Whole-rock and clay mineralogy as paleoenvironmental tracers during the Late Holocene sedimentary evolution of the Doñana National Park (SW Spain)
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L. Cáceres | T. Izquierdo | M. Pozo | F. Ruiz | M. L. González-Regalado | M. Abad | J. M. Muñoz | G. Monge | M. Carretero | J. R. Vidal
[1] S. Miko,et al. Late Pleistocene and Holocene paleoenvironmental reconstruction of a drowned karst isolation basin (Lošinj Channel, NE Adriatic Sea) , 2020 .
[2] L. Schmitt,et al. Holocene Evolution of the Burano Paleo-Lagoon (Southern Tuscany, Italy) , 2020 .
[3] I. Ghandour,et al. Geochemistry and mineralogy of the shallow subsurface Red Sea coastal sediments, Rabigh, Saudi Arabia: provenance and paleoenvironmental implications , 2020 .
[4] R. Bantan,et al. Mineralogical and geochemical composition of the subsurface sediments at the mouth of Wadi Al- Hamd, Red Sea coast, Saudi Arabia: implication for provenance and climate , 2020, Environmental Earth Sciences.
[5] L. Cáceres,et al. Relationship between substrate, physico-chemical parameters and foraminiferal tests in the Doñana National Park, a Biosphere Reserve in SW Spain , 2019, Journal of Iberian Geology.
[6] E. G. Otvos. Cheniers , 2018, Encyclopedia of Earth Sciences Series.
[7] M. Allison,et al. A multi-proxy investigation of late-Holocene temperature change and climate-driven fluctuations in sediment sourcing: Simpson Lagoon, Alaska , 2018 .
[8] L. Clemmensen,et al. Proxy records of Holocene storm events in coastal barrier systems: Storm-wave induced markers , 2017 .
[9] N. Fagel,et al. Reconstructing the Holocene depositional environments along the northern coast of Sfax (Tunisia): Mineralogical and sedimentological approaches , 2017 .
[10] X. Otero,et al. 8000 years of environmental evolution of barrier–lagoon systems emplaced in coastal embayments (NW Iberia) , 2015 .
[11] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[12] C. Zazo,et al. Micromorphology of hydromorphic soils developed in fluvio-marine sediments during the Middle-Late Pleistocene transit in the Gulf of Cadiz (Atlantic South Spain) . , 2014, Spanish Journal of Soil Science.
[13] L. Cáceres,et al. Sedimentological and geomorphological imprints of Holocene tsunamis in southwestern Spain: An approach to establish the recurrence period , 2013 .
[14] A. Soares,et al. Marine Radiocarbon Reservoir Effect in Southern Atlantic Iberian Coast , 2013, Radiocarbon.
[15] N. Simões,et al. Benchmarks and sediment source(s) of the 1755 Lisbon tsunami deposit at Boca do Rio Estuary , 2013 .
[16] J. Borrego,et al. Holocene Filling of an Estuarine Lagoon Along the Mesotidal Coast of Huelva: The Piedras River Mouth, Southwestern Spain , 2012 .
[17] L. Cáceres,et al. Geomarkers of the 218–209 BC Atlantic tsunami in the Roman Lacus Ligustinus (SW Spain): A palaeogeographical approach , 2011 .
[18] P. Sabatier,et al. Clay minerals and geochemistry record from northwest Mediterranean coastal lagoon sequence: Implications for paleostorm reconstruction , 2010 .
[19] C. Goldfinger,et al. Holocene earthquake record offshore Portugal (SW Iberia): testing turbidite paleoseismology in a slow-convergence margin , 2010 .
[20] L. Cáceres,et al. Mineralogical assemblages, geochemistry and fossil associations of Pleistocene–Holocene complex siliciclastic deposits from the Southwestern Doñana National Park (SW Spain): A palaeoenvironmental approach , 2010 .
[21] Patricia Siljeström,et al. Temporay ponds from Donana National Park: a system of natural habitats for the preservation of aquatic flora and fauna , 2010, Limnetica.
[22] Dong Hongmei. CLAY MINERALOGY AND ITS APPLICATION TO PALEOENVIRONMENTAL RECONSTRUCTION , 2009 .
[23] M. Achab,et al. Utility of clay Minerals in the Determination of Sedimentary Transport Patterns in the Bay of Cadiz and the Adjoining Continental Shelf (SW-Spain) , 2008 .
[24] L. Cáceres,et al. The geological record of the oldest historical tsunamis in southwestern Spain , 2008 .
[25] I. Stewart,et al. Tsunami deposits in the geological record , 2007 .
[26] L. Cáceres,et al. Evidence of high-energy events in the geological record: Mid-holocene evolution of the southwestern Doñana National Park (SW Spain) , 2005 .
[27] M. Taviani,et al. Facies and faunal assemblage changes in response to the Holocene transgression in the Lagoon of Mayotte (Comoro Archipelago, SW Indian Ocean) , 2005 .
[28] L. Cáceres,et al. Late Holocene evolution of the southwestern Doñana National Park (Guadalquivir Estuary, SW Spain): a multivariate approach , 2004 .
[29] F. Rocha,et al. Lateglacial and Holocene environmental changes in Portuguese coastal lagoons 1: the sedimentological and geochemical records of the Santo André coastal area , 2003 .
[30] L. Cáceres,et al. The use of clay minerals and microfossils in palaeoenvironmental reconstructions: The Holocene littoral strand of Las Nuevas (Doñana National Park) Sw Spain , 2002, Clay Minerals.
[31] A. Dawson,et al. Tsunami Deposits , 2000 .
[32] J. Gutiérrez-Mas,et al. Clay minerals in recent sediments of the continental shelf and the Bay of Cádiz (SW Spain) , 1997, Clay Minerals.
[33] A. L. Galindo,et al. Clay minerals in recent sediments of the continental shelf and the Bay of Cadiz (SW Spain) , 1997 .
[34] Hong Wang,et al. Chronology of Holocene Cheniers and Oyster Reefs on the Coast of Bohai Bay, China , 1997, Quaternary Research.
[35] F. L. Aguayo,et al. Las facies detríticas de la plataforma continental de Cádiz (tramo Chipiona-Trafalgar) en relación con la evolución de la dinámica sedimentaria reciente , 1995 .
[36] E. Galán,et al. Contribución de la mineralogía de arcillas a la interpretación de la evolución paleogeografica del sector occidental de la Cuenca del Guadalquivir , 1993 .
[37] M. Garrido,et al. The alluvial plain sedimentary features of the Guadalquivir river at The Cartuja of Seville Monastery area , 1993 .
[38] M. Henriques. Morphological Evolution of the Obidos Lagoon , 1992 .
[39] C. Zazo,et al. Caracterización mineralógica y cronológica de los depósitos arenosos neógenos y cuaternarios del litoral de Huelva. España. (Área: Río Timo-Río Guadalquivir) , 1990 .
[40] Robert C. Reynolds,et al. X-Ray Diffraction and the Identification and Analysis of Clay Minerals , 1989 .
[41] F. Chung,et al. Quantitative interpretation of X-ray diffraction patterns of mixtures. I. Matrix-flushing method for quantitative multicomponent analysis , 1974 .
[42] F. Mélières. Les minéraux argileux de l'estuaire du Guadalquivir (Espagne) , 1973 .
[43] W. D. Keller. Environmental aspects of clay minerals , 1970 .
[44] T. B. Nolan,et al. Quantitative interpretation of mineralogical composition from X-ray and chemical data for the Pierre Shale , 1964 .