首页> 外文期刊>Geochemical Journal >Terminal Strombolian activity at Etna's central craters during summer 2012: The most CO2-rich volcanic gas ever recorded at Mount Etna
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Terminal Strombolian activity at Etna's central craters during summer 2012: The most CO2-rich volcanic gas ever recorded at Mount Etna

机译:2012年夏季,埃特纳火山中央火山口的斯特龙贝伦期末活动:埃特纳火山有史以来最富二氧化碳的火山气

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摘要

By using a permanent network of multi-component gas analyzer systems (Multi-GAS), we report for the first time the H2O-CO2-SO2 composition of the volcanic gases emitted prior to, during, and after terminal Strombolian activity at Mount Etna's central craters (CCs). We show that the summer 2012 Strombolian episodes of the Bocca Nuova crater (BNC), the largest of Etna's CCs, are associated with the emission of the most CO2-rich gas measured at the volcano thus far. The BNC plume was particularly CO2-rich with CO2/SO2 up to 100, H2O/CO2 < 1 in the quiescent periods between Strombolian episodes. However, more CO2-poor gas with CO2/SO2 < 27, H2O/CO2 > 1 prevailed at the BNC and at other degassing vents such as Voragine and Northeast craters during Strombolian eruptions. Based on the results of numerical simulations of volcanic degassing, conclude that the shallow Etna plumbing system was invaded in summer 2012 by a CO2-rich gas front likely supplied by the deep (> 100 MPa pressure) volcano's magmatic storage zone. This deep gas-bubble supply eventually caused a general rejuvenation of the resident magma in the upper conduits/shallow reservoirs, thereby triggering the first Strombolian episodes on the volcano's summit after years of quiescence.
机译:通过使用永久性的多组分气体分析仪系统(Multi-GAS)网络,我们首次报告了埃特纳火山中心斯特伦贝伦活动发生之前,之中和之后释放的火山气体的H2O-CO2-SO2组成。火山口(CC)。我们显示,2012年夏季Bocca Nuova火山口(BNC)的Strombolian发作是埃特纳火山最大的CC,与迄今为止在火山中测得的最富CO2气体的排放有关。在Strombolian发作之间的静止期中,BNC羽尤其富含CO2,CO2 / SO2高达100,H2O / CO2 <1。但是,在Strombolian火山喷发期间,BNC和其他脱气口(如Voragine和东北火山口)盛行着更多的CO2 / SO2 <27,H2O / CO2> 1的贫CO2气体。根据火山脱气的数值模拟结果,得出的结论是,浅火山埃特纳管道系统在2012年夏季被深层(> 100 MPa压力)火山岩浆储藏区提供的富含CO2的天然气锋侵入。这种深层的气泡供应最终使上部导管/浅层储层中的常驻岩浆得到了全面复兴,从而引发了多年静默之后火山顶峰上的首批斯特伦伯利亚火山爆发。

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