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    المصدر: Brazilian Journal of Physical Geography; v. 15, n. 2 (2022): Revista Brasileira de Geografia Física; 886-912 ; Revista Brasileira de Geografia Física; v. 15, n. 2 (2022): Revista Brasileira de Geografia Física; 886-912 ; 1984-2295

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    Relation: https://periodicos.ufpe.br/revistas/rbgfe/article/view/251440/40868; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/251440/38638; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/251440/38639; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/251440/38640; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/251440/38641; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/251440/38642; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/251440/38643; https://periodicos.ufpe.br/revistas/rbgfe/article/downloadSuppFile/251440/38644; Artaxo, P., Martins, J. V., Yamasoe, M. A., Procopio, A. S., Pauliquevis, T. M., Andreae, M. O., Guyon, P., Gatti, L. V., Leal, A. M. C., 2002. Physical and chemical properties of aerosols in the wet and dry seasons in Rondonia, Amazonia. Journal of Geophysical Reserarch: Atmospheres 107, 8081. Disponível: http://dx.doi.org/10.1029/2001JD000666. Acesso: 12 jun. 2020. Bilal, M., Nichol, J.E., 2015. Evaluation of MODIS aerosol retrieval algorithms over the Beijing-Tianjin-Hebei region during low to very high pollution events. Journal of Geophysical Reserarch: Atmospheres 120, 7941–7957. Disponível: http://dx.doi.org/10.1002/2015JD023082. Acesso: 01 set. 2020. Cao, C., Zheng, S., Singh, R.P., 2014. Characteristics of aerosol optical properties and meteorological parameters during three major dust events (2005-2010) over Beijing, China. Atmospheric Research 150, 129-142. Disponível: https://doi.org/10.1016/j.atmosres.2014.07.022. Acesso: 12 jun. 2020. Cheng, T., Chen, H., Gu, X., Yu, T., Guo, J., Guo, H., 2012. The inter-comparison of MODIS, MISR and GOCART aerosol products against AERONET data over China. Journal of Quantitative Spectroscopy and Radiative Transfer113, 2135–2145. Disponível: https://doi.org/10.1016/j.jqsrt.2012.06.016. Acesso: 01 set. 2020. Chu, D. A., Kaufman, Y. J., Ichoku, C., Remer, L. A., Tanré, D., and Holben, B. N., 2002. Validation of MODIS aerosol optical depth retrieval over land, Geophysical Research Letter 29, 8007. Disponível: https://doi.org/10.1029/2001GL013205. Acesso: 12 jun. 2020. Cirino, G. G., Souza, R. F. A., Adams, K. D., Artaxo, P., 2014. The effect of atmospheric aerosol particles and clouds on net ecosystem exchange in the Amazon. Atmospheric Chemistry and Physics 14, 6523–6543. Disponível: https://doi.org/10.5194/acp-14-6523-2014. Acesso: 14 jun. 2020. Costa, R. O., Palácios, R. S., Menezes, J. A., Santos, A. C. A., Sallo, F. S., Sallo, K. F. A. P., Nogueira, J. S., 2018. Variabilidade espaço-temporal da profundidade ótica de aerossóis atmosféricos sobre a Amazônia. Revista de Ciências Ambientais (Unilasalle) 12, 07-21. Disponível: http://dx.doi.org/10.18316/rca.v12i1.3175. Acesso: 12 jun. 2020. Davidson, E. A., Araujo, A. C., Artaxo, P., Balch, J. K., Brown, I. F., Bustamante, M. M. C., Coe, M. T., Defries, R. S., Keller, M., Longo, M., Munger, J. W., Schroeder, W., Soares-Filho, B. S., Souza Jr, C. M., Wofsy, S. C., 2012. The Amazon basin in transition. Nature. 