Fluid geochemistry of a deep-seated geothermal resource in the Puna plateau (Jujuy Province, Argentina)

被引:30
|
作者
Arnold, Y. Peralta [1 ]
Cabassi, J. [2 ,3 ]
Tassi, F. [2 ,3 ]
Caffe, P. J. [1 ]
Vaselli, O. [2 ,3 ]
机构
[1] Univ Nacl Jujuy, CONICET, Inst Geol & Mineria, Inst Ecorreg Andinas INECOA, Ave Bolivia 1661, RA-4600 San Salvador De Jujuy, Jujuy, Argentina
[2] Univ Florence, Dept Earth Sci, Via La Pira 4, I-50121 Florence, Italy
[3] CNR IGG Inst Geosci & Earth Resources, Via La Pira 4, I-50121 Florence, Italy
关键词
Thermal spring; Fluid geochemistry; Hydrothermal fluid; Northern Puna; Jujuy Province; HELIUM ISOTOPE RATIOS; HYDROTHERMAL SYSTEMS; VOLCANIC COMPLEX; NORTHERN PUNA; CENTRAL ANDES; WATER; CARBON; HYDROGEN; METHANE; GASES;
D O I
10.1016/j.jvolgeores.2017.03.030
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
This study focused on the geochemical and isotopic features of thermal fluids discharged from five zones located in the high altitude Puna plateau (Jujuy Province between S 22 degrees 20'-23 degrees 20' and W 66 degrees-67 degrees), i.e. Granada, Vilama, Pairique, Coranzuli and Olaroz. Partially mature waters with a Na+-Cl- composition were recognized in all the investigated zones, suggesting that a deep hydrothermal reservoir hosted within the Paleozoic crystalline basement represents the main hydrothermal fluid source. The hydrothermal reservoirs are mainly recharged by meteoric water, although based on the delta O-18-H2O and delta D-H2O values, some contribution of andesitic water cannot be completely ruled out. Regional S-oriented faulting systems, which generated a horst and graben tectonics, and NE-, NW- and WE-oriented transverse structures, likely act as preferentially uprising pathways for the deep-originated fluids, as also supported by the Rc/Ra values (up to 139) indicating the occurrence of significant amounts of mantle He (up to 16%). Carbon dioxide, the most abundant compound in the gas phase associated with the thermal waters, mostly originated from a crustal source, although the occurrence of CO2 from a mantle source, contaminated by organic-rich material due to the subduction process, is also possible. Relatively small and cold Na+-HCO3--type aquifers were produced by the interaction between meteoric water and Cretaceous, Palaeogene to Miocene sediments. Dissolution of evaporitic surficial deposits strongly affected the chemistry of the thermal springs in the peripheral zones of the study area. Geothermometry in the Na-K-Ca-Mg system suggested equilibrium temperatures up to 200 degrees C for the deep aquifer, whereas lower temperatures (from 105 to 155 degrees C) were inferred by applying the H-2 geothermometer, likely due to re-equilibrium processes during the thermal fluid uprising within relatively shallow Na-HCO3 aquifers. The great depth of the geothermal resource (possibly > 5000 m b.g.l.) is likely preventing further studies aimed to evaluate possible exploitation, although the occurrence of Li-and Ba-rich deposits associated may attract financial investments, giving a pulse for the development of this remote region. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:121 / 134
页数:14
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