dc.relation.references | ABO-ELMAGD, M. et al. Radiological hazards of TENORM in the wasted petroleum pipes.
Journal of environmental radioactivity, v. 101, n. 1, p. 51-54, 2010.
DOI:https://doi.org/10.1016/j.jenvrad.2009.08.016
AL-SALEH, F.S.; AL-HARSHAN, G.A. Measurements of radiation level in petroleum
products and wastes in Riyadh City Refinery. Journal of environmental radioactivity, v. 99,
n. 7, p. 1026-1031, 2008. DOI: https://doi.org/10.1016/j.jenvrad.2007.12.002
ALIYU, A. S. et al. S. Fukushima nuclear accident: Preliminary assessment of the risks to
non-human biota. Radiation Protection Dosimetry, v. 163, n. 2, p. 238-250, 2015. DOI:
https://doi.org/10.1093/rpd/ncu158
AMORIM, F. N. D. et al. Coastal and shelf circulation in the vicinity of Camamu Bay (14 S),
Eastern Brazilian Shelf. Continental Shelf Research, v. 31, n. 2, p. 108-119, 2011. DOI:
https://doi.org/10.1016/j.csr.2010.11.011
ARAKAWA, A.; LAMB. V. Computational design of the basic dynamical process of the ucla
general circulation model. Methods in Computational Physics, v.17, p. 173–265, 1977.
ATTALLAH, M. F.; AWWAD, N. S.; ALY, H. f. Environmental radioactivity of TE-NORM
waste produced from petroleum industry in Egypt: review on characterization and treatment.
In: GUPTA S. (Ed.). Natural Gas: Extraction to End Use. Rijeka: InTech, Rijeka, HR, p.
548-603, 2012.
BARKER, COLIN. Origin, composition and properties of petroleum. In: Developments in
Petroleum Science. Elsevier, v.17, p. 11-45, 1985.
BASTOS, C. C.; FERREIRA, N. J. Análise climatológica da alta subtropical do
Atlântico Sul. In: CONGRESSO BRASILEIRO DE METEOROLOGIA, 11, 2000, Rio
de janeiro. Anais [...]. 2000. p. 612-619.
I BATLLE, J. V. et al. The estimation of absorbed dose rates for non-human biota: an
extended intercomparison. Radiation and environmental biophysics, v. 50, n. 2, p. 231-251,
2011. DOI: https://doi.org/10.1007/s00411-010-0346-5
BEYER, J. et al. Environmental effects of the Deepwater Horizon oil spill: a review. Marine
pollution bulletin, v. 110, n. 1, p. 28-51, 2016. DOI:
https://doi.org/10.1016/j.marpolbul.2016.06.027
BERESFORD, N. A. et al. An international comparison of models and approaches for the
estimation of the radiological exposure of non-human biota. Applied radiation and Isotopes,
v. 66, n. 11, p. 1745-1749, 2008. DOI: https://doi.org/10.1016/j.apradiso.2008.04.009
BITTENCOURT, A. C. D. S. P. et al. R. Patterns of sediment dispersion coastwise the State
of Bahia-Brazil. Anais da Academia Brasileira de Ciências, v. 72, p. 271-287, 2000.
46
BOEHM, P. D. et al. Comparison of mussels and semi-permeable membrane devices as
intertidal monitors of polycyclic aromatic hydrocarbons at oil spill sites. Marine Pollution
Bulletin, v. 50, n. 7, p. 740-750, 2005. DOI: https://doi.org/10.1016/j.marpolbul.2005.02.002
BOLLMAN, MORITZ et al. World Ocean Review: Living with Oceans. UNEP Scientific
and Technical Advisory Panel, Marine Debris as a Global Environmental Problem.
Hamburg: Maribus/Future Ocean: Kiel Marine Sceinces/International Ocean Institute, p. 6,
2010.
BROWN, J. E. et al. Radiation doses to aquatic organisms from natural radionuclides.
Journal of Radiological Protection, v. 24, n. 4A, p. A63, 2004.
