The Himalayan leucogranites: Constraints on the nature of their crustal source region and geodynamic setting

被引:293
作者
Guo, Zhengfu [1 ]
Wilson, Marjorie [2 ]
机构
[1] Chinese Acad Sci, Inst Geol & Geophys, Key Lab Cenozo Geol & Environm, Beijing 100029, Peoples R China
[2] Univ Leeds, Sch Earth & Environm, Leeds LS2 9JT, W Yorkshire, England
基金
中国国家自然科学基金;
关键词
Leucogranites; Decompression melting; Himalayan orogen; Steepening of the subducted Indian slab; SOUTH TIBETAN DETACHMENT; TECTONIC EVOLUTION; GEOCHEMICAL CONSTRAINTS; MANASLU LEUKOGRANITE; STRUCTURAL GEOMETRY; ELEMENT TRANSPORT; RONGBUK VALLEY; AGE; ORIGIN; NEPAL;
D O I
10.1016/j.gr.2011.07.027
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Late Oligocene-Miocene leucogranites within southern Tibet form part of an extensive intrusive igneous province within the Himalayan orogen. The main rock types are tourmaline leucogranites (Tg) and two-mica leucogranites (2 mg). They have high SiO2 (70.56-75.32 wt.%), Al2O3 (13.55-15.67 wt.%) and (Sr-87/Sr-86)(i) (0.724001-0.797297), and low MgO (0.02-046 wt%) and (Nd-143/Nd-144)(i) (0.511693-0.511906). Chondrite-normalized rare earth element (REE) patterns display strong negative Eu anomalies. Whole-rock major and trace element and Sr-Nd isotope data for the leucogranites suggest that their source region was a two-component mixture between a fluid derived from the Lesser Himalayan (LH) crustal sequence and the bulk crust of the Higher Himalayan (HH) sequence. Trace element and Sr-Nd isotope modeling indicate that the proportion of fluid derived from the LH sequence varied from 2% to 19% and the resulting metasomatised source experienced 7-16% melting. The amount of fluid derived from the LH sequence increases from north to south. Northward underthrusting of the Indian continent resulted in infiltration of the LH-derived fluid into the overlying HH sequence. Subsequent decompression melting of this metasomatised crust, mostly during the Miocene (25-9 Ma), generated the leucogranites. This may be linked to steepening of the subducted slab of Indian lithosphere beneath the orogenic belt. (c) 2011 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:360 / 376
页数:17
相关论文
共 90 条
[1]  
Ahmad T, 2000, GEOL SOC AM BULL, V112, P467, DOI 10.1130/0016-7606(2000)112<467:ICOTSR>2.0.CO
[2]  
2
[3]   Element transport by dehydration of subducted sediments: Implication for arc and ocean island magmatism [J].
Aizawa, Y ;
Tatsumi, Y ;
Yamada, H .
ISLAND ARC, 1999, 8 (01) :38-46
[4]   North-south extension in the Tibetan crust triggered by granite emplacement [J].
Aoya, M ;
Wallis, SR ;
Terada, K ;
Lee, J ;
Kawakami, T ;
Wang, Y ;
Heizler, M .
GEOLOGY, 2005, 33 (11) :853-856
[5]   A review of the relationships between granitoid types, their origins and their geodynamic environments [J].
Barbarin, B .
LITHOS, 1999, 46 (03) :605-626
[6]   INITIATION OF INTRACONTINENTAL SUBDUCTION IN HIMALAYA [J].
BIRD, P .
JOURNAL OF GEOPHYSICAL RESEARCH, 1978, 83 (NB10) :4975-4987
[7]   The south Tibetan detachment system in the Rongbuk valley, Everest region. Deformation features and geological implications [J].
Carosi, R ;
Lombardo, B ;
Molli, G ;
Musumeci, G ;
Pertusati, PC .
JOURNAL OF ASIAN EARTH SCIENCES, 1998, 16 (2-3) :299-311
[8]   Metamorphic reactions related to decompression and synkinematic intrusion of leucogranite, High Himalayan Crystallines, Bhutan [J].
Davidson, C ;
Grujic, DE ;
Hollister, LS ;
Schmid, SM .
JOURNAL OF METAMORPHIC GEOLOGY, 1997, 15 (05) :593-612
[9]   ISOTOPIC STUDY OF THE MANASLU GRANITE (HIMALAYA, NEPAL) - INFERENCES ON THE AGE AND SOURCE OF HIMALAYAN LEUKOGRANITES [J].
DENIEL, C ;
VIDAL, P ;
FERNANDEZ, A ;
LEFORT, P ;
PEUCAT, JJ .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1987, 96 (01) :78-92
[10]  
DePaolo D.J., 1988, NEODYMIUM ISOTOPE GE