Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio

Detalhes bibliográficos
Autor(a) principal: Alves, Tha?s Barbosa Serpa
Data de Publicação: 2021
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UFRRJ
Texto Completo: https://tede.ufrrj.br/jspui/handle/jspui/6874
Resumo: Urban solid waste represents a major challenge in the area of management, as its inadequate disposal can generate several harms. The sanitary landfill is one of the ways of disposing of these residues, being also the most used technique in several countries. One of the by-products of landfills is leachate. Its composition is quite complex, with a high concentration of organic compounds and nitrogenous forms. High concentrations of nitrogen can promote the emission of nitrous oxide (N2O), a greenhouse gas with a high warming potential. Thus, this work aimed to evaluate N2O emission in leachate accumulation ponds and compare these emissions with different sources. Leachate samples were collected in lagoons of a landfill located in the State of Rio de Janeiro. In each sample, the following parameters were evaluated: COD, nitrite, nitrate, NTK, ammonia nitrogen and organic nitrogen. For the analysis of the emission of N2O emission, the static chamber technique was used and the emission rate per area of each lake was calculated. These values were extrapolated to landfill leachate ponds located in the State of Rio de Janeiro. An average emission rate of 861 kg N2O ha-1 year-1 was obtained and when, extrapolated to the other landfills, the emission was 20 t N2O year-1 . Compared to N2O emissions in other sectors, such as agriculture, livestock, energy, industrial processes and land use change and forests, emissions in leachate accumulation ponds were, respectively, 181, 90, 5 and 3 times, minors.
id UFRRJ-1_bef6472766773e339c4230d2c0445cd3
oai_identifier_str oai:localhost:jspui/6874
network_acronym_str UFRRJ-1
network_name_str Biblioteca Digital de Teses e Dissertações da UFRRJ
repository_id_str
spelling Nascentes, Alexandre Lioi070.367.747-03http://orcid.org/0000-0002-3071-5969http://lattes.cnpq.br/1808261154114079Oliveira, Jaime Lopes da Mota033.699.117-79https://orcid.org/0000-0002-0361-3457http://lattes.cnpq.br/4029294450841556Nascentes, Alexandre Lioi070.367.747-03http://lattes.cnpq.br/1808261154114079Silva, Leonardo Duarte Batista dahttps://orcid.org/0000-0001-9082-7965http://lattes.cnpq.br/1665042657360760Brasil, Felipe da Costahttps://orcid.org/0000-0002-6224-070Xhttp://lattes.cnpq.br/6202668326517008150.194.737-07http://lattes.cnpq.br/6935165689211525Alves, Tha?s Barbosa Serpa2023-08-28T14:53:08Z2021-09-30ALVES, Tha?s Barbosa Serpa. Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio. 2021. 73 f. Disserta??o (Mestrado em Engenharia Agr?cola e Ambiental) - Instituto de Tecnologia, Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2021.https://tede.ufrrj.br/jspui/handle/jspui/6874Urban solid waste represents a major challenge in the area of management, as its inadequate disposal can generate several harms. The sanitary landfill is one of the ways of disposing of these residues, being also the most used technique in several countries. One of the by-products of landfills is leachate. Its composition is quite complex, with a high concentration of organic compounds and nitrogenous forms. High concentrations of nitrogen can promote the emission of nitrous oxide (N2O), a greenhouse gas with a high warming potential. Thus, this work aimed to evaluate N2O emission in leachate accumulation ponds and compare these emissions with different sources. Leachate samples were collected in lagoons of a landfill located in the State of Rio de Janeiro. In each sample, the following parameters were evaluated: COD, nitrite, nitrate, NTK, ammonia nitrogen and organic nitrogen. For the analysis of the emission of N2O emission, the static chamber technique was used and the emission rate per area of each lake was