BROWN, J. E. et al. The ERICA tool. Journal of Environmental Radioactivity, v. 99, n. 9,
p. 1371-1383, 2008. DOI: https://doi.org/10.1016/j.jenvrad.2008.01.008
CÂMARA, S. F. et al. Socioeconomic vulnerability of communities on the Brazilian coast to
the largest oil spill (2019–2020) in tropical oceans. Ocean & Coastal Management, v. 202,
p. 105506, 2021. DOI: https://doi.org/10.1016/j.ocecoaman.2020.105506
CARMO, A. S. Descarga de efluentes líquidos contendo radionuclídeos em uma
instalação de medicina nuclear e seus impactos no meio ambiente. 2019. p. 124-142. Tese
(Doutorado em Engenharia Nuclear) - Universidade Federal do Rio de Janeiro, Rio de
Janeiro, 2019.
CASTILHO, J. D. Integração de dados e métodos potencias e de sensoriamento remoto
como subsidio à exploração petrolífera offshore nas bacias de cumuruxatiba e
jequitinhonha. 2005. 176 p. Dissertação (Mestrado em Ciências) - Universidade Federal do
Rio de Janeiro, Rio de Janeiro, 2005.
CASTRO, B. M. et al. Physical oceanography of the western Atlantic continental shelf
located between 4° N and 34° S: coastal segment (4° W). The Sea, v. 11, p. 209-251, 1998.
CELINO, J. J.; QUEIROZ, A. F. D. S. Fonte e grau da contaminação por hidrocarbonetos
policíclicos aromáticos (HPAs) de baixa massa molecular em sedimentos da baía de Todos os
Santos, Bahia. Rem: Revista Escola de Minas, v. 59, p. 265-270, 2006.
CELINO, J. J. et al. Persistent toxic substances in surface water of Todos Os Santos Bay,
Brazil. Resources and Environment, v. 2, n. 4, p. 141-149, 2012. DOI:
10.5923/j.re.20120204.03
CHANG, S. E. et al. Consequences of oil spills: a review and framework for informing
planning. Ecology and Society, v. 19, n. 2, 2014. DOI: http://dx.doi.org/10.5751/ES-06406-
190226
CHENG, Y. et al. SAR observation and model tracking of an oil spill event in coastal waters.
Marine Pollution Bulletin, v. 62, n. 2, p. 350-363, 2011. DOI:
https://doi.org/10.1016/j.marpolbul.2010.10.005
47
CIRANO, M. et al. A circulação oceânica de larga-escala na região oeste do Atlântico Sul
com base no modelo de circulação global OCCAM. Revista Brasileira de Geofísica, v. 24,
p. 209-230, 2006.
DANIEL, P. et al. Improvement of drift calculation in Mothy operational oil spill prediction
system. International Oil Spill Conference. American Petroleum Institute, v. 2003, n. 1, p.
1067-1072. 2003. DOI: https://doi.org/10.7901/2169-3358-2003-1-1067
DEGOLA, T. S. D. Impactos e variabilidade do Anticiclone Subtropical do Atlântico Sul
sobre o Brasil no clima presente e em cenários futuros. 2013. p. 91. Dissertação (Mestrado
em Meteorologia) - Universidade de São Paulo, São Paulo, 2013.
DE DOMINICIS, M. et al. MEDSLIK-II, a Lagrangian marine surface oil spill model for
short-term forecasting–Part 1: Theory. Geoscientific Model Development, v. 6, n. 6, p.
1851-1869, 2013. DOI: https://doi.org/10.5194/gmd-6-1851-2013
DE DOMINICIS, M. et al. MEDSLIK-II, a Lagrangian marine surface oil spill model for
short-term forecasting–Part 2: Numerical simulations and validations. Geoscientific Model
Development, v. 6, n. 6, p. 1871-1888, 2013. DOI: https://doi.org/10.5194/gmd-6-1871-2013
DE OLIVEIRA SOARES, M. et al. Oil spill in South Atlantic (Brazil): environmental and
governmental disaster. Marine Policy, v. 115, p. 103879, 2020. DOI:
https://doi.org/10.1016/j.marpol.2020.103879
DOMINGUEZ, J. M. L. et al. Plataforma Continental. In: BARBOSA, J. S. F. et al. Geologia
da Bahia: pesquisa e atualização. Salvador: CBPM. 2, 2012. p. 427-496
DUTRA, G. F. et al. Abrolhos: desafios para a conservação e o desenvolvimento sustentável
na área com a maior biodiversidade marinha do Atlântico Sul. Field Actions Science
Reports. The journal of field actions, n. Special Issue 3, 2011.
