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Major element, trace element, and isotopic composition of Emperor Seamount Chain and Ontong Java Plateau basalts.

机译:海皇山链和安通爪哇高原玄武岩的主要元素,微量元素和同位素组成。

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摘要

The Ontong Java Plateau (OJP) and the Hawaiian Ridge-Emperor Seamount Chain (HR-ESC) are two of the largest volcanic structures on Earth. As the OJP covers an area of more than 2×106 km2, the plateau represents the largest known magmatic event in Earth’s history. Equally impressive, the HR-ESC stretches for more than 6,000 km through the north-central Pacific Ocean. Despite the magnitude of these events, the chemistry of significant portions of the OJP and the HR-ESC are poorly known to completely unknown. A full understanding of the chemistry of the OJP and the HR-ESC is necessary to make realistic models of their formation.;Major element, trace element, platinum group element (PGE), and isotopic ratio analyses have been conducted on samples collected from several locations on both the OJP and the HR-ESC using inductively coupled plasma-optical emission spectroscopy (ICP-OES), ICP-mass spectrometry (ICP-MS), and negative thermal ionization mass spectrometry (NTIMS).;Using a combination of the aforementioned analytical techniques, it was discovered the OJP has more geochemical variation than previously recognized, especially at the margins of the plateau. The discovery of a previously unknown lava type from the volcaniclastic succession at Site 1184 on the eastern salient of the OJP and more primitive lava types from basaltic crustal xenoliths suggests that further sampling via deep sea drilling is necessary to better understand the complex origins of the worlds largest igneous province.;ESC seamounts have been assumed to undergo similar stages of development as their younger Hawaiian counterparts despite the paucity of non-dredge samples. The investigation of a greater than 300 km thick sequence of basement from Nintoku Seamount confirms that a typical ESC volcano develops in a similar manner to modern Hawaiian volcanoes. PGE and Re/Os isotopic work on three ESC seamounts suggests that both recycled oceanic crust and outer core material contribute to the overall PGE budget in the Hawaiian plume but that it requires unusual melting conditions for both sources to manifest themselves.
机译:安通爪哇高原(OJP)和夏威夷山脊-皇帝海山链(HR-ESC)是地球上最大的两个火山构造。由于OJP的面积超过2×106 km2,高原代表了地球历史上最大的已知岩浆事件。同样令人印象深刻的是,HR-ESC延伸到中北部太平洋超过6,000公里。尽管发生了这些事件,但OJP和HR-ESC的大部分化学成分还是鲜为人知,甚至是完全未知的。必须充分了解OJP和HR-ESC的化学性质,以形成它们的真实模型。;已经对从数种收集的样品中进行了主要元素,痕量元素,铂族元素(PGE)和同位素比分析使用电感耦合等离子体发射光谱(ICP-OES),ICP质谱(ICP-MS)和负热电离质谱(NTIMS)在OJP和HR-ESC上的位置;前面提到的分析技术,发现OJP的地球化学变化比以前公认的大,尤其是在高原边缘。在OJP东部凸出的1184号站点的火山碎屑演替中发现了一个以前未知的熔岩类型,并且从玄武岩地壳的异质岩中发现了更多原始熔岩类型,这表明有必要通过深海钻探进一步取样,以更好地理解世界的复杂起源。尽管没有稀疏样品,但假定ESC海山的发展阶段与年轻的夏威夷同行相似。对Nintoku Seamount地下超过300 km厚的地下序列的研究证实,典型的ESC火山以与现代夏威夷火山相似的方式发育。在三个ESC海山上进行的PGE和Re / Os同位素研究表明,回收的洋壳和外芯材料均构成了夏威夷羽中PGE的总预算,但要使这两个气源表现出来,都需要异常的融化条件。

著录项

  • 作者

    Shafer, John T.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Geology.;Marine Geology.;Geochemistry.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 295 p.
  • 总页数 295
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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