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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Fluid geochemistry of the Sardinian Rift-Campidano Graben (Sardinia, Italy): fault segmentation, seismic quiescence of geochemically 'active' faults, and new constraints for selection of CO2 storage sites
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Fluid geochemistry of the Sardinian Rift-Campidano Graben (Sardinia, Italy): fault segmentation, seismic quiescence of geochemically 'active' faults, and new constraints for selection of CO2 storage sites

机译:撒丁岛裂谷-Campidano Graben(意大利撒丁岛)的流体地球化学:断层分割,地球化学“活动”断层的地震静止以及CO2储藏地点选择的新限制

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Sardinia is typically seismically quiescent, displaying an almost complete lack of historical earthquakes and instrumentally recorded seismicity. This evidence may be in agreement with the presence of a ductile layer in the northern sector of the island, as suggested by the He isotopic signature in fluids rising to the surface through quiescent fault systems. The fault systems have been found to be "segmented" and therefore isolated in fluid circulation. The study of fluid behaviour along fault systems becomes strategically important when applied to solve some geological risk assessments such as Rn-indoor, or to define geological structures like potential CO2 storage sites. Both of these have been recently requested by the exploitation in Italy of the Euratom Directive and the evolution of the KyotoProtocol policy.Four water-dominated hydrothermal areas of Sardinia, located along regional fault systems, were considered: Campidano Graben, Tirso Valley, Logudoro and Casteldoria. A fluid geochemical survey was carried out taking into account physical-chemical and environmental parameters, major elements within gaseous and liquid phases, a few minor and trace elements, selected isotope ratios (H-2, O-18, C-13, He-3/He-4), Rn-222 concentration, and some dissolved gases.Two different fluids have been recognised as regards both water chemistry and dissolved gases: (i) CO2-rich gases, poor in He and Rn, with a relatively high He-3/He-4 ratio (up to R/R-a = 2.32), associated with Na-HCO3-(Cl) thermal and cold groundwater; (ii) gases rich in He and N-2, poor in CO2 and Rn, with a low He-3/He-4 ratio, associated with alkaline thermal and cold waters. The distribution of these two groups of fluids characterises the Sardinian tectonic systems. In fact, gas fluxes are not homogeneous, being mainly related to the different fault segments and to the areas where Quaternary basalts crop out. The underground geochemical evolution of the Sardinian fluids, as a function of the geological and tectonic systems, provides some suggestions for solving one of the most important problems: CO2 geological sequestration. In order to reduce the CO2 excess produced by human activity, the best geological disposal sites are reservoirs with low hydraulic conductivity, sealed to fluid movement, or aquifers characterised by maximum pH buffering capacity of their mineralogical matrix. The knowledge of the role of faults, as permeability barriers or as deep fluid uprising pathways, is prerequisite. (C) 2004 Elsevier Ltd. All rights reserved.
机译:撒丁岛通常在地震中处于静止状态,几乎完全没有历史地震和仪器记录的地震活动。正如通过静态断层系统上升到地表的流体中的He同位素特征所表明的那样,该证据可能与该岛北部地区存在韧性层相一致。已经发现故障系统是“分段的”,因此隔离在流体循环中。当用于解决某些地质风险评估(如室内Rn)或定义地质结构(如潜在的CO2储存地)时,研究沿断层系统的流体行为就具有战略重要性。近期,意大利对Euratom指令的开发和《京都议定书》政策的发展都对这两个方面提出了要求。考虑到了撒丁岛的四个以水为主导的热液区域,它们位于区域断层系统沿线:Campidano Graben,Tirso Valley,Logudoro和卡氏菌属。进行了流体地球化学调查,考虑了物理化学和环境参数,气相和液相中的主要元素,一些微量和微量元素,选定的同位素比(H-2,O-18,C-13,He- 3 / He-4),Rn-222浓度和一些溶解的气体。关于水化学和溶解气体,已经认识到两种不同的流体:(i)富含CO2的气体,He和Rn较差,相对较高He-3 / He-4比值(最高R / Ra = 2.32),与Na-HCO3-(Cl)热和冷地下水有关; (ii)与碱性热水和冷水有关的富含He和N-2的气体,富含CO2和Rn的气体,He-3 / He-4比率低。这两类流体的分布是撒丁岛构造系统的特征。实际上,气体通量不是均匀的,主要与不同的断层段和第四纪玄武岩的种植区域有关。撒丁岛流体的地下地球化学演化,作为地质和构造系统的函数,为解决最重要的问题之一提供了一些建议:二氧化碳地质封存。为了减少人类活动产生的二氧化碳过量,最好的地质处置场所是水力传导率低,对流体运动密封的储层或以其矿物基质的最大pH缓冲能力为特征的含水层。必须具备断层作为渗透屏障或深层流体起义通道的作用的知识。 (C)2004 Elsevier Ltd.保留所有权利。

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