Use este identificador para citar ou linkar para este item: http://repositorio.ufc.br/handle/riufc/72010
Tipo: Artigo de Periódico
Título: Quaternary sealevel changes and coastal evolution of the Island of Trindade, Brazil
Autor(es): Ângulo, Rodolfo José
Souza, Maria Cristina de
Barboza, Eduardo Guimarães
Rosa, Maria Luiza Correa da Camara
Fernandes, Luiz Alberto
Guedes, Carlos Conforti Ferreira
Oliveira, Luiz Henrique Sielski de
Manzolli, Rogério Portantiolo
Disaró, Sibelle Trevisan
Ferreira, Antonio Geraldo
Martin, Caroline Maria
Palavras-chave: Coastal deposits;Beachrock;South America;Costa - Depósitos;Praia - Pedra;América do Sul
Data do documento: 2018
Instituição/Editor/Publicador: Journal of South American Earth Sciences
Citação: ÂNGULO, Rodolfo José; SOUZA, Maria Cristina de; BARBOZA, Eduardo Guimarães; CAMARA, Maria Luiza Correa da; FERNANDES, Rosa Luiz Alberto; GUEDES, Fernandes Carlos Conforti Ferreira; OLIVEIRA, Luiz Henrique Sielski de; MANZOLLI, Rogério Portantiolo; DISARÓ, Sibelle Trevisan; FERREIRA, Antonio Geraldo; MARTIN, Caroline Maria. Quaternary sealevel changes and coastal evolution of the Island of Trindade, Brazil. Journal of South American Earth Sciences, United Kingdom, v. 84, p: 208–222, 2018. Disponível em: https://doi.org/10.1016/j.jsames.2018.04.003. Acesso em: 3 maio 2023.
Abstract: The present work presented the first dated paleosealevel indicators and new paleogeographic reconstructions of the Island of Trindade. All evidence for Holocene sealevels point to the elevations higher than the present in the age interval between 5.06 ka and 0.55 ka. The altitude and ages of the reconstructions are in good agreement with hindcast model curves and the empirical sealevel envelope for the mainland eastern and northeastern Brazilian coast. However, the position of paleo vermetid-reef indicates that sealevel was lower than eustatic elevation, suggesting an effect of island subsidence. In contrast to the Brazilian mainland coastal zone, where conspicuous evidences of Pleistocene highstands were recorded, no evidence of sealevels predating the Holocene has ever been observed on the island. This could be attributed to intense coastal erosion and log-term island subsidence. A volcanic edifice rising more than 5500 m above the ocean floor was built by magmatic activity that extended over the late Pliocene and early Pleistocene. After the cessation of volcanic build up, the island started to shrink due to subaerial and marine erosion. During Pleistocene sealevel lowstands, alluvial fans were formed beyond the present limits of emerged areas. They were enclosed within and preserved from erosion by the Middle to Late Pleistocene lava flows and pyroclastic deposits. During Late Pleistocene sealevel highstand, intense coastal erosion removed the distal parts of the alluvial fans. It is very likely that at that time the entire coast of the island experienced intense erosion and subsidence as deduced from the absence of Pleistocene coastal deposits, which are widespread along mainland Brazilian coast. The east coast of the island was dominated by high sea cliffs sculpted into volcanic rocks. A volcanic cone was subsequently formed, when the sealevel was lower than present during the Late Pleistocene to early Holocene. During the mid to late Holocene sealevel highstand the volcanic cone was partially eroded and a bay formed, where vermetid-reefs grow and sand beach deposits prograded until the bay was infilled. During the sealevel maximum, wave-cut terraces were formed and sea cliffs were active. During the lowering of the sealevel, cliffs became inactive and vermetid-reefs were eroded. Beach erosion and aeolian deflation presently prevails, indicating a low sediment supply.
URI: http://www.repositorio.ufc.br/handle/riufc/72010
ISSN: 0895-9811
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