
Geochemical characterization of the largest upland lake of the Brazilian Amazonia: Impact of provenance and processes
2017; Elsevier BV; Volume: 80; Linguagem: Inglês
10.1016/j.jsames.2017.10.016
ISSN1873-0647
AutoresPrafulla Kumar Sahoo, José Tasso Felix Guimarães, Pedro Walfir Martins e Souza Filho, Marcio Sousa da Silva, Wilson R. Nascimento, Michael Powell, Luiza Santos Reis, Luiz Carlos Ruiz Pessenda, Tarcísio Magevski Rodrigues, Delmo Fonseca da Silva, Vladimir Eliodoro Costa,
Tópico(s)Heavy metals in environment
ResumoLake Três Irmãs (LTI), the largest upland lake in the Brazilian Amazonia, located in Serra dos Carajás, was characterized using multi-elemental and isotope geochemistry (δ13C and δ15N) to understand the significance of organic and inorganic sources, weathering and sedimentary processes on the distribution of elements in lake bottom (surficial) sediments. Carbon and nitrogen isotopes from sedimentary organic matter suggest C3 terrestrial plants (forests > canga vegetation), macrophytes and freshwater DOC as the main sources. Sediments are depleted in most of the major oxides (except Fe2O3 and P2O5) when compared to upper continental crust (UCC) and their spatial distribution is highly influenced by catchment lithology. Principal Component Analysis revealed that most of the trace elements (Ba, Sr, Rb, Sc, Th, U, Zr, Hf, Nb, Y, V, Cr, Ga, Co, Ni) and REEs are closely correlated with Al and Ti (PC1; Group-1), so their redistribution is less influenced by post-depositional process. This is due to their relative immobility and being hosted by Al-bearing minerals during laterization. High Chemical Index of Alteration (CIA), Mafic Index of Alteration (MIA) and Index of Laterization (IOL) values indicate intense chemical weathering at source areas, but the weathering transformation was better quantified by IOL. A-CN-K plot along with elemental ratios (Al/K, Ti/K, Ti/Zr, La/Al, Cr/Th, Co/Th, La/Sm, La/Gd, Zr/Y, and Eu/Eu*) as well as chondrite-normalized REE patterns show that the detritic sediments are mainly sourced from ferruginous laterites and soils in the catchment, which may have characteristics similar to mafic rocks.
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