155. |
| [11] | 赵志丹, 唐演, 朱弟成, 等. 青藏高原南部岩脉分布及其研究意义[J]. 岩石学报, 2021, 37(11): 3399-3412. |
| [12] | 曾令森, 高利娥, 胡古月, 等. 西藏南部新生代东西向伸展作用的深部岩浆作用响应[J]. 地球学报, 2024, 45(6): 871-881. |
| [13] | MACPHERSON C G, DREHER S T, THIRLWALL M F. Adakites without slab melting: high pressure differentiation of island arc magma, Mindanao, the Philippines[J]. Earth and Planetary Science Letters, 2006, 243(3/4): 581-593. |
| [14] | 王强, 郝露露, 张修政, 等. 汇聚板块边缘的埃达克质岩: 成分和成因[J]. 中国科学: 地球科学, 2020, 50(12): 1845-1873. |
| [15] | ZHU D C, WANG Q, ZHAO Z D, et al. Magmatic record of India-Asia collision[J]. Scientific Reports, 2015, 5(1): 14289. |
| [16] | CHEN J L, XU J F, ZHAO W X, et al. Geochemical variations in miocene adakitic rocks from the western and eastern Lhasa terrane: implications for lower crustal flow beneath the southern Tibetan Plateau[J]. Lithos, 2011, 125(3/4): 928-939. |
| [17] | PAN F B, ZHANG H F, HARRIS N, et al. Oligocene magmatism in the eastern margin of the east himalayan syntaxis and its implication for the India-Asia post-collisional process[J]. Lithos, 2012, 154: 181-192. |
| [18] | LU Y J, LOUCKS R R, FIORENTINI M L, et al. Fluid flux melting generated postcollisional high Sr/Y copper ore-forming water-rich magmas in Tibet[J]. Geology, 2015, 43(7): 583-586. |
| [19] | GAO P, ZHENG Y F, MAYNE M J, et al. Miocene high-temperature leucogranite magmatism in the Himalayan orogen[J]. GSA Bulletin, 2021, 133(3/4): 679-690. |
| [20] | DU D H, LUO X L, WANG X L, et al. A recipe for making potassium-rich magmas in collisional orogens: new insights from K and Fe isotopes[J]. Earth and Planetary Science Letters, 2024, 632: 118642. |
| [21] | GUO Z F, WILSON M, ZHANG M L, et al. Post-collisional ultrapotassic mafic magmatism in South Tibet: products of partial melting of pyroxenite in the mantle wedge induced by roll-back and delamination of the subducted Indian continental lithosphere slab[J]. Journal of Petrology, 2015, 56(7): 1365-1406. |
| [22] | HAO L L, WANG Q, KERR A C, et al. Contribution of continental subduction to very light B isotope signatures in post-collisional magmas: evidence from southern Tibetan ultrapotassic rocks[J]. Earth and Planetary Science Letters, 2022, 584: 117508. |
| [23] | ZHU D C, ZHAO Z D, NIU Y, et al. The Lhasa terrane: record of a microcontinent and its histories of drift and growth[J]. Earth and Planetary Science Letters, 2011, 301(1/2): 241-255. |
| [24] | ALLÉGRE C J, COURTILLOT V, TAPPONNIER P, et al. Structure and evolution of the Himalaya-Tibet orogenic belt[J]. Nature, 1984, 307(5946): 17-22. |
| [25] | JI W Q, WU F Y, CHUNG S L, et al. Zircon U-Pb geochronology and Hf isotopic constraints on petrogenesis of the Gangdese batholith, southern Tibet[J]. Chemical Geology, 2009, 262(3/4): 229-245. |
| [26] | HUANG F, LI J, XU J F, et al. Mo isotopes archive oceanic sediments in post-orogenic lithospheric mantle[J]. Geochimica et Cosmochimica Acta, 2023, 341: 75-89. |
| [27] | MA L, WANG Q, KERR A C, et al. Eocene magmatism in the Himalaya: response to lithospheric flexure during early Indian collision?[J]. Geology, 2023, 51(1): 96-100. |
| [28] | MA X X, XU Z Q, LUSK A D, et al. Late Cretaceous tectonothermal events of the Gangdese belt, southern Tibet | Geosphere | GeoScienceWorld[J]. Geosphere, 2023, 19(3): 933-956. |
| [29] | 徐啸, 余嘉豪, 向波, 等. 拉萨地体东南缘地壳深部结构[J]. 地学前缘, 2023, 30(3): 221-232. |
| [30] | JI W Q, WU F Y, CHUNG S L, et al. The Gangdese magmatic constraints on a latest cretaceous lithospheric delamination of the Lhasa terrane, southern Tibet[J]. Lithos, 2014, 210/211: 168-180. |
| [31] | TIAN Y M, HUANG F, XU J F, et al. Petrogenesis and geodynamic mechanisms of the late Cretaceous magmatic ‘flare-up’ in the southern Lhasa terrane, Tibet[J]. Lithos, 2022, 424/425: 106766. |
