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Carboniferous adakites and Nb-enriched arc basaltic rocks association in the Alataw Mountains, north Xinjiang: interactions between slab melt and mantle peridotite and implications for crustal growth
作者姓名:WANG Qiang  ZHAO Zhenhua  BAI Zhenghua  BAO Zhiwei  XIONG Xiaolin  MEI Houjun  XU Jifeng & WANG Yixian Guangzhou Institute of Geochemistry  Chinese Academy of Sciences  Guangzhou  China
作者单位:WANG Qiang,ZHAO Zhenhua,BAI Zhenghua,BAO Zhiwei,XIONG Xiaolin,MEI Houjun,XU Jifeng & WANG Yixian Guangzhou Institute of Geochemistry,Chinese Academy of Sciences,Guangzhou 510640,China
基金项目:国家重点基础研究发展计划(973计划),国家自然科学基金,国家"305"科技攻关项目,中国科学院知识创新工程项目 
摘    要:Adakites and Nb-enriched arc basaltic rocks (NEABs) in arc setting, which are closely correlated in petrogenesis, have recently been widely followed with interest1—9]. In general, adakite is derived from partial melting of subducting oceanic crust1]. When adakitic magma (slab melt) passes through the mantle wedge, the interactions between slab melt and mantle peridotite will occur: slab melt is contaminated by peridotite, meanwhile peridotite is metasomated by slab melt. The NEABs are d…

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Carboniferous adakites and Nb-enriched arc basaltic rocks association in the Alataw Mountains, north Xinjiang: interactions between slab melt and mantle peridotite and implications for crustal growth
WANG Qiang,ZHAO Zhenhua,BAI Zhenghua,BAO Zhiwei,XIONG Xiaolin,MEI Houjun,XU Jifeng & WANG Yixian Guangzhou Institute of Geochemistry,Chinese Academy of Sciences,Guangzhou ,China.Carboniferous adakites and Nb-enriched arc basaltic rocks association in the Alataw Mountains, north Xinjiang: interactions between slab melt and mantle peridotite and implications for crustal growth[J].Chinese Science Bulletin,2003,48(19):2108-2115.
Authors:Qiang Wang  Zhenhua Zhao  Zhenghua Bai  Zhiwei Bao  Xiaolin Xiong  Houjun Mei  Jifeng Xu  Yixian Wang
Institution:(1) Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, 510640 Guangzhou, China
Abstract:Adakites and Nb-enriched arc basaltic rocks (NEABs) are identified to occur within the Carboniferous arc volcanic sequence in the Alataw Mountains, Xinjiang. The adakites, which consist of calc-alkaline dacites and rhyolites, are characterized by strong depletion of heavy rare earth elements (HREEs) (e.g., Yb) and Y, high Sr contents and Sr/Y ratios, either with no Eu anomalies or obvious positive Eu anomalies, apparent positive Sr anomalies, and depleted Nb and Ti. The Alataw adakites are very geochemically similar to the adakites that were presumably derived from partial melting of subducting oceanic crust. The rhyolitic adakite in the Alataw Mountains shows low MgO contents of 0.35% and Mg# values of about 17. However, the dacitic adakite shows high MgO contents of 2.67% to 3.32% and Mg# values of 53 to 58, suggesting that the adakite was possibly contaminated by mantle peridotite. On the other hand, the NEABs are characterized by Na-rich (Na2O/K2O > 2.0), high P2O5 and TiO2 contents, positive to weakly negative Nb anomalies, and non-negative Ti anomalies, suggesting that the NEABs were probably derived from partial melting of mantle peridotite that interacted with slab melt under high geothermal gradient. The Alataw adakites were probably derived from partial melting of oceanic crust on the southern margin of the Junggar plate that was subducted beneath the Bole block in the Carboniferous. The Alataw adakites-NE- ABs association implies that the partial melting of the subducting oceanic crust and the succedent interactions between the slab melt and peridotite in the mantle wedge possibly took place under the Bole arc in Carboniferous. On the southern margin of the Junggar plate, the Carboniferous subduction of oceanic crust (basin) was possibly extensive in the late Paleozoic era. In the Alataw area, high geothermal gradient possibly occurred in Carboniferous, and partial melting of subducting oceanic crust was a probable mechanism of Carboniferous regional crust growth.
Keywords:Nb-enriched arc basaltic rocks (NEABs)  adakite  slab melting  mantle metasomatism  crust growth  Alataw Mountains  Xinjiang  
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