Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees

The physicochemical signatures of fluid-rock interaction, recorded in fluid inclusions, represent fundamental proxies for understanding the interplay between rock deformation, fluid migration, and ore deposit formation in the Earth's crust. Although fluid-rock interaction can take place simulta...

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Autores: González-Esvertit, Eloi, Fusswinkel, Tobias, Canals i Sabaté, Àngels, Casas Tuset, Josep Maria, Neilson, J., Wagner, Thomas, Gómez Rivas, Enrique
Formato: artículo
Estado:Versión aceptada para publicación
Fecha de publicación:2025
País:España
Recursos:Varias* (Consorci de Biblioteques Universitáries de Catalunya, Centre de Serveis Científics i Acadèmics de Catalunya)
Repositorio:Recercat. Dipósit de la Recerca de Catalunya
OAI Identifier:oai:recercat.cat:2445/218729
Acesso em linha:https://hdl.handle.net/2445/218729
Access Level:acceso abierto
Palavra-chave:Inclusions fluides
Pirineus
Geoquímica
Fluid inclusions
Pyrenees
Geochemistry
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spelling Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern PyreneesGonzález-Esvertit, EloiFusswinkel, TobiasCanals i Sabaté, ÀngelsCasas Tuset, Josep MariaNeilson, J.Wagner, ThomasGómez Rivas, EnriqueInclusions fluidesPirineusGeoquímicaFluid inclusionsPyreneesGeochemistryThe physicochemical signatures of fluid-rock interaction, recorded in fluid inclusions, represent fundamental proxies for understanding the interplay between rock deformation, fluid migration, and ore deposit formation in the Earth's crust. Although fluid-rock interaction can take place simultaneously or sequentially both in the basement and the cover of collisional orogens, these two scenarios are generally investigated separately, thus precluding an integrated understanding of the processes involved. Here, we present a comprehensive study of the fluid evolution in the basement and cover rocks of the Pyrenees (SW Europe) by means of Geographic Information System (GIS)-assisted petrography, microthermometry, Electron Backscatter Diffraction (EBSD), Raman micro-spectroscopy, and Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS) microanalysis of individual fluid inclusions. The investigated fluids are sampled from giant quartz veins, which are tens of meters wide and up to several kilometres long. Two-phase aqueous fluid inclusions hosted in the basement (Canigó and Cap de Creus massifs) and cover rocks (Roc de Frausa massif) show significant variations regarding their homogenization temperature (T<sub>h</sub>), salinity, and chemical composition. Basement-hosted H<sub>2</sub>O-NaCl-CaCl<sub>2</sub> fluids have T<sub>h</sub> and salinity ranging between 190 and 220 °C and 12–16 wt% equivalent (eq.) NaCl in the Canigó massif, and between 190 and 260 °C and 16–20 wt% eq. NaCl in the Cap de Creus massif. Conversely, T<sub>h</sub> of 180–240 °C and salinity of 4–7 wt% eq. NaCl were obtained for H<sub>2</sub>O-NaCl cover rock-hosted fluids in the Roc de Frausa massif. Fluid salinity, cation concentrations, and halogen ratios suggest that basement-hosted fluids represent residual basinal brines that originated from seawater which underwent variable degrees of evaporation and organic matter interaction. In contrast, cover rock-hosted fluids represent seawater-like precursor fluids that record strong organic matter interaction without significant evaporative halogen fractionation. The data suggest that neither basement- nor cover-hosted fluids were released at depth from magmatic or metamorphic fluids, which agrees with geological constraints of the investigated areas. However, fluids from both basement and cover rocks infiltrated deep into the subsurface, as revealed by their variable metal and halogen concentration suggesting compositionally stratified fluid compositions at depth. Our data and conclusions differ from fluid inclusion studies reported for other giant quartz vein systems worldwide, suggesting that different fluid origins and evolution histories may drive the formation of these large quartz accumulations. Moreover, the large variations of the Br/Cl, I/Cl, and Br/I ratios show that halogen ratios should be used with caution: they are excellent tracers of the fluid evolution history, but may not provide a straightforward fluid origin classification.Elsevier B.V.2025202520252025info:eu-repo/semantics/articleinfo:eu-repo/semantics/acceptedVersion25 p.application/pdfhttps://hdl.handle.net/2445/218729Articles publicats en revistes (Mineralogia, Petrologia i Geologia Aplicada)reponame:Recercat. Dipósit de la Recerca de Catalunyainstname:Varias* (Consorci de Biblioteques Universitáries de Catalunya, Centre de Serveis Científics i Acadèmics de Catalunya)InglésReproducció del document publicat a: https://doi.org/10.1016/j.chemgeo.2024.122578Chemical Geology, 2025, vol. 674, num.122578https://doi.org/10.1016/j.chemgeo.2024.122578cc-by (c) The Authors, 2025http://creativecommons.org/licenses/by/3.0/es/info:eu-repo/semantics/openAccessoai:recercat.cat:2445/2187292026-05-29T05:05:01Z
dc.title.none.fl_str_mv Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
title Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
spellingShingle Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
González-Esvertit, Eloi
Inclusions fluides
Pirineus
Geoquímica
Fluid inclusions
Pyrenees
Geochemistry
title_short Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
title_full Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
title_fullStr Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
title_full_unstemmed Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
title_sort Fluid evolution and halogen fractionation in orogenic belts: A comparative fluid inclusion appraisal in the Eastern Pyrenees
dc.creator.none.fl_str_mv González-Esvertit, Eloi
Fusswinkel, Tobias
Canals i Sabaté, Àngels
Casas Tuset, Josep Maria
Neilson, J.
