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Subduction Initiation for the Formation of High-Cr Chromitites in the Kop Ophiolite, NE Turkey 被引量:6
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作者 ZHANG Pengfei ibrahim uysal +2 位作者 ZHOU Meifu SU Benxun Erdi AVCI 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第S1期253-,共1页
The Kop ophiolite in NE Turkey,representing a forearc fragment of Neo-Tethys ocean,mainly consists of a paleoMoho transition zone(MTZ)and a harzburgitic upper mantle unit.The Kop MTZ locally contains cumulate
关键词 NE Turkey high REE Subduction Initiation for the Formation of High-Cr Chromitites in the Kop Ophiolite CR
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Iron Isotopic Fractionation and Origin of Chromitites in the Paleo-Moho Transition Zone of the Kop Ophiolite, NE Turkey 被引量:3
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作者 ZHAGN Pengfei ZHOU Meifu +4 位作者 SU Benxun ibrahim uysal Paul T.ROBINSON Erdi AVCI HE Yongsheng 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期53-,共1页
The Kop ophiolite in NE Turkey is a fragment of Neo-Tethyan forearc.It can be mainly divided into a paleo-Moho transition zone(MTZ)in the North and a harzburgitic mantle sequence in the South.Dunites are predominant i... The Kop ophiolite in NE Turkey is a fragment of Neo-Tethyan forearc.It can be mainly divided into a paleo-Moho transition zone(MTZ)in the North and a harzburgitic mantle sequence in the South.Dunites are predominant in the MTZ of the Kop ophiolite,and they are locally interlayered with chromitites and enclose minor bodies of harzburgites near the petrological Moho boundary.Large Fe isotopic variations were observed for magnesiochromite(-0.14‰to 0.06‰)and olivine(-0.12‰to 0.14‰)from the MTZ chromitites,dunites and harzburgites.In individual dunite samples,magnesiochromite usually has lighter Fe isotopic compositions than olivine,which was probably caused by subsolidus Mg-Fe exchange between the two mineral phases.Both magnesiochromite and olivine display an increasing trend ofδ56Fe along a profile from chromitite todunite.This trend reflects continuous fractional crystallization in a magma chamber,which resulted in heavier Fe isotopes concentrated in the evolved magmas.In each cumulative cycle of chromitite and dunite,dunite was formed from relatively evolved melts after massive precipitation of magnesiochromite.Mixing of more primitive and evolved melts in the magma chamber was a potential mechanism for triggering the crystallization of magnesiochromite,generating chromitite layers in the cumulate pile.Before mixing happened,the primitive melts had reacted with mantle harzburgites during their ascendance;whereas the evolved melts may lie on the olivine-chromite cotectic near the liquidus field of pyroxene.Variable degrees of magma mixing and differentiation are expected to generate melts with differentδ56Fe values,accounting for the Fe isotopic variations of the Kop MTZ. 展开更多
关键词 MTZ Iron Isotopic Fractionation and Origin of Chromitites in the Paleo-Moho Transition Zone of the Kop Ophiolite NE Turkey Fe
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蛇绿岩铬铁矿成矿新模型:流体不混溶作用 被引量:7
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作者 苏本勋 刘霞 +6 位作者 陈晨 Paul T.ROBINSON 肖燕 周美夫 白洋 ibrahim uysal 张鹏飞 《中国科学:地球科学》 CSCD 北大核心 2021年第2期250-260,共11页
尽管富水流体参与蛇绿岩豆荚状铬铁矿形成过程已被广泛提及,但流体的作用和机制仍缺乏天然样品的证据证实.文章对保存完好的土耳其Kızıldağ蛇绿岩和研究程度较高的西藏罗布莎蛇绿岩的铬铁矿床进行了岩石学、矿物学和地球化学的系统总结... 尽管富水流体参与蛇绿岩豆荚状铬铁矿形成过程已被广泛提及,但流体的作用和机制仍缺乏天然样品的证据证实.文章对保存完好的土耳其Kızıldağ蛇绿岩和研究程度较高的西藏罗布莎蛇绿岩的铬铁矿床进行了岩石学、矿物学和地球化学的系统总结,展示了流体活动的证据,探讨了铬铁矿结晶与岩浆演化过程中流体不混溶的关系,进而建立了铬铁矿成矿的新模型.在该模型中,侵入大洋岩石圈地幔的岩浆通过岩浆通道相连接进而形成一系列的小岩浆房,铬铁矿微晶吸附岩浆中的流体形成含铬铁矿的不混溶液滴,这种不混溶铬铁矿液滴由于密度较小在岩浆房中悬浮并随岩浆向上运移.在岩浆混合、对流及运移过程中,分散的含铬铁矿的液滴不断聚合形成更大的富铬铁矿不混溶液滴.大的不混溶液滴从边部向核部逐渐结晶铬铁矿,捕获或圈闭的熔/流体发生结晶作用形成各种各样的矿物包裹体.不混溶的含铬铁矿的液滴在岩浆房中大量聚集则形成“不混溶液滴池”,此时大量铬铁矿原地结晶形成豆荚状铬铁矿,同时释放吸附的流体导致岩浆房中流体的富集.释放的流体由内向外逐渐渗滤到围岩纯橄岩和方辉橄榄岩中,造成矿体与围岩中矿物内部和矿物间的元素变化和同位素分馏.因此,玄武质岩浆上涌过程中流体不混溶作用对铬铁矿的成矿作用至关重要. 展开更多
关键词 铬铁矿 流体不混溶 矿物包裹体 蛇绿岩
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A new model for chromitite formation in ophiolites: Fluid immiscibility 被引量:3
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作者 Benxun SU Xia LIU +6 位作者 Chen CHEN Paul TROBINSON Yan XIAO Meifu ZHOU Yang BAI ibrahim uysal Pengfei ZHANG 《Science China Earth Sciences》 SCIE EI CSCD 2021年第2期220-230,共11页
Although the involvement of hydrous fluids has been widely invoked in formation of podiform chromitites in ophiolites, there is lack of natural evidence to signify the role and mechanism of fluids. In this study, a ne... Although the involvement of hydrous fluids has been widely invoked in formation of podiform chromitites in ophiolites, there is lack of natural evidence to signify the role and mechanism of fluids. In this study, a new model for the genesis of podiform chromitite is proposed on basis of revisits of comprehensive petrological, mineralogical and geochemical results of the well-preserved K?z?lda? ophiolite and the well-characterized Luobusa chromite deposit. In this model, ascending magmas intruding oceanic lithospheric mantle would presumably form a series of small magma chambers continuously connected by conduits. Tiny chromite nuclei would collect fluids dispersed in such magmas to form nascent droplets. They tend to float upward in the magma chamber and would be easily transported upward by flowing magmas. Chromite-rich droplets would be enlarged via coalescence of dispersed droplets during mingling and circulation in the magma chamber and/or transport in magma conduits. Crystallization of the chromite-rich liquid droplets would proceed from the margin of the droplet inward, leaving liquid entrapped within grains as precursor of mineral inclusions. With preferential upward transportation, immiscible chromite-rich liquids would coalesce to a large pool in a magma chamber. Large volumes of chromite would crystallize in situ, forming podiform chromitite and resulting in fluid enrichment in the chamber. The fluids would penetrate and compositionally modify ambient dunite and harzburgite, leading to significant fractionations of elemental and isotopic compositions between melts and fluids from which dunite and chromitite respectively formed. Therefore, fluid immiscibility during basaltic magma ascent plays a vital role in chromitite formation. 展开更多
关键词 CHROMITITE Fluid immiscibility Mineral inclusion OPHIOLITE
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