1. 中国科学院广州地球化学研究所同位素地球化学国家重点实验室,广东,广州,510640
2. 2中山大学地球科学与工程学院,广东,广州,510275
纸质出版日期:2017,
网络出版日期:2017-11-25,
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郭小飞, 王岳军, 刘汇川, 等. 哀牢山深变质带内两类晚渐新世花岗岩成因及其构造指示[J]. 中山大学学报(自然科学版)(中英文), 2017,56(6):1-14.
GUO Xiaofei, WANG Yuejun, LIU Huichuan, et al. Petrogenesis of two types of late Oligocene granites in Ailaoshan tectonic zone and their tectonic implications[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2017,56(6):1-14.
郭小飞, 王岳军, 刘汇川, 等. 哀牢山深变质带内两类晚渐新世花岗岩成因及其构造指示[J]. 中山大学学报(自然科学版)(中英文), 2017,56(6):1-14. DOI:
GUO Xiaofei, WANG Yuejun, LIU Huichuan, et al. Petrogenesis of two types of late Oligocene granites in Ailaoshan tectonic zone and their tectonic implications[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2017,56(6):1-14. DOI:
红河-哀牢山构造带发育了广泛的、与印度欧亚板块碰撞造山作用紧密相关的新生代构造-岩浆作用,出露于云南哀牢山变质带中段的两个花岗岩样品锆石U-Pb定年结果分别为26.2±0.5 Ma和26.8±0.5 Ma,说明哀牢山变质带并不全是扬子板块结晶基底的下元古界,也存在新生代岩浆岩。花岗岩锆石 ε
Hf
(t) 分别为+0.3~+6.9和-9.8~-0.7,平均为+3.4和-4.3,其二阶段模式年龄 T
DM2
分别为526~853 Ma和903~1 355 Ma。低 ε
Hf
(t) 花岗岩源岩可能是元古宙哀牢山群变质杂砂岩,高 ε
Hf
(t) 花岗岩源自软流圈地幔热源加热诱发的新生下地壳部分熔融。结合前人研究成果,认为晚渐新世红河剪切带剪切作用切穿了岩石圈地幔;渐新世印支地块两侧的高黎贡山和哀牢山走滑剪切系统肢解了东南亚不同的块体,为印支地块向东南方向的挤出创造了条件。
The widespread Cenozoic magmatism in the Red RiverAilaoshan tectonic zone is closely related to the IndianEurasian plate collision orogeny. Zircon UPb dating results of two granitic samples exposed in the middle part of the Ailaoshan metamorphic belt are 26.2 ± 0.5 Ma and 26.8 ± 0.5 Ma
respectively. This indicates that the Ailaoshan metamorphic zone is not entirely attributed to the Proterozoic crystalline basement of the Yangtze block
while it also contains Cenozoic magmatic rocks. Zircon ε
Hf
(t)values of the samples range from +0.3 to +6.9 and from -9.8 to -0.7 with mean values of +3.4 and -4.3
respectively and their corresponding twostage Hf model ages T
DM2
range from 526 to 853 Ma and from 903 to 1 355 Ma. The high ε
Hf
(t) granites were derived from partial melting of juvenile crust induced by the asthenospheric mantle heat source
while low ε
Hf
(t) granites from Proterozoic metamorphic sandstones of the Ailaoshan group. In combination with previous research results
we suggest that the Red River fault has cut across the lithosphere mantle. In SE Asia
the Gaoligongshan and Ailaoshan strikeslip shear zones on both sides of Indosinian block dismembered different blocks and created conditions for their Oligocene extrusion to the southeast.
哀牢山构造带花岗质岩石锆石年龄Hf同位素走滑剪切挤出效应
Ailaoshan tectonic zonegranitic rockszircon agesHf isotopestrike slip shearextrusion effect
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