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Geochemical investigations of the geothermal systems from the Island of Sicily (southern Italy)

机译:西西里岛岛地热系统的地球化学研究(意大利南部)

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摘要

Sicily hosts many natural manifestations that include thermal waters, gas discharges and mud volcanoes. Due to the significant geodynamic and geological differences, the fluid discharges along a NE-WS-oriented transect that run from the Peloritani Mts. to the Sciacca Plain shows a large variability in water and gas chemical and isotopic compositions. The studied waters are characterized by Ca-HCO3, Ca(Mg)-SO4, Ca-Cl and Na-Cl compositions produced by distinct geochemical processes such as water-rock-gas interactions, mixing between deep and shallow aquifers and seawater and direct and reverse ion exchanges. The gas chemistry is dominated by CO2 to the east and CO2-N-2 to the west of the study area, whereas the central part shows mud volcanoes discharging CH4-rich gases. Water isotopes suggest that the thermal waters are fed by a meteoric recharge, although isotopic exchange processes between thermal fluids and host rocks at temperature 150 degrees C are recognized. Accordingly, liquid geothermometry suggests equilibrium temperatures up to 220 degrees C. The carbon in CO2 and helium isotopes of the emissions from the westernmost sector of Sicily indicate that these two gases consists of up to 40 % of a mantle component, the latter decreasing to the east down to 10% where CO2 of thermometamorphic origin dominates. Accordingly, conceptual models of the fluid circulation for the western, central and eastern sectors are proposed. The regional geothermal reservoir, hosted in carbonates in the western sector and locally outcropping, is of low to medium temperature. Higher temperature conditions (up to 200-220 degrees C) are suggested by geothermometry and probably related to deeper levels of the system. Sicily can be regarded as a potentially suitable area for future investigations to evaluate specific activities aimed at exploiting the geothermal resource.
机译:西西里岛举办了许多自然表现,包括热水,煤气排放和泥火山。由于具有显着的地球动力学和地质差异,流体沿着从Peloritani MTS运行的NE-WS取向的横段排出。对Sciacca Plane表示水和天然气化学和同位素组合物的巨大变化。所研究的水分的特征在于Ca-HCO3,Ca(Mg)-SO4,Ca-Cl和Na-Cl组合物,通过不同的地球化学方法,如水岩气体相互作用,在深和浅含水层和海水之间混合,直接和直接和反向离子交换。气体化学由二氧化碳占主导地位到研究区以西的东部和CO2-N-2,而中央部分显示泥火山排出CH4的气体。水同位素表明,虽然热流体和温度岩石之间的同位素交换过程,但识别出热流体和主体岩石之间的同位素交换过程。因此,液体地水测定表明,从西西里岛最西西里氏型部门的二氧化碳和氦同位素中的碳的平衡温度表明,这两个气体的含量高达40%的地幔组分,后者的减少东部到10%的热素质来源的二氧化碳占主导地位。因此,提出了西方,中部和东部部门的流体循环的概念模型。在西部部门和局部露天度的碳酸盐中携带的区域地热水库具有低至中等温度。通过地热测定,提出较高的温度条件(高达200-220℃),并且可能与系统更深层次的水平相关。西西里岛可以被视为未来调查的潜在适当的领域,以评估旨在利用地热资源的特定活动。

著录项

  • 来源
    《Geothermics》 |2021年第9期|102120.1-102120.17|共17页
  • 作者单位

    Inst Geosci & Earth Resources CNR Via G Moruzzi 1 I-56124 Pisa Italy;

    Univ Florence Dept Earth Sci Via La Pira 4 I-50121 Florence Italy|Inst Geosci & Earth Resources CNR Via La Pira 4 I-50121 Florence Italy;

    Ist Nazl Geofis & Vulcanol Sez Palermo Via Ugo La Malfa Palermo Italy;

    Inst Geosci & Earth Resources CNR Via G Moruzzi 1 I-56124 Pisa Italy;

    Univ Florence Dept Earth Sci Via La Pira 4 I-50121 Florence Italy|Inst Geosci & Earth Resources CNR Via La Pira 4 I-50121 Florence Italy|Ist Nazl Geofis & Vulcanol Sez Bologna Via Franceschini Bologna Italy;

    Ist Nazl Geofis & Vulcanol Sez Palermo Via Ugo La Malfa Palermo Italy;

    Inst Geosci & Earth Resources CNR Via G Moruzzi 1 I-56124 Pisa Italy;

    Ist Nazl Geofis & Vulcanol Sez Palermo Via Ugo La Malfa Palermo Italy;

    Ist Nazl Geofis & Vulcanol Sez Palermo Via Ugo La Malfa Palermo Italy;

    Univ Florence Dept Earth Sci Via La Pira 4 I-50121 Florence Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fluid geochemistry; Geothermal exploration; Stable isotopes; Dissolved gases; Tectonics;

    机译:流体地球化学;地热勘探;稳定同位素;溶解气体;构造;

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