4.6 Article

Petrogenesis and tectonic implications of Late-Triassic high E⟩ Nd(t)-E⟩ Hf(t) granites in the Ailaoshan tectonic zone (SW China)

期刊

SCIENCE CHINA-EARTH SCIENCES
卷 57, 期 9, 页码 2181-2194

出版社

SCIENCE PRESS
DOI: 10.1007/s11430-014-4854-z

关键词

high epsilon(Nd)(t)-epsilon(Hf)(t) granite; Late Triassic; post-collision; Ailaoshan; crustal growth

资金

  1. National Natural Science Foundation of China [41190073, 41372198, 40825009]
  2. National Basic Research Program of China [2014CB440901]
  3. State Key Laboratory of Ore Deport Geochemistry, Chinese Academy of Sciences [201301]
  4. Guangzhou Institute of Geochemistry, Chinese Academy of Sciences [GIGCAS-135-Y234 151001]

向作者/读者索取更多资源

High E > (Nd)(t)-E > (Hf)(t) granites are robust evidence for crustal growth. In this paper we report results of petrologic, geochronological and geochemical investigations on the Huashiban granites from the Ailaoshan tectonic zone in western Yunnan (SW China). Zircon grains separated from the two samples (10HH-119A and 10HH-120A) yield the weighted mean Pb-206/U-238 ages of 229.9 +/- 2.0 Ma and 229.3 +/- 2.3 Ma, respectively, interpreted as the crystallization ages of the granites. Based on our results, in combination with the existing U-Pb geochronological data for the Ailaoshan metamorphic rocks, we propose that the Ailaoshan Group might be a rock complex composed of the Mesoproterozoic, Neoproterozoic, Hercynian, Indosinian and Himalayan components, rather than a part of the crystalline basement of the Yangtze block. The zircon grains show highly depleted Lu-Hf isotope compositions, with positive E > (Hf)(t) values ranging from 8.4 to 13.1. The Huashiban granites have high SiO2 (72.66 wt%-73.70 wt%), low Mg-# (0.28-0.34) with A/CNK=1.01-1.05, and can be classified as peralumious high-K calc-alkaline I-type granites. A synthesis of these data indicates that the Ailaoshan tectonic zone had evolved into a post-collisional setting by the Late-Triassic (229 Ma). Genesis of the Huashiban high E > (Nd)(t)-E > (Hf)(t) granites involved into two processes: (1) underplating of the sub-arc mantle into the lower crust, and (2) remelting of the juvenile crustal materials in response to the upwelling of the asthenospheric mantle in the post-collisional setting.

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