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Regional variations in the chemical and helium–carbon isotope composition of geothermal fluids across Tunisia

机译:突尼斯整个地热流体的化学和氦碳同位素组成的区域变化

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摘要

Tunisia has numerous thermo-mineral springs. Previous studies have shown that their chemical composition and occurrence are strongly influenced by the regional geology. However little work has been done so far toudstudy the isotopic composition of volatiles associated with these geothermal manifestations. Here, we report on the results of an extensive survey of both natural hot springs and production wells across Tunisia, aimed at investigating the spatial distribution of thermal fluids' geochemical characteristics and He–C isotopicudcomposition. The chemistry of the analyzed samples highlights the heterogeneity of the water mineralization processes in Tunisia, as a consequence of the complex geological and tectonic setting of the country. In termsudof chemical composition, we are able to conclude, however, that dissolution of halite and gypsum plays a key control on groundwater chemistry. Helium and carbon isotope systematics confirm the prevalently crustal origin of the volatiles interacting with the aquifer systems, consistent with the absence of any recent magmatism. Most samples are characterized by crustal-type helium (3He/4He in the range 0.02 Ra–0.4 Ra)udassociated with a CO2 predominantly metamorphic in origin (with the exception of the Saharan platform where the carbon content is low and mostly organically-derived). In Eastern Tunisia, however, a few samples have He–C isotope compositions which suggest (at least partial) mantle derivation of the dissolved gas phase:the 3He/4He ratio reaches 2.4 Ra (corresponding to 30% of mantle-derived helium) at the Ain Garci site, a CO2 rich mineral spring located some 30 km south of the city of Zaghouan. This mantle signature is consistent with the fact that the Pelagian Block, to which Eastern Tunisia belongs, has been deeply affected by extensional and transtensional tectonics since the opening of the Tethys, a process which is still ongoing in the Sicily channelud(Pantelleria Rift). As a whole however, our results show that the Italian mantle gas anomaly only marginally extends to Northwestern Africa.
机译:突尼斯有大量的热矿泉。先前的研究表明,它们的化学成分和发生情况受到区域地质的强烈影响。然而,到目前为止,尚未开展多少工作来研究与这些地热表现有关的挥发物的同位素组成。在这里,我们报告了对突尼斯全国天然温泉和生产井的广泛调查结果,旨在调查导热液地球化学特征和He–C同位素沉积物的空间分布。由于该国复杂的地质和构造环境,所分析样品的化学性质突显了突尼斯水矿化过程的异质性。在化学组成方面,我们可以得出结论,但是,石盐和石膏的溶解对地下水化学起着关键控制作用。氦和碳同位素系统确定了与含水层系统相互作用的挥发物的地壳起源,这与最近没有岩浆作用一致。大多数样品的特征是地壳型氦(3He / 4He范围在0.02 Ra–0.4 Ra范围内)与二氧化碳主要起源于变质(撒哈拉平台除外,在撒哈拉平台上碳含量低且大部分来自有机物) )。但是,在突尼斯东部,有一些样品具有He–C同位素组成,表明(至少部分)溶解气相的地幔衍生:3He / 4He比达到2.4 Ra(相当于地幔衍生氦的30%)。 Ain Garci厂址是富含二氧化碳的矿泉,位于Zaghouan市以南约30公里处。这种地幔特征与这样的事实是一致的:自特提斯山脉开通以来,突尼斯东部所属的伯拉尼地块已受到伸展和张性构造的深远影响,这一过程仍在西西里海峡 ud(Pantelleria Rift )。但是,从总体上看,我们的结果表明,意大利地幔气异常仅略微扩展到了西北非洲。

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