CORC  > 中国地质调查局  > 中国地质调查局
SHRIMP zircon age and geochemical constraints on the origin of lower Jurassic volcanic rocks from the Yeba formation, Southern Gangdese, south Tibet
Zhu, DC (Zhu, Di-Cheng)6; Pan, GT (Pan, Gui-Tang); Chung, SL (Chung, Sun-Lin); Liao, ZL (Liao, Zhong-Li); Wang, LQ (Wang, Li-Quan); Li, GM (Li, Guang-Ming)
刊名INTERNATIONAL GEOLOGY REVIEW
2008
卷号50期号:5页码:442-471
ISSN号0020-6814
英文摘要We present SHRIMP zircon dating, bulk-rock geochemical, and Sr-Nd-Pb isotopic results for Yeba volcanic rocks and a mafic dike from Southern Gangdese (SG), southern Tibet, in order to constrain their tectonic setting and origin. Yeba volcanic rocks span a continuous compositional range from basalt to dacite, although andesites are minor, and mafic and felsic rocks are volumetrically predominant. New SHRIMP zircon dating for a dacite coupled with previous SHRIMP zircon dating for a mafic dike and fossil constraints for the sedimentary sequence indicate that Yeba volcanic rocks were emplaced in the Early Jurassic (174-190 Ma). Yeba tholeiitic mafic rocks possess compositional diversity and are divided into three groups based on concentrations of MgO, Al2O3, and La. Mafic samples are all characterized by marked negative Nb, Ta, and Ti anomalies and positive epsilon Nd(T) values (+ 2.4 to + 4.5). Yeba calc-alkaline felsic rocks are characterized by coherent, concave-upward MREE patterns and negative anomalies in Nb, Ta. P, and Ti, with positive epsilon-Nd(T) values (+ 0.3 to + 2.6). Sr-Nd-Pb isotopes overlap among the different groups of Yeba mafic rocks; Pb isotopic compositions in both mafic and felsic rocks are nearly identical. These features are consistent with a subduction-related origin, most likely in an are built on thin, immature continental Crust. Yeba volcanic rocks are interpreted as having been created by northward subduction of Neo-Tethyan oceanic crust in Early Jurassic time. Geochemical signatures and quantitative modeling indicate that fractional crystallization and crustal assimilation played insignificant roles in the generation of Yeba mafic magmas, and that their geochemical diversity was probably produced by variable degrees of partial ruching from a common but heterogeneous mantle source, which had been metasomatized by variable contributions of sediments/fluids released from the subducted Neo-Tethyan oceanic crust. Yeba felsic rocks were probably generated by moderate degrees of partial melting of juvenile basaltic lower crust, which consists of dominant. underplated magmas (similar to Yeba mafic rocks in composition) and variable contributions from ancient lower crust beneath the Gangdese Back-Are fault uplift belt (GBAFUB).
学科主题地质年代学
WOS关键词O ISOTOPIC CONSTRAINTS ; CALC-ALKALINE SERIES ; INDO-ASIAN COLLISION ; ISLAND-ARC ; LOWER CRUST ; TRACE-ELEMENT ; LHASA BLOCK ; TECTONIC EVOLUTION ; EASTERN AUSTRALIA ; INDIAN PLATE
WOS研究方向Geology
语种英语
出版者BELLWETHER PUBL LTD
WOS记录号WOS:000255223900002
内容类型期刊论文
源URL[http://119.78.100.197/handle/2HKVOGP0/38613]  
专题中国地质调查局
作者单位1.[Zhu, Di-Cheng
2.Pan, Gui-Tang
3.Liao, Zhong-Li
4.Wang, Li-Quan
5.Natl Taiwan Univ, Dept Geosci, Taipei 106, Taiwan
6.中国地质调查局成都地质调查中心
推荐引用方式
GB/T 7714
Zhu, DC ,Pan, GT ,Chung, SL ,et al. SHRIMP zircon age and geochemical constraints on the origin of lower Jurassic volcanic rocks from the Yeba formation, Southern Gangdese, south Tibet[J]. INTERNATIONAL GEOLOGY REVIEW,2008,50(5):442-471.
APA Zhu, DC ,Pan, GT ,Chung, SL ,Liao, ZL ,Wang, LQ ,&Li, GM .(2008).SHRIMP zircon age and geochemical constraints on the origin of lower Jurassic volcanic rocks from the Yeba formation, Southern Gangdese, south Tibet.INTERNATIONAL GEOLOGY REVIEW,50(5),442-471.
MLA Zhu, DC ,et al."SHRIMP zircon age and geochemical constraints on the origin of lower Jurassic volcanic rocks from the Yeba formation, Southern Gangdese, south Tibet".INTERNATIONAL GEOLOGY REVIEW 50.5(2008):442-471.
个性服务
查看访问统计
相关权益政策
暂无数据
收藏/分享
所有评论 (0)
暂无评论
 

除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。


©版权所有 ©2017 CSpace - Powered by CSpace