calculated. These values were extrapolated to landfill leachate ponds located in the State of Rio de Janeiro. An average emission rate of 861 kg N2O ha-1 year-1 was obtained and when, extrapolated to the other landfills, the emission was 20 t N2O year-1 . Compared to N2O emissions in other sectors, such as agriculture, livestock, energy, industrial processes and land use change and forests, emissions in leachate accumulation ponds were, respectively, 181, 90, 5 and 3 times, minors.Os res?duos s?lidos urbanos representam um grande desafio na ?rea de gest?o, visto que sua disposi??o inadequada pode gerar diversos malef?cios. O aterro sanit?rio ? uma das formas de disposi??o desses res?duos, sendo tamb?m a t?cnica mais empregada em diversos pa?ses. Um dos subprodutos dos aterros sanit?rios ? o lixiviado. Sua composi??o ? bastante complexa, com alta concentra??o de compostos org?nicos e de formas nitrogenadas. Altas concentra??es de nitrog?nio podem promover a emiss?o de ?xido nitroso (N2O), um g?s de efeito estufa e com alto potencial de aquecimento. Dessa forma, este trabalho teve por objetivo avaliar a emiss?o de N2O em lagoas de ac?mulo de lixiviado e comparar essas emiss?es com diferentes fontes. Foram coletadas amostras de lixiviado em lagoas de um aterro sanit?rio localizado no Estado do Rio de Janeiro. Em cada amostra foram avaliados os seguintes par?metros: DQO, nitrito, nitrato, NTK, nitrog?nio amoniacal e nitrog?nio org?nico. Para a an?lise de emiss?o de emiss?o de N2O, foi utilizada a t?cnica da c?mara est?tica e calculada a taxa de emiss?o por ?rea de cada lagoa. Esses valores foram extrapolados para as lagoas de lixiviados de aterros sanit?rios localizados no Estado do Rio de Janeiro. Obteve-se uma taxa de emiss?o m?dia de 861 kg N2O ha-1 ano-1 e quando, extrapolado para os demais aterros, a emiss?o foi de 20 t N2O ano-1 . Comparada ?s emiss?es de N2O nos outros setores, como o setor agropecu?rio, de energia, processos industriais e de mudan?a de uso da terra e florestas, as emiss?es em lagoas de ac?mulo de lixiviado foram, respectivamente, 181, 90, 5 e 3 vezes, menores.Submitted by Leticia Schettini (leticia@ufrrj.br) on 2023-08-28T14:53:07Z No. of bitstreams: 1 2021 - Tha?s Barbosa Serpa Alves.pdf: 3808600 bytes, checksum: e7a143908dccbc75d65a02f2f7ccd550 (MD5)Made available in DSpace on 2023-08-28T14:53:08Z (GMT). No. of bitstreams: 1 2021 - Tha?s Barbosa Serpa Alves.pdf: 3808600 bytes, checksum: e7a143908dccbc75d65a02f2f7ccd550 (MD5) Previous issue date: 2021-09-30CAPES - Coordena??o de Aperfei?oamento de Pessoal de N?vel Superiorapplication/pdfhttps://tede.ufrrj.br/retrieve/74565/2021%20-%20Tha%c3%ads%20Barbosa%20Serpa%20Alves.pdf.jpgporUniversidade Federal Rural do Rio de JaneiroPrograma de P?s-Gradua??o em Engenharia Agr?cola e AmbientalUFRRJBrasilInstituto de TecnologiaABBAS, A.A.; GUO, J.S.; PING, L.Z.; YA, P.Y.; AL-REKABI, W.S. Review on Landfill Leachate Treatments. American Journal of Applied Sciences, v. 6, n. 4, p. 672-684, 2009. ABRELPE - Associa??o Brasileira de Empresas de Limpeza P?blica e Res?duos Especiais. Panorama dos Res?duos S?lidos no Brasil 2020. ABRELPE, 2020. ABNT ? Associa??o Brasileira de Normas T?cnicas. Apresenta??o de projetos de aterros sanit?rios de res?duos s?lidos urbanos ? Procedimento. NBR 8419, 1984. ADVIENTO-BORBE, M.A.; PADILLA, G.N.; PITTELKOW, C.M.; SIMMONDS, M.; KESSEL, C. van; LINQUIST, B. Methane and Nitrous Oxide Emissions from Flooded Rice Systems following the End-of-Season Drain. Journal of Environmental Quality, v. 44, p. 1071-1079, 2015. ALVIM, R.B.; MELLO, W.Z. de; SILVEIRA, C.S.; KLIGERMAN, D.C.; RIBEIRO, R.P. Emiss?es de ?xido nitroso em ?guas fluviais n?o polu?das e polu?das da Bacia do Rio Paquequer (Teres?polis, Rio de Janeiro). Eng Sanit Ambient, v. 19, n. 4, p. 471-478, 2014. APHA, AWWA, WPCF. Standard Methods for Examination of Water and Wastewater. Washington: 23rd ed., 