General Information

Structure type
Deformed/Undeformed
Geological Setting ,
Outcropping/buried
Evaporite unit/s name ,
Evaporite unit/s age
Evaporite unit/s origin
Classif. (Hudec and Jackson, 2009)
Classif. (Jackson and Talbot, 1986)
Age of evaporite flow or deformation (when deformed)
Other comments -

Location

Location

Map (detail)

Location
Location

Geological map

Location

Cross section

Location

Structure type (Hudec and Jackson, 2009)

Location

Regional Stratigraphy

Location

Other maps 1

Location

Other maps 2

Generic Data

Unique ID 83
Name Peñaroya-Cabigordo
Structure type Evaporite body
Deformed/Undeformed Undeformed
Buried/Outcropping Outcropping
Geological setting Iberian Range
Geological Regional Setting Teruel-Jiloca Graben
Evaporite unit/s name Middle Muschelkalk and Keuper Facies
Evaporite unit/s age Upper Anisian and Carnian-Rhaetian (Middle-Upper Triassic)
Evaporite unit/s era Mesozoic
Evaporite unit/s origin Marine
Evaporite unit/s composition Shale-Gypsum-Anhydrite-Ophites
Post-kinematic unit/s (or post-evaporite units when evaporites are undeformed) Jurassic (limestones, dolostones and marlstones) ; Lower Cretaceous (limestones) ; Paleogene (n.a.) ; Quaternary (alluvial and colluvial detrital deposits)
Post-kinematic unit/s age (or post-evaporite units when evaporites are undeformed) Jurassic-Lower Cretaceous, Paleogene and Holocene
Classification (Hudec and Jackson, 2009) No diapirism
Classification (Jackson and Talbot, 1986) No diapirism
Mining activity? N
Mining activity start
Mining activity end
Mining galleries?
Mining products
Mining sub-products
Evaporite flow? N
Age of evaporite flow
Flow or deformation triggering mechanisms
Flow-linked structures?
Halokinetic structures
Post-evaporite and pre-kinematic unit/s (overbuden)
Syn-kinematic unit/s
Available seismic profiles ILIHA C-F
Available boreholes
Additional comments

Mining Data

UNIQUE_ID 83
Minning exploitations within <2km? N
Historical/Active
Exploitation name #1
Exploitation ID (Spanish National Mining Cadastre) #1
Municipality #1
Province #1
Company #1
Main minning Products #1
Exploitation name #2
Exploitation ID (Spanish National Mining Cadastre) #2
Municipality #2
Province #2
Company #2
Main minning Products #2
Exploitation name #3
Exploitation ID (Spanish National Mining Cadastre) #3
Municipality #3
Province #3
Company #3
Main minning Products #3

Quantitative Data

UNIQUE_ID 83
Outcropping area (km2) 25.41353
Horizontal intersection area (km2) (when buried) Not buried
Depth of intersection area (km2) (when buried) Not buried
Max. Width (Km) 14.1556739
Max. Length (Km) 4.36455549
Max. Evaporites thickness (km) 0.6
Max. Deformation age (Ma)
Min. Deformation age (Ma)
Deformation stages 0