481, 321–328. Disponível: https://doi.org/10.1038/nature10717. Acesso: 12 jun. 2020. Dayou, J., Chang, J. H. W., Sentian, J., 2014. Ground-based aerosol optical depth measurement using sunphotometers. Kota Kinabalu: Springer. 67p. Disponível: https://doi.org/10.1007/978-981-287-101-5. Acesso: 14 jun. 2020. Fuzzi, S., Decesari, S., Facchini, M. C., Cavalli, F., Emblico, L., Mircea, M., Andreae, M.O., Trebs, I., Hoffer, A., Guyon, P., Artaxo, P., Rizzo, L. V., Lara, L. L., Pauliquevis, T., Maenhaut, W., Raes, N., Chi, X., Mayol-Bracero, O. L., Soto-García, L. L., Claeys, M., Kourtchev, I., Rissler, J., Swietlicki, E., Tagliavini, E., Schkolnik, G., Falkovich, A. H., Rudich, Y., Fisch, G., Gatti, L. V., 2007. Overview of the inorganic and organic composition of size-segregated aerosol in Rondônia, Brazil, from the biomass-burning period to the onset of the wet season. Journal of Geophysical Research 112, D01201. Disponível: https://doi.org/10.1029/2005JD006741. Acesso: 02 ago. 2020. He, Q., Zhang, M, Huang, B., Tong, X., 2017. MODIS 3 km and 10 km aerosol optical depth for China: Evaluation and comparison. Atmospheric Environment 153, 150-162. Disponível: http://dx.doi.org/10.1016/j.atmosenv.2017.01.023. Acesso: 12 jun. 2020. Hoelzemann, J. J., Longo, K.M., Fonseca, R. M., Rosário, N. M. E., Elbern, H., Freitas, S. R., Pires, C., 2009. Regional representativity of AERONET observation sites during the biomass burning season in South America determined by correlation studies with MODIS Aerosol Optical Depth. Journal of Geophysical Research 114, D13301. Disponível: https://doi.org/10.1029/2008JD010369. Acesso: 01 set. 2020. Holben, B., Eck, T. F., Slutsker, I., Tanré, D., Buis, J. P., Setzer, A., Vermote, E., Reagan, J. A., Kaufman, Y., Nakajima, T., Lavenu, F., Jankowiak, I., Smirnov, A., 1998. AERONET - A Federated Instrument Network and Data Archive for Aerosol Characterization. Remote Sensing of Environment 66, 1-16. Disponível: https://doi.org/10.1016/S0034-4257(98)00031-5. Acesso: 12 jun. 2020. INPE, 2020. Instituto Nacional de Pesquisas Espaciais. Portal do Monitoramento de Queimadas e Incêndios Florestais. Disponível: http://www.inpe.br/queimadas. Acesso: 14 jun. 2020. IPCC, 2013: Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Stocker, T.F., D. Qin, G.-K. Plattner, M. Tignor, S.K. Allen, J. Boschung, A. Nauels, Y. Xia, V. Bex and P.M. Midgley (eds.)]. Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA, 1535 p. Jin, S., Ma, Y., Zhang, M., Gong, W., Dubovik, O., Liu, B., Shi, Y., Yang, C., 2019. Retrieval of 500 m Aerosol Optical Depths from MODIS Measurements over Urban Surfaces under Heavy Aerosol Loading Conditions in Winter. Remote Sensing 11(19), 2218-2230. Disponível: https://doi.org/10.3390/rs11192218. Acesso: 01 ago. 2020. Kang, N., Kumar, K., Hu, K., Yu, X., Yin, Y., 2016. Long-term (2002–2014) evolution and trend in Collection 5.1 Level-2 aerosol products derived from the MODIS and MISR sensors over the Chinese Yangtze River Delta. Atmospheric Research 181, 29-43. Disponível: http://dx.doi.org/10.1016/j.atmosres.2016.06.008. Acesso: 12 jun. 2020. Kumar, K. R., Sivakumar, V., Yin, Y., Reddy, R. R., Kang, N., Diao, A. J. A., Yu, X., 2014. Long-term (2003-2013) climatological trends and variations in aerosol optical parameters from MODIS over three stations in