Multi-stage serpentinization of ultramafic rocks in the Manlay Ophiolite, southern Mongolia

Nomuulin Amarbayar, N. Tsuchiya, Otgonbayar Dandar, A. Okamoto, M. Uno, Undarmaa Batsaikhan, Jiajie Wang
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引用次数: 1

Abstract

Serpentinization of ultramafic rocks in ophiolites is key to understanding the global cycle of elements and changes in the physical properties of lithospheric mantle. Mongolia, a central part of the Central Asian Orogenic Belt (CAOB), contains numerous ophiolite complexes, but the metamorphism of ultramafic rocks in these ophiolites has been little studied. Here we present the results of our study of the serpentinization of an ultramafic body in the Manlay Ophiolite, southern Mongolia. The ultramafic rocks were completely serpentinized, and no relics of olivine or orthopyroxene were found. The composition of Cr-spinels [Mg# = Mg/(Mg + Fe2+) = 0.54 and Cr# = Cr/(Cr + Al) = 0.56] and the bulk rock chemistry (Mg/Si = 1.21–1.24 and Al/Si < 0.018) of the serpentinites indicate their origin from a fore-arc setting. Lizardite occurs in the cores and rims of mesh texture (Mg# = 0.97) and chrysotile is found in various occurrences, including in bastite (Mg# = 0.95), mesh cores (Mg# = 0.92), mesh rims (Mg# = 0.96), and later-stage large veins (Mg# = 0.94). The presence of lizardite and chrysotile and the absence of antigorite suggests low-temperature serpentinization (<300 °C). The lack of brucite in the serpentinites implies infiltration of the ultramafic rocks of the Manlay Ophiolite by Si-rich fluids. Based on microtextures and mineral chemistry, the serpentinization of the ultramafic rocks in the Manlay Ophiolite took place in three stages: (1) replacement of olivine by lizardite, (2) chrysotile formation (bastite) after orthopyroxene and as a replacement of relics of olivine, and (3) the development of veins of chrysotile that cut across all previous textures. The complex texture of the serpentinites in the Manlay Ophiolite indicates multiple stages of fluid infiltration into the ultramafic parts of these ophiolites in southern Mongolia and the CAOB.
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蒙古南部曼莱蛇绿岩中超镁铁质岩石的多期蛇纹岩化
蛇绿岩中超镁铁质岩石的蛇纹石化是了解全球元素循环和岩石圈地幔物理性质变化的关键。蒙古是中亚造山带的中部,含有大量的蛇绿岩杂岩,但对这些蛇绿岩中超镁铁质岩石的变质作用研究较少。在这里,我们介绍了我们对蒙古南部曼莱蛇绿岩中超镁铁质体蛇纹石化的研究结果。超镁铁质岩石完全蛇纹石化,未发现橄榄石或斜方辉石遗迹。铬尖晶石的组成[Mg#=Mg/(Mg+Fe2+)=0.54和Cr#=Cr/(Cr+Al)=0.56]以及蛇纹岩的整体岩石化学成分(Mg/Si=1.21–1.24和Al/Si<0.018)表明它们起源于弧前环境。Lizardite存在于网状结构的岩芯和边缘(Mg#=0.97)中,温石棉存在于各种矿点中,包括巴斯特岩(Mg#=9.95)、网状岩芯(Mg#=0.092)、网状边缘(Mg#=0.96)和后期大矿脉(Mg#=0.94)。Lizardite和温石棉的存在以及反gorite的不存在表明低温蛇纹石化(<300°C)。蛇纹岩中缺乏水镁石,这意味着富硅流体对曼莱蛇绿岩的超镁铁质岩石进行了渗透。根据微观结构和矿物化学,曼莱蛇绿岩中超镁铁质岩石的蛇纹石化分为三个阶段:(1)橄榄岩取代橄榄石。曼莱蛇绿岩中蛇绿岩的复杂结构表明,流体渗透到蒙古南部和CAOB的这些蛇绿岩的超镁铁质部分的多个阶段。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
4
审稿时长
8 weeks
期刊最新文献
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