首页> 外文OA文献 >Low-pH waters discharging from submarine vents at Panarea Island (Aeolian Islands, southern Italy) after the 2002 gas blast: origin of hydrothermal fluids and implications for volcanic surveillance.
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Low-pH waters discharging from submarine vents at Panarea Island (Aeolian Islands, southern Italy) after the 2002 gas blast: origin of hydrothermal fluids and implications for volcanic surveillance.

机译:2002年气体爆炸后,panarea岛(伊奥利亚群岛,意大利南部)的海底通风口排出低pH值的水:热液流体的来源及对火山监测的影响。

摘要

A geochemical survey of thermal waters collected from submarine vents at Panarea Island (Aeolian Islands, southern Italy) was carried out from December 2002 to March 2007, in order to investigate i) the geochemical processes controlling the chemical composition of the hydrothermal fluids and ii) the possible relations between the chemical features of the hydrothermal reservoir and the activity of the magmatic system. Compositional data of the thermal water samples were integrated in a hydrological conceptual model, which describes the formation of the vent fluid by mixing of seawater, seawater concentrated by boiling, and a deep, highly-saline end-member, whose composition is regulated by water-rock interactions at relatively high temperature and shows clear clues of magmatic-related inputs. The chemical composition of concentrated seawater was assumed to be represented by that of the water sample having the highest Mg content. The composition of the deep end-member was instead calculated by extrapolation assuming a zero-Mg end-member. The Na–K–Ca geothermometer, when applied to the thermal end-member composition, indicated an equilibrium temperature of approximately 300 °C, a temperature in agreement with the results obtained by gas-geothermometry.
机译:2002年12月至2007年3月,对从Panarea岛(意大利南部的风神群岛)的海底排放口收集的热水进行了地球化学调查,目的是调查i)控制热液流体化学成分的地球化学过程,以及ii)热液储层化学特征与岩浆系统活动之间的可能关系。将热水样品的成分数据整合到一个水文概念模型中,该模型描述了混合海水,沸腾浓缩的海水和深,高盐度的端构件(其组成受水调节)而形成的排泄液。相对较高温度下的岩石相互作用,并显示出岩浆相关输入的清晰线索。假定浓缩海水的化学成分由具有最高Mg含量的水样所代表。相反,通过假定零镁末端成员,通过外推法计算深末端成员的组成。将Na–K–Ca地热仪应用于热端构件时,表明其平衡温度约为300°C,该温度与通过气体地热法获得的结果一致。

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