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首页> 外文期刊>Annals Of Geophysics >Multidisciplinary study of the “Salinelle" of Paternò mud volcanoes: characteristics of the fluids and possible correlations with Mt. Etna activity
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Multidisciplinary study of the “Salinelle" of Paternò mud volcanoes: characteristics of the fluids and possible correlations with Mt. Etna activity

机译:Paternō泥火山“Salinelle”的多学科研究:流体特征及与MT.TANA活性的可能相关性

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摘要

Monitoring of hydrothermal fluid emissions can provide detailed information about convective upwelling of geothermal fluids and their geochemical characteristics, as a function of tectonic stress or deeper gas input. In particular, at the Salinelle of Mt. Et na Geosite (Paterno' and Belpasso, Eastern Sicily) natural emissions mainly consist of a fluid phase made of salty water, mud, gas and liquid hydrocarbons from an admixture of magmatic and hydrothermal gases. In this framework, our study mainly focused on the thermal and geochemical monitoring of hydrothermal fluids of the most active site, Salinelle dei Cappuccini . N earby hydrothermal vents ( Salinelle del Fiume ; Salinelle di San Biagio) , were also investigated. Analysis of the magnitude and frequency of seismic events all around Mt. Etna were conducted as well. Analysis of daily temperatures showed a constant trend: higher values ( 35 °C) within the first monitoring period, followed by a strong decrease (down to 9 °C), and a new gradual increase over the following? months. This trend seems to be linked to magmatic processes occurring at depth below Mt. Etna,?and could lead to a modification of the geochemical and thermal characteristics of the fluid? issuing at the mud-pools and gas vents of Salinelle. The higher the frequency of seismic events corresponding to higher daily energy released, the higher fluid temperatures observed.Understanding how these fluids blend and what is their relationship with Mt. Etna volcanism can be of great importance in forecasting new eruptive cycles in the case they precede changes in? volcanic activity.
机译:随着构造应力或更深的气体输入的函数,水热流体排放的监测可以提供有关地热流体对流性升高的详细信息及其地球化学特性。特别是,在山的萨利克尔。 ET NA Ge Mosite(Paterno'和Belpasso)的自然排放主要包括由盐水,泥浆,气体和液体碳氢化合物制成的流体相,由岩浆和水热气体的混合物制成。在这一框架中,我们的研究主要集中在最活跃点的热和地球化学监测,Salinelle dei Cappuccini的热热和地球化学监测。还研究了earby水热通风口(Salinelle del Fiume; Salinelle di San Biagio)。山周围地震事件的幅度和频率分析。 etna也进行了。日常温度分析显示出恒定的趋势:第一次监测期内的较高值(> 35°C),其次是强烈的减少(低至9°C),并进行以下逐步增加?几个月。这种趋势似乎与MT下方发生的岩浆过程有关。 etna,它可能导致改变流体的地球化学和热特性?发布泥池和气体通风口的辛露。对应于较高日常能量的地震事件的频率越高,较高的流体温度观察到。这些流体如何混合以及他们与MT的关系是如何混合的。 etna山脉在预测新的爆发周期时,etna火山可能具有重要意义吗?火山活动。

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