...
首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Changes in fluid geochemistry and physico-chemical conditions of geothermal systems caused by magmatic input: The recent abrupt outgassing off the island of Panarea (Aeolian Islands, Italy)
【24h】

Changes in fluid geochemistry and physico-chemical conditions of geothermal systems caused by magmatic input: The recent abrupt outgassing off the island of Panarea (Aeolian Islands, Italy)

机译:岩浆输入引起的地热系统的流体地球化学和物理化学条件的变化:Panarea岛(意大利风神群岛)最近突然放气

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Hydrothermal systems and related vents can exhibit dramatic changes in their physico-chemical conditions over time as a response to varying activity in the feeding magmatic systems. Massive steam condensation and gas scrubbing processes of thermal fluids during their ascent and cooling cause further compositional changes that mask information regarding the conditions evolving at depth in the hydrothermal system. Here we propose a new stability diagram based on the CO2-CH4-CO-H-2 concentrations in vapor, which aims at calculating the temperatures and pressures in hydrothermal reservoirs. To filter gas scrubbing effects, we have also developed a model for selective dissolution of CO2-H2S-N-2-CH4-He-Ne mixtures in fresh and/or air-saturated seawater.This methodology has been applied to the recent (November 2002) crisis that affected the geothermal field off the island of Panarea (Italy), where the fluid composition and fluxes have been monitored for the past two decades. The chemical and isotopic compositions of the gases suggest that the volatile elements originate from an active magma, which feeds a boiling saline solution having temperatures of up to 350 degrees C and containing approximate to 12 mol% CO2 in vapor. The thermal fluids undergo cooling and re-equilibration processes on account of gas-water-rock interactions during their ascent along fracture networks. Furthermore, steam condensation and removal of acidic species, partial dissolution in cold air-saturated seawater and stripping of atmospheric components, affect the composition of the geothermal gases at shallow levels. The observed geochemical variations are consistent with a new input of magmatic fluids that perturbed the geothermal system and caused the unrest event. The present-state evolution shows that this dramatic input of fluids is probably over, and that the system is now tending towards steady-state conditions on a time scale of months. Copyright (c) 2005 Elsevier Ltd.
机译:热液系统和相关的喷口随着时间的流逝可能会表现出其物理化学条件的剧烈变化,这是对进岩系统的活动变化的响应。热流体在上升和冷却期间的大量蒸汽凝结和气体洗涤过程会导致进一步的成分变化,从而掩盖有关热液系统深度发展状况的信息。在这里,我们提出了一个基于蒸汽中CO2-CH4-CO-H-2浓度的新稳定性图,旨在计算热液储层中的温度和压力。为了过滤气体洗涤效果,我们还开发了一个模型,用于将CO2-H2S-N-2-CH4-He-Ne混合物选择性溶解在新鲜和/或空气饱和的海水中。该方法已应用于最近(11月) 2002年)的危机影响了Panarea岛(意大利)外的地热田,过去二十年来,该岛的流体成分和通量一直受到监测。气体的化学和同位素组成表明,挥发性元素源自活性岩浆,该岩浆会供给沸腾的盐溶液,该盐溶液的温度高达350摄氏度,并且蒸气中的二氧化碳含量约为12 mol%。由于热流体沿裂缝网络上升,在气-水-岩石相互作用的作用下,它们经历了冷却和重新平衡的过程。此外,蒸汽凝结和去除酸性物质,在冷空气饱和的海水中部分溶解以及大气成分的汽提影响浅层地热气体的组成。观测到的地球化学变化与扰动地热系统并引起动荡事件的岩浆流体的新输入相一致。当前状态的演变表明,流体的这种剧烈输入可能已经结束,并且该系统现在趋向于在几个月的时间范围内达到稳态条件。版权所有(c)2005 Elsevier Ltd.

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号