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首页> 外文期刊>Journal of Asian earth sciences >Geodynamic evolution of the Baguio Mineral District: Unlocking the Cenozoic record from clastic rocks
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Geodynamic evolution of the Baguio Mineral District: Unlocking the Cenozoic record from clastic rocks

机译:碧瑶矿区的地球动力学演化:从碎屑岩中解脱新生代记录

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摘要

Geochemical studies done on the Baguio Mineral District had dominantly looked at the igneous rocks. A major gap is the scarcity of studies dealing with the sedimentary rock geochemistry for this district which this paper intends to address. The petrographic data and major and trace element compositions of the siltstones-sandstones from the lower member of the Late Oligocene to Early Miocene Zigzag Formation show that they are generally quartz-rich and have high K_2O, Th and La/Sc contents. The chondrite-normalized REE pattern exhibits a negative Eu anomaly, enrichment in LREEs and flat HREEs similar to typical post-Archean shales. Taken together, the data indicate derivation of the lower member of the Zigzag Formation from intermediate to acid igneous rock sources generated in an active margin setting. A likely candidate source is the Cordon Syenite Complex/Palali Formation in the Northern Sierra Madre -Caraballo Mountains. Derivation from mafic source rocks in an oceanic island arc setting is inferred for samples of the Middle to Late Miocene Klondyke, Late Miocene to Early Pliocene Amlang and Late Pliocene Cataguintingan Formations. These samples are characterized by low K_2O, Th and La/Sc but high Cr/Th values. Unroofing of the Pugo Metavolcanics and the younger plutons in the Central Cordillera provided the materials which eventually produced the Klondyke and Amlang Formations. Continuous uplift and shallowing of the basin resulted in the deposition of the Cataguintingan Formation. The petrography, geochemistry and geological features of the sedimentary rocks clearly define the change in sediment provenance from quartz-rich during the Oligocene to quartz-deficit in the Miocene. This offers additional constraints in understanding the geological evolution of the mineral district.
机译:在碧瑶矿区进行的地球化学研究主要研究了火成岩。一个主要的空白是本文打算解决的有关该地区沉积岩地球化学研究的稀缺性。从晚渐新世下部到早中新世之字形组的粉砂岩-砂岩的岩石学数据以及主要和微量元素组成表明,它们通常富含石英,并且具有较高的K_2O,Th和La / Sc含量。球粒陨石归一化的REE模式表现出负的Eu异常,富集在LREE和平坦的HREE中,类似于典型的Archean后页岩。综上所述,数据表明之字形地层的下半部是从中间缘向活跃边缘环境中产生的酸性火成岩源的衍生。一个可能的候选来源是山脉北部马德雷-卡拉巴洛山脉的Cordon Syenite Complex / Palali组。对于中新世中晚期至克朗代克,中新世晚期至上新世阿姆朗早期和上新世Cataguintingan地层的样品,可以推断出在大洋岛弧环境中来自镁铁质烃源岩。这些样品的特征在于低的K_2O,Th和La / Sc但高的Cr / Th值。 Pugo变火山岩和中科迪勒拉中较年轻的岩体的顶棚提供了最终产生Klondyke和Amlang地层的材料。盆地的不断隆升和变浅导致了Cataguintingan组的沉积。沉积岩的岩石学,地球化学和地质特征清楚地定义了从始新世的富石英到中新世的石英缺乏的沉积物来源的变化。这为理解矿区的地质演化提供了额外的限制。

著录项

  • 来源
    《Journal of Asian earth sciences》 |2013年第25期|118-130|共13页
  • 作者单位

    Tectonics and Geodynamics Croup, National Institute of Geological Sciences, College of Science, University of the Philippines, Diliman, Quezon City, Philippines;

    Tectonics and Geodynamics Croup, National Institute of Geological Sciences, College of Science, University of the Philippines, Diliman, Quezon City, Philippines,Department of Science and Technology, Bicutan, Taguig City, Philippines;

    Department of Earth Resources Engineering, Faculty of Engineering, Kyushu University, Fukuoka, Japan;

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

    baguio district; geochemistry; philippines; sedimentary rock; tectonic setting;

    机译:巴古约区地球化学菲律宾;沉积岩;构造环境;

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