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首页> 外文期刊>Geochemistry International >Mean Concentrations of Volatile Components, Major and Trace Elements in Magmatic Melts in Major Geodynamic Environments on Earth. I. Mafic Melts
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Mean Concentrations of Volatile Components, Major and Trace Elements in Magmatic Melts in Major Geodynamic Environments on Earth. I. Mafic Melts

机译:地球主要地震环境中岩浆熔体中的挥发性组分,主要和微量元素的平均浓度。 I. MAFIC MELTS.

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摘要

Mean concentrations of major components, trace elements, and volatile components in magmatic melts from Earth's major geodynamic environments are estimated using our database (which comprises more than 1200000 analyses for 75 chemical elements-state for the beginning of 2016) on melt inclusions and quench glasses of rocks). The geodynamic environments are classified into (I) environments of oceanic plate spreading (mid-oceanic ridges), (II) areas affected by mantle plumes in oceanic plates (oceanic islands and lava plateaus), (III and IV) subduction-related environments (III are magmatic zones in island arcs, and IV are magmatic zones in active continental margins, in which magma-generating processes involve the continental crust), (V) continental rifts in areas with continental hotspots, and (VI) backarc spreading zones. The distribution of SiO2 concentrations (>71000 analyses) in natural magmatic melts in all geodynamic environments is obviously bimodal, with maxima at 50-52 and 72-76 wt % SiO2. Herein we discuss only mafic melts (40-54 wt % SiO2). Mean concentrations and confidence levels are calculated for each geodynamic environment for the first time in three variants: from melt inclusions in minerals, from quench glasses in rocks, and from all data. Systematic variations in the mean compositions of melt inclusions and glasses in rocks are detected for all geodynamic environments. Primitive mantle-normalized multielemental patterns for mean concentrations of elements are constructed for magmatic melts from all geodynamic environments, and the mean ratios and their variations are calculated for trace incompatible and volatile components (H2O/Ce, K2O/Cl, La/Y, Nb/U, Ba/Rb, Ce/Pb, etc.) in melts from all environments.
机译:使用我们的数据库估计来自地球主要地球动力学环境的Magmatic熔体中的主要部件,微量元素和挥发性组分的平均浓度(2016年初的75种化学元素分析超过120万分析)熔体夹杂物和淬火眼镜岩石)。地质动力学环境分为(i)海洋板扩散(中海脊)的环境,(II)受海洋板(海洋岛屿和熔岩PLATEAUS),(III和IV)俯冲相关环境( III是岛弧中的岩岩区域,IV是主动大陆边缘的岩浆区域,其中岩浆产生过程涉及大陆地壳),(v)在大陆热点的地区的大陆裂缝,(vi)展开区域。在所有地相力环境中的天然岩浆熔体中SiO2浓度(> 71000分析)的分布显然是双峰,最大值为50-52和72-76wt%SiO2。在此,我们只讨论了MAFIC MELTS(40-54wt%SiO2)。对于三个变体的第一次,每个地磁环境计算平均浓度和置力水平:从矿物质中的熔体夹杂物,从岩石中的淬火眼镜,以及所有数据。对所有地球动力学环境检测到岩石中熔体夹杂物和玻璃的平均组成的系统变化。用于平均元素浓度的原始地幔归一化多元件图案用于来自所有地球动力学环境的岩浆熔体,并且对于痕量不相容和挥发性组分(H2O / Ce,K 2 O / Cl,La / Y,Nb,计算平均值及其变化。 / U,BA / RB,CE / PB等)来自所有环境的熔体。

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