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Preliminary geochemical study on the concentration of major and trace elements in the geothermal aquifer of Pantelleria Island, Italy

机译:意大利潘泰莱里亚岛地热含水层中主要和微量元素浓度的初步地球化学研究

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Major, minor and trace element concentrations were determined in 18 samples of thermal waters from Pantelleria Island (maximum estimated temperature of 260°C), a quiescent volcano located in the Sicily Channel. Waters are chloride-sulphate alkaline in composition, based on the Langelier-Ludwig classification, with Na as the most abundant cation. There are three major components inferred from the chemical composition of the samples: meteoric water, seawater, and geothermal fluids. Mixing of meteoric and sea water is the most evident geochemical process indicated, in particular, by the correlation of Br and Na with Cl. Geothermal fluids are characterised by high P_(CO_2), depletion in Mg and enrichment in F, Br, Na and K relative to their respective ratios with Cl in seawater. This indicates significant gas-water-rock interaction. Dissolved CO_2 gas, of likely mantle origin, interacts strongly with the aquifer. The general behaviour of other minor and trace elements in solution confirms the above processes, in agreement with data from other quiescent volcanic areas in Italy. Redox conditions as well as the stability of mineral phases that may act as sinks for trace metals also affect the concentration of most trace elements in solution.
机译:在位于西西里海峡的静态火山潘泰莱里亚岛的18个热水中(最高估计温度为260°C)确定了主要,次要和微量元素的浓度。根据Langelier-Ludwig的分类,水的成分是氯化物硫酸盐碱性,其中Na是最丰富的阳离子。从样品的化学组成可以推断出三个主要成分:大气水,海水和地热流体。大气和海水的混合是最明显的地球化学过程,特别是通过Br和Na与Cl的相互关系表明。地热流体的特征是高P_(CO_2),镁耗竭以及F,Br,Na和K富集(相对于它们在海水中与Cl的比例)。这表明明显的气-水-岩相互作用。可能来自地幔的溶解的CO_2气体与含水层强烈地相互作用。溶液中其他微量元素和痕量元素的一般行为证实了上述过程,与意大利其他静态火山区的数据一致。氧化还原条件以及可能作为痕量金属汇的矿物相的稳定性也会影响溶液中大多数痕量元素的浓度。

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