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首页> 外文期刊>Contributions to Mineralogy and Petrology >Fluid and melt inclusions in the Mesozoic Fangcheng basalt from North China Craton: implications for magma evolution and fluid/melt-peridotite reaction
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Fluid and melt inclusions in the Mesozoic Fangcheng basalt from North China Craton: implications for magma evolution and fluid/melt-peridotite reaction

机译:华北克拉通中生代防城玄武岩中的流体和熔体包裹体:对岩浆演化和流体/熔体-橄榄岩的反应的意义

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摘要

Melt inclusions and fluid inclusions in the Fangcheng basalt were investigated to understand the magma evolution and fluid/melt-peridotite interaction. Primary silicate melt inclusions were trapped in clinopyroxene and orthopyroxene phenocrysts in the Fangcheng basalt. Three types of melt inclusions (silicate, carbonate, and sulfide) coexisting with fluid inclusions occur in clinopyroxene xenocrysts and clinopyroxene in clinopyroxenite xenoliths. In situ laser-ablation ICP-MS analyses of major and trace element compositions on individual melt inclusions suggest that the silicate melt inclusions in clinopyroxene and orthopyroxene phenocrysts were trapped from the same basaltic magma. The decoupling of major and trace elements in the melt inclusions indicates that the magma evolution was controlled by melt crystallization and contamination from entrapped ultramafic xenoliths. Trace element patterns of melt inclusions are similar to those of the average crust of North China Craton and Yangtze Craton, suggesting a considerable crustal contribution to the magma source. Calculated parental melt of the Fangcheng basalt has features of low MgO (5.96 wt%), high Al2O3 (16.81 wt%), Sr (1,670 ppm), Y (>35 ppm), and high Sr/Y (>40), implying that subducted crustal material was involved in the genesis of the Fangcheng basalt. The coexisting fluid and melt inclusions in clinopyroxene xenocrysts and in clinopyroxene of xenoliths record a rare melt-peridotite reaction, that is olivine + carbonatitic melt1 (rich in Ca) = clinopyroxene + melt2 ± CO2. The produced melt2 is enriched in LREE and CO2 and may fertilize the mantle significantly, which we consider to be the cause for the rapid replacement of lithospheric mantle during the Mesozoic in the region.
机译:研究了防城玄武岩中的熔体包裹体和流体包裹体,以了解岩浆演化和流体/熔体-橄榄岩的相互作用。初级硅酸盐熔体包裹体被困在防城玄武岩中的斜辉石和邻辉石隐晶中。斜辉石异种晶和斜辉石异岩中的斜辉石与流体夹杂物共存三种熔体夹杂物(硅酸盐,碳酸盐和硫化物)。对单个熔体包裹体中主要和微量元素组成的原位激光烧蚀ICP-MS分析表明,斜辉石和邻苯二酚苯晶中的硅酸盐熔体包裹物被困在同一玄武岩浆中。熔体包裹体中主要元素和微量元素的解耦表明,岩浆演化受熔融结晶和夹带超镁铁质异质岩污染的控制。熔融包裹体的痕量元素形态与华北克拉通和扬子克拉通的平均地壳相似,表明地壳对岩浆源的贡献很大。防城玄武岩的母体熔体计算值具有低MgO(5.96 wt%),高Al2O3(16.81 wt%),Sr(1,670 ppm),Y(> 35 ppm)和高Sr / Y(> 40)的特征,这意味着俯冲的地壳物质参与了防城玄武岩的成因。斜茂铁异晶和斜茂铁中共存的流体和熔体夹杂物记录到了罕见的熔融橄榄岩-橄榄岩反应,即橄榄石+碳熔体1(富含Ca)=斜茂铁+熔体2±CO2。产生的熔体2富含LREE和CO2,并可能显着施肥于地幔,我们认为这是该地区中生代岩石圈地幔快速替换的原因。

著录项

  • 来源
    《Contributions to Mineralogy and Petrology》 |2013年第5期|885-901|共17页
  • 作者单位

    CAS Key Laboratory of Crust-Mantle Materials and Environments School of Earth and Space Sciences University of Science and Technology of China">(1);

    CAS Key Laboratory of Crust-Mantle Materials and Environments School of Earth and Space Sciences University of Science and Technology of China">(1);

    Department of Earth and Atmospheric Sciences University of Houston">(2);

    MOE Key Laboratory of Metallogenic Prediction of Nonferrous Metals School of Geosciences and Info-Physics Central South University">(3);

    CAS Key Laboratory of Crust-Mantle Materials and Environments School of Earth and Space Sciences University of Science and Technology of China">(1);

    CAS Key Laboratory of Crust-Mantle Materials and Environments School of Earth and Space Sciences University of Science and Technology of China">(1);

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

    Melt/fluid inclusions; Melt-peridotite reaction; Mantle xenoliths; North China Craton; Parental melt;

    机译:熔体/流体夹杂物;熔融橄榄岩反应地幔异岩;华北克拉通;父母融化;

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