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February 2, 2026Applied Sciences0 citationsOpen Access

Fluid-Rock Interaction Signature in Palomares Fault Zone—New Mineralogical and Geochemical Insights into the Tectono-Magmatic Águilas Arc Geothermal System (SE Spain)

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ERElena Real-FernándezMPM PozoCICristina De Ignacio

Key Points

  • This research aims to understand fluid-rock interactions within the Palomares Fault Zone, focusing on mineral and geochemical changes.
  • Conducted mineralogical, geochemical, and hydrogeological analyses.
  • Utilized techniques such as XRD, SEM, and ICP-MS.
  • Analyzed fault gouge samples to identify mineral assemblages.
  • Examined thermal hydrofacies in wells and mine shafts.
  • Identified six distinct mineral assemblages characterized by cataclastic textures.
  • Detected enrichment in large-ion lithophile elements and rare-earth elements.
  • Classified two thermal hydrofacies showing varying Na+ and Cl− concentrations.
  • Established a unique geochemical signature in the Águilas Arc resulting from multiple fluid-rock interaction stages.

Abstract

The southeastern Iberian Peninsula, particularly the Águilas Arc within the Neogene Volcanic Province (NVP), represents a promising geothermal domain with complex tectonics and geology. The Palomares Fault Zone (PFZ), a key shear structure initiated during the Late Miocene, acts as a conduit for fluid migration, promoting mineralization and potential anomalies of rare and critical metals through fluid–rock interaction. This study investigates such interactions in the southernmost Águilas Arc, focusing on the El Arteal fault segment within the eastern PFZ strand. Mineralogical, geochemical, and hydrogeological analyses were performed using XRD, SEM, and ICP-MS techniques. Results reveal six mineral assemblages (MA) within the fault segment where the fault gouge samples were characterized by cataclastic textures and the occurrence of authigenic minerals, including halite, kaolinite, illite, paragonite, goethite, hematite, gypsum, barite, celestine, and quartz. Geochemical data indicate enrichment signatures in large-ion lithophile elements (LILE) and minor chalcophile and light rare-earth elements (LREE). Two thermal hydrofacies with alkaline metals enrichment were identified in wells and mine shafts: (1) Na+SO42− and (2) Na+Cl−, where the latter exhibits high Na+ and Cl− concentrations toward deeper sectors. These findings suggest multiple stages of fluid–rock interaction controlled by temperature: an early phase dominated by epithermal mineralization, followed by late-stage circulation of hypersaline fluids. This evolution provides an abnormal geochemical signature that is unique in the Aguilas Arc Geothermal System.

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Cite This Study

Real-Fernández et al. (2026) studied this question.

synapsesocial.com/papers/6980fe48c1c9540dea8102cfhttps://doi.org/10.3390/app16031420
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