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    المساهمون: Laboratoire des Sciences du Climat et de l'Environnement Gif-sur-Yvette (LSCE), Université de Versailles Saint-Quentin-en-Yvelines (UVSQ)-Institut national des sciences de l'Univers (INSU - CNRS)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS)-Direction de Recherche Fondamentale (CEA) (DRF (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)

    المصدر: ISSN: 2052-4463.

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    المصدر: Ocean and Coastal Research; Vol. 71 No. Suppl. 3 (2023): Ocean and Coastal Research: Subsidies for ecosystem-based management in an offshore oil and gas exploration area, Santos Basin, Brazil (Special Article Collection) ; Ocean and Coastal Research; v. 71 n. Suppl. 3 (2023): Ocean and Coastal Research: Subsidies for ecosystem-based management in an offshore oil and gas exploration area, Santos Basin, Brazil (Special Article Collection) ; 2675-2824

    مصطلحات موضوعية: Pelagic-benthic coupling

    وصف الملف: application/pdf

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    المساهمون: Fundação Carlos Chagas Filho de Amparo à Pesquisa do Estado do Rio de Janeiro, Conselho Nacional de Desenvolvimento Científico e Tecnológico of Brazil, CnPQ, Fundação de Amparo à Pesquisa do Estado do Rio de Janeiro - FAPERJ, Universidade de Aveiro

    المصدر: Journal of Sedimentary Environments ; volume 9, issue 2, page 337-360 ; ISSN 2662-5571 2447-9462

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    المساهمون: FAPERJ, CNPq

    المصدر: Brazilian Journal of Physical Geography; v. 15, n. 4 (2022): Revista Brasileira de Geografia Física; 1994-2024 ; Revista Brasileira de Geografia Física; v. 15, n. 4 (2022): Revista Brasileira de Geografia Física; 1994-2024 ; 1984-2295

