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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Gas and aerosol emissions from Lascar volcano (Northern Chile): Insights into the origin of gases and their links with the volcanic activity
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Gas and aerosol emissions from Lascar volcano (Northern Chile): Insights into the origin of gases and their links with the volcanic activity

机译:Lascar火山(智利北部)的气体和气溶胶排放:探明气体的起源及其与火山活动的联系

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摘要

This study focuses on the chemical compositions of volcanic gases and aerosols emitted by Lascar volcano (Northern Chile). The sustained volcanic plume was sampled in April 2009, April 2011 and November 2012 through filter packs and analyzed for major gaseous species (SO_2, HC1, and HF) and trace elements. During field-work, SO_2 flux measurements were also performed by UV spectrometry (DOAS). The Lascar volcano is a significant and sustained emitter of SO_2 (between 150 and 940 t/d), HC1 (between 170 t/d and 210 t/d) and HF (up to 100 t/d). Combining the SO_2-normalized trace element concentrations and the SO_2 emission rates, we evaluate that the quiescent degassing of Lascar is an important local source of trace metals to the atmosphere with contributions to global volcanic fluxes generally less than 2%. Our data were used to infer the origin of the gas emitted at Lascar. Two major degassing sources were identified: a deep magmatic reservoir and a shallow hydrothermal system. The variable interaction between these two sources is the most likely scenario for explaining the compositional ranges in acid gases but also in a volatile and fluid-mobile trace element such as B. These variations are related to changes in volcanic activity: an extensive interaction between the hot ascending magmatic gases and the shallow aquifer occurred in 2009, possibly due to a long period of quiescence, before magmatic activity renewed in 2011 and 2012. Our study highlights, therefore, that filter-pack measurements may be used to study changes in subsurface processes that probably play a key role in triggering volcanic eruptions.
机译:这项研究的重点是Lascar火山(智利北部)释放的火山气体和气溶胶的化学成分。持续的火山羽在2009年4月,2011年4月和2012年11月通过滤袋采样,并分析了主要气态物质(SO_2,HCl和HF)和微量元素。在野外工作期间,还通过紫外光谱(DOAS)进行了SO_2通量测量。 Lascar火山是SO_2(150至940 t / d之间),HCl(170 t / d至210 t / d之间)和HF(最高100 t / d)的重要且持续的排放者。结合SO_2归一化的微量元素浓度和SO_2排放速率,我们评估了Lascar的静态脱气是向大气中微量金属的重要本地来源,其对全球火山通量的贡献通常小于2%。我们的数据被用来推断在Lascar排放的气体的来源。确定了两个主要的脱气源:深部岩浆储层和浅层热液系统。这两种来源之间的可变相互作用是最有可能解释酸性气体中的组成范围以及挥发性和流体可移动的微量元素(例如B)的组成情况的方法。这些变化与火山活动的变化有关:岩浆热上升气体和浅层含水层发生在2009年,可能是由于长期的静止期,在2011年和2012年岩浆活动重新开始之前。我们的研究强调,滤池测量可用于研究地下过程的变化可能在触发火山爆发中起关键作用。

著录项

  • 来源
    《Journal of Volcanology and Geothermal Research 》 |2014年第15期| 51-67| 共17页
  • 作者单位

    Laboratoire Magmas et Volcans, Clermont Universite Universite Blaise Pascal, CNRS UMR 6524, IRD R 163, 5 rue Kessler, 63038 Clermont-Ferrand Cedex, France;

    Laboratoire Magmas et Volcans, Clermont Universite Universite Blaise Pascal, CNRS UMR 6524, IRD R 163, 5 rue Kessler, 63038 Clermont-Ferrand Cedex, France,Observatoire de Physique du Globe de Clermont-Ferrand, 24 avenue des Landais, BP 80026, 63171 Aubiere Cedex, France;

    Laboratoire Magmas et Volcans, Clermont Universite Universite Blaise Pascal, CNRS UMR 6524, IRD R 163, 5 rue Kessler, 63038 Clermont-Ferrand Cedex, France;

    Departamento de Ceologia, Universidad de Atacama, Av. Copayapu 485, Copiapo, Chile Servicio Nacional de Geologia y Mineria, Av. Santa Maria 0104, Providencia, Santiago;

    Laboratoire Magmas et Volcans, Clermont Universite Universite Blaise Pascal, CNRS UMR 6524, IRD R 163, 5 rue Kessler, 63038 Clermont-Ferrand Cedex, France;

    Observatoire de Physique du Globe de Clermont-Ferrand, 24 avenue des Landais, BP 80026, 63171 Aubiere Cedex, France;

    Departamento de Ciencias Geologicas, Universidad Catolica del Norte, Av. Angamos 0610, Antofagasta, Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lascar volcano; Volcanic plume; Acid gases; Aerosols; Volatiles; Trace elements;

    机译:拉斯卡火山;火山羽;酸性气体;气溶胶;挥发物;微量元素;

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