South Africa. Atmospheric Environment 95, 400-408. Disponível: https://doi.org/10.1016/j.atmosenv.2014.07.001. Acesso: 02 ago. 2020. Levy, R.C., Mattoo, S., Munchak, L.A., Remer, L.A., Sayer, A.M., Patadia, F., Hsu, N.C., 2013. The Collection 6 MODIS aerosol products over land and ocean Atmospheric Measurement Techniques 6, 2989–3034. Disponível: http://dx.doi.org/10.5194/amt-6-2989-2013. Acesso: 01 set. 2020. Marengo, J. A., Nobre, C. A., Tomasella, J., Cardoso, M. F., Oyama, M. D., 2008. Hydro-climatic and ecological behaviour of the drought of Amazonia in 2005. Philosophical Transactions of the Royal Society B 363, 1773-1778. Disponível: https://doi.org/10.1098/rstb.2007.0015. Acesso: 12 set. 2020. Marengo, J. A., Tomasella, J., Alves, L. M., Soares, W. R., Rodriguez, D. A., 2011. The drought of 2010 in the context of historical droughts in the Amazon region. Geophysical Research Letter 38, L12703. Disponível: https://doi.org/10.1029/2011GL047436. Acesso: 01 ago. 2020. Martin. S. T., Andreae. M. O., Althausen. D., Artaxo. P., Baars. H., Borrmann. S., Chen. Q., Farmer. D. K., Guenther. A., Gunthe. S. S., Jimenez. J. L., Karl. T., Longo. K., Manzi. A., Müller. T., Pauliquevis. T., Petters. M. D., Prenni. a. J., Pöschl. U., Rizzo. L. V., Schneider. J., Smith. J. N., Swietlicki. E., Tota. J., Wang. J., Wiedensohler. A., Zorn. S. R., 2010. An overview of the Amazonian Aerosol Characterization Experiment 2008 (AMAZE-08). Atmospheric Chemistry and Physics 10, 415–11. Disponível: https://doi.org/10.5194/acp-10-11415-2010. Acesso: 12 jun. 2020. Munchak, L., Levy, R., Mattoo, S., Remer, L., Holben, B., Schafer, J., Hostetler, C., Ferrare, R., 2013. MODIS 3 km aerosol product: applications over land in na urban/suburban region. Atmospheric Measurement Techniques 6, 1747-1759. Disponível: https://doi.org/10.5194/amt-6-1747-2013. Acesso: 14 jun. 2020. NASA, 2019. Dark Target - Aerosol Retrieval Algorithm. accessed on 1 Setember, 2019. National Aeronautics and Space Administration. Disponível: https://darktarget.gsfc.nasa.gov/. Acesso: 01 set. 2020. Nichol, J.E., Bilal, M., 2016. Validation of MODIS 3 km resolution aerosol optical depth retrievals over Asia. Remote Sensing 8 (4), 328. Disponível: https://doi.org/10.3390/rs8040328. Acesso: 01 set. 2019. Palácios, R. S., Romera, K. S., Curado, L. F. A., Banga, N. M., Rothmund, L. D., Sallo, F.d.S., Morais, D., Santos, A. C. A., Moraes, T. J., Morais, F.G., Landulfo, E., Franco, M. A. M., Kuhnen, I. A., Marques, J. B., Nogueira, J. S., Júnior, L. C. G. d. V., Rodrigues, T. R., 2020. Long Term Analysis of Optical and Radiative Properties of Aerosols in the Amazon Basin. Aerosol and Air Quality Research 20, 139-154. Disponível: https://doi.org/10.4209/aaqr.2019.04.0189. Acesso: 12 jun. 2020. Palácios, R. S., Sallo, F. S., Marques, J. B., Santos, A.C.A; Menezes, J.A., Biudes, M. S., Nogueira, J. S., 2018. Variabilidade Espaço-Temporal da Profundidade Ótica de Aerossóis em Regiões de Cerrado e Pantanal na Região Central do Brasil. Nativa 6, 56-65. Disponível: http://dx.doi.org/10.31413/nativa.v6i1.5153. Acesso: 12 jun. 2020. Prado, N. V., Marilene, S., Coelho, S. C., 2017. Estudo da Variabilidade Temporal da Profundidade Óptica do Aerossol Utilizando Dados de Sensoriamento Remoto Sobre a Região de Transição entre a Floresta Amazônica e o Cerrado. Revista