2017. BARNEZE, A.S.; MAZZETTO, A.M.; ZANI, C.F.; MISSELBROOK, T.; CERRI, C.C. Nitrous oxide emissions from soil due to urine deposition by grazing cattle in Brazil. Atmospheric Environment, v. 92, p. 394-397, 2014. BISZEK, M.; PAW?OWSKA, M.; CZERWI?SKI, J. Evaluation of measurement methods and estimation of biogas emission from landfills. Rocznik Ochrona ?rodowiska, v. 8, p. 27- 43, 2006. BORBA, P.F. de S.; MARTINS, E.M.; CORREA, S.M.; RITTER, E. Emiss?o de gases do efeito estufa de um aterro sanit?rio no Rio de Janeiro. Eng Sanit Ambient, v. 23, n. 1, p. 101-111, 2018. BRASIL. Lei 12.305 de 2 de agosto de 2010. Institui a Pol?tica Nacional de Res?duos S?lidos; altera a lei no 9.605, de 12 de fevereiro de 1998; e d? outras provid?ncias. Dispon?vel em: < http://www.planalto.gov.br/ccivil_03/_ato2007-2010/2010/lei/l12305.htm.> Acesso em 30 de agosto de 2021. BROTTO, A.C.; DE MELLO, W.Z.; KLIGERMAN, D.C.; PICCOLI, A.S. Nitrous oxide emissions from activated sludge wastewater treatment plant with prolonged aeration process. Qu?mica Nova, v. 33, p. 618-623, 2010. CABALLERO, A.R; AYMERICH, I.; POCH, M.; PIJUAN, M. Evaluation of process conditions triggering emissions of green-house gases from a biological wastewater treatment system. Science of the Total Environment, v. 493, p. 384-391, 2014. 55 CAMPOS, J.C.; MOURA, D.; COSTA, A.P.; YOKOYAMA, L.; ARAUJO, F.V. da F.; CAMMAROTA, M.C.; CARDILLO. L. Evaluation of pH, alkalinity and temperature during air stripping process for ammonia removal from landfill leachate. Journal of Environmental Science and Health, v. 48, p. 1105-1113, 2013. CARVALHO, G.D.; MADARI, B.E.; CARVALHO, M.T. de M.; SILVA, M.A.S. da; SANTOS, A.B. dos; COSTA, A.R. da; CORR?A, R.S.; OLIVEIRA, J. de M.; LEAL, W.G. de O.; SOUZA, D.M. de; MATSUSHIGE, I.; SANTOS, R.C.G. dos. Impacto do manejo da aduba??o nitrogenada sobre a emiss?o de g?s de efeito estufa ?xido nitroso e a produtividade de arroz irrigado no Cerrado. Boletim de Pesquisa e Desenvolvimento, v. 52, 2018. CASTILHOS JUNIOR, A.B. (Coord.) et al. Res?duos s?lidos urbanos: aterro sustent?vel para munic?pios de pequeno porte. PROSAB. Rio de Janeiro: ABES, 2003 CORR?A, R.S.; MADARI, B.E.; CARVALHO, G. D.; COSTA, A.R. DA; PEREIRA, A.C.C.; MEDEIROS, J. C. Fluxos de ?xido nitroso e suas rela??es com atributos f?sicos e qu?micos do solo. Pesquisa Agropecu?ria Brasileira, v. 51, n. 9, p. 1148-1155, 2016. CUNHA, C.E.S.C.P. da; RITTER, E.; FERREIRA. J.A. O uso de indicadores de desempenho na avalia??o da qualidade operacional dos aterros sanit?rios do Estado do Rio de Janeiro no tri?nio 2013-2015. Eng Sanit Ambient, v. 25, n. 2, p. 345-360, 2020. FOO, K.Y.; HAMEED, B.H. An overview of landfill leachate treatment via activated carbon adsorption process. Journal of Hazardous Materials, v. 171, p. 54-60, 2009. FRIES, J. GETROST, H. Organic Reagents for Trace Analysis, MERCK - M?todo da Brucina, p. 278, 1977. FUJII, E.H.; GALV?O, R.B.; ROSA, J.L.; FERNANDES, F.; KURODA, E.K. Composi??o granulom?trica do filtro ascendente para p?s-tratamento de lixiviado de aterro sanit?rio. Eng Sanit Ambient, v. 24, n. 3, p. 525-535, 2019. GROHS, M.; MARCHESAN, E.; GIACOMINI, S.J.; FILHO, A.C.; WERLE, I.S.; SILVA, A.L. DA; PAGLIARIN, V.L.; FLECK, A.G. Greenhouse gas emissions during rice crop year affected by management of rice straw and ryegrass. Rev Bras Cienc Solo, v. 44, 2020. HE, P.; YANG, N.; GU, H.; ZHANG, H.; SHAO, L. N2O and NH3 emissions from a bioreactor landfill operated under limited aerobic degradation conditions. Journal of Environmental Sciences, v. 23, n. 6, p.1011-1019, 2011. HO, Y-S. Classic articles on social work field in Social Science Citation Index: a bibliometric analysis, Scientometrics, v. 98, p.137-155, 2014. HU, Z.; ZHANG, J.; LI, S.; XIE, H.; WANG, J.; ZHANG, T.; LI, Y.; ZHANG, H. Effect of aeration rate on the emission of N2O in anoxic?aerobic sequencing batch reactors (A/O SBRs). Journal of Bioscience and Bioengineering, v. 109, n. 5, p. 487-491, 2010. 