FERREIRA, A. G.; DA SILVA MELLO, N. G. Principais sistemas atmosféricos atuantes
sobre a região Nordeste do Brasil e a influência dos oceanos Pacífico e Atlântico no clima da
região. Revista Brasileira de Climatologia, v. 1, n. 1, 2005. DOI:
http://dx.doi.org/10.5380/abclima.v1i1.25215
FINGAS, M. The basics of oil spill cleanup. Ed. CRC Press LLC, 2ª edição, 2001.DOI:
https://doi.org/10.1201/9781420032598
FINGAS, M. Oil spill science and technology. Gulf professional publishing, 2016.
FRENCH MCCAY, D. P. Oil spill impact modeling: development and validation.
Environmental Toxicology and Chemistry: An International Journal, v. 23, n. 10, p.
2441-2456, 2004.
GARCÊZ, R. W. D. et al. Study of K-40, Ra-226, Ra-228 and Ra-224 activity concentrations
in some seasoning and nuts obtained in Rio de Janeiro city, Brazil. Food Science and
Technology, v. 39, p. 120-126, 2019. DOI: https://doi.org/10.1590/fst.27717
48
GIN, K. Y. H. et al. An oil spill–food chain interaction model for coastal waters. Marine
Pollution Bulletin, v. 42, n. 7, p. 590-597, 2001. DOI: https://doi.org/10.1016/S0025-
326X(00)00205-8
GREGORY, O. A.; FELIX, U. N.; OGHENEVOVWERO, E. E. Assessment of Background
Ionization Radiation of Oil Spillage Site at Obodo Creek in Gokana LGA of River State,
Nigeria. British Journal of Applied Science & Technology, v. 4, n. 36, p. 5072, 2014. DOI:
10.9734/BJAST/2014/12502
GUIMARÃES, N.A. et al. Monte Carlo simulation for the treatment of male breast cancer.
Journal of physics, CONFERENCE SERIES (PRINT), v. 1044, p. 012049, 2018. DOI:
10.1088/1742-6596/1044/1/012049
HAIDVOGEL, D. B. et al. Model evaluation experiments in the North Atlantic Basin:
simulations in nonlinear terrain-following coordinates. Dynamics of atmospheres and
oceans, v. 32, n. 3-4, p. 239-281, 2000. DOI: https://doi.org/10.1016/S0377-0265(00)00049-
X
HALL, C. et al. Hydrocarbons and the evolution of human culture. Nature, v. 426, n. 6964, p.
318, 2003. DOI: https://doi.org/10.1038/nature02130
HASSELMANN, K. F. et al. Measurements of wind-wave growth and swell decay during the
Joint North Sea Wave Project (JONSWAP). Ergaenzungsheft zur Deutschen
Hydrographischen Zeitschrift, Reihe A, n. 12, 1973.
HIGLEY, K. et al. Creation and application of voxelised dosimetric models, and a
comparison with the current methodology as used for the International Commission on
Radiological Protection’s Reference Animals and Plants. Annals of the ICRP, v. 44, n.
1_suppl, p. 313-330, 2015.
ICRP – International Commission on Radiological Protection. The 2007 Recommendations of
the International Commission on Radiological Protection. Annals of the ICRP, ICRP
Publication 103, v. 37, p. 2-4, 2007.
ICRP – International Commission on Radiological Protection. Environmental Protection: The
Concept and Use of Reference Animals and Plants. Annals of the ICRP, ICRP 1548
Publication 108, v. 38, p. 4-6, 2008.
