锆石
地质学
地球化学
俯冲
镁铁质
原岩
地幔(地质学)
构造学
部分熔融
地质年代学
岩石学
大洋地壳
岩浆
岩石成因
辉石
纤维接头
同位素地球化学
岩石圈
作者
Hai Xing,Xijun Liu,Xijun Liu,Qianwen Huang,Gang Chen,Hao Wu,Xiao Liu,Xiao Liu
摘要
ABSTRACT The origin of the mafic–ultramafic rocks within the Babu ophiolitic mélange of southeastern Yunnan remains debated, leaving the timing and tectonic setting of mafic oceanic‐crust formation in the eastern Paleo‐Tethyan domain poorly constrained. In order to solve this issue, we present zircon LA–ICP–MS U–Pb ages and Lu–Hf isotopes, clinopyroxene major‐ and trace‐element data, whole‐rock geochemistry and Sr–Nd–Pb isotopes for meta‐gabbroic blocks from the mélange. Zircon U–Pb dating yielded a crystallisation age of 271.5 ± 1.2 Ma, indicating that the Babu gabbroic protoliths formed in the Middle Permian. The Babu meta‐gabbro exhibits tholeiitic compositions and displays MORB‐like geochemical features. Whole‐rock Nd and Pb isotopic data of the Babu meta‐gabbro reveal a DUPAL‐like affinity, characteristic of Indian Ocean‐type mantle. Positive ε Nd ( t ) values and zircon ε Hf ( t ), together with clinopyroxene compositions, suggest that the magma was derived from a depleted mantle source but was subsequently modified by slab‐derived fluids and minor sediment‐related components. Trace‐element modelling suggests 5%–10% partial melting of depleted spinel lherzolite. Considering the geological and geochemical evidence, we propose that the Babu meta‐gabbros formed in a back‐arc basin during slab rollback in the Paleo‐Tethyan subduction system.
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