Journal of Jilin University(Earth Science Edition)

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Neoarchean High-Mg Andesites and Its Geological Significance in Southern Jilin Province

Li Chengdong1, Xu Yawen1, Zhang Qinghong2, Zhou Hongying1, Peng Shuhua1, Chen Junqiang1,Zhang Kuo1,Zhao Ligang1,Li Shengyin3   

  1. 1.Tianjin Institute of Geology and Mineral Resources, Tianjin300170, China;
    2.No.11 of Geological Brigade,Hebei Geology and Mineral Exploration Bureau, Xingtai054000,Hebei,China;
    3.Hebei Institute of Regional Geology and Mineral Resources Survey, Langfang065000,Hebei, China
  • Received:2013-07-17 Online:2014-01-26 Published:2014-01-26

Abstract:

The high-Mg andesite occurring in the Zhangsangou and Jinyinbie Formation-Complex in southern Jilin Province is dated at (2 493±12) Ma by the SHRIMP zircon U-Pb method, which indicates that it was generated in the Neoarchean period. The high-Mg andesite belongs to the cal-calkaline series. It is geochemically characterized by SiO2 content of 53.93%-57.90%, high MgO (6.54%-8.82 %) and high Mg# (0.68-0.71, avg. 0.69), associated with enrichments of Cr (270.66×10-6-1 117.30 ×10-6,avg. 443.62×10-6) and Ni (141.74×10-6-542.98×10-6,avg. 250.50×10-6). According to its high MgO, Cr and Ni, the high-Mg andesite is relate to the partial melting of mantle peridotites in genesis. On the other hand, the andesite is strongly enriched in light rare earth elements (Ce:38.34×10-6-59.34×10-6) and large-ion-lithophile elements (such as Sr, Cs, K, Pb, Rb and Ba), and is also characterized by depletion of high-field-strength elements (such as Nb, Ta, Ti and P) and heavy rare earth elements (Yb:1.38×10-6-1.57 ×10-6), which demonstrates geochemical characteristic of the arc volcanic rock. The high-Mg andesite was most likely derived from the products of interaction of slab-derived fluid or melt with mantle peridotites. It can thus be concluded that the high-Mg andesite was derived from the subduction zone and  there occurred the modern plate tectonics in the Neoarchean period.

Key words: Neoarchean, high-Mg andesite, geochemistry, Zhangsangou Formation-Complex, Jinyinbie Formation-Complex, Seluohe Group

CLC Number: 

  • P597.1
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