Brasileira de Meteorologia 32 (4) 649-658. Disponível: http://dx.doi.org/10.1590/0102-7786324012. Acesso: 12 jun. 2020. Procopio, A. S., Artaxo, P., Kaufman, Y. J., Remer, L. A., Schafer, J. S., Holben, B. N., 2004. Multiyear analysis of amazonian biomass burning smoke radiative forcing of climate. Geophysical Research Letters 31, L03108. Disponível: https://doi.org/10.1029/2003GL018646. Acesso: 01 set. 2020. Remer, L., Mattoo, S., Levy, R., Munchak, L., 2013. MODIS 3 km aerosol product: algorithm and global perspective. Atmospheric Measurement Techniques Discussions 6, 69-112. Disponível: https://doi.org/10.5194/amtd-6-69-2013. Acesso: 02 ago. 2020. Rizzo, L. V., Artaxo, P., Müller, T., Wiedensohler, A., Paixão, M., Cirino, G. G., Arana, A., Swietlicki, E., Roldin, P., Fors, E. O., Wiedemann, K. T., Leal, L. S. M., Kulmala, M., 2013. Long term measurements of aerosol optical properties at a primary forest site in Amazonia. Atmospheric Chemistry and Physics 13, 2391–2413. Disponível: https://doi.org/10.5194/acp-13-2391-2013. Acesso: 12 jun. 2020. Romera, K. S., De Musis, C. R., Palácios, R. S., Curado, L. F. A., Nogueira, J. S., Marques, J. B., Costa, R. O., Brunelli, T. C., Duarte, L. G., 2019. Variabilidade interanual das propriedades óticas de aerossóis em biomas distintos na Amazônia Legal. Revista Brasileira de Climatologia 25, 424-443. Disponível: http://dx.doi.org/10.5380/abclima.v25i0.61621. Acesso: 14 jun. 2020. Rothmund, L. D., Palácios, R. S., Marques, J. B., Oliveira, L. G. B., Rodrigues, T. R., Curado, L. F. A., Nogueira, J. S., 2018. Characterization of physical properties of aerosols atmospheric on regions affected by burning biomass in Brazil. Holos Environment 18, 68-86. Disponível: http://dx.doi.org/ 10.14295/holos.v18i1.12248. Acesso: 01 set. 2020. Seinfeld, J. H., Pandis, S. N. 2006. Atmospheric Chemistry and Physics: from air pollution to climate change. New York: John Wiley & Sons, 1152p. Sena, E. T., Artaxo, P., Correia, A. L., 2013. Spatial variability of the direct radiative forcing of biomass burning aerosols and the effects of land use change in Amazonia. Atmospheric Chemistry and Physics 13, 1261–1275. Disponível: https://doi.org/10.5194/acp-13-1261-2013. Acesso: 12 jun. 2020. Wei, J., Li, Z., Peng, Y., Sun, L., 2019. MODIS Collection 6.1 aerosol optical depth products over land and ocean: validation and comparison. Atmospheric Environment 201, 428-440. Disponível: https://doi.org/10.1016/j.atmosenv.2018.12.004. Acesso: 02 ago. 2020. Xiaojing, S., Zhongfeng, Q., Muhammad, B., 2018. Validation of Modis Aerosol Optical Depth Over South China Sea. IGARSS 2018 - IEEE International Geoscience and Remote Sensing Symposium. Disponível: https://doi.org/10.1109/IGARSS.2018.8517339. Acesso: 02 ago. 2020.; https://periodicos.ufpe.br/revistas/rbgfe/article/view/251440

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    المصدر: RA'E GA Journal - The Geographic Space in Analysis; Vol. 46 No. 3 (2019): 7º GeoPantanal - Simpósio de Geotecnologias no Pantanal; 07-19 ; RAEGA - O Espaço Geográfico em Análise; v. 46 n. 3 (2019): 7º GeoPantanal - Simpósio de Geotecnologias no Pantanal; 07-19 ; 2177-2738 ; 1516-4136 ; 10.5380/raega.v46i3

    مصطلحات موضوعية: Bowen's Ratio, net radiation, Wetlands, Seasonality, Remote Sensing

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