    جغرافية الموضوع: Sudeste do Brasil, Sedimentos

    Time: Sedimentos

    وصف الملف: application/pdf

    Relation: https://periodicos.ufpe.br/revistas/rbgfe/article/view/252955/41455; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/252955/41106; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/252955/41107; Alves Martins, M.V., Hohenegger, J., Martínez-Colón, M., Frontalini, F., Bergamashi, S., Laut, L., Belart, P., Mahiques, M., Pereira, E., Rene Rodrigues, R., Terroso, D., Miranda, P., Geraldes, M.C., Villena, H.H., Reis, T., Socorro, O.A.A., Sousa, S.H.M., Yamashita, C., Rocha, F., 2020. Ecological quality status of the NE sector of the Guanabara Bay (Brazil): a case of living benthic foraminiferal resilience. Marine Pollution Bulletin, 158, 111-449. https://doi.org/10.1016/j.marpolbul.2020.111449 Amin, S.A., Almahasheer, H., 2022. Pollution indices of heavy metals in the Western Arabian Gulf coastal area. The Egyptian Journal of Aquatic Research 48 (1), 21-27. https://doi.org/10.1016/j.ejar.2021.10.002 Ballut-Dajud, G.A.; Sandoval Herazo, L.C.; Fernández-Lambert, G.; Marín-Muñiz, J.L.; López Méndez, M.C.; Betanzo-Torres, E.A., 2022. Factors Affecting Wetland Loss: A Review. Land, 11, 434. https://doi.org/10.3390/land11030434 Baptista Filho, L.S., Baptista Neto J.A, Martins, M.V.A., Geraldes, M.C. 2020 O histórico das intervenções humanas na Baía de Guanabara (Brasil) e o registro do Antropoceno em quatro periodos sedimentares Journal of Human and Environment of Tropical Bays. 1: 46-80. 2020 doi:10.12957/jheotb.2020.49099 Baptista Filho, L.S., Baptista Neto J.A, Martins, M.V.A., Geraldes, M.C., 2019. Sources of pollutants in the Northern/Northeast area of Guanabara Bay (SE, Brazil) since the Late nineteenth century using Lead isotopies and metal concentrations. Journal of Sedimentary Environment 4 (3): 332-349. doi:10.12957/jse.2019.45786 Bezerra, K. M., Silva, G. R. Da, & Oliveira, H. R. de. (2020). Avaliação de metais potencialmente tóxicos (Cd, Cu, Co, Pb, Ni), no chorume produzido pelo lixão de Coxim-MS, Brasil. Revista Bases de La Ciencia, 5(1), 1–14. Cardoso, A.G.A., Boaventura, G.R., Silva Filho, E.V., Brod, J.A., 2001. Metal distribution in sediments from the Ribeira Bay, Rio de Janeiro, Brazil. Brazilian Chemical Society 12 (6), 767–774. Castelo W.F.L., Martins M.V.A., Martínez-Colón M., Guerra J.V., Dadalto T.P., Terroso D., Soares M.F., Frontalini F., Duleba W., Socorro O.A.A., Geraldes M.C., Rocha F., Bergamaschi S. 2021a Disentangling natural vs. anthropogenic induced environmental variability during the Holocene: Marambaia Cove, SW sector of the Sepetiba Bay (SE Brazil). Environ Sci Pollut Res Int. 2021 Jan 9. doi:10.1007/s11356-020-12179-9. Epub ahead of print. PMID: 33420935. https://doi.org/10.1007/s11356-020-12179-9 Castelo, W.F.L., Martins, M.V.A., Lima Ferreira, P.A., Figueira, R.C.,Geraldes, M.C. 2021b Long-term eutrophication and contamination of the central area of Sepetiba Bay (SW Brazil). Environmental Monitoring and Assessment 193 (2), 1-27. https://doi.org/10.1007/s10661-021-08861-1 Chester, R. & Jickells, T. D., 2012. Marine Geochemistry – 3rd ed. Wiley-Blackwell. 