首页> 外文期刊>Journal of Volcanology and Geothermal Research >Origin and fate of hydrothermal fluids at Piton des Neiges volcano (Reunion Island): A geochemical and isotopic (O, H, C, Sr, Li, Cl) study of thermal springs
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Origin and fate of hydrothermal fluids at Piton des Neiges volcano (Reunion Island): A geochemical and isotopic (O, H, C, Sr, Li, Cl) study of thermal springs

机译:Piton des Neiges火山(Reunion Island)的热热流体的起源和命运:热弹簧的地球化学和同位素(O,H,C,SR,Li,Cl)研究

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摘要

As many ocean basaltic volcanoes worldwide, Piton des Neiges (Reunion Island) hosts a hydrothermal system that represents a potential geothermal resource. Despite several prospection campaigns over the past decades, this potential has never been confirmed because many aspects of fluid supply and circulation remain unclear. To track the origin and fate of hydrothermal fluids, we analyzed the geochemistry of thermal springs (water and gas), by combining conventional tracers (major-trace elements and O, H, C, Sr, Li isotopes) with Cl isotopes, a geochemical tool under development. Added to literature data, our new results allow us to compare the composition of thermal springs with cold waters, rocks, gas, and fumarolic deposits from La Reunion and elsewhere, and to untwine the complex history of fluid mixing that constitutes the geothermal system of Piton des Neiges.delta O-18(H2O) and delta D-H2O values of springs (-8.67 to -4.9 and -56.3 to -23.5 parts per thousand VSMOW, respectively) are positioned close to the local meteoric water line, showing that thermal waters are of meteoric origin. However, their depletion in heavy isotopes relative to cold waters suggests a recharge strongly influenced by cyclones, with a possible contribution from high altitude (= 2000m) rainfalls. Their absence of O-18 enrichment relative to the local meteoric water line indicates that the isotopic exchange between rocks and water is very limited, and therefore suggests that their deep temperatures are relatively low and/or the water/rock ratios are high. delta C-13 values in thermal waters (-8.0 to +3.2 parts per thousand PDB) and gases (-6.7 to -5.3 parts per thousand PDB) confirm that carbon is essentially of magmatic origin, which we interpret as supplied by regional degassing of La Reunion hotspot. Major-trace elements and Sr-87/Sr-86 (0.704142 to 0.704336), delta Li-7 (+2 parts per thousand and +34.8 parts per thousand LSVEC), and delta Cl-37(-0.35 parts per thousand and +0.40 parts per thousand SMOC) compositions show that three additional processes contribute to the mineralization of thermal waters: 1) interaction with basalt at temperatures = 50 degrees C, 2) very limited seawater contamination ( 3 mol parts per thousand), and/or 3) leaching of trachyte or scrubbing of fumarolic gas or condensates emitted by a shallow trachytic magma in the volcanic edifice.The geothermal system of Piton des Neiges is thus the result of meteoric water interaction with a trachytic heat source (as a solidified intrusion or a magma pocket), unrelated to the CO2 flux. We also emphasize that thermal waters at Piton des Neiges are exceptionally isolated from seawater compared to other geothermal systems in ocean island volcanoes worldwide, which implies a heat source located above the seawater/freshwater interface. These inferences are of critical importance for the future geothermal exploration on the island, as they suggest that the geothermal resource is within reach of relatively shallow drilling depths (= 1000 m). (C) 2019 Published by Elsevier B. V.
机译:在全球的许多海洋玄武岩火山,Piton des Neiges(Reunion Island)举办了一种代表潜在地热资源的水热系统。尽管过去几十年来说,尽管有几个撤销活动,但这一潜力从未得到过确认,因为流体供应和流通的许多方面仍然不清楚。要跟踪水热流体的起源和命运,我们通过将传统示踪剂(主要微量元素和O,H,C,SR,锂同位素与Cl同位素相结合,分析了热弹簧(水和气体)的地球化学系统,是一种地球化学开发工具。添加到文献数据中,我们的新结果使我们能够将热弹簧的组成与来自La Reunion和其他地方的冷水,岩石,气体和富马摩沉积物进行比较,并以解开构成Piton地热系统的流体混合的复杂历史Springs的Des Neiges.delta O-18(H2O)和Springs的Delta D-H2O值(分别分别为-56.3至-56.3至-23.5份),分别位于当地的流量线附近,显示出热量水有陨石渊源。然而,它们相对于冷水的重量同位素的枯竭表明,受旋风强烈影响的充电,从高海拔(> = 2000米)的降雨可能产生的贡献。它们不存在相对于局部天气水管线的O-18富集表明岩石和水之间的同位素交换非常有限,因此表明其深温度相对较低,水/岩石比率高。热水中的Delta C-13值(-8.0至+3.2份PER千pdb)和气体(-6.7至-5.3份Per千pdb)确认碳基本上是岩石原点,我们将通过区域脱气的区域脱气来解释La Reunion热点。主要微量元素和SR-87 / SR-86(0.704142至0.704336),Delta Li-7(+2份每千份,+34.8份Per千千分比),以及Delta Cl-37(0.35份/份每千份) 0.40份百分之一份的SMOC)组合物表明,三种额外的方法有助于热水的矿化:1)与玄武岩的相互作用> = 50℃,2)非常有限的海水污染(<3摩尔零件),和/或3)火山岩中的浅气囊岩浆淋浴或擦洗脉冲气体或凝结物的粉碎。因此,PITON des Neiges的地热系统是与异型热源的流化水相互作用的结果(作为凝固的侵入或一个岩浆口袋),与CO2通量无关。我们还强调,与全世界海洋岛火山的其他地热系统相比,Piton des Neiges的热水与海水相比,这意味着位于海水/淡水界面之上的热源。这些推论对岛上未来的地热勘探至关重要,因为他们建议地热资源在相对较浅的钻井深度(<= 1000米)范围内。 (c)2019由Elsevier B. V.

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