地质学
火山
岩浆
结壳
地球化学
火山学
地幔(地质学)
玄武岩
火成岩分异
地球科学
岩石学
地震学
作者
Simon Matthews,Alberto Caracciolo,Enikő Bali,Sæmundur A. Halldórsson,Olgeir Sigmarsson,G. H. Gudfinnsson,Gro B. M. Pedersen,Jóhann Gunnarsson-Robin,Edward W. Marshall,Araksan Ahmed Aden,Bryndís Ýr Gísladóttir,Chantal Bosq,Delphine Auclair,Heini Merrill,Nicolas Levillayer,Noëmi Löw,Rebekka Hlín Rúnarsdóttir,Sóley M. Johnson,S. Steinþórsson,Vincent Drouin
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2024-09-26
标识
DOI:10.1126/science.adp8778
摘要
Mid-crustal magma domains are the source of many basaltic eruptions. Lavas from individual eruptions are often chemically homogeneous, suggesting they derive from single well-mixed magma reservoirs. The 2023 to 2024 eruptions at Sundhnúksgígar in the Svartsengi volcanic system, Iceland, provide an opportunity to observe the behavior of a mid-crustal magma domain at high spatial and temporal resolution by detailed sampling and geochemical characterization. We observed substantial mantle-derived geochemical variability in the products erupted in the first hours of the December 2023, January, February, and March-May 2024 eruptions, indicating the eruptions derived from multiple magma reservoirs, which mineral-melt equilibration pressures place in the mid-crust. The unusual presence of geochemical heterogeneity in the mid-crustal magma domain provides an insight into how dynamic and complex mid-crustal magma domains can be.
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