ICRP – International Commission on Radiological Protection. Dose coefficients for
nonhuman biota environmentally exposed to radiation. Annals of the ICRP, ICRP
Publication 136. v. 46, n. 2, 2017.
ICRP – International Commission on Radiological Protection. Recommendations of the
international commission on radiological protection. Annals of the ICRP, ICRP Publication
26, p. 1383-1385, 1977.
ICRP – International Commission on Radiological Protection. Basic Anatomical and
Physiological Data for Use in Radiological Protection: Reference Values: ICRP Publication
89. Annals of the ICRP, v. 32, n. 3-4, p. 1-277, 2002.
49
INGOLE, B. et al. Ecotoxicological effect of grounded MV River Princess on the intertidal
benthic organisms off Goa. Environment International, v. 32, n. 2, p. 284-291, 2006. DOI:
https://doi.org/10.1016/j.envint.2005.08.025
KANTHA, L. H.; CLAYSON, C. Numerical models of oceans and oceanic processes.
Elsevier, 2000.
KE, L. et al. Fate of polycyclic aromatic hydrocarbon (PAH) contamination in a mangrove
swamp in Hong Kong following an oil spill. Marine pollution bulletin, v. 45, n. 1-12, p.
339-347, 2002. DOI: https://doi.org/10.1016/S0025-326X(02)00117-0
KEUM, D. K. et al. Radiation dose to human and non-human biota in the Republic of Korea
resulting from the Fukushima nuclear accident. Nuclear Engineering and Technology, v.
45, n. 1, p. 1-12, 2013. DOI: https://doi.org/10.5516/NET.03.2011.063
KOROTENKO, K. A. Effects of mesoscale eddies on behavior of an oil spill resulting from
an accidental deepwater blowout in the Black Sea: an assessment of the environmental
impacts. PeerJ, v. 6, p. e5448, 2018. DOI: 10.7717/peerj.5448
KRYSHEV, A. I., SAZYKINA, T. G. Comparative analysis of doses to aquatic biota in water
bodies impacted by radioactive contamination. Journal of environmental radioactivity, v.
108, p. 9-14, 2012. DOI: https://doi.org/10.1016/j.jenvrad.2011.07.013
LANDSBERGER, S. et al. Disequilibrium in the uranium and actinium series in oil scale
samples. Journal of environmental radioactivity, v. 166, p. 126-129, 2017. DOI:
https://doi.org/10.1016/j.jenvrad.2016.03.026
LAW, R. J.; HELLOU, J. Contamination of fish and shellfish following oil spill incidents.
Environmental Geosciences, v. 6, n. 2, p. 90-98, 1999. DOI: https://doi.org/10.1046/j.1526-
0984.1999.08039.x
LEMOS, C. F.; CALBETE, N. O. Sistemas frontais que atuaram no litoral do Brasil (período
1987-1995). Boletim Climanálise, Edição comemorativa, v. 10, p. 131-135, 1996.
LEMOS, A. T. et al. Oil spill modeling off the Brazilian eastern coast: the effect of tidal
currents on oil fate. Revista Brasileira de Geofísica, v. 27, n. 4, p. 625-639, 2009.
LESSA, G. C.; CIRANO, M. On the Circulation of a Coastal Channel within the Abrolhos
Coral-Reef System-Southern Bahia (17◦ 40’S). Brazilian Journal Coast Research, v. 2004,
p. 450-453, 2006.
LI, Q. et al. Determination of 226Ra activity using gamma spectrometry with 226Ra–222Rn
disequilibrium. Health physics, v. 109, n. 2, p. 113-116, 2015. DOI:
10.1097/HP.0000000000000302
LOPES, J. M., et al. Committed effective dose due to the intake of 40K, 226Ra, 228Ra and
228Th contained in foods included in the diet of the Rio de Janeiro city population, Brazil.
Radiation protection dosimetry, v.181, n. 2, p. 149-155, 2018. DOI:
https://doi.org/10.1093/rpd/ncx310
50
LOPES, J. M. et al. Comparison of simulated and experimental values of self-absorption
correction factors for a fast and credible adjust in efficiency curve of gamma spectroscopy.