56 IPCC, 2021: Summary for Policymakers. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press. In Press. KAWAHIGASHI, F.; MENDES, M.B.; J?NIOR, V.G. da A.; GOMES, V.H.; FERNANDES, F.; HIROOKA, E.Y.; KURODA, E.K. P?s-tratamento de lixiviado de aterro sanit?rio com carv?o ativado. Eng Sanit Ambient, v. 19, n. 3, p. 235-244, 2014. KJELDSEN, P.; BARLAZ, M.A.; ROOKER, A.P.; BAUN, A.; LEDIN, A.; CHRISTENSEN, T. Present and long-term composition of MSW landfill leachate: A Review. Environmental Science and Technology, v. 32, n. 4, p. 297-336, 2002. KLEIN, F.B.; GON?ALVES-DIAS, S.L.F.; JAYO, M. Gest?o de res?duos s?lidos urbanos nos munic?pios da Bacia Hidrogr?fica do Alto Tiet?: uma an?lise sobre o uso de TIC no acesso ? informa??o governamental. Revista Brasileira de Gest?o Urbana, v. 10, p. 140-153, 2018. LEITE, V.D.; OLIVEIRA, A.G. de; CAMPOS, A.R.C.; SOUSA, J.T. de; LOPES, W.S.; OLIVEIRA, E.G. de. Tratamento conjugado de lixiviado de aterro sanit?rio e esgoto dom?stico em lagoas de estabiliza??o. Revista DAE, n. 207, 2017. LEY, M.B.R.G.; SILVA, L.D.B. da; NASCENTES, A.L. Estado da arte dos modelos de predi??o de gera??o de lixiviado de aterro sanit?rio. In: SANTANA, R.F. DE; J?NIOR, W.R.A.; EL-DEIR, S.G. (Org.). Res?duos s?lidos: desenvolvimento e sustentabilidade. 1 ed. Recife: EDUFRPE, 2020, v. 1, p. 447-459. LEY, M.B.R.G.; JUNIOR, R.A.F.C.; MENDON?A, H.V. de; NASCENTES, A.L.; SILVA, L.D.B. da. Comparison between prediction models and monitored data on leachate generation from a sanitary landfill in the metropolitan region of Rio de Janeiro, Brazil. Int J Hydro, v. 5, p. 58-64, 2021. LIU, T.; LIU; S.; HE, S.; TIAN, Z.; ZHENG, M. Minimization of N2O emission through intermittent aeration in a Sequencing Batch Reactor (SBR): main behavior and mechanism. Water, v. 13, 2021. LIU, X.-L.; BAI, L.; WANG, Z.-L.; LI, J.; YUE, F.-J.; LI, S.-L. Nitrous oxide emissions from river network with variable nitrogen loading in Tianjin, China. Journal of Geochemical Exploration, v. 157, p. 153-161, 2015. LOMBARDI, F.; COSTA, G.; SIRINI, P. Analysis of the role of the sanitary landfill in waste management strategies based upon a review of lab leaching tests and new tools to evaluate leachate production. Ambiente & ?gua, v. 12, n. 4, 2017. LONG, X-E.; HUANG, Y.; CHI, H.; LI, Y.; AHMAD, N.; YAO, H. Nitrous oxide flux, ammonia oxidizer and denitrifier abundance and activity across three different landfill cover soils in Ningbo, China. Journal of Cleaner Production, v. 170, p. 288-297, 2018. LOPES, I.M.; PINHEIRO, E.F.M.; LIMA, E.; CEDDIA, M.B.; CAMPOS, D.V.B., 57 ALVES, B.J.R. Emiss?es de N2O em solos sob cultivo de cana-de-a??car no bioma Mata Atl?ntica: Efeito dos sistemas de colheita e da aduba??o com vinha?a. Revista Virtual de Qu?mica, v. 9, n. 5, p. 1930-1943, 2017. LUO, J.; WYATT, J.; VAN DER WEERDEN, T.J.; THOMAS, S.M.; KLEIN, C.A.M de; LI, Y.; ROLLO, M.; LINDSEY, S.; LEDGARD, S.F.; LI, J.; DING, W.; QINK, S.; ZHANGK, N.; BOLAN, N.; KIRKHAM, M.B.; BAIK, Z.; MAK, L.; ZHANGK, X.; WANG, H.; LIU, H.; RYS, G. Potential hotspot areas of nitrous oxide emissions from grazed pastoral dairy farm systems. Advances in Agronomy, v. 145, p. 205-268, 2017. MASCARENHAS, Y.S.; SILVA, M.A.S da; CORRECHEL, V.; SANTOS, A.B. dos; CARVALHO, M.T. de M.; MADARI, B.E.; COELHO, A.S.; GON?ALVES, G.M. de O.; CAETANO, P.H.P. Emiss?o de ?xido nitroso no cultivo de arroz irrigado no Brasil. Pesquisa Agropecu?ria Brasileira, v. 55, e01497, 2020. MAZZETTO, A.M.; BARNEZE, A.S; FEIGL, B.J.; VAN GROENIGEN, J.W.; OENEMA, O.; CERRI, C.C. Temperature and moisture affect methane and nitrous oxide emission from bovine manure patches in tropical conditions. Soil Biology & Biochemistry, v. 76, p. 242- 248, 2014. MELLO, W.Z. de; RIBEIRO, R.P.; BROTTO, A.C.; KLIGERMAN, D.C.; Piccoli, A. de S.; OLIVEIRA, J.L.M. Nitrous oxide emissions from an intermittent aeration activated sludge system of an urban wastewater treatment plant. Quimica