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Origin of fumarolic fluids from Tupungatito Volcano (Central Chile): interplay between magmatic, hydrothermal, and shallow meteoric sources

机译:来自图彭加蒂托火山(智利中部)的富马酸流体的起源:岩浆,热液和浅层陨石源之间的相互作用

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摘要

Tupungatito is a poorly known volcano located about 100 km eastward of Santiago (Chile) in the northernmost sector of the South Volcanic Zone. This 5,682 m high volcano shows intense fumarolic activity. It hosts three crater lakes within the northwestern portion of the summit area. Chemical compositions of fumarolic gases and isotopic signatures of noble gases (3He/4He and 40Ar/36Ar are up to 6.09 Ra and 461, respectively), and steam (δ18O and δD) suggest that they are produced by mixing of fluids from a magmatic source rich in acidic gas compounds (SO2, HCl, and HF), and meteoric water. The magmatic–hydrothermal fluids are affected by steam condensation that controls the outlet fumarolic temperatures (<83.6 °C), the gas chemical composition, and the steam isotopic values. The δ13C–CO2 values (ranging from 0.30 and −8.16 ‰ vs. V-PDB) suggest that CO2 mainly derives from (1) a mantle source likely affected by significant contamination from the subducting slab, (2) the sedimentary basement, and (3) limited contribution from crustal sediments. Gas geothermometry based on the kinetically rapid H2–CO equilibria indicates equilibrium temperatures <200 °C attained in a single vapor phase at redox conditions slightly more oxidizing than those commonly characterizing hydrothermal reservoirs. Reactions in the H2O–CO2–H2–CO–CH4 system and C2–C3 alkenes/alkanes pairs, which have relatively slow kinetics, seem to equilibrate at greater depth, where temperatures are >200 °C and redox conditions are consistent with those inferred by the presence of the SO2–H2S redox pair, typical of fluids that have attained equilibrium in magmatic environment. A comprehensive conceptual geochemical model describing the circulation pattern of the Tupungatito hydrothermal–magmatic fluids is proposed. It includes fluid source regions and re-equilibration processes affecting the different gas species due to changing chemical–physical conditions as the magmatic–hydrothermal fluids rise up toward the surface.
机译:Tupungatito是一个鲜为人知的火山,位于南火山区最北端的圣地亚哥(智利)以东约100公里处。这座5,682米高的火山表现出强烈的富马活动。它在山顶地区的西北部拥有三个火山口湖。富马酸气体的化学成分和稀有气体的同位素特征(分别为3He / 4He和40Ar / 36Ar分别高达6.09 Ra和461)以及蒸汽(δ18O和δD)表明它们是通过混合岩浆来源的流体而产生的富含酸性气体化合物(SO2,HCl和HF)和陨石水。岩浆热液受蒸汽凝结的影响,蒸汽凝结控制着出口富马酸温度(<83.6°C),气体化学成分和蒸汽同位素值。 δ13​​C–CO2值(相对于V-PDB在0.30和−8.16‰之间)表明,CO2主要来自(1)可能受到俯冲板块严重污染影响的地幔源;(2)沉积基底和( 3)地壳沉积物的贡献有限。基于动力学上快速的H2–CO平衡的气体地热法表明,在氧化还原条件下,在单一气相中达到的平衡温度<200°C,其氧化程度比通常表征水热储层的温度略高。 H2O–CO2–H2–CO–CH4系统和C2–C3烯烃/烷烃对的反应动力学相对较慢,似乎在更大的深度达到平衡,温度高于200°C,氧化还原条件与推断的一致由于存在SO2-H2S氧化还原对,这是在岩浆环境中达到平衡的典型流体。提出了一个全面的概念地球化学模型,该模型描述了Tupungatito热液-岩浆流体的循环模式。它包括流体源区域和重新平衡过程,由于岩浆热液向地面上升,由于化学-物理条件的变化,它们影响了不同的气体种类。

著录项

  • 来源
    《Bulletin of Volcanology》 |2013年第8期|1-15|共15页
  • 作者单位

    Departamento de Geología Universidad de Chile">(1);

    Centro de Excelencia en Geotermia de los Andes (CEGA) Universidad de Chile">(2);

    Dipartimento di Scienze della Terra Università degli Studi di Firenze">(3);

    CNR-IGG Istituto di Geoscienze e Georisorse Università degli Studi di Firenze">(4);

    Departamento de Geología Universidad de Chile">(1);

    Centro de Excelencia en Geotermia de los Andes (CEGA) Universidad de Chile">(2);

    Dipartimento di Scienze della Terra Università degli Studi di Firenze">(3);

    CNR-IGG Istituto di Geoscienze e Georisorse Università degli Studi di Firenze">(4);

    Centro de Excelencia en Geotermia de los Andes (CEGA) Universidad de Chile">(2);

    Departamento de Geología Universidad de Atacama">(5);

    Departamento de Geología Universidad de Chile">(1);

    Centro de Excelencia en Geotermia de los Andes (CEGA) Universidad de Chile">(2);

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

    Fumarolic fluid; Tupungatito volcano; Fluid geochemistry; Southern Volcanic Zone;

    机译:富马酰流体;图彭加蒂托火山;流体地球化学;南部火山带;

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