Applied Radiation and Isotopes, v. 141, p. 241-245, 2018. DOI:
https://doi.org/10.1016/j.apradiso.2018.05.005
LOURENÇO, R. A. et al. Mysterious oil spill along Brazil's northeast and southeast seaboard
(2019–2020): Trying to find answers and filling data gaps. Marine Pollution Bulletin, v.
156, p. 111219, 2020. DOI: https://doi.org/10.1016/j.marpolbul.2020.111219
LIUBARTSEVA, S., et al. Model-based reconstruction of the Ulysse-Virginia oil spill,
October–November 2018. Marine Pollution Bulletin, v. 154, p. 111002, 2020. DOI:
https://doi.org/10.1016/j.marpolbul.2020.111002
MAGRIS, R. A.; GIARRIZZO, T. Mysterious oil spill in the Atlantic Ocean threatens marine
biodiversity and local people in Brazil. Marine Pollution Bulletin, v. 153, p. 110961, 2020.
DOI: https://doi.org/10.1016/j.marpolbul.2020.110961
MARTIN-SKILTON, R.; SABORIDO-REY, F.; PORTE, C. Endocrine alteration and other
biochemical responses in juvenile turbot exposed to the Prestige fuel oil. Science of the Total
Environment, v. 404, n. 1, p. 68-76, 2008. DOI:
https://doi.org/10.1016/j.scitotenv.2008.06.006
MAZZILLI, B. P.; MÁDUAR, M. F.; CAMPOS, M. P. Radioatividade no meio ambiente e
avaliação de impacto radiológico ambiental. São Paulo: Instituto de Pesquisas Energéticas
e Nucleares (IPEN), p. 92, 2011.
MIGNUCCI-GIANNONI, A. Assessment And Rehabilitation of Wildlife Affected by An Oil
Spill In Puerto Rico. Environmental Pollution, v. 104, n. 2, p. 323–333, 1999. DOI:
https://doi.org/10.1016/S0269-7491(98)00097-9
MOHRIAK, W. U. Bacias sedimentares da margem continental Brasileira. Geologia,
tectônica e recursos minerais do Brasil, v. 3, p. 87e165, 2003.
MORAIS, J. M. Petróleo em águas profundas: uma história tecnológica da Petrobras na
exploração e produção offshore. Brasília: IPEA/Petrobras, 2013.
MOREIRA, F. R., MOREIRA, J. C. Os efeitos do chumbo sobre o organismo humano e seu
significado para a saúde. Revista Panamericana de Salud Pública, v. 15, p. 119-129, 2004.
MOREIRA, I. T. et al. Chemometrics applied in laboratory study on formation of oil–spm
aggregates (OSAs)—a contribution to ecological evaluation. Microchemical Journal, v. 118,
p. 198-202, 2015. DOI: https://doi.org/10.1016/j.microc.2014.09.007
MÜLLER, P. J. et al. Calibration of the alkenone paleotemperature index U37K′ based on
core-tops from the eastern South Atlantic and the global ocean (60° N-60° S). Geochimica et
Cosmochimica Acta, v. 62, n. 10, p. 1757-1772, 1998. DOI: https://doi.org/10.1016/S0016-
7037(98)00097-0
51
NGENE, S. et al. Environmental and economic impacts of crude oil and natural gas
production in developing countries. International Journal of Economy, Energy and
Environment, v. 1, n. 3, p. 64-73, 2016. DOI: https://doi.org/10.11648/j.ijeee.20160103.13
OLIVEIRA, L. R. et al. Brazil Current surface circulation and energetics observed from
drifting buoys. Journal of Geophysical Research: Oceans, v. 114, n. C10006, 2009. DOI:
https://doi.org/10.1029/2008JC004900
OLSON, D. B. et al. Temporal variations in the separation of Brazil and Malvinas Currents.
Deep Sea Research Part A. Oceanographic Research Papers, v. 35, n. 12, p. 1971–1990,
1988. DOI: https://doi.org/10.1016/0198-0149(88)90120-3
OSUJI, L. C.; ONOJAKE, C. M. Trace heavy metals associated with crude oil: A case study
of Ebocha 8 Oil spill polluted site in Niger Delta, Nigeria. Chemistry & biodiversity, v. 1, n.
