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首页> 外文期刊>Journal of China University of Geosciences >Formation Depth Estimation of Coesite-Bearing Eclogite in Dabie UHPM Zone, China: Constrained by Isotopic Studies
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Formation Depth Estimation of Coesite-Bearing Eclogite in Dabie UHPM Zone, China: Constrained by Isotopic Studies

机译:中国大别UHPM带含辉长岩的榴辉岩的形成深度估算:受同位素研究约束

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The formation depth of metamorphic rocks in the Dabie ultrahigh pressure metamorphic (UHPM) zone influences not only our understanding of formation mechanism and evolution processes of collision orogenic belt, but also the studies on earth's interior and geodynamic processes. In this study, the isotopic data of metamorphic rocks in the Dabie UHPM zone are discussed to give constraints on the formation depth in the Dabie UHPM zone. The ε_(Sr) of eclogite in the Dabie UHPM zone varies from 18 to 42, and the ε_(Nd) varies from -6.1 to -17, both of them show the characters of isotopic disequilibrium. The oxygen isotope studies indicate that the protoliths of these UHPM rocks have experienced oxygen isotope exchange with meteoric water (or sea water) before metamorphism and no significant changes in the processes of metamorphism on their oxygen isotope composition have been recorded in these rocks. Except for one sample from Bixiling, all samples of eclogite from Dabie UHPM zone show the~3 He/~4 He ratios from 0. 79 X 10~(-7) to 9.35 X 10~(-7), indicating the important contribution of He from continental crust. All Sr, Nd, O and He isotopic studies indicate that the UHPM rocks retain the isotopic characteristics of their protoliths of crust origin. No significant influence of mantle materials has been found in these metamorphic rocks. Trying to explain above isotopic characteristics, some researchers assume that the speeds of dipping thrust and uplifting of rocks were both very high. In this condition, there will not be enough time for isotopic exchange between crust protolith and mantle materials. Therefore, we can not see the tracer of mantle materials in these UHPM rocks. However, this assumption can not be justified with available knowledge. Firstly, it was estimated that the whole process of UHPM took at least 15 Ma. During such a long period, and at the metamorphic temperature of ≥700 ℃, the protolith of crust origin can not escape from isotopic exchange with mantle materials if the UHPM have happened in the mantle depth of ≥100 km. In contrast, all problems will be dismissed if we assume that the UHPM have happened at the depth still in crust.
机译:大别超高压变质带中变质岩的形成深度不仅影响我们对碰撞造山带形成机理和演化过程的认识,而且影响着地球内部和地球动力学过程的研究。在这项研究中,讨论了大别UHPM带中变质岩的同位素数据,以限制大别UHPM带中的地层深度。大别UHPM带中榴辉岩的ε_(Sr)在18到42之间变化,而在ε_(Nd)在-6.1到-17之间变化,都显示出同位素不平衡的特征。氧同位素研究表明,这些UHPM岩石的原岩在变质之前已经经历了与大气水(或海水)的氧同位素交换,并且在这些岩石中未记录到变质过程对其氧同位素组成的显着变化。除了碧溪岭的一个样品外,大别超高压PM3区的榴辉岩样品均显示〜3 He /〜4 He比值从0. 79 X 10〜(-7)到9.35 X 10〜(-7),表明了重要的贡献。他来自大陆地壳。所有的Sr,Nd,O和He同位素研究都表明,UHPM岩石保留了其地壳起源原岩的同位素特征。在这些变质岩中未发现地幔物质的重大影响。为了解释上述同位素特征,一些研究人员认为,岩石的俯冲推力和隆升速度都很高。在这种情况下,将没有足够的时间在地壳原石和地幔物质之间进行同位素交换。因此,我们看不到这些UHPM岩石中的地幔物质示踪剂。但是,这种假设不能用现有知识来证明。首先,据估计,UHPM的整个过程至少需要15 Ma。在如此长的时期内,在≥700℃的变质温度下,如果UHPM发生在≥100km的地幔深度,地壳起源的原石就无法逃脱与地幔物质的同位素交换。相反,如果我们假设UHPM发生在地壳深处,那么所有问题都将得到解决。

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