Experimental constraints on pre-eruptive conditions at Nabro volcano, Eritrea, 2011, and implications for sulphur emissions

IF 3 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Amy Donovan, Joan Andújar, Bruno Scaillet, Iris Buisman, Clive Oppenheimer
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Abstract

We present new experimental constraints on the pre-eruptive magma storage conditions at Nabro Volcano, Eritrea, prior to its 2011 eruption, and discuss the implications for sulphur emissions. We find that the magma was likely stored in the shallow crust prior to eruption, following an intrusion in March 2011. This reservoir was located at ~ 7 km depth, and was recharged immediately prior to the eruption, from a deeper reservoir located at 20 km. The temperature of the magma was 1030 °C with 3 wt% dissolved H2O, at redox conditions around the Quartz-Fayalite-Magnetite buffer (QFM). Our experimental results show that most melt inclusions from previous studies record earlier stages of magmatic evolution. Based on the determined pre-eruptive conditions, we calculate the composition and amount of pre-eruptive excess fluid and find that 3–8 wt% of an excess fluid with 1–3 wt% S is needed to explain the amount of SO2 measured by satellite remote sensing. The abundance of this excess fluid may have contributed to the explosive character of the eruption, whose plume reached the lower stratosphere, assisted by convective transport linked to the Asian monsoon.

2011年厄立特里亚Nabro火山喷发前条件的实验约束及其对硫排放的影响
我们提出了厄立特里亚Nabro火山2011年喷发前岩浆储存条件的新实验约束,并讨论了硫排放的影响。我们发现岩浆很可能在2011年3月火山喷发前就储存在浅层地壳中。该水库位于约7公里的深度,并在喷发前立即从位于20公里的更深的水库补充。岩浆温度为1030℃,溶解水含量为3wt %,位于石英-费雅石-磁铁矿缓冲带(QFM)周围的氧化还原条件下。我们的实验结果表明,以前研究的大多数熔融包裹体记录了岩浆演化的早期阶段。根据确定的喷发前条件,我们计算了喷发前过量流体的组成和数量,发现需要3-8 wt%的过量流体和1-3 wt%的S来解释卫星遥感测得的SO2的数量。大量的过量液体可能促成了这次喷发的爆炸性特征,在与亚洲季风有关的对流输送的帮助下,喷发的羽流到达了平流层下层。
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来源期刊
Contributions to Mineralogy and Petrology
Contributions to Mineralogy and Petrology 地学-地球化学与地球物理
CiteScore
6.50
自引率
5.70%
发文量
94
审稿时长
1.7 months
期刊介绍: Contributions to Mineralogy and Petrology is an international journal that accepts high quality research papers in the fields of igneous and metamorphic petrology, geochemistry and mineralogy. Topics of interest include: major element, trace element and isotope geochemistry, geochronology, experimental petrology, igneous and metamorphic petrology, mineralogy, major and trace element mineral chemistry and thermodynamic modeling of petrologic and geochemical processes.
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