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首页> 外文期刊>Nature Communications >Compositional boundary layers trigger liquid unmixing in a basaltic crystal mush
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Compositional boundary layers trigger liquid unmixing in a basaltic crystal mush

机译:在玄武岩水晶糊状物中触发液体的组成边界层

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The separation of immiscible liquids has significant implications for magma evolution and the formation of magmatic ore deposits. We combine high-resolution imaging and electron probe microanalysis with the first use of atom probe tomography on tholeiitic basaltic glass from Hawaii, the Snake River Plain, and Iceland, to investigate the onset of unmixing of basaltic liquids into Fe-rich and Si-rich conjugates. We examine the relationships between unmixing and crystal growth, and the evolution of a nanoemulsion in a crystal mush. We identify the previously unrecognised role played by compositional boundary layers in promoting unmixing around growing crystals at melt-crystal interfaces. Our findings have important implications for the formation of immiscible liquid in a crystal mush, the interpretations of compositional zoning in crystals, and the role of liquid immiscibility in controlling magma physical properties.
机译:不混溶液体的分离对岩浆进化的显着影响和岩浆矿床的形成。我们将高分辨率成像和电子探头微分分析与夏威夷,蛇河平原和冰岛的山上玄武岩玻璃上的第一次使用原子探测层面分析,探讨了玄武岩液体的发病,进入Fe Rich和Si-Rich共轭。我们研究了混合物和晶体生长之间的关系,以及粉碎中纳米乳液的演变。我们识别成分边界层在促进熔融晶体界面的生长晶体周围促进未混凝剂时出现的先前未识别的作用。我们的研究结果对晶体糊状物形成不混溶的液体,在晶体中的作用分区的解释以及液体不混溶的解释在控制岩浆物理性质中的作用。

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