Scripps Institution of Oceanography, University of California San Diego, La Jolla, CA, USA.
Department of Earth Sciences, Natural Resources and Sustainable Development (NRHU), Uppsala University, Uppsala, Sweden.
Nature. 2024 Aug;632(8025):564-569. doi: 10.1038/s41586-024-07750-0. Epub 2024 Jul 31.
Active basaltic eruptions enable time-series analysis of geochemical and geophysical properties, providing constraints on mantle composition and eruption processes. The continuing Fagradalsfjall and Sundhnúkur fires on Iceland's Reykjanes Peninsula, beginning in 2021, enable such an approach. Earliest lavas of this volcanic episode have been interpreted to exclusively reflect a change from shallow to deeper mantle source processes. Here we show using osmium (Os) isotopes that the 2021 Fagradalsfjall lavas are both fractionally crystallized and strongly crustally contaminated, probably by mid-ocean-ridge gabbros and older basalts underlying the Reykjanes Peninsula. Earliest eruptive products (Os/Os ≤ 0.188, platinum (Pt)/iridium (Ir) ≤ 76) are highly anomalous for Icelandic lavas or global oceanic basalts and Os isotope ratios remain elevated throughout the 2021 eruption, indicating a continued but diluted presence of contaminants. The 2022 lavas show no evidence for contamination (Os/Os = 0.131, Pt/Ir = 30), being typical of Icelandic basalts (0.132 ± 0.007). Initiation of the Fagradalsfjall Fires in 2021 involved pre-eruptive stalling, fractional crystallization and crustal assimilation of earliest lavas. An established magmatic conduit system in 2022 enabled efficient magma transit to the surface without crustal assimilation.
活火山喷发使我们能够对地球化学和地球物理性质进行时间序列分析,从而限制了地幔成分和喷发过程。自 2021 年以来,冰岛雷克雅内斯半岛上持续的法格拉达尔火山喷发和桑德努库尔火山喷发就提供了这样一种方法。这一火山事件最早的熔岩被解释为仅反映了从浅层到深层地幔源过程的变化。在这里,我们使用锇(Os)同位素表明,2021 年法格拉达尔火山喷发的熔岩既经历了部分结晶作用,又受到强烈的地壳污染,可能是由中洋脊辉长岩和雷克雅内斯半岛下的古老玄武岩造成的。最早的喷发产物(Os/Os≤0.188,Pt/Ir≤76)对冰岛熔岩或全球大洋玄武岩来说都是高度异常的,而且 Os 同位素比值在整个 2021 年喷发过程中一直保持升高,表明污染物持续存在但被稀释。2022 年的熔岩没有受到污染的证据(Os/Os=0.131,Pt/Ir=30),与冰岛玄武岩典型特征一致(0.132±0.007)。2021 年法格拉达尔火山喷发的起因是喷发前的停滞、最早熔岩的部分结晶和地壳同化。2022 年一个成熟的岩浆输送系统使得岩浆能够有效地输送到地表而不发生地壳同化。