Nova, v. 36, n. 1, p. 16-20, 2013. MOHAMMAD-PAJOOH, E.; WEICHGREBE, D.; CUFF, G. Municipal landfill leachate characteristics and feasibility of retrofitting existing treatment systems with deammonification - A full scale survey. Journal of Environmental Management, v. 187, p. 354-364, 2017. MOODY, C.M.; TOWNSEND, T.G. A comparison of landfill leachates based on waste composition. Waste Management, v. 63, p. 267-274, 2017. MORAVIA, W.G. Estudos de caracteriza??o, tratabilidade e condicionamento de lixiviados visando tratamento por lagoas. Disserta??o de Mestrado em Saneamento, Meio Ambiente e Recursos H?dricos, EE/UFMG, 2007. NAG, M.; SHIMAOKA, T; KOMIYA, T. Nitrous oxide production during nitrification from organic solid waste under temperature and oxygen conditions. Environmental Technology, v. 37, n. 22, p. 2890-2897, 2016. NOGUEIRA, A.K. da S.; RODRIGUES, R. de A.R.; SILVA, J.J.N. da; BOTIN, A.A.; SILVEIRA, J.G. da; MOMBACH, M.A.; ARMACOLO, N.M.; ROMEIRO, S, de O. Fluxos de ?xido nitroso em sistema de integra??o lavoura-pecu?ria-floresta. Pesquisa Agropecu?ria Brasileira, v. 51, n. 9, p. 1156-1162, 2016. NOGUEIRA, A.K. da S.; RODRIGUES, R. de A.R.; CASTRO, B.S.; NOGUEIRA, T.F.; SILVA J.J.N. da; BEHLING, M.; MOMBACH, M.; ARMACOLO, N.; SILVEIRA, J.G. Emiss?es de ?xido nitroso e metano do solo em ?reas de recupera??o de pastagens na Amaz?nia Matogrossense. Qu?mica Nova, v. 38, n. 7, p. 937-943, 2015. 58 OLIVEIRA, P.P.A.; AZENHA, M.V.; RODRIGUES, P.H.M.; ALVES, T.C.; LEMES, A.P.; PEDROSO, A. de F. Emiss?o de ?xido nitroso em pastagens tropicais de sistemas de produ??o de bovinos de corte. In: SOTTA, E. D.; SAMPAIO, F. G.; COSTA, M. de S. N. (org.). Colet?nea de fatores de emiss?o e remo??o de gases de efeito estufa da pecu?ria brasileira. Bras?lia, DF: MAPA: SENAR, 2020. PAREDES, D. da S; ALVES, B.J.R.; SANTOS, M.A. dos; BOLONHEZI, D.; SANT?ANNA, S.A.C. de; URQUIAGA, S.; Lima, M.A.; BODDEY, R.M. Nitrous oxide and methane fluxes following ammonium sulfate and vinasse application on sugar cane soil. Environ. Sci. Technol., v. 49, p. 11209-11217, 2015. PAREDES, D. da S.; LESSA, A.C da R.; SANT?ANNA, S.A.C. de; BODDEY, R.M.; URQUIAGA, S.; ALVES, B.J.R. Nitrous oxide emission and ammonia volatilization induced by vinasse and N fertilizer application in a sugarcane crop at Rio de Janeiro, Brazil. Nutr Cycl Agroecosyst, v. 98, p. 41-55, 2014. PINHEIRO, E.F.M.; SANTOS, C. de A.; SILVA, S. N. da; ALVES; B.J.R.; DAVID CAMPOS, D.V.B. de; CEDDIA, M.B. Emiss?es de ?xido Nitroso sob Cobertura de Pastagem numa Topossequ?ncia em Serop?dica, RJ. Revista Virtual de Qu?mica, v. 10, n. 6, p. 1809-1827, 2018. PORTELA, M.G.T; LEITE, L.F.C; SIGNOR, D.; ALVES, B.J.R.; SILVA, A.L. Emiss?es de ?xido nitroso em solo com cultivo de cana-de-a??car sobre palhada. Revista Brasileira de Ci?ncias Agr?rias, v. 13, n. 3, e5564, 2018. RENOU, S.; GIVAUDAN, J.G.; POULAIN, S.; DIRASSOUYAN, F.; MOULIN, P. Landfill leachate treatment: Review and opportunity. Journal of Hazardous Materials, v. 150, n.3, p. 468-493, 2008. RIBEIRO, L. da S.; GOMES, N.A.; ALMEIDA, M.V. de A.; PAIVA, W. de. An?lise da rela??o de indicadores f?sico-qu?micos do lixiviado gerado em um aterro sanit?rio no Semi?rido Brasileiro. Agropecu?ria Cient?fica no Semi?rido, v. 17, n. 1, p. 36-42, 2021. RIBEIRO, R.P.; BUENO, R.F.; PIVELI, R.P.; KLIGERMAN, D.C.; MELLO, W.Z. de; OLIVEIRA, J.L.M. The response of nitrous oxide emissions to diferente operating conditions in activated sludge wastewater treatment plants in Southeastern Brazil. Water Science & Technology, v. 76, p. 2337-2349, 2018. RIBEIRO, R.P.; MELLO, W.Z. de; ALVIM, R.B.; ANDRADE, S.A.; BROTTO, A.C.; KLIGERMAN, D.C.; OLIVEIRA, J.L.M.; ALMEIDA, P.A. de. Emiss?es de ?xido nitroso do tanque de aera??o de uma esta??o de tratamento de esgotos com sistema de lodos ativados convencional. Quimica Nova, v. 36, n. 7, p. 998-1003, 2013. SANTOS, M.P.A.; TAVES, R. de F.; NASCENTES, A.L.; JUNIOR, A.B. de C. An?lise bibliom?trica da produ??o cient?fica nacional e internacional sobre tratamento de lixiviado de aterro sanit?rio. Gest?o de Res?duos S?lidos, Atena Editora, v. 2, p. 190-201, 2019. 