Origin and evolution of topaz-bearing granites from the Nanling Range, South China: a geochemical and Sr-Nd-Hf isotopic study

被引:38
作者
Yu, J.-H. [1 ]
O'Reilly, S. Y.
Zhao, L.
Griffin, W. L.
Zhang, M.
Zhou, X.
Jiang, S.-Y.
Wang, L.-J.
Wang, R.-C.
机构
[1] Nanjing Univ, State Key Lab Crust mantle Evolut & Deposit Res, Dept Earth Sci, Nanjing 210093, Peoples R China
[2] Macquarie Univ, GEMOC ARC Natl Key Ctr, Dept Earth & Planetary Sci, Sydney, NSW 2109, Australia
关键词
D O I
10.1007/s00710-006-0180-2
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The F-rich Hongshan pluton in the eastern Nanling Range, southern China, is a topaz-bearing albite leucogranite. It is distinctive from other topaz-bearing felsic rocks in South China with respect to age, size, geochemical evolution and topaz mode and morphology. The Hongshan granites are highly peraluminous and characterized by high K2O/Na2O, Si, Rb, Cs, Nb, Ta and F, and low Ca, Ba, Sr, Zr, Hf, P, K/Rb, Zr/Hf and Eu/Eu* stop. The granites show significant trace-element variations with magma evolution, with increasing Rb, Cs, Nb, Ta, Sn, W and decreasing Sr, Ba, Zr, Hf, Y, REE, Pb, Th, K/Rb, Zr/Hf, Th/U and Eu/Eu* stop. These changes dominantly reflect fractional crystallization of plagioclase, biotite and accessory minerals such as zircon and monazite. The granites also exhibit a decrease in epsilon Nd(t = 225 Ma) from -7.9 to -11.7 with magma evolution. Modeling shows that the Nd isotopic variation could result from assimilation of the Taoxi Group wall rocks during fractional crystallization. The Hongshan pluton also shows spatial geochemical variations; the most evolved parts are located in the southeastern part of the pluton, which would be the most likely target area for rare-metal mineralization commonly associated with other topaz-bearing granites. Zircon grains from two rock types in the Hongshan body were analyzed in situ for U-Pb ages and Hf isotopic values. The concordant zircon grains mostly range from 218 to 230 Ma with an average of 224.6 +/- 2.3 Ma (Indosinian). Some zircons with different internal structures and Hf isotope compositions, as well as monazite fragments, yield U-Pb ages of ca. 280 to 240 Ma, suggesting older thermal events in the studied area. The epsilon Hf(t) of these older zircons is strongly negative (-12.3), implying a crustal source with a Paleoproterozoic model age, similar to that for the Proterozoic Zhoutan Group. The main (similar to 225 Ma) zircon population exhibits less negative epsilon Hf(t) (-3.0 to -7.6) and Mesoproterozoic model ages, suggesting that the original magma of the Hongshan granite was generated from deeper Mesoproterozoic crust.
引用
收藏
页码:271 / 300
页数:30
相关论文
共 89 条
[21]   ORIGIN OF TOPAZ-BEARING AND RELATED PERALUMINOUS GRANITES OF THE LATE DEVONIAN DAVIS LAKE PLUTON, NOVA-SCOTIA, CANADA - CRYSTAL VERSUS FLUID FRACTIONATION [J].
DOSTAL, J ;
CHATTERJEE, AK .
CHEMICAL GEOLOGY, 1995, 123 (1-4) :67-88
[22]  
DU SH, 1984, SCI CHINA SER B, V11, P1039
[23]   APPLICATION OF PROTON-MICROPROBE DATA TO TRACE-ELEMENT PARTITIONING IN VOLCANIC-ROCKS [J].
EWART, A ;
GRIFFIN, WL .
CHEMICAL GEOLOGY, 1994, 117 (1-4) :251-284
[24]  
FOORD EE, 1992, ROCH MIN S 18 TECHN, P112
[25]   Petrogenesis of the Gross Spitzkoppe topaz granite, central western Namibia: a geochemical and Nd-Sr-Pb isotope study [J].
Frindt, S ;
Trumbull, RB ;
Romer, RL .
CHEMICAL GEOLOGY, 2004, 206 (1-2) :43-71
[26]   Zircon chemistry and magma mixing, SE China: In-situ analysis of Hf isotopes, Tonglu and Pingtan igneous complexes [J].
Griffin, WL ;
Wang, X ;
Jackson, SE ;
Pearson, NJ ;
O'Reilly, SY ;
Xu, XS ;
Zhou, XM .
LITHOS, 2002, 61 (3-4) :237-269
[27]   A hybrid origin for Lachlan S-type granites: the Murrumbidgee Batholith example [J].
Healy, B ;
Collins, WJ ;
Richards, SW .
LITHOS, 2004, 78 (1-2) :197-216
[28]   COMPOSITIONAL RELATIONS IN LI-MICAS FROM SW ENGLAND AND FRANCE - AN ION-MICROPROBE AND ELECTRON-MICROPROBE STUDY [J].
HENDERSON, CMB ;
MARTIN, JS ;
MASON, RA .
MINERALOGICAL MAGAZINE, 1989, 53 (372) :427-449
[29]  
HENRY DJ, 1985, AM MINERAL, V70, P1
[30]  
Hu G.R., 1998, ACTA PETROLOGICA MIN, V17, P35