首页> 外文期刊>Marine Geophysical Research >Fine-scale compositional variations in a Co-rich Mn crust from the Marcus-Wake Seamount cluster in the western Pacific based on electron microprobe analysis (EMPA)
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Fine-scale compositional variations in a Co-rich Mn crust from the Marcus-Wake Seamount cluster in the western Pacific based on electron microprobe analysis (EMPA)

机译:基于电子探针分析(EMPA)的西太平洋马库斯-韦克海山群中富钴锰壳的精细尺度成分变化

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摘要

The internal structure and composition of a 37-mm-thick Co-rich Mn crust from the Lamont Guyot in the Marcus-Wake Seamount cluster have been studied in detail by means of electron-probe microanalysis (EPMA). 184 point analyses for 16 elements were carried out at an average spacing of 0.20 mm and each point was dated using the Co-geochronometer method. Two types of variation in composition were observed in the crust: long-term trends and short-term erratic variations. The long-term trends were identified using the fifth order polynomial. Mn and Ni were shown to increase in concentration from 23.3 Ma to a maximum at about 20 Ma and then decline steadily to the Present, whereas Fe, P and Si showed the opposite trend. By contrast, Co displayed a double humped pattern with maxima at about 19 Ma and 3.5 Ma and minima at 23.3 Ma, about 11 Ma and at Present. The long-term trends in element concentrations in the crust lead us to suggest that much of the Fe in western Pacific Ocean ferromanganese crusts is aeolian in origin and derived from the deserts of central Asia. Cooling of the Asian mainland at about 20 Ma led to an increase in the flux of Fe to the oceans. This was supplemented by an additional input of Fe into the crusts as a consequence of the dissolution of biogenic CaCO3 tests at 4.5?10.5 Ma. For the short-term erratic variations, three periods of 0.61, 0.96 and 1.65 m.y. were identified by spectral analysis. The second harmonics of these periods are 1.22, 1.92 and 3.30 m.y., which may correspond to the highest-order periods for eccentricity of 1.31, 2.04 and 3.47 m.y. This suggests the possibility that the high-frequency oscillations of the time series data are linked to climatic changes controlled by the highest-order periods of the Milankovitch cycles.
机译:通过电子探针显微分析(EPMA)详细研究了Marcus-Wake海山星团中来自Lamont Guyot的37毫米厚的富Co锰壳的内部结构和组成。对16个元素的184个点进行了分析,平均间隔为0.20 mm,每个点都使用Co-geochronometer方法标注了日期。在地壳中观察到两种类型的成分变化:长期趋势和短期不稳定变化。使用五阶多项式确定长期趋势。 Mn和Ni的浓度从23.3 Ma增加到大约20 Ma的最大值,然后稳定地下降到现在,而Fe,P和Si则呈现相反的趋势。相比之下,Co表现出双峰模式,最大值在19 Ma和3.5 Ma左右,而最小值在23.3 Ma,11 Ma和目前。地壳中元素浓度的长期趋势使我们认为,西太平洋铁锰结壳中的许多铁元素起源于中亚的沙漠,起源于风成岩。亚洲大陆降温至20 Ma左右,导致铁向海洋的通量增加。由于在4.5?10.5 Ma处进行了生物成因的CaCO3 测试的溶解,铁还额外添加了铁到地壳中。对于短期不稳定变化,三个周期分别为0.61、0.96和1.65m.y。通过光谱分析鉴定。这些周期的二次谐波为1.22、1.92和3.30 m.y.,这可能对应于偏心率最高的周期1.31、2.04和3.47m.y。这表明时间序列数据的高频振荡可能与由Milankovitch循环的最高阶周期控制的气候变化有关。

著录项

  • 来源
    《Marine Geophysical Research》 |2007年第2期|165-182|共18页
  • 作者单位

    Key Laboratory of Marine Sedimentology and Environmental Geology First Institute of Oceanography State Oceanic Administration No. 6 XianXiaLing Road High-Tech District Qingdao 266061 P.R. China;

    Key Laboratory of Marine Sedimentology and Environmental Geology First Institute of Oceanography State Oceanic Administration No. 6 XianXiaLing Road High-Tech District Qingdao 266061 P.R. China;

    Key Laboratory of Marine Sedimentology and Environmental Geology First Institute of Oceanography State Oceanic Administration No. 6 XianXiaLing Road High-Tech District Qingdao 266061 P.R. China;

    Key Laboratory of Marine Sedimentology and Environmental Geology First Institute of Oceanography State Oceanic Administration No. 6 XianXiaLing Road High-Tech District Qingdao 266061 P.R. China;

    Geological Laboratory Center China University of Geosciences 29 Xueyuan Road Beijing 100083 P.R. China;

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

    Co-geochronometer; Co-rich manganese crust; Electron microprobe analysis; Lamont Guyot; Marcus-Wake Seamount cluster;

    机译:共时计;富钴结壳;电子探针分析;Lamont Guyot;Marcus-Wake Seamount簇;

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