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首页> 外文期刊>International Geology Review >Evolution of continental crust of the Aravalli craton, NW India, during the Neoarchaean-Palaeoproterozoic: evidence from geochemistry of granitoids
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Evolution of continental crust of the Aravalli craton, NW India, during the Neoarchaean-Palaeoproterozoic: evidence from geochemistry of granitoids

机译:新古生代-古元古代的印度西北部阿拉瓦利克拉通大陆壳的演化:花岗岩类地球化学证据

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Neoarchaean-Palaeoproterozoic granitoids of the Aravalli craton, represented by four plutons with different ages, viz. Gingla (2.6-2.4Ga), Ahar River (2562Ma), Untala (2505Ma), and Berach (2440Ma) granitoids, are classified into three suites: TTG-like, Sanukitoid, and High-K Granitoid suite, all exhibiting negative Nb and Ti anomalies. The TTG-like suite is characterized by high contents of SiO2, Na2O, and LREEs, high (La/Yb)(N,) low contents of K2O, MgO, Cr, and Ni, and low (Dy/Yb)(N), suggesting that this suite formed by partial melting of a subducted basaltic slab without interacting with a mantle wedge. In contrast, the calc-alkaline Sanukitoid suite is marked by a high content of LILEs and mantle-compatible elements, which indicate that this suite formed by partial melting of a slab-fluid metasomatized mantle wedge in a subduction-related arc environment. On the other hand, the High-K Granitoid suite is characterized by high contents of SiO2 and K2O, and low contents of Na2O, MgO, Cr, and Ni with variable Eu anomaly, along with high (La/Sm)(N) and (La/Yb)(N), and low (Dy/Yb)(N) and Nb/Th. Some high-K granitoids also exhibit A-type characteristics. These features indicate that the High-K Granitoid suite formed by melting of crustal rocks. Early Neoarchaean continental crust formation reflected a slab-melting-dominated magmatic process as evidenced by the TTG-like suite, whereas Palaeoproterozoic petrogenesis was governed by the interaction of slab melt with mantle wedge as demonstrated by the Sanukitoid suite. The High-K Granitoid suite formed during the waning stages of subduction. This study reveals that granitic rocks of the Aravalli craton evolved from slab melting in the Neoarchaean to melting of mantle wedge in the Palaeoproterozoic. Melting of older crust led to the formation of the High-K Granitoid suite.
机译:Aravalli克拉通的新古生代-古元古代花岗岩,以具有不同年龄的四个小体为代表。 Gingla(2.6-2.4Ga),Ahar River(2562Ma),Untala(2505Ma)和Berach(2440Ma)花岗岩类分为三类:类TTG,Sanukitoid和High-K花岗岩类,均显示负Nb和钛异常。类TTG的特征是SiO2,Na2O和LREE含量高,(La / Yb)(N)高,K2O,MgO,Cr和Ni含量低,(Dy / Yb)(N)低,表明该套件是由俯冲的玄武岩板的部分熔融而未与地幔楔相互作用而形成的。相比之下,钙碱性Sanukitoid套件的特点是含有大量LILE和与地幔相容的元素,这表明该套件是由板状流体交代化的地幔楔在俯冲相关弧环境中部分熔化而形成的。另一方面,High-K Granitoid Suite的特征是SiO2和K2O的含量高,Na2O,MgO,Cr和Ni的含量低,且Eu含量异常,同时具有高(La / Sm)(N)和(La / Yb)(N)和低(Dy / Yb)(N)和Nb / Th。一些高K的类固醇也表现出A型特征。这些特征表明由地壳岩石融化形成的High-K Granitoid套件。如TTG样套件所证实的那样,新古宙早期大陆壳的形成反映了板融融为主的岩浆作用,而Sanukitoid套件所证明的是古元古代造山作用是由板融与地幔楔相互作用所决定的。 High-K Granitoid套件是在俯冲的减弱阶段形成的。这项研究表明,Aravalli克拉通的花岗质岩石从新古宙的板状融化演化到古元古代的地幔楔融化。较旧的外壳融化导致形成了High-K Granitoid套件。

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