438p. Cunha, B., Machado, W., Marra, A., Araújo, D., Garnier, J., Martins, A., Saliba, B., Geraldes, M. C., 2018. Lead source assessment by isotopic and elementar composition in the transition from pristine to polluted condition of coastal sediments. Journal of Sedimentary Environments 3 (1): 46-53 January/March, 2018. Dias, P.P.B.B., Martins, M.V.A., Clemente, I.M.M.M., Carelli, T.G., Silva, F.S., Fontana, L.F., Lorini, M.L., Panigai, G., Pinheiro, R.H., Mendonça-Filho, J.G. & Laut, L.L.M. 2017, ‘Assessment of the Trophic State of Saquarema Lagoonal System, Rio de Janeiro (Brazil)’, Journal of Sedimentary Environments, vol. 02, no. 01, pp. 49-64. https://doi. org/10.12957/jse.2017.28194 Diretoria de Hidrografia e Navegação 2016, Tábuas de marés, Marinha do Brasil, visto em 07 Outubro de 2016, . Duleba, W., Teodoro A.C., Debenay, J.P., Martins M.V.A., Gubitoso, S., Pregnolato, L.A., Lerena, L.M., Prada, S.M. & Bevilacqua, J.E. 2018, ‘Environmental impact of the largest petroleum terminal in SE Brazil: A multiproxy analysis based on sediment geochemistry and living benthic foraminífera’, Plos One, vol. 13, no. 02, pp. e0191446. https://doi.org/10.1371/journal.pone.0191446 Eletronuclear. Disponível em: http://www.eletronuclear.gov.br/Sociedade-e-Meio-Ambiente/Paginas/Programa-de-medida-de-temperatura-da-agua-do-mar.aspx Acesso em: Junho 2019. Fernandes, M., Fonseca, E. M. da, Lima, L. da S., Sichel, S. E., Delgado, J. de F., Correa, T. R., Aguiar, V. M. de C., & Baptista Neto, J. A. (2020). Assessment of trace metal contamination and bioavailability in an Environmental Protection Area: Guaxindiba estuarine system (Guanabara Bay, Rio de Janeiro Brazil). Regional Studies in Marine Science, 35, 101143. https://doi.org/10.1016/j.rsma.2020.101143 Fortescue, J.A.C., Environmental Geochemistry: A holistic approach. New York: Springer. (Ecological Studies v.35). 1980. 377p. Freret-Meurer, N.V., Andreata, J.V., Meurer, B.C., Manzano, F.V., Baptista, M.G.S., Teixeira, D.E., Longo, M.M., 2010. Spatial distribution of metals in sediments of the Ribeira Bay, Angra dos Reis, Rio de Janeiro, Brazil. Marine Pollution Bulletin. v. 60. 2010. pp. 677-629. Han, X.; Wang, J.; Cai, W.; Xu, X.; Sun, M. 2021. The Pollution Status of Heavy Metals in the Surface Seawater and Sediments of the Tianjin Coastal Area, North China. Int. J. Environ. Res. Public Health, 18, 11243. https://doi.org/10.3390/ijerph182111243 IBGE – Instituto Brasileiro de Geografia e Estatística. Disponível em: https://cidades.ibge.gov.br/brasil/rj/angra-dos-reis/panorama Acesso em: Abril de 2019. Kjerfve, B., Dias, G.T.M., Filippo, A., Geraldes, M.C. 2021 Oceanographic and environmental characteristics of a coupled coastal bay system: Baía de Ilha Grande-Baía de Sepetiba, Rio de Janeiro, Brazil. Regional Studies in Marine Science (41):101594. Disponível em: https://doi.org/10.1016/j.rsma.2020.101594 Lacerda, L. D., Pfeiffer, W. C., Fiszman, M., 1987. Heavy metal distribution, availability and fate in Sepetiba bay, S.E. Brazil. The Science of the Total Environment, v. 65. 1987. pp. 163-173 Laut, L.L.M., Martins, V., da Silva, F.S., Crapez, M.A.C.; Fontana, L.F., Carvalhal-Gomes, S.B.V. & Souza, R.C.C.L. 2016, ‘Foraminifera, thecamoebians, and bacterial activity in polluted intertropical and subtropical Brazilian estuarine systems’. Journal of Coastal Research, vol. 32, no. 01, pp. 56-69. https://doi.org/10.2112/JCOASTRES-D-14-00042.1 Makri, S., Wienhues, G., Bigalke, M., Gilli, A., Rey, F., Tinner, W., Vogel, H., Grosjean, M. 2021. Variations of sedimentary Fe and Mn fractions under changing lake mixing regimes, oxygenation and land surface processes during Late-glacial and Holocene times. Science of the Total Environment 755 (143418). https://doi.org/10.1016/j.scitotenv.2020.143418 Martins, M.V.A. Pereira, E., Figueira, R.C., Lopes, O.T., Simon, A.F.S.P., Terroso, D., Ramalho, J.C.M., Silva, L., Ferreira, C., Geraldes, M.C, , Duleba, W., Rocha, F. Rodrigues, M.A. 