| [32] | LI G, ZENG L, GAO L E, et al. Late cretaceous high Sr/Y rocks and local crustal thickening in the eastern Gangdese batholith, southern Tibet[J]. Lithos, 2024, 468/469: 107492. |
| [33] | HOU Z Q, DUAN L F, LU Y J, et al. Lithospheric architecture of the Lhasa terrane and its control on ore deposits in the Himalayan-Tibetan orogen[J]. Economic Geology, 2015, 110(6): 1541-1575. |
| [34] | HAO L L, WANG Q, WYMAN D A, et al. First identification of postcollisional A-type magmatism in the Himalayan-Tibetan orogen[J]. Geology, 2019, 47(2): 187-190. |
| [35] | HE S X, SPENCER C J, LIU X C, et al. Identification of indian crustal melting beneath Gangdese arc during India-Asia collision[J]. Lithos, 2024, 470/471: 107549. |
| [36] | 张泽明, 丁慧霞, 董昕, 等. 冈底斯岩浆弧的形成与演化[J]. 岩石学报, 2019, 35(2): 275-294. |
| [37] | AN W, HU X M, GARZANTI E, et al. Xigaze forearc basin revisited (South Tibet): provenance changes and origin of the Xigaze ophiolite[J]. GSA Bulletin, 2014, 126(11/12): 1595-1613. |
| [38] | WANG J G, HU X, GARZANTI E, et al. The birth of the Xigaze forearc basin in southern Tibet[J]. Earth and Planetary Science Letters, 2017, 465: 38-47. |
| [39] | 唐演, 赵志丹, 齐宁远, 等. 西藏冈底斯岩基南木林晚白垩世岩体和脉岩地球化学与岩石成因[J]. 岩石学报, 2019, 35(2): 387-404. |
| [40] | 宋彪, 张玉海, 万渝生, 等. 锆石SHRIMP样品靶制作、年龄测定及有关现象讨论[J]. 地质论评, 2002, 48(增刊1): 26-30. |
| [41] | GUO Z F, WILSON M, LIU J Q. Post-collisional adakites in South Tibet: products of partial melting of subduction-modified lower crust[J]. Lithos, 2007, 96(1/2): 205-224. |
| [42] | 王强, 许继峰, 赵振华, 等. 埃达克质岩的构造背景与岩石组合[J]. 矿物岩石地球化学通报, 2008, 27(4): 344-350. |
| [43] | SUN S S, MCDONOUGH W F. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes[J]. Geological Society, London, Special Publications, 1989, 42(1): 313-345. |
| [44] | HENDERSON P. Rare earth element geochemistry[M]. Amsterdam, New York: Elsevier, 1984. |
| [45] | GRIMES C B, JOHN B E, KELEMEN P B, et al. Trace element chemistry of zircons from oceanic crust: a method for distinguishing detrital zircon provenance[J]. Geology, 2007, 35(7): 643. |
| [46] | GUILLOT S, HODGES K, FORT P L, et al. New constraints on the age of the Manaslu leucogranite: evidence for episodic tectonic denudation in the central Himalayas[J]. Geology, 1994, 22(6): 559. |
| [47] | SEARLE M P. Extensional and compressional faults in the Everest-Lhotse massif, Khumbu Himalaya, Nepal[J]. Journal of the Geological Society, 1999, 156(2): 227-240. |
| [48] | BIAN S, GONG J F, ZUZA A V, et al. Along-strike variation in the initiation timing of the north-trending rifts in southern Tibet as revealed from the Yadong-Gulu rift[J]. Tectonics, 2022, 41(7): e2021TC007091. |
| [49] | 陈希节, 许志琴, 孟元库, 等. 冈底斯带中段中新世埃达克质岩浆作用的年代学、地球化学及Sr-Nd-Hf同位素制约[J]. 岩石学报, 2014, 30(8): 2253-2268. |
| [50] | HUANG F, XU J F, CHEN J B, et al. Two cenozoic tectonic events of N-S and E-W extension in the Lhasa terrane: evidence from geology and geochronology[J]. Lithos, 2016, 245: 118-132. |
| [51] | JI W Q, WU F Y, LIU Z C, et al. Pervasive Miocene melting of thickened crust from the Lhasa terrane to Himalaya, southern Tibet and its constraint on generation of Himalayan leucogranite[J]. Geochimica et Cosmochimica Acta, 2020, 278: 137-156. |
| [52] | LIN C, ZHANG J J, WANG X X, et al. Oligocene initiation of the South Tibetan detachment system: constraints from syn-tectonic leucogranites in the Kampa dome, northern Himalaya[J]. Lithos, 2020, 354/355: 105332. |
| [53] | 董申保, 田伟. 埃达克岩的原义、特征与成因[J]. 地学前缘, 2004, 11(4): 585-594. |
| [54] | DEFANT M J, DRUMMOND M S. Derivation of some modern arc magmas by melting of young subducted lithosphere[J]. Nature, 1990, 347(6294): 662-665. |