59 SCHROEDER, P.R.; AZIZ, N. M.; LLOYD, C. M.; ZAPPI, P. A. The Hydrologic Evaluation of Landfill Performance (HELP) Model: User?s guide for version 3. Washington, DC: US Environmental Protection Agency Office of Research and Development, 1994. SEEG - Sistema de Estimativa de Emiss?es de Gases de Efeito Estufa. An?lise das emiss?es brasileiras de gases de efeito estufa e suas implica??es para as metas de clima do Brasil 1970-2019. SEEG, 2021. SEEG - Sistema de Estimativa de Emiss?es de Gases de Efeito Estufa. Emiss?es Totais. Dispon?vel em: < https://plataforma.seeg.eco.br/total_emission#.> Acesso em 07 de setembro de 2021. SHOULIANG, H.; BEIDOU, X.; HAICHAN, Y.; LIANSHENG, H.; SHILEI, F.; HONGLIANG, L. Characteristics of dissolved organic matter (DOM) in leachate with diferent landfill ages. Journal of Environmental Sciences, v. 20, p. 492-498, 2008. SIGNOR, D.; PISSIONI, L.L.M.; CERRI, C.E.P. Emiss?es de gases de efeito estufa pela deposi??o de palha de cana-de-a??car sobre o solo. Bragantia, Campinas, v. 73, n. 2, p. 113- 122, 2014. SILVA, A. F.; CRUZ, T. N. S.; NOBREGA, S. L. D.; SILVA FILHO, P. A.; ANTUNES, A. F. N. R. Landfill leachate production through empirical methodologies: A case study of the lajes Site in Northeastern Brazil. Electronic Journal of Geotechnical Engineering, v. 21, p. 2195-2213, 2016. SILVEIRA, A.D.; FARIAS, M. de O.; SILVA, G.C. da; SILVA, G.T.; SCIVITTARO, W.B.; SOUSA, R.O. de. Emiss?es de metano e ?xido nitroso de planossolo cultivado com arroz irrigado e soja. Anais do Congresso Brasileiro de Arroz Irrigado. Bras?lia, DF: Embrapa; Pelotas: Sosbai, 2015. SORDI, A.; DIECKOWA, J.; BAYER, C.; ALBURQUERQUE, M.A.; PIVA, J.T.; ZANATTA, J.A.; TOMAZI, M.; ROSA, C.M da; MORAES, A. de. Nitrous oxide emission factors for urine and dung patchesin a subtropical Brazilian pastureland. Agriculture, Ecosystems and Environment, v. 190, p. 94?103, 2014. SUN, S.; CHENG, X.; LI, S.; QI, F.; LIU, Y.; SUN, D. N2O emission from full-scale urban wastewater treatment plants: a comparison between A2O and SBR. Water Science & Technology, v. 67.9, 2013. TAN, J., FU, H-Z., HO, Y-S. A bibliometric analysis of research on proteomics in science citation index expanded. Scientometrics, v. 98, p. 1473-1490, 2014. TAVARES, R.L.M.; SPOKAS, K.; HALL, K.; COLOSKY, E.; SOUZA, Z.M. de; SCALA, N. la. Sugarcane residue management impact soil greenhouse gas. Ci?ncia e Agrotecnologia, v. 42, n. 2, p. 195-203, 2018. TEIXEIRA, L.M.S., RIBEIRO, M.S. Estudo bibliom?trico sobre as caracter?sticas da contabilidade ambiental em peri?dicos nacionais e internacionais. Revista de Gest?o Social e Ambiental, S?o Paulo, v.8, n.1, p.20-36, 2014. 60 TIAN, H.; XU, R.; CANADELL, J.G.; Rona, L.T; WINIWARTER, W.; SUNTHARALINGAM, P.; DAVIDSON, E.A.; CIAIS, P.; JACKSON, R.B.; JANSSENS- MAENHOUT, G.; PRATHER, M.J.; REGNIER, P.; PAN, N.; PAN, S.; PETERS, G.P.; SHI, H.; TUBIELLO, F.N.; ZAEHLE, S.; ZHOU, F.; ARNETH, A.; BATTAGLIA, G.; BERTHET, S.; BOPP, L.; BOUWMAN, A.F.; BUITENHUIS, E.T.; CHANG, J.; CHIPPERFIELD, M.P.; DANGAL, S.R.S.; DLUGOKENCKY, E.; ELKINS, J.W.; EYRE, B.D.; FU, B.; HALL, B.; ITO, A.; JOOS, F.; KRUMMEL, P.B.; LANDOLFI, A.; LARUELLE, G.G.; LAUERWALD, R.; LI, W.; LIENERT, S.; MAAVARA, T.; MACLEOD, M.; MILLET, D.B.; OLIN, S.; PATRA, P.K.; PRINN, R.G.; RAYMOND, P. A.; RUIZ, D.J.; VAN DER WERF, G.R.; VUICHARD, N.; WANG, J.; WEISS, R.F.; WELLS, K.C.; WILSON, C.; YANG, J.; YAO, Y. A comprehensive quantification of global nitrous oxide sources and sinks. Nature, v. 586, 2020. UPSTILL-GODDARD, R.C.; SALTER, M.E.; MANN, P.J.; BARNES, J.; POULSEN, J.; DINGA, B.; FISKE, G.J.; HOLMES, R.M. The riverine source of CH4 and N2O from the Republic of Congo, western Congo Basin. Biogeosciences, v. 14, p. 2267-2281, 