11, p. 1708-1715, 2004. DOI: https://doi.org/10.1002/cbdv.200490129
OUDOT, J.; MERLIN, F. X.; PINVIDIC, P. Weathering rates of oil components in a
bioremediation experiment in estuarine sediments. Marine Environmental Research, v. 45,
n. 2, p. 113-125, 1998. DOI: https://doi.org/10.1016/S0141-1136(97)00024-X
OVUOMARIE-KEVIN, S. I.; ONONUGBO, C. P.; AVWIRI, G. O. Assessment of
radiological health risks from gamma radiation levels in selected oil spill communities of
Bayelsa State, Nigeria. Current Journal of Applied Science and Technology, v. 28, n.3, p.
1-12, 2018. DOI: 10.9734/CJAST/2018/42601
PALADINO, E. E. Modelagem Matemática e Simulação Numérica de trajetórias de
Derrames de Petróleo no Mar. 2000. Dissertação (Mestrado em Engenharia Mecânica) –
Universidade Federal de Santa Catarina, Florianópolis, 2000.
PARK, I. et al. Calculation of dose conversion coefficients for radioactive cesium in
contaminated soil by depth and density. Journal of Radioanalytical and Nuclear
Chemistry, v. 316, n. 3, p. 1213-1219, 2018. DOI: https://doi.org/10.1007/s10967-018-5831-
3
PELOWITZ, D.B. MCNPXTM User’s Manual. Los Alamos National Laboratory report
LA-CP-05-0369, 2005.
PENA, P. G. L. et al. Derramamento de óleo bruto na costa brasileira em 2019: emergência
em saúde pública em questão. Cadernos de Saúde Pública, v. 36, p. e00231019, 2020. DOI:
https://doi.org/10.1590/0102-311X00231019
PEREIRA, W. D. S., et al. Dose in biota due to alpha radionuclide emitters in a dan
associated with a uranium mining. Brazilian Journal of Radiation Sciences, v. 8, n. 1B,
2020. DOI: https://doi.org/10.15392/bjrs.v8i1B.1079
PETERSON, C. H. The “Exxon Valdez” oil spill in Alaska: acute, indirect and chronic effects
on the ecosystem. Advances in Marine Biology, v. 39, p. 1-103, 2001. DOI:
https://doi.org/10.1016/S0065-2881(01)39008-9
52
PETERSON, C. H. et al. Sampling design begets conclusions: the statistical basis for
detection of injury to and recovery of shoreline communities after the Exxon Valdez¹ oil
spill. Marine Ecology Progress Series, v. 210, p. 255-283, 2001. DOI:
doi:10.3354/meps210255
PETERSON, C. H. et al. Long-term ecosystem response to the Exxon Valdez oil spill.
Science, v. 302, n. 5653, p. 2082-2086, 2003. DOI: 10.1126/science.1084282
PHILP, R. P. Composition and Properties of Petroleum. Hydrocarbons, Oils and Lipids:
Diversity, Origin, Chemistry and Fate, Handbook of Hydrocarbon and Lipid Microbiology.
Springer, Cham. 2020. DOI: https://doi.org/10.1007/978-3-319-90569-3_13 p. 269-310
QUEIROZ, S. et al. Simulation of oil spills near a tropical island in the equatorial southwest
atlantic. Tropical Oceanography, Recife, v. 47, n. 1, p. 17-37, 2019.
RADEMAEKERS, K. et al. Deep-seabed exploitation: Tackling economic, environmental
and societal challenges. Brussels (BE), 2015.
RESGALLA JR, C.; DE LA ROCHA, C.; MONTÚ, M. The influence of Ekman transport on
zooplankton biomass variability off southern Brazil. Journal of plankton research, v. 23, n.
6, p. 641-650, 2001.
RIBOTTI, A. et al. An operational marine oil spill forecasting tool for the management of
emergencies in the italian seas. Journal of Marine Science and Engineering, v. 7, n. 1, p. 1,
2019.
