首页> 外文期刊>Geochemistry: Interdisciplinary Journal for Chemical Problems of the Geosciences and Geoecology >Origin and evolution of Suru Valley ophiolite peridotite slice along Indus suture zone, Ladakh Himalaya, India: Implications on melt-rock interaction in a subduction-zone environment
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Origin and evolution of Suru Valley ophiolite peridotite slice along Indus suture zone, Ladakh Himalaya, India: Implications on melt-rock interaction in a subduction-zone environment

机译:Suru Valley Ophiolite PeriDoTite切片沿着印度的苏州缝合区赤岩切片的起源和演变:对郊区环境中的熔融岩相互作用的影响

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摘要

In this paper, we present whole-rock and mineral geochemistry of serpentinized peridotites from the Suru Valley ophiolite slice Ladakh Himalaya, in an attempt to put constraints on their petrogenesis and tectonic evolution in the context of Mesozoic Neo-Tethys Ocean. On the basis of petrographic study, Suni Valley serpentinized peridotites can be identified as serpentinized harzburgites. Relative to primitive mantle these rocks have depleted major and rare earth element (REE) geochemical characteristics comparable to ocean floor mantle rocks reflecting their mantle residual nature. However, higher abundance of highly incompatible large ion lithophile elements (e.g., Rb, Ba, Th, U, Pb and Sr), reflect metasomatism in a subduction zone environment. The presence of silicate assemblage includes Mg-rich olivine (FO90-92) and orthopyroxene (En(91-93) FS6.4-8.7) of supra-subduction zone affinity. Evaluation of mineral and whole-rock geochemistry suggests that the Suns Valley ophiolitic peridotites represent residues left after moderate degrees of partial melting thereby underwent metasomatism in a supra-subduction zone environment related to north dipping intra-oceanic island arc during Cretaceous in the context of Mesozoic Neo-Tethys ocean.
机译:在本文中,我们从Suru Valley Ophiolite Slice Ladakh Himalaya展示了蛇形化的蛇纹石的全岩石和矿物地球化学,试图在中生代新特提什海海洋的背景下对其养化和构造演变进行限制。在岩体研究的基础上,Suni Valley蛇形化的恒星可以被鉴定为蛇形的Harzburgites。相对于原始地幔,这些岩石具有耗尽的主要和稀土元素(REE)地球化学特性,与反映其披风剩余性质的海底地幔岩石相当。然而,较高丰富的高度不相容的大离子鳞片元素(例如,Rb,Ba,Th,U,Pb和Sr),反映俯冲区域环境中的偏定言。硅酸盐组合的存在包括富含Mg的橄榄石(FO90-92)和脱戊十烯(EN(91-93)FS6.4-8.7)的次胶区亲和力。矿产和全岩地球化学的评价表明,太阳谷眼偏见是在中生岩内的白垩纪中北面浸渍内岛弧相关的偏熔点后留下偏离部分熔化后留下的残留物。 Neo-Thethys海洋。

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