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Zircon U–Pb dating, geochemistry and Sr–Nd–Pb–Hf isotopes of the Wajilitag alkali mafic dikes, and associated diorite and syenitic rocks: Implications for magmatic evolution of the Tarim large igneous
Si-Yuan Zou; Zi-Long Li; Biao Song; Richard E. Ernst; Yin-Qi Li; Zhong-Yuan Ren; Shu-Feng Yang; Han-Lin Chen; Yi-Gang Xu; Xie-Yan Song
2015
发表期刊Lithos
卷号212–215页码:428-442
摘要

The Early Permian Tarim large igneous province (Tarim LIP) consists mainly of basaltic lavas, mafic–ultramafic intrusions including dikes and, syenite bodies in the Tarim Basin, NW China. A major unit of the Tarim LIP, the Wajilitag intrusive complex, consists of olivine pyroxenite, clinopyroxenite and gabbro units (from bottom to top), diorite and syenite rocks occurred in the upper part of the complex and alkali mafic dikes intrude the clinopyroxenite phase. Here we report the zircon U–Pb age and Hf isotopes, geochemical characteristics and Sr–Nd–Pb isotopic data of the alkali mafic dikes, and diorite, aegirine–nepheline syenite and syenite porphyry units in the Wajilitag intrusive complex. Zircons from the diorite and alkali mafic rocks yield concordant crystallization ages of 275.2 ± 1.2 Ma and 281.4 ± 1.7 Ma, respectively. The diorite and syenitic rocks in Wajilitag area have a narrow range of SiO2 contents (51.9–57.3 wt.%), and are enriched in total alkalis (Na2O + K2O = 8.3–14.3 wt.%), among which the aegirine–nepheline syenite and syenite porphyry have the geochemical affinity of A-type granites. The alkali mafic rocks and syenitic rocks have high Al2O3 (19.4–21.1 wt.%), Zr, Hf, Ba contents, total rare earth element abundances and LREE/HREE ratios and low Mg# value, K, P and Ti contents. Diorites have lower Al2O3 contents, total REE abundances and LREE/HREE ratios and higher Mg# values than the alkali mafic rocks and syenitic rocks. The diorites and syenitic rocks have low initial 87Sr/86Sr ratios (0.7034–0.7046), and high εNd(t) values (0.1–4.1) and zircon εHf(t) values (− 0.9–4.4). All the diorites and syenitic rocks show the 206Pb/204Pb ratios ranging of 18.0–19.5, 207Pb/204Pb of 15.4–15.6 and 208Pb/204Pb of 38.0–39.9. Sr–Nd isotopic ratios indicate a FOZO-like mantle source for the diorite and syenitic rocks, similar to that of the mafic–ultramafic rocks in the Wajilitag complex. In contrast, zircon Hf isotopes of basalt and syenite elsewhere in the Tarim LIP indicate a FOZO-like component may also contribute to Tarim LIP magmatism. Geochemical and Sr–Nd–Pb–Hf isotopic features reflect that diorites and syenitic rocks are probably derived from a FOZO-like mantle source, consistent with a plume mantle origin and then underwent crystal fractionation process.

关键词Zircon U–pb Dating Sr–nd–pb–hf Isotopes Magma Source Magmatic Evolution Wajilitag Complex Tarim Large Igneous Province
收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.gyig.ac.cn/handle/42920512-1/9532
专题矿床地球化学国家重点实验室
作者单位1.Department of Earth Sciences, Zhejiang University, Hangzhou 310027, PR China
2.Beijing SHRIMP Center, Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, PR China
3.Department of Earth Sciences, Carleton University, Ottawa K1S 5B6, Canada
4.State Key Laboratory of Isotope Geochemistry, Guangzhou Institute of Geochemistry, China Academy of Sciences, Guangzhou 510640, PR China
5.Institute of Geochemistry, China Academy of Sciences, Guiyang 550002, PR China
推荐引用方式
GB/T 7714
Si-Yuan Zou,Zi-Long Li,Biao Song,等. Zircon U–Pb dating, geochemistry and Sr–Nd–Pb–Hf isotopes of the Wajilitag alkali mafic dikes, and associated diorite and syenitic rocks: Implications for magmatic evolution of the Tarim large igneous[J]. Lithos,2015,212–215:428-442.
APA Si-Yuan Zou.,Zi-Long Li.,Biao Song.,Richard E. Ernst.,Yin-Qi Li.,...&Xie-Yan Song.(2015).Zircon U–Pb dating, geochemistry and Sr–Nd–Pb–Hf isotopes of the Wajilitag alkali mafic dikes, and associated diorite and syenitic rocks: Implications for magmatic evolution of the Tarim large igneous.Lithos,212–215,428-442.
MLA Si-Yuan Zou,et al."Zircon U–Pb dating, geochemistry and Sr–Nd–Pb–Hf isotopes of the Wajilitag alkali mafic dikes, and associated diorite and syenitic rocks: Implications for magmatic evolution of the Tarim large igneous".Lithos 212–215(2015):428-442.
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