2017. VILHENA, A. Lixo municipal: Manual de Gerenciamento Integrado. CEMPRE - Compromisso Empresarial para Reciclagem, 4. ed. S?o Paulo, 2018. WANG, R.; ZHANG, H.; ZHANG, W.; ZHENG, X.; BUTTERBACH-BAHL, K.; LI, S.; HAN, S. An urban polluted river as a significant hotspot for water-atmosphere exchange of CH4 and N2O. Environmental Pollution, v. 264, 2020. WANG, X.; JIA, M.; ZHANG, C.; CHEN, S.; CAI, Z. Leachate treatment in landfills is a significant N2O source. Science of the Total Environment, v. 596-597, p.18-25, 2017. WANG, J.; CHEN, N.; YAN, W.; WANG, B.; YANG, L. Effect of dissolved oxygen and nitrogen on emission of N2O from rivers in China. Atmospheric Environment, v. 103, p. 347- 356, 2015. WANG, X.; JIA, M.; CHEN, X.; XU, Y.; LIN, X.; KAO, C.M.; CHEN, S. Greenhouse gas emissions from landfill leachate treatment plants: A comparison of young and aged landfill. Waste Management, v. 34, p. 1156?1164, 2014. WANG, J.; ZHANG, J.; WANG. J.; QI, P.; REN, Y.; HU, Z. Nitrous oxide emissions from a typical northern Chinese municipal wastewater treatment plant. Desalination and Water Treatment, v. 32, p. 145-152, 2011. WRAGE, N.; VELTHOF, G.L.; VAN BEUSICHEM, M.L.; OENEMA, O. Role of nitrifier denitrification in the production of nitrous oxide. Soil Biology and Biochemistry, v. 33, p. 1723-1732, 2001. YANG, L.; DENG, Y.; WANG, X.; ZHANG, W.; SHI, X.; CHEN, X.; LAKSHMANAN, P.; ZHANG, F. Global direct nitrous oxide emissions fromthe bioenergy crop sugarcane (Saccharum spp. inter-specific hybrids). Science of the Total Environment, v. 752, 2021. YANG, L.; LEI, K. Effects of land use on the concentration and emission of nitrous oxide in nitrogen-enriched rivers. Environmental Pollution, v. 238, p. 379-388, 2018. 61 YANG, N.; DAMGAARD, A.; L?, F.; SHAO, L-M.; BROGAARD, L.K-S.; HE, P-J. Environmental impact assessment on the construction and operation of municipal solid waste sanitary landfills in developing countries: China case study. Waste Management v. 34, p. 929-937, 2014. YANG, Y.; ZHANG, M.; LI, Y.; FAN, X.; GENG, Y. Controlled-release urea commingled with rice seeds reduced emission of ammonia and nitrous oxide in rice paddy soil. Journal of Environmental Quality, v. 42, n. 6, p. 1661-1673, 2013. YU, Z.; DENG, H.; WANG, D.; YE, M.; TAN, Y.; LI, Y.; CHEN, Z.; XU, S. Nitrous oxide emissions in the Shanghai river network: implications for the effects of urban sewage and IPCC methodology. Global Change Biology, v. 19, p. 2999-3010, 2013. ZHANG, C.; GUO, Y.; WANG, X.; CHENA, S. Temporal and spatial variation of greenhouse gas emissions from a limited controlled landfill site. Environment International, v. 127, p. 387-394, 2019. ZHANG, C.; LIU, J.; YANGA, X.; CAOB, W.; QIAN, G. Degradation of refractory organics in biotreated landfill leachateusing high voltage pulsed discharge combined with TiO2. Journal of Hazardous Materials, v. 326, p. 221-228, 2017. ZHANG, Z.S.; CHEN, J.; LIU, T.Q.; CAO, C.G.; LI, C.F. Effects of nitrogen fertilizer sources and tillage practices on greenhouse gas emissions in paddy fields of central China. Atmospheric Environment, v. 144, p. 274-281, 2016. ZHANG, T.; HUANG, X.; YANG, Y.; LI, Y.; DAHLGREN, R.A. Spatial and temporal variability in nitrous oxide and methane emissions in urban riparian zones of the Pearl River Delta. Environ Sci Pollut Res, v. 23, p. 1552-1564, 2016. ZHANG, X.; YIN, S.; LI, Y.; ZHUANG, H.; LI, C.; LIU, C. Comparison of greenhouse gas emissions from rice paddy fields under different nitrogen fertilization loads in Chongming Island, Eastern China. Science of the Total Environment, v. 472, p. 381-388, 2014. ZHU, Y.; MERBOLD, L.; LEITNER, S.; WOLF, B.; PELSTER, D.; GOOPY. J.; KLAUS BUTTERBACH-BAHL, K. Interactive effects of dung deposited onto urine patches on greenhouse gas fluxes from tropical pastures in Kenya. Science of The Total Environment, v. 761, 2021.Gases do efeito estufaChorumeRes?duos s?lidosSolid wasteGreenhouse gasesLeachateEngenharia