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Borruel-Abadía, Violeta, Barrenechea, José F., Galán-Abellán, Ana Belén, Alonso-Azcárate, Jacinto, De la Horra, Raúl, Luque, Francisco Javier, López-Gómez, José (2016) Quantifying aluminium phosphate–sulphate minerals as markers of acidic conditions during the Permian–Triassic transition in the Iberian Ranges, E Spain. Chemical Geology, 429. 10-20 doi:10.1016/j.chemgeo.2016.03.007

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Reference TypeJournal (article/letter/editorial)
TitleQuantifying aluminium phosphate–sulphate minerals as markers of acidic conditions during the Permian–Triassic transition in the Iberian Ranges, E Spain
JournalChemical Geology
AuthorsBorruel-Abadía, VioletaAuthor
Barrenechea, José F.Author
Galán-Abellán, Ana BelénAuthor
Alonso-Azcárate, JacintoAuthor
De la Horra, RaúlAuthor
Luque, Francisco JavierAuthor
López-Gómez, JoséAuthor
Year2016 (July)Volume429
Page(s)10-20
PublisherElsevier BV
DOIdoi:10.1016/j.chemgeo.2016.03.007Search in ResearchGate
Mindat Ref. ID298741Long-form Identifiermindat:1:5:298741:9
GUIDdc4ecd2b-b4d6-4883-bb7a-2110e4d86862
Full ReferenceBorruel-Abadía, Violeta, Barrenechea, José F., Galán-Abellán, Ana Belén, Alonso-Azcárate, Jacinto, De la Horra, Raúl, Luque, Francisco Javier, López-Gómez, José (2016) Quantifying aluminium phosphate–sulphate minerals as markers of acidic conditions during the Permian–Triassic transition in the Iberian Ranges, E Spain. Chemical Geology, 429. 10-20 doi:10.1016/j.chemgeo.2016.03.007
Plain TextBorruel-Abadía, Violeta, Barrenechea, José F., Galán-Abellán, Ana Belén, Alonso-Azcárate, Jacinto, De la Horra, Raúl, Luque, Francisco Javier, López-Gómez, José (2016) Quantifying aluminium phosphate–sulphate minerals as markers of acidic conditions during the Permian–Triassic transition in the Iberian Ranges, E Spain. Chemical Geology, 429. 10-20 doi:10.1016/j.chemgeo.2016.03.007
In(2016) Chemical Geology Vol. 429. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Arche (1999) Subsidence rates and fluvial architecture of rift-related Permian and Triassic alluvial sediments of the southeast Iberian Ranges, eastern Spain , 283
Benton (2003)
Bèthoux (2009) J. Iber. Geol. A new triadotypomorphan insect from the Anisian (Middle Triassic), Buntsandstein facies, Spain 35, 179
Bourquin (2007) J. Iber. Geol. The Permian–Triassic boundary and the early Triassic sedimentation in the western peritethys basins 33, 221
Capote (1983) La estructura herciniana de los afloramientos paleozoicos de la Cordillera Ibérica 1, 513
Erwin (2002) End-Permian mass extinctions: a review , 363
Galán-Abellán, A.B., 2011. Sedimentary, mineralogical and geochemical variations in the Buntsandstein facies, Lower–Middle Triassic, of the Iberian Ranges and Catalan Coastal Ranges: implications in the recovery of the Permian–Triassic crisis. Ph.D Thesis. Universidad Complutense, Madrid. 383 p. Unpublished.
Kozur (2011) Bulletin Additions to the uppermost Alaunian through Rhaetian (Triassic) conchostracan zonation of North America: New Mexico Museum of Natural History and Science 53, 295
López-Gómez (1993) Architecture of the Cañizar Fluvial Sheet Sandstones, Early Triassic, Iberian Ranges, Eastern Spain 17, 363
López-Gómez (1998) Zbl. Geol. Paläontol. Epicontinental marine carbonate sediments of the Middle and Upper Triassic in the westernmost part of the Tethys Sea Iberian Peninsula 9–10, 1033
Novak (1997) Bull. Czech Geol. Surv. Minerals of goyazite–svanbergite series and kemmlitzite from pyrope deposit Vestrev near Hostinne, Northern Bohemia 72, 373
Smith (2005) C. R. Palevol The recovery of terrestrial vertebrate diversity in the South African Karoo Basin after the end-Permian extinction 4, 555
Soria (2011) Terra Nova An Early Triassic evolving erg system (Iberian Chain, NE Spain): paleoclimate implications 23, 76
Stoffregen (1987) Can. Mineral. Woodhouseite and svanbergite in hydrothermal ore deposits: products of apatite destruction during advanced argillic alteration 25, 201
Wignall (2002) Extent, duration and nature of the Permian–Triassic superanoxic event , 395
Woods (2005) C. R. Palevol Paleoceanographic and paleoclimatic context of Early Triassic time 4, 395


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