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Petrogenesis of Late Permian sodic metagranitoids in southeastern Korea: SHRIMP zircon geochronology and elemental and Nd-Hf isotope geochemistry

机译:朝鲜东南地区晚二叠世苏打偏岩质的成因:SHRIMP锆石年代学以及元素和Nd-Hf同位素地球化学

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摘要

One of the striking tectonomagmatic features recently found in southeastern Korea is the occurrence of ca. 250 Ma high-silica adakite. Sodic metagranitoids mainly consisting of tonalitic-trondhjemitic-granodioritic gneisses occur in the Andong-Cheongsong area adjacent to the Yeongdeok adakite site. To investigate temporal and petrogenetic relationships of these orthogneisses with the adakite, we conducted SHRIMP zircon U-Pb dating as well as elemental and Nd-Hf isotopic analyses. Zircon core ages of the orthogneisses (ca. 262-251 Ma) confirm the widespread occurrence of arc-related Late Permian magmatism in southeastern Korea. The Late Triassic (ca. 230 Ma) zircon overgrowths reflect a thermal overprint probably related to the initiation of another subduction system. The analyzed orthogneisses have major element compositions comparable to the Phanerozoic adakites and Archean TTG suite, such as high SiO_2 (58.7-65.5 wt.%) and Al_2O_3 (17.1-19.1 wt.%) contents and Na_2O/K_2O ratios (1.83-4.95). However, their moderate Sr/Y (35-43) and La/Yb (14-53) ratios and negative Eu anomalies (Eu/Eu~* = 0.75-0.95) are incompatible with the key features reported from the Yeongdeok adakite. Moreover, initial whole-rock ε_(Nd) (-7.9 to -3.3) and zircon ε_(Hf)(-0.3 ± 2.4) values of the orthogneisses negate a direct derivation from the subducted slab. Our elemental and Nd-Hf isotopic data collectively suggest that the protoliths of the tonalitic-trondhjemitic-granodioritic gneisses were generated by partial melting of mafic lower crust at depths shallower than the garnet stability field. Our Nd and Hf model ages of the gneisses, together with those previously reported from the Mesozoic granitoids indicate a selective involvement of young source materials along the margin of the Yeongnam massif. The Hf isotopic compositions of zircons from a trondhjemitic gneiss attest to the involvement of primitive melts during their crystallization. The ridge subduction and consequent development of a slab window may have facilitated partial melting of the subducted oceanic lithosphere and the lower crust.
机译:最近在韩国东南部发现的明显的构造学特征之一是ca的出现。 250 Ma高硅白云母。苏打偏岩质类主要由色调-特氏-生吉尼特语-花岗二叠纪片麻岩组成,分布在与永德阿达克特遗址相邻的安东-昌松地区。为了调查这些正片麻岩与Adakite的时间和岩石成因关系,我们进行了SHRIMP锆石U-Pb测年以及元素和Nd-Hf同位素分析。 Orggneisses的锆石核心年龄(大约262-251 Ma)证实了在韩国东南部广泛存在与弧有关的晚二叠纪岩浆作用。三叠纪晚期(约230 Ma)锆石的过度生长反映出热套印可能与另一个俯冲系统的开始有关。所分析的直生片麻岩的主要元素组成可与生代Adakites和Archean TTG套件相媲美,例如高SiO_2(58.7-65.5 wt。%)和Al_2O_3(17.1-19.1 wt。%)含量以及Na_2O / K_2O比(1.83-4.95) 。然而,它们的中等Sr / Y(35-43)和La / Yb(14-53)比率以及负Eu异常(Eu / Eu〜* = 0.75-0.95)与Yeongdeok akakite报道的关键特征不兼容。此外,正片麻岩的初始全岩石ε_(Nd)(-7.9至-3.3)和锆石ε_(Hf)(-0.3±2.4)值抵消了俯冲板的直接推导。我们的元素数据和Nd-Hf同位素数据共同表明,tonaftic-trondhjemitic-granodioritic片麻岩的原石是由镁铁质下地壳在比石榴石稳定场浅的深度熔融而成的。我们的片麻岩的Nd和Hf模型年龄,以及先前从中生代花岗岩类中报告的年龄,都表明沿岭南地块边缘的年轻原料有选择性地参与其中。白垩纪的片麻质锆石的f同位素组成证实了原始熔体的结晶过程。脊俯冲和随之而来的平板窗的发育可能已促进俯冲的海洋岩石圈和下地壳的部分融化。

著录项

  • 来源
    《Journal of Asian earth sciences》 |2014年第1期|228-242|共15页
  • 作者单位

    Division of Earth and Environmental Sciences, Korea Basic Science Institute, 162 Yeongudanji-ro, Ochang, Cheongwon, Chungbuk 363-883, Republic of Korea,Graduate School of Analytical Science and Technology, Chungnam National University, 99 Daehangno, Yuseong, Daejeon 305-764, Republic of Korea;

    Division of Earth and Environmental Sciences, Korea Basic Science Institute, 162 Yeongudanji-ro, Ochang, Cheongwon, Chungbuk 363-883, Republic of Korea;

    Division of Earth and Environmental Sciences, Korea Basic Science Institute, 162 Yeongudanji-ro, Ochang, Cheongwon, Chungbuk 363-883, Republic of Korea;

    Division of Earth and Environmental Sciences, Korea Basic Science Institute, 162 Yeongudanji-ro, Ochang, Cheongwon, Chungbuk 363-883, Republic of Korea;

    Division of Earth and Environmental Sciences, Korea Basic Science Institute, 162 Yeongudanji-ro, Ochang, Cheongwon, Chungbuk 363-883, Republic of Korea;

    Division of Earth and Environmental Sciences, Korea Basic Science Institute, 162 Yeongudanji-ro, Ochang, Cheongwon, Chungbuk 363-883, Republic of Korea;

    Tianjin Institute of Geology and Mineral Resources, Tianjin 300170, China;

    School of Earth and Environmental Sciences, Seoul National University, Seoul 151-742, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tonalitic-trondhjemitic-granodioritic; gneisses; Southeastern Korea; SHRIMP zircon dating; Nd-Hf isotopes; Mafic lower crust;

    机译:扁桃体-硬生灵-肉芽肿;片麻岩;韩国东南部;虾仁锆石约会;Nd-Hf同位素;镁铁质下地壳;

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