ROBLES, B. et al. Modelos implementados en el código CROM. CIEMAT, Madrid, 2007.
ROWLAND, R. E. et al. Current status of the study of 226Ra and 228Ra in humans at the
Center for Human Radiobiology. Health physics, v. 35, n. 1, p. 159-166, 1978.
RODRIGUES, R. R.; ROTHSTEIN, L. M.; WIMBUSH, M. Seasonal Variability of the South
Equatorial Current Bifurcation in the Atlantic Ocean: A Numerical Study. Journal of
Physical Oceanography, v. 37, n.1, p. 16–30, 2006.
SAHA, S. et al. The NCEP Climate Forecast System Version 2. Journal of Climate, v. 27, n.
6, p. 2185–2208, 2014.
SALGADO, C.M. et al. Validation of a NaI(Tl) detector's model developed with MCNP-X
code. Progress in Nuclear Energy (New Series), v. 59, p. 19-25, 2012.
SANTOS, A. Á. B. et al. Atlas eólico Bahia. Salvador: SECTI - SEINFRA – CIMATEC –
SENAI, 2013. 96p.
SCHMIDT, A. C. K. et al. Modelo paramétrico analítico para a estrutura de velocidade do
sistema corrente do Brasil. Revista Brasileira de Geofísica, v. 25, n.1, p. 75-91, 2007.
SHCHEPETKIN, A. F.; MCWILLIAMS, J. C. The regional oceanic modeling system
(ROMS): a split-explicit, free-surface, topography-following-coordinate oceanic model.
53
Ocean modelling, v. 9, n. 4, p. 347-404, 2005. DOI:
https://doi.org/10.1016/j.ocemod.2004.08.002
SHCHEPETKIN, A. F.; MCWILLIAMS, J. C. Correction and commentary for “Ocean
forecasting in terrain-following coordinates: Formulation and skill assessment of the regional
ocean modeling system” by Haidvogel et al., Journal of Computational Physics 227, p. 3595–
3624. Journal of Computational Physics, v. 228, n. 24, p. 8985-9000, 2009. DOI:
https://doi.org/10.1016/j.jcp.2009.09.002
SLUTZ, R. J. et al. Comprehensive ocean-atmosphere data set: release 1. NOAA
Environmental Research Laboratories, Climate Research Program, Boulder, CO, 268 pp.
1985.
SILVA, C. M. et al. 226 Ra in milk of the dairy cattle from the rural region of Pernambuco,
Brazil. Journal of radioanalytical and nuclear chemistry, v. 270, n. 1, p. 237-241, 2006.
DOI: https://doi.org/10.1007/s10967-006-0376-2
SILVA, R. C. et al. Radiological evaluation of Ra-226, Ra-228 and K-40 in tea samples: A
comparative study of effective dose and cancer risk. Applied Radiation and Isotopes, v.
165, p. 109326, 2020. DOI: https://doi.org/10.1016/j.apradiso.2020.109326
SILVA, M. et al. High resolution regional ocean dynamics simulation in the southwestern
tropical Atlantic. Ocean Modelling, v. 30, n. 4, p. 256–269, 2009. DOI:
https://doi.org/10.1016/j.ocemod.2009.07.002
SILVEIRA, I. C. A. et al. A Corrente do Brasil ao Largo da Costa Leste Brasileira, Brazil.
Journal of Oceanography, v. 48, n. 2, p. 171-183, 2000.
SOUZA, E. S.; TRIGUIS, J. A. Degradação do petróleo em derrames no mat—
intemperismo e biorremediacão. In: 3◦ Congresso Brasileiro de P&D em Petroleo e Gas,
2006, Salvador. Anais [...]. 2006.
SOBEY, R. J.; BARKER, C. H. Wave-driven transport of surface oil. Journal of Coastal
Research, v. 13, n.2, p. 490-496, 1997.
SOUTELINO, R. G. A origem da Corrente do Brasil. Dissertação (Mestrado em Ciências,
área de Oceanografia Física) Instituto Oceanográfico, Universidade de São Paulo IO/USP,
São Paulo, 2008.
