Oxidation zonation within the Emeishan large igneous province: Evidence from mantle-derived syenitic plutons

被引:33
作者
Shellnutt, J. Gregory [1 ]
Iizuka, Yoshiyuki [2 ]
机构
[1] Natl Taiwan Normal Univ, Dept Earth Sci, Taipei 11677, Taiwan
[2] Acad Sinica, Inst Earth Sci, Taipei 11529, Taiwan
关键词
Metaluminous syenite; A-type granitoid; Zr saturation thermometry; Oxygen fugacity; Emeishan large igneous province; SW CHINA; FLOOD BASALTS; SILICIC MAGMAS; GEOCHEMICAL CONSTRAINTS; GRANITIC PLUTONS; SOUTHWEST CHINA; OXYGEN FUGACITY; PANXI REGION; REDOX STATE; TI OXIDES;
D O I
10.1016/j.jseaes.2012.03.011
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The mantle-derived felsic plutonic rocks of the Emeishan large igneous province consist of peralkaline and metaluminous varieties. The peralkaline rocks appear to be formed by fractional crystallization of mafic magmas whereas the metaluminous plutonic rocks appear to be derived by partial melting of underplated mafic rocks. The metaluminous Woshui pluton is 259.6 +/- 0.5 Ma and contains alkali feldspar, clinopyroxene, magnesiohornblende, titanite, magnetite and quartz and was relatively volatile- and trace element-rich and had an initial magmatic temperature of similar to 720 degrees C 20 2 sigma. The metaluminous Huangcao pluton is slightly younger (258.9 +/- 0.7 Ma), contains alkali feldspar, fayalite, ferrosillite, ferrohornblende, quartz, magnetite and ferrohedenbergite, is volatile-poor and likely had higher magmatic temperatures (>= 850 degrees C). The mineral assemblages and trace element compositions (i.e. Eu/Eu+ >1, high V/Sc, high V/Ga) suggest relatively oxidizing magmatic conditions (i.e. fO(2) >= 0 FMQ) for the two plutons. The primary chemical differences between the two plutons are their volatile content and source fertility. Neighboring the metaluminous plutons is a peralkaline pluton which also shows evidence for relatively oxidizing magmatic conditions whereas other mantle-derived granitic plutons to the north and south show evidence for reducing conditions. The syenitic magmas within the central part of the Panxi region were likely oxidized due to variability of the oxidation state of the original source material and therefore the region may represent an 'oxidized zone' within the Emeishan large igneous province. (C) 2012 Elsevier Ltd. All rights reserved.
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页码:31 / 40
页数:10
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