Journal of Jilin University(Earth Science Edition) ›› 2025, Vol. 55 ›› Issue (3): 843-861.doi: 10.13278/j.cnki.jjuese.20240294

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Genesis of Granitoid Rocks and Their Enclaves in the Yanbian, Eastern Jilin: Implications for Subduction of Paleo-Pacific Plate

Li Yuqi1, Liu Yifei1, Li Yixin2, Cui Fanghua1, Song Jijie1   

  1. 1. School of Resources and Environmental Engineering, Shandong University of Technology, Zibo 255000, Shandong, China
    2. Shandong Gold Mining Co., Ltd., Jinan 250000, China
  • Online:2025-05-26 Published:2025-06-06
  • Supported by:
    Supported by the National Natural Science Foundation of China (42372275) and the National Natural Science Foundation of China Youth Fund (41802238)

Abstract:  The Yanbian region of eastern Jilin Province, located on the southeastern margin of the Xingmeng orogenic belt and western Paleo-Pacific tectonic domain, provides a critical area for understanding their superposition and transformation. Dark microgranular enclaves within granitic rocks serve as valuable probes into deep Earth dynamics, recording crucial information on magma source characteristics and evolution. This study investigates Early Jurassic Yueshandong and Mingnandong granitic plutons in the Yanbian area, focusing on the genesis of the granitic rocks and their enclaves by petrogeochemical and zircon Lu-Hf isotope analyses to ascertain the tectonic background of Early Jurassic magmatism. The w(SiO2) of the dark enclaves in the Yueshandong pluton and the Mingnandong pluton are 51.09% to 53.52% and 49.53% to 51.96% respectively; The w(Cr) are 1 192.00×10-6 to 3 219.00×10-6 and 72.68×10-6 to 194.90×10-6 respectively; The w(Ni) are 330.60×10-6 to 693.20×10-6 and 58.61×10-6 to 81.06×10-6 respectively; The w(V) are 595.10×10-6 to 800.70×10-6 and 599.80×10-6 to 619.60×10-6 respectively; The w(SiO2) of the host rocks in the Mingnandong pluton is 65.75% to 68.19%, the w(Cr) is 33.20×10-6 to 57.54×10-6, the w(Ni) is 19.25×10-6 to 30.45×10-6, and the w(V) is 181.80×10-6 to 229.20×10-6. All the samples show the characteristics of being rich in sodium and poor in potassium, relatively enriched in light rare earth elements, relatively depleted in heavy rare earth elements, and being enriched in large ion lithophile elements (LILE) such as Rb, Th, U, and K, and relatively depleted in high field strength elements (HFSE) such as Nb, P, and Ti. The values of Nb/Ta and Rb/Sr are close to the mantle average values. The petrogeochemistry indicates that the magmatic source regions of the quartz diorite, granodiorite and their enclaves have mantle-source characteristics. The εHf(t) values of the zircons in the Yueshandong pluton are -3.2 to 2.4, with single-stage model age (TDM1) and two-stage model age (TDM2) of 1 004 to 746 Ma and 1 991 to 1 442 Ma, respectively, and its initial magma originated from the depleted mantle or the newly formed lower crust. The elliptical to circular shape and lack of baking rims of the dark microgranular enclaves, coupled with weak fractional crystallization trends, point to magma mixing. It is speculated that these dark enclaves in the Yueshandong and the Mingnandong plutons represent residues of the magma mixing process. The granitic magmatism in the study area during the Early Jurassic was likely formed in an active continental margin setting related to the subduction of the Paleo-Pacific plate.


Key words: geochemistry, zircon Lu-Hf isotopes, petrogenesis, magmatic mixing, granitic rocks, dark enclave, Paleo-Pacific, Yanbian area

CLC Number: 

  • P581
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