SOUTELINO, R. G. et al. Is the Brazil Current eddy-dominated to the north of 20°S?
Geophysical Research Letters, v. 38, n. 3, p. L03607, 2011. DOI:
https://doi.org/10.1029/2010GL046276
STRAMMA, L.; IKEDA, Y.; PETERSON, R. G. Geostrophic Transport in the Brazil Current
Region North of 20°S. Deep-Sea Research, v. 37, n.12, p. 1875–1886, 1990. DOI:
https://doi.org/10.1016/0198-0149(90)90083-8
STRAMMA, L.; ENGLAND, M. On the water masses and mean circulation of the South
Atlantic Ocean. Journal of Geophysical Research, v. 104, n. C9, p. 20863–20883, 1999.
DOI: https://doi.org/10.1029/1999JC900139
54
STRINGARI, C. E. et al. Modeling an oil spill along the Southern Brazilian Shelf: Forcing
characterization and its influence on the oil fate. International Journal of Geosciences, v. 4,
n. 2, p. 397-407, 2013. DOI: 10.4236/ijg.2013.42038.
TCHAMABI, C. C. et al. A study of the Brazilian Fernando de Noronha island and Rocas
atoll wakes in the tropical Atlantic. Ocean Modelling, v. 111, p. 9-18, 2017. DOI:
https://doi.org/10.1016/j.ocemod.2016.12.009
THALHOFER, J. L. et al. Equivalent dose calculation in simulation of lung cancer treatment
and analysis of dose distribution profile. Applied Radiation and Isotopes, v. 142, p. 227-
233, 2018. DOI: https://doi.org/10.1016/j.apradiso.2018.07.012
TIMMERMAN, M. D.; FULLER, L. G.; BURTON, D. L. The effects of a crude oil spill on
microbiological indices of soil biological quality. Canadian journal of soil science, v. 83, n.
2, p. 173-181, 2003. DOI: https://doi.org/10.4141/S01-039
TEIXEIRA, C. E. P. Caracterização e variabilidade da Hidrodinâmica da zona costeira
adjacente ao banco de Abrolhos. 2006. Dissertação (Mestrado em Ciências) - Universidade
de São Paulo, São Paulo, 2006
ULANOVSKY, A.; PRÖHL, G. A practical method for assessment of dose conversion
coefficients for aquatic biota. Radiation and Environmental Biophysics, v. 45, n. 3, p. 203-
214, 2006. DOI: https://doi.org/10.1007/s00411-006-0061-4
VAN CLEEF, D. J. Determination of 226Ra in soil using 214Pb and 214Bi immediately after
sampling. Health physics, v. 67, n. 3, p. 288-289, 1994. DOI: 10.1097/00004032-199409000-
00012
WILSON, C. A. et al. Determination of Uranium Series Activity Before Secular Equilibrium
Is Established. Health physics, v. 117, n. 4, p. 449-456, 2019. DOI:
10.1097/HP.0000000000001073
WOODHEAD, D. S. The assessment of the radiation dose to developing fish embryos due to
accumulation of radioactivity by the egg. Radiation research, v. 43, n.3, p. 582–597, 1970.
DOI: https://doi.org/10.2307/3573231
ZHANG, S. et al. Are oil spills an important source of heavy metal contamination in the
Bohai Sea, China? Environmental Science and Pollution Research, v. 27, n. 3, p. 3449-
3461, 2020. DOI: https://doi.org/10.1007/s11356-019-06913-1
ZHANG, J. et al. Oil spill detection in quad-polarimetric SAR Images using an advanced
convolutional neural network based on SuperPixel model. Remote Sensing, v. 12, n. 6, p.
944, 2020. DOI: https://doi.org/10.3390/rs12060944
WIENDERS, N.; ARHAN, M.; MERCIER, H. Circulation at the western boundary of the
South and Equatorial Atlantic: Exchanges with the ocean interior. Journal of Marine
Research, v. 58, n. 6, p. 1007-1039, 2000. DOI:
https://doi.org/10.1357/002224000763485782 | pt_BR |