Reference Data

UNIQUE_ID 83
Section source Ezquerro, L., Simón, J. L., Luzón, A., Liesa, C. L., 2020. Segmentation and increasing activity in the Neogene-Quaternary Teruel Basin rift (Spain) revealed by morphotectonic approach. Journal of Structural Geology, 104043. [link]
Well / Borehole availability #1 n.a.
Well / Borehole availability #2 n.a.
Available data (Stratigraphy) #1 Ezquerro L., 2017. El sector norte de la cuenca neógena de Teruel: tectónica, clima y sedimentación [Ph.D. thesis]: University of Zaragoza, 496p. [link]
Available data (Stratigraphy) #2 Ezquerro, L., Luzón, A., Simón, J. L., Liesa, C. L., 2019. Alluvial sedimentation and tectono-stratigraphic evolution in a narrow extensional zigzag basin margin (northern Teruel Basin, Spain). Journal of Palaeogeography, 8(1), 1-25. [link]
Available data (Stratigraphy) #3 Ezquerro, L., Simón, J. L., Luzón, A., Liesa, C. L., 2020. Segmentation and increasing activity in the Neogene-Quaternary Teruel Basin rift (Spain) revealed by morphotectonic approach. Journal of Structural Geology, 104043. [link]
Available data (Stratigraphy) #4 Liesa, C. L., Soria, A. R., Casas, A., Aurell, M., Meléndez, N., Bádenas, B., …, Rodríguez-López, J. P., 2019. The South-Iberian, Central Iberian and Maestrazgo Basins. The Geology of Iberia: a Geodynamic Approach, 3, 214-228. [link]
Available data (Stratigraphy) #5 n.a.
Available data (Stratigraphy) #6 n.a.
Regional Stratigraphy Ezquerro, L., Lafuente, P., Pesquero, M. D., Alcalá, L., Arlegui, L., Liesa, C., Luque, L., Rodriguez-Pascua, M., Simón, J.L., 2012. Una cubeta endorreica residual Plio-Pleistocena en la zona de relevo entre las fallas de Concud y Teruel: implicaciones paleogeográficas. Revista de la Sociedad Geológica de España, 25, 157-175. [link]
Seismic data availability #1 Diaz, J., Gallart Muset, J., Córdoba, D., Senos, L., Matias, L., Suriñach, E., …, Maguire, P., 2020. The ILIHA deep seismic sounding experiment (Iberian LIthosphere Heterogeneity and Anisotropy). DigitalCSIC – SEISDARE data repository. [link]
Seismic data availability #2 n.a.
Seismic data availability #3 n.a.
Available data (Structure) #1 Ezquerro, L., Simón, J. L., Luzón, A., Liesa, C. L., 2020. Segmentation and increasing activity in the Neogene-Quaternary Teruel Basin rift (Spain) revealed by morphotectonic approach. Journal of Structural Geology, 104043. [link]
Available data (Structure) #2 Liesa, C. L., 2011. Fracturación extensional cretácica en la sierra del Pobo (Cordillera Ibérica, España). Revista de la Sociedad Geológica de España, 24, 23-40. [link]
Available data (Structure) #3 Liesa, C. L., 2011. Evolución de campos de esfuerzos en la Sierra del Pobo (Cordillera Ibérica, España). Revista de la Sociedad Geológica de España, 24, 49-68. [link]
Available data (Structure) #4 Liesa, C. L., Simón, J. L., Ezquerro, L., Arlegui, L. E., Luzón, A., 2019. Stress evolution and structural inheritance controlling an intracontinental extensional basin: The central-northern sector of the Neogene Teruel Basin. Journal of Structural Geology, 118, 362-376. [link]
Available data (Structure) #5 Liesa, C. L., Soria, A. R., Casas, A., Aurell, M., Meléndez, N., Bádenas, B., …, Rodríguez-López, J. P., 2019. The South-Iberian, Central Iberian and Maestrazgo Basins. The Geology of Iberia: a Geodynamic Approach, 3, 214-228. [link]
Available data (Structure) #6 n.a.
Available data (Analogue modelling) #1 n.a.
Available data (Analogue modelling) #2 n.a.
Available data (Analogue modelling) #3 n.a.
Available data (Gravimetry – Tomography) #1 Ayala, C., Bohoyo, F., Maestro, A., Reguera, M. I., Torne, M., Rubio, F., Fernández, M., García-Lobón, J. L., 2016. Updated Bouguer anomalies of the Iberian Peninsula: a new perspective to interpret the regional geology. Journal of Maps, 12(5), 1089-1092. [link]
Available data (Gravimetry – Tomography) #2 n.a.
Available data (Gravimetry – Tomography) #3 n.a.
Available data (Geochemistry) #1 Ortí, F., García-Veigas, J., Rossell, L., Jurado, M. J., Utrilla, R., 1996. Formaciones salinas de las cuencas triásicas en la Península Ibérica: Caracterización Petrológica y Geoquímica. Cuadernos de Geología Ibérica, 20, 13-35. [link]
Available data (Geochemistry) #2 n.a.
Available data (Geochemistry) #3 n.a.
Available data (Geochemistry) #4 n.a.
Available data (Petrophysics) #1 Ezquerro, L., Moretti, M., Liesa, C. L., Luzón, A., Pueyo, E. L., Simón, J. L., 2016. Controls on space–time distribution of soft-sediment deformation structures: applying palaeomagnetic dating to approach the apparent recurrence period of paleoseisms at the Concud Fault (eastern Spain). Sedimentary Geology, 344, 91-111. [link]
Available data (Petrophysics) #2 n.a.
IGME Geological Map (MAGNA50) Sheet number 567-Teruel. [link]
Other Maps #1 (source) Ezquerro, L., Luzón, A., Simón, J. L., Liesa, C. L., 2019. Alluvial sedimentation and tectono-stratigraphic evolution in a narrow extensional zigzag basin margin (northern Teruel Basin, Spain). Journal of Palaeogeography, 8(1), 1-25. [link]
Other Maps #2 (source) Gracia, A. C., Sainz, A. C., 2000. ¿ Tiene el sistema de fosas de Teruel origen extensional?. Revista de la Sociedad Geológica de España, 13(3–4), 445-470. [link]
Other related references #1 Lago, M., Dumitrescu, R., Bastida, J., Arranz, E., Gil-Imaz, A., Pocovi, A., …, Vaquer, R., 1996. Características de los magmatismos alcalino y subalcalino, pre-Hettangiense, del borde SE de la Cordillera Ibérica. Cuadernos de Geología Ibérica, 20, 159-181. [link]
Other related references #2 Guitérrez, F., Ortí, F., Gutiérrez, M., Pérez-González, A., Benito, G., Gracia, F. J., Durán, J. J., 2002. Paleosubsidence and active subsidence due to evaporite dissolution in Spain. Carbonates and Evaporites, 17(2), 121. [link]
Other related references #3 Rodríguez-López, J. P., Melendez, N., De Boer, P. L., Soria, A. R., 2012. Controls on marine–erg margin cycle variability: aeolian–marine interaction in the mid‐Cretaceous Iberian Desert System, Spain. Sedimentology, 59(2), 466-501. [link]
Other related references #4 n.a.