Welcome to Metal Mine! Today is Share:
×

扫码分享

Modern Mining ›› 2022, Vol. 38 ›› Issue (07): 20-.

Previous Articles     Next Articles

Neoproterozoic-early Carboniferous Ocean-land Transformation in the North of Heilongjiang Province

ZHANG Tie'an ZHAO Yusheng GAO Hongyan LIU Yuqi LIU Yuwei DU Bingying   

  1. Heilongjiang Geological Science Institute
  • Online:2022-07-25 Published:2023-06-07

Abstract: Aiming at the important scientific problem of the location and tectonic evolution of the northeast micro-block group in Northern China,based on the ocean-land conversion and continental dy⁃ namics theory,the types and tectonic environments of ophiolite in the erguna-Songnen block are identified by systematic analysis of the material composition of Xinlin-Tayuan-Xinglong subduction accretion com⁃ plex belt of Neoproterozoic to Early Cambrian and Nenjiang-Heihe subduction accretion complex belt of Early Carboniferous,and the types and tectonic setting of ophiolite in subduction accretion complex zone are identified.The study results show that:The ophiolite types of neoproterozoic Xinlin-Tayuan-Xinglong subduction accretion complex mainly include SSZ type ophiolite-niobium-rich basic volcanic rocks,mantle plume type ophiolite-ultramafic rock and gabbro assemblage,and ophiolite ultramafic rock and gabbro as⁃ semblage related to arc-basin evolution.The ophiolite type of the Nenjiang-Heihe subduction accretion complex in the Early Carboniferous is mainly composed of ultramafic and gabitic assemblages related to arc-basin evolution.Based on the material composition of Xinlin-Tayuan-Xinglong subduction accretion complex belt of Neoproterozoic and Early Cambrian,and the spatial distribution of magmatic arcs and re⁃ gional molasite formations of Nenjiang-Heihe subduction accretion complex belt of Early Carboniferous, the oceanic and continental transition process of Neoproterozoic and Early Carboniferous between Erguna Block and Songnen Block is summarized.

Key words: ocean-land transformation, subduction-accretionary complex, tectonic evolution