2019. Impact of eutrophication on benthic foraminifera in Sepetiba Bay (Rio de Janeiro State, SE Brazil). Journal of Sedimentary Environments 4 (4): 480-500. doi:10.12957/jse.2019.47327. Martins, M.V.A., Hohenegger, J., Martínez-Colón, M., Frontalinie, F., Bergamashi, S., Lautf, L., Belart, P. Mahiques, M., Pereira, E., Rodrigues, R., Terroso, D., Miranda, P., Geraldes, M.C., Villena, H.H., Reis, T., Socorro, O.A.A., Mello e Sousa, S.H., Yamashita, C., Rocha, F. 2020b. Ecological quality status of the NE sector of the Guanabara Bay (Brazil): A case of living benthic foraminiferal resilience. Marine Pollution Bulletin. Volume 158, September 2020, doi.org/10.1016/j.marpolbul.2020.111449 Martins, M.V.A., Pinto, A.F.S., Borghi, L., Carelli, T.G., Morlote, M., Rey, D., Pereira, E. 2020a. Influence of the Holocene relative sea level on the coastal plain of Sepetiba Bay (Southeast Brazil). Journal of Sedimentary Environments, 1-25 Melo, G. V., Baptista Neto, J. A., Malm, O., Fernandez, M. A. S., Patchineelam, S. M., 2015. Composition and behaviour of heavy metals in suspended sediments in a tropical estuarine system. Environmental Earth Sciences (2015), 73:1331-1344. Morales, S.J.D., Guerra, J.V., Nunes, M.A.S., Geraldes, M.C. 2019a. Evaluation of the environmental state of the west sector of Sepetiba Bay (SE Brazil): Trace metal contamination. Journal of Sedimentary Environments 4 (2): 174-188. Morales, S.J.D., Guerra, J.V., Nunes, M.A.S., Martins, M.V.A., SOUZA, A.M., Geraldes, M.C. 2019b. Anthropogenic impacts on the western sector of Sepetiba Bay (SE Brazil) assessed by the Pb isotopic composition of surface sediments. Journal of Sedimentary Environments 4 (3): 291-311. doi:10.12957/jse.2019.45269. Nascimento, D.N., Salomão, M.S., Mane, M.A., Geraldes, M.C, Martins, M.V.A., Marine transgression records in the Sepetiba Bay region (RJ-Brazil) by GPR and Ground magnetic survey. Journal of Sedimentary Environments 4 (4): 518-539. doi:10.12957/jse.2019.47382. Newton A, Icely J, Cristina S, Perillo GME, Turner RE, Ashan D, Cragg S, Luo Y, Tu C, Li Y, Zhang H, Ramesh R, Forbes DL, Solidoro C, Béjaoui B, Gao S, Pastres R, Kelsey H, Taillie D, Nhan N, Brito AC, de Lima R and Kuenzer C., 2020. Anthropogenic, Direct Pressures on Coastal Wetlands. Front. Ecol. Evol. 8:144. doi:10.3389/fevo.2020.00144 Perin, G. Fabris, R. Manente, S. Rebello Wagener, A. Hamacher, C. Scotto, S. A five-year study on the heavy-metal pollution of Guanabara Bay sediments (Rio de Janeiro, Brazil) and evaluation of the metal bioavailability by means of geochemical speciation. Water Research. v. 31, n. 12, 1997. pp. 3017-3028. Pinto, A.F.S., Ramalho, J.C.M., Borghi, L., Carelli, T.G., Plantz, J.B., Pereira, E., Terroso, D., Santos, W.H., Geraldes, M.C., Rocha, F., Rodrigues, M.A.C., Laut, L., Martins, M.V.A., 2019. Background concentrations of chemical elements in Sepetiba Bay (SE Brazil). Journal of Sedimentary Environments, 4 (1): 108-123. Pinto, F.N., Massone, C.G., Senez-Mello, T., Sobrinho da Silva, F., Crapez, M.A.C., 2022. Interferência da ocupação urbana na distribuição de poluentes orgânicos persistentes em manguezal. Eng Sanit Ambient, 27 (2), 395-402. https://doi.org/10.1590/S1413-415220210116 Potratz G.L., Almeida, F.S.S., Castro, J.W.A., Martins, M.V.A, Geraldes, M.C. 2019. Evolution and paleoenvironment reconstruction of the southern zone of the Rio de Janeiro city (SE Brazil). Journal of Sedimentary Environments: 4 (2): 189-198. doi:10.12957/jse.2019.43766 Potratz G.L., Geraldes, M.C., Bizzi, S,, Nogueira, L. Martins, M.V.A. 