地球主要地球动力环境中岩浆熔体中的主要元素、挥发性元素、矿石元素和微量元素。I. 平均浓度

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Geochemistry International Pub Date : 2023-12-18 DOI:10.1134/S0016702923120042
V. B. Naumov, V. A. Dorofeeva, A. V. Girnis
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引用次数: 0

摘要

摘要 我们原始数据库中的数据包括对火山岩中矿物托管熔体包裹体和淬火玻璃中的 75 种元素进行的 2 600 000 多项分析,这些数据被归纳用于计算以下主要地球动力环境中岩浆熔体中主要元素、挥发性元素、矿石元素和痕量元素的平均浓度:(I)大洋板块扩张带(大洋中脊),(II)受大洋板块地幔羽流影响的环境(大洋岛屿和熔岩高原),(III, IV)与俯冲过程有关的环境(III 为大洋地壳上的弧形岩浆区,IV 为岩浆区)、岩浆生成过程涉及大陆地壳)、(V)大陆裂谷环境和大陆热点地区,以及(VI)弧后扩张环境。天然岩浆熔体中二氧化硅的分布直方图显示出一种双峰分布:其中一个最大值落在二氧化硅浓度为 50-52 wt % 的区域,另一个最大值落在 72-76 wt % 的区域。分布最广的熔体二氧化硅含量为 62-66 wt %。计算了每种环境的平均温度和压力。环境 I 至 VI 的归一化多元素模式显示了岩浆熔体中黑云母、中间岩浆和长岩成分的元素平均浓度与原始地幔中元素浓度的比率。对每种环境的熔体中不相容、痕量和挥发性成分(H2O/Ce、K2O/Cl、Nb/U、Ba/Rb、Ce/Pb 等)的平均比率进行了评估。计算了这些比率的变化,结果表明,在不同环境中,不相容元素的比率在统计学上大多有显著差异。差异最大的不相容元素比率(如铌/镱)和一些涉及挥发性成分的比率(如 K2O/H2O)之间的差异尤为明显。
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Major, Volatile, Ore, and Trace Elements in Magmatic Melts in the Earth’s Dominant Geodynamic Environments. I. Mean Concentrations

Data from our original database, which includes more than 2 600 000 analyses for 75 elements of mineral-hosted melt inclusions and quench glasses in volcanic rocks, are generalized to calculate the mean concentrations of major, volatile, ore, and trace elements in magmatic melts from the following dominant geodynamic environments: (I) spreading zones of oceanic plates (mid-oceanic ridges), (II) environments affected by mantle plumes in oceanic plates (oceanic islands and lava plateaus), (III, IV) environments related to subduction processes (III is zones of arc magmatism on the oceanic crust, and IV is zones of magmatism in active continental margins in which magma-generating processes involve the continental crust), (V) environments of continental rifts and areas with continental hotspots, and (VI) environments of backarc spreading. A histogram of SiO2 distribution in natural magmatic melts shows a bimodal distribution: one of the maxima falls onto SiO2 concentrations of 50–52 wt % and the other onto 72–76 wt %. The most widely spread melts contain 62–66 wt % SiO2. Mean temperatures and pressures are calculated for each of the environments. The normalized multielemental patterns presented for environments I through VI show the ratios of the mean concentrations of elements in magmatic melts of mafic, intermediate, and felsic composition to the concentrations in the primitive mantle. Mean ratios of incompatible, trace, and volatile components (H2O/Ce, K2O/Cl, Nb/U, Ba/Rb, Ce/Pb, etc.) are evaluated for the melts of each of the environments. The variations in these ratios are calculated, and it is demonstrated that the ratios of incompatible elements are mostly statistically significantly different in the different environments. The differences are particularly significant between the ratios of the most differently incompatible elements (e.g., Nb/Yb) and some ratios involving volatile components (e.g., K2O/H2O).

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来源期刊
Geochemistry International
Geochemistry International 地学-地球化学与地球物理
CiteScore
1.60
自引率
12.50%
发文量
89
审稿时长
1 months
期刊介绍: Geochemistry International is a peer reviewed journal that publishes articles on cosmochemistry; geochemistry of magmatic, metamorphic, hydrothermal, and sedimentary processes; isotope geochemistry; organic geochemistry; applied geochemistry; and chemistry of the environment. Geochemistry International provides readers with a unique opportunity to refine their understanding of the geology of the vast territory of the Eurasian continent. The journal welcomes manuscripts from all countries in the English or Russian language.
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