| [55] | GAO Y F, YANG Z S, SANTOSH M, et al. Adakitic rocks from slab melt-modified mantle sources in the continental collision zone of southern Tibet[J]. Lithos, 2010, 119(3/4): 651-663. |
| [56] | CHEN J L, ZHAO W X, XU J F, et al. Geochemistry of Miocene trachytes in Bugasi, Lhasa block, Tibetan Plateau: mixing products between mantle- and crust-derived melts?[J]. Gondwana Research, 2012, 21(1): 112-122. |
| [57] | 徐倩, 曾令森, 高家昊, 等. 藏南冈底斯岩基东段中新世中酸性高Sr/Y比岩浆岩的地球化学特征及成因探讨[J]. 岩石学报, 2019, 35(6): 1627-1646. |
| [58] | 曾令森, 高利娥, 郭春丽, 等. 西藏南部冈底斯大陆弧早白垩纪弧前伸展作用[J]. 岩石学报, 2017, 33(8): 2377-2394. |
| [59] | 孙浩哲, 赵志丹, 朱弟成, 等. 藏南米拉山地区中新世埃达克质岩石的年代学、地球化学和成因[J]. 岩石学报, 2021, 37(11): 3479-3500. |
| [60] | SODER C G, ROMER R L. Post-collisional potassic-ultrapotassic magmatism of the Variscan orogen: implications for mantle metasomatism during continental subduction[J]. Journal of Petrology, 2018, 59(6): 1007-1034. |
| [61] | 吴福元, 李献华, 郑永飞, 等. Lu-Hf同位素体系及其岩石学应用[J]. 岩石学报, 2007(2): 185-220. |
| [62] | JIANG Z Q, WANG Q, WYMAN D A, et al. Transition from oceanic to continental lithosphere subduction in southern Tibet: evidence from the late Cretaceous - early Oligocene (-91-30 Ma) intrusive rocks in the Chanang-Zedong area, southern Gangdese[J]. Lithos, 2014, 196: 213-231. |
| [63] | LI J X, QIN K Z, LI G M, et al. Post-collisional ore-bearing adakitic porphyries from Gangdese porphyry copper belt, southern Tibet: melting of thickened juvenile arc lower crust[J]. Lithos, 2011, 126(3/4): 265-277. |
| [64] | HOU Z Q, YANG Z M, LU Y, et al. A genetic linkage between subduction- and collision-related porphyry Cu deposits in continental collision zones[J]. Geology, 2015, 43(3): 247-250. |
| [65] | GUO Z F, WILSON M. Late Oligocene - early Miocene transformation of postcollisional magmatism in tibet[J]. Geology, 2019, 47(8): 776-780. |
| [66] | GAO Y F, HOU Z Q, KAMBER B S, et al. Adakite-like porphyries from the southern tibetan continental collision zones: evidence for slab melt metasomatism[J]. Contributions to Mineralogy and Petrology, 2007, 153(1): 105-120. |
| [67] | 郑永飞, 陈伊翔, 陈仁旭, 等. 汇聚板块边缘构造演化及其地质效应[J]. 中国科学: 地球科学, 2022, 52(7): 1213-1242. |
| [68] | CHEN Y, LI W, YUAN X H, et al. Tearing of the Indian lithospheric slab beneath southern Tibet revealed by sks-wave splitting measurements[J]. Earth and Planetary Science Letters, 2015, 413: 13-24. |
| [69] | DUCEA M N. Fingerprinting orogenic delamination[J]. Geology, 2011, 39(2): 191-192. |
| [70] | GUTIERREZ-ALONSO G, MURPHY J B, FERNANDEZ-SUAREZ J, et al. Lithospheric delamination in the core of Pangea: Sm-Nd insights from the Iberian mantle[J]. Geology, 2011, 39(2): 155-158. |
| [71] | 韩飞, 李建江, 秦宇龙, 等. 西藏冈底斯南缘新生代隆升剥露历史及地质意义[J/OL]. 地学前缘, 1-14[2025-10-18]. https://doi.org/10.13745/j.esf.sf.2025.6.3. |
| [72] | 赵志丹, 雷杭山, 白志明, 等. 青藏高原东缘营盘-金顶-北衙-盘龙剖面岩石圈结构与化学成分[J]. 地学前缘, 2025, 32(6): 256-275. |
| [73] | WILLIAMS H, TURNER S, KELLEY S, et al. Age and composition of dikes in southern Tibet: new constraints on the timing of east-west extension and its relationship to postcollisional volcanism[J]. Geology, 2001, 29(4): 339-342. |
| [74] | ROYDEN L H, BURCHFIEL B C, KING R W, et al. Surface deformation and lower crustal flow in eastern Tibet[J]. Science, 1997, 276(5313): 788-790. |
| [75] | LIU M, YANG Y. Extensional collapse of the Tibetan Plateau: results of three-dimensional finite element modeling[J]. Journal of Geophysical Research: Solid Earth, 2003, 108(B8): 2002JB002248. |
| [76] | 张进江, 丁林. 青藏高原东西向伸展及其地质意义[G]// 中国科学院地质与地球物理研究所2003学术论文汇编·第二卷(青藏高原). 北京: 中国科学院地质与地球物理研究所, 2003: 724-735. |
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