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Biochronostratigraphy of the western equatorial Atlantic for the last 1.93 Ma
ArticleAbstract: Planktonic foraminifera are an important biochronostratigraphic tool and one of the main proxies usePalabras claves:biostratigraphy, Brazilian equatorial margin, Equatorial western Atlantic, Pará-Maranhão Basin, Planktonic foraminiferaAutores:Catherine A. Rigsby, Chiessi C.M., Dwyer G.S., Ferreira F., Huang E., Kern A.K., Oliveira A.S., Paul A. Baker, Silva C.G., Tian J.Fuentes:scopusA 1.8 million year history of Amazon vegetation
ArticleAbstract: During the Pleistocene, long-term trends in global climate were controlled by orbital cycles leadingPalabras claves:Biodiversity, Glacial-interglacial cycles, Mid-pleistocene transition, palynology, SOUTH AMERICA, vegetationAutores:Akabane T.K., Baker P.A., Catherine A. Rigsby, Chiessi C.M., Cruz F.W., Dwyer G.S., Ferreira F., Ferreira J.Q., Fritz S.C., Kern A.K., Sanders A.O., Silva C.G., Willard D.A.Fuentes:scopusModern and late Pleistocene particulate organic carbon transport by the Amazon River: Insights from long-chain alkyl diols
ArticleAbstract: The relative abundance of the C32 1,15 long-chain alkyl diol (LCD) is an emerging proxy for the inpuPalabras claves:1,13-1,14-and 1,15-diols, Amazon river, Aquatic particulate organic carbon, Biomarkers, BIT index, C 1,15-diol 32, Carbon cycle, Dansgaard-Oeschger interstadials, Floodplain lakes, GDGT, Heinrich stadials, Long chain alkyl diols, Long chain diol index, Marine sediment, Particulate organic carbon transport, Pleistocene, rivers, Suspended sediment, Terrestrial particulate organic carbonAutores:Bertassoli D.J., Chiessi C.M., Häggi C., Hefter J., Mulitza S., Paul A. Baker, Sawakuchi A.O., Schefuß E., Schouten S., Zabel M.Fuentes:scopus