Age determination of granite from Himalaya


Autoria(s): Lishuang, Guo; Liu, Yulin; Liu, Shuwen; Cawood, Peter A; Wang, Zhenghua; Liu, Hongfei
Cobertura

MEDIAN LATITUDE: 29.406730 * MEDIAN LONGITUDE: 89.315212 * SOUTH-BOUND LATITUDE: 29.356000 * WEST-BOUND LONGITUDE: 88.636500 * NORTH-BOUND LATITUDE: 29.496333 * EAST-BOUND LONGITUDE: 90.191167

Data(s)

10/07/2013

Resumo

The Gangdese belt, Tibet, records the opening and closure of the Neo-Tethyan ocean and the resultant collision between the Indian and Eurasian plates. Mesozoic magmatic rocks generated through subduction of the Tethyan oceanic slab constitute the main component of the Gangdese belt, and play a crucial role in understanding the formation and evolution of the Neo-Tethyan tectonic realm. U-Pb and Lu-Hf isotopic data for tonalite and granodiorite from the Xietongmen-Nymo segment of the Gangdese belt indicate a significant pulse of Jurassic magmatism from 184 Ma to 168 Ma. The magmatic rocks belong to metaluminous medium-K calc-alkaline series, characterized by regular variation in major element compositions with SiO2 of 61.35%-73.59 wt%, low to moderate MgO (0.31%-2.59%) with Mg# of 37-45. These magmatic rocks are also characterized by LREE enrichment with concave upward trend in MREE on the chondrite-normalized REE patterns, and also LILE enrichment and depletion in Nb, Ta and Ti in the primitive mantle normalized spidergrams. These rocks have high zircon ?Hf(t) values of + 10.94 to + 15.91 and young two-stage depleted mantle model ages (TDM2) of 192 Ma to 670 Ma. The low MgO contents and relatively depleted Hf isotope compositions, suggest that the granitoid rocks were derived from the partial melting of the juvenile basaltic lower crust with minor mantle materials injected. In combined with the published data, it is suggested that northward subduction of the Neo-Tethyan slab beneath the Lhasa terrane began by the Late-Triassic, which formed a major belt of arc-related magmatism.

Formato

application/zip, 2 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.816521

doi:10.1594/PANGAEA.816521

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Lishuang, Guo; Liu, Yulin; Liu, Shuwen; Cawood, Peter A; Wang, Zhenghua; Liu, Hongfei (2013): Petrogenesis of Early to Middle Jurassic granitoid rocks from the Gangdese belt, Southern Tibet: Implications for early history of the Neo-Tethys. Lithos, 179(1), 320-333, doi:10.1016/j.lithos.2013.06.011

Palavras-Chave #176Hf/177Hf; 176Hf/177Hf e; 176Lu/177Hf; 176Lu/177Hf e; 176Yb/177Hf; 176Yb/177Hf e; 1 sigma; 206Pb/238U; 206Pb/238U 1 sigma; 206Pb/238U e; 206Pb/238U e rel; 207Pb/235U; 207Pb/235U 1 sigma; 207Pb/235U e; Age, dated standard deviation; Age, mineral; Age mineral; Age std dev; e-Hf(T); epsilon-Hafnium (T); Event; f(Lu/Hf); f(Lutetium/Hafnium); Hafnium 176/Hafnium 177; Hafnium 176/Hafnium 177, error; Label; Lead 206/Uranium 238; Lead 206/Uranium 238, error; Lead 206/Uranium 238, error relative; Lead 207/Uranium 235; Lead 207/Uranium 235, error; Lutetium 176/Hafnium 177; Lutetium 176/Hafnium 177, error; Sample code/label; Th; Th/U; Thorium; Thorium/Uranium ratio; U; Uranium; Ytterbium 176/Hafnium 177; Ytterbium 176/Hafnium 177, error
Tipo

Dataset