Wagner, Thomas
Gómez Rivas, Enrique
author González-Esvertit, Eloi
author_facet González-Esvertit, Eloi
Fusswinkel, Tobias
Canals i Sabaté, Àngels
Casas Tuset, Josep Maria
Neilson, J.
Wagner, Thomas
Gómez Rivas, Enrique
author_role author
author2 Fusswinkel, Tobias
Canals i Sabaté, Àngels
Casas Tuset, Josep Maria
Neilson, J.
Wagner, Thomas
Gómez Rivas, Enrique
author2_role author
author
author
author
author
author
dc.subject.none.fl_str_mv Inclusions fluides
Pirineus
Geoquímica
Fluid inclusions
Pyrenees
Geochemistry
topic Inclusions fluides
Pirineus
Geoquímica
Fluid inclusions
Pyrenees
Geochemistry
description The physicochemical signatures of fluid-rock interaction, recorded in fluid inclusions, represent fundamental proxies for understanding the interplay between rock deformation, fluid migration, and ore deposit formation in the Earth's crust. Although fluid-rock interaction can take place simultaneously or sequentially both in the basement and the cover of collisional orogens, these two scenarios are generally investigated separately, thus precluding an integrated understanding of the processes involved. Here, we present a comprehensive study of the fluid evolution in the basement and cover rocks of the Pyrenees (SW Europe) by means of Geographic Information System (GIS)-assisted petrography, microthermometry, Electron Backscatter Diffraction (EBSD), Raman micro-spectroscopy, and Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS) microanalysis of individual fluid inclusions. The investigated fluids are sampled from giant quartz veins, which are tens of meters wide and up to several kilometres long. Two-phase aqueous fluid inclusions hosted in the basement (Canigó and Cap de Creus massifs) and cover rocks (Roc de Frausa massif) show significant variations regarding their homogenization temperature (T<sub>h</sub>), salinity, and chemical composition. Basement-hosted H<sub>2</sub>O-NaCl-CaCl<sub>2</sub> fluids have T<sub>h</sub> and salinity ranging between 190 and 220 °C and 12–16 wt% equivalent (eq.) NaCl in the Canigó massif, and between 190 and 260 °C and 16–20 wt% eq. NaCl in the Cap de Creus massif. Conversely, T<sub>h</sub> of 180–240 °C and salinity of 4–7 wt% eq. NaCl were obtained for H<sub>2</sub>O-NaCl cover rock-hosted fluids in the Roc de Frausa massif. Fluid salinity, cation concentrations, and halogen ratios suggest that basement-hosted fluids represent residual basinal brines that originated from seawater which underwent variable degrees of evaporation and organic matter interaction. In contrast, cover rock-hosted fluids represent seawater-like precursor fluids that record strong organic matter interaction without significant evaporative halogen fractionation. The data suggest that neither basement- nor cover-hosted fluids were released at depth from magmatic or metamorphic fluids, which agrees with geological constraints of the investigated areas. However, fluids from both basement and cover rocks infiltrated deep into the subsurface, as revealed by their variable metal and halogen concentration suggesting compositionally stratified fluid compositions at depth. Our data and conclusions differ from fluid inclusion studies reported for other giant quartz vein systems worldwide, suggesting that different fluid origins and evolution histories may drive the formation of these large quartz accumulations. Moreover, the large variations of the Br/Cl, I/Cl, and Br/I ratios show that halogen ratios should be used with caution: they are excellent tracers of the fluid evolution history, but may not provide a straightforward fluid origin classification.
publishDate 2025
dc.date.none.fl_str_mv 2025
2025
2025
2025
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/acceptedVersion
format article
status_str acceptedVersion
dc.identifier.none.fl_str_mv https://hdl.handle.net/2445/218729
url https://hdl.handle.net/2445/218729
dc.language.none.fl_str_mv Inglés
language_invalid_str_mv Inglés
dc.relation.none.fl_str_mv Reproducció del document publicat a: https://doi.org/10.1016/j.chemgeo.2024.122578
Chemical Geology, 2025, vol. 674, num.122578
https://doi.org/10.1016/j.chemgeo.2024.122578
dc.rights.none.fl_str_mv cc-by (c) The Authors, 2025
http://creativecommons.org/licenses/by/3.0/es/
info:eu-repo/semantics/openAccess
rights_invalid_str_mv cc-by (c) The Authors, 2025
http://creativecommons.org/licenses/by/3.0/es/
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv 25 p.
application/pdf
dc.publisher.none.fl_str_mv Elsevier B.V.
publisher.none.fl_str_mv Elsevier B.V.
dc.source.none.fl_str_mv Articles publicats en revistes (Mineralogia, Petrologia i Geologia Aplicada)
reponame:Recercat. Dipósit de la Recerca de Catalunya
instname:Varias* (Consorci de Biblioteques Universitáries de Catalunya, Centre de Serveis Científics i Acadèmics de Catalunya)
instname_str Varias* (Consorci de Biblioteques Universitáries de Catalunya, Centre de Serveis Científics i Acadèmics de Catalunya)
reponame_str Recercat. Dipósit de la Recerca de Catalunya
collection Recercat. Dipósit de la Recerca de Catalunya
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repository.mail.fl_str_mv
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