2019. Using lead isotopes and potentially toxic elements to trace pollutant sources in the northern region of Guanabara Bay, southeastern Brazil. Marine Pollution Bulletin. Volume 144, July 2019, Pages 216-223. Rocha, F., Bergamaschi, S. 2021 Disentangling natural vs. anthropogenic induced environmental variability during the Holocene: Marambaia Cove, SW sector of the Sepetiba Bay (SE Brazil). Environ Sci Pollut Res Int. 2021 Jan 9. doi:10.1007/s11356-020-12179-9. Epub ahead of print. PMID: 33420935. https://doi.org/10.1007/s11356-020-12179-9 Rodrigues S.K, Machado W., Guerra J.V., Geraldes M.C., Morales S,, Vinzón S,B., 2020 Changes in Cd and Zn distribution in sediments after closure of an electroplating industry, Sepetiba bay, Brazil. Mar Pollut Bull. 2020 Dec;161(Pt A):111758. doi:10.1016/j.marpolbul.2020.111758. PMID: 33096407. Rodrigues. I.R., Geraldes, M.C., Ferreira, A.A., Salomão, M.S. and Anversa, S.V. Analysis of the water index of the Rio Negro and Resende rivers in Duas Barras district, Rio de Janeiro (Brazil). Journal of Sedimentary Environments 3 (2): 121-130 April-June, 2018 doi:10.12957/jse.2018.35715 Silva, L. C. da, Alves Martins, M. V., Figueira, R., Frontalini, F., Pereira, E., Senez-Mello, T. M., Castelo, W. F. L., Saibro, M. B., Francescangeli, F., Mello e Sousa, S. H., Bergamaschi, S., Antonioli, L., Bouchet, V. M. P., Terroso, D., & Rocha, F. (2022). Unraveling Anthropocene Paleoenvironmental Conditions Combining Sediment and Foraminiferal Data: Proof-of-Concept in the Sepetiba Bay (SE, Brazil). Frontiers in Ecology and Evolution, 10(March). https://doi.org/10.3389/fevo.2022.852439 Souza, A.M., Geraldes, M.C., Almeida, A.C. 2020 Dispersão geoquímica na Bacia hidrográfica do rio São Domingos (RJ) controlado pela morfologia da bacia. Geociências (São Paulo) 39 (1), 171-180 Souza, A.M., Rocha, D.S., Guerra, J.V., Cunha, B.A., Martins, M.V.A., Geraldes, M.C., 2021 Metal concentrations in marine sediments of the Rio de Janeiro Coast (Brazil): A proposal to establish new acceptable values of contamination. Marine Pollution Bulletin. 165, 112113. Souza, A.M.; Geraldes, M.C.; Santos, A.C. 2017. Assessment of anthropic sources throught Pb isotopic in São Domingos bay, Rio de Janeiro, Brazil. Journal of Sedimentary Environments. , v.2, p.99 - 110, [doi:10.12957/jse.2017.29896] Vannuci-Silva, M., de Souza, J. M., de Oliveira, F. F., de Araújo Júnior, M. A. G., Francioni, E., Eismann, C. E., Kiang, C. H., Govone, J. S., Belzunce-Segarra, M. J., Menegario, A. A., 2017. Bioavailability of metals at a southeastern Brazilian coastal area of high environmental concern under anthropic influence evaluation using transplanted bivalves (Nodipectennodosus) and the DGT technique. Water, Air and Soil Pollution, 2017, 222-228. https://doi.org/10.1007/s1127 Wang, L., Jin, Y., Weiss, D. J., Schleicher, N. J., Wilcke, W., Wu, L., Guo, Q., Chen, J., O’Connor, D., & Hou, D. (2021). Possible application of stable isotope compositions for the identification of metal sources in soil. Journal of Hazardous Materials, 407(November 2020), 124812. https://doi.org/10.1016/j.jhazmat.2020.124812 Zheng, X.-J., Chen, M., Wang, J.-F., Li, F.-G., Yan, Y., Liu, Y.-C., 2020. Ecological risk assessment of heavy metals in the vicinity of tungsten mining areas, Southern Jiangxi Province, soil and sediment contamination. An International Journal, 29 (6), 665-679. https://doi.org/10.1080/15320383.2020.1763912; https://periodicos.ufpe.br/revistas/rbgfe/article/view/252955

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