Agr?colaEmiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rioEmission of nitrous oxide by leachate accumulation ponds of sanitary landfillinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisinfo:eu-repo/semantics/openAccessreponame:Biblioteca Digital de Teses e Dissertações da UFRRJinstname:Universidade Federal Rural do Rio de Janeiro (UFRRJ)instacron:UFRRJTHUMBNAIL2021 - Tha?s Barbosa Serpa Alves.pdf.jpg2021 - Tha?s Barbosa Serpa Alves.pdf.jpgimage/jpeg2097http://localhost:8080/tede/bitstream/jspui/6874/4/2021+-+Tha%C3%ADs+Barbosa+Serpa+Alves.pdf.jpgbabdb134f879b94da9fac2f764309a19MD54TEXT2021 - Tha?s Barbosa Serpa Alves.pdf.txt2021 - Tha?s Barbosa Serpa Alves.pdf.txttext/plain131727http://localhost:8080/tede/bitstream/jspui/6874/3/2021+-+Tha%C3%ADs+Barbosa+Serpa+Alves.pdf.txt41c9e37041ed0ca658d8a10d72f01d5aMD53ORIGINAL2021 - Tha?s Barbosa Serpa Alves.pdf2021 - Tha?s Barbosa Serpa Alves.pdfapplication/pdf3808600http://localhost:8080/tede/bitstream/jspui/6874/2/2021+-+Tha%C3%ADs+Barbosa+Serpa+Alves.pdfe7a143908dccbc75d65a02f2f7ccd550MD52LICENSElicense.txtlicense.txttext/plain; charset=utf-82089http://localhost:8080/tede/bitstream/jspui/6874/1/license.txt7b5ba3d2445355f386edab96125d42b7MD51jspui/68742023-08-29 01:00:34.551oai:localhost: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Biblioteca Digital de Teses e Dissertaçõeshttps://tede.ufrrj.br/PUBhttps://tede.ufrrj.br/oai/requestbibliot@ufrrj.br||bibliot@ufrrj.bropendoar:2023-08-29T04:00:34Biblioteca Digital de Teses e Dissertações da UFRRJ - Universidade Federal Rural do Rio de Janeiro (UFRRJ)false
dc.title.por.fl_str_mv Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
dc.title.alternative.eng.fl_str_mv Emission of nitrous oxide by leachate accumulation ponds of sanitary landfill
title Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
spellingShingle Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
Alves, Tha?s Barbosa Serpa
Gases do efeito estufa
Chorume
Res?duos s?lidos
Solid waste
Greenhouse gases
Leachate
Engenharia Agr?cola
title_short Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
title_full Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
title_fullStr Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
title_full_unstemmed Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
title_sort Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio
author Alves, Tha?s Barbosa Serpa
author_facet Alves, Tha?s Barbosa Serpa
author_role author
dc.contributor.advisor1.fl_str_mv Nascentes, Alexandre Lioi
dc.contributor.advisor1ID.fl_str_mv 070.367.747-03
http://orcid.org/0000-0002-3071-5969
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/1808261154114079
dc.contributor.advisor-co1.fl_str_mv Oliveira, Jaime Lopes da Mota
dc.contributor.advisor-co1ID.fl_str_mv 033.699.117-79
https://orcid.org/0000-0002-0361-3457
dc.contributor.advisor-co1Lattes.fl_str_mv http://lattes.cnpq.br/4029294450841556
dc.contributor.referee1.fl_str_mv Nascentes, Alexandre Lioi
dc.contributor.referee1ID.fl_str_mv 070.367.747-03
dc.contributor.referee1Lattes.fl_str_mv http://lattes.cnpq.br/1808261154114079
dc.contributor.referee2.fl_str_mv Silva, Leonardo Duarte Batista da
dc.contributor.referee2ID.fl_str_mv https://orcid.org/0000-0001-9082-7965
dc.contributor.referee2Lattes.fl_str_mv http://lattes.cnpq.br/1665042657360760
dc.contributor.referee3.fl_str_mv Brasil, Felipe da Costa
dc.contributor.referee3ID.fl_str_mv https://orcid.org/0000-0002-6224-070X
dc.contributor.referee3Lattes.fl_str_mv http://lattes.cnpq.br/6202668326517008
dc.contributor.authorID.fl_str_mv 150.194.737-07
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/6935165689211525
dc.contributor.author.fl_str_mv Alves, Tha?s Barbosa Serpa
contributor_str_mv Nascentes, Alexandre Lioi
Oliveira, Jaime Lopes da Mota
Nascentes, Alexandre Lioi
Silva, Leonardo Duarte Batista da
Brasil, Felipe da Costa
dc.subject.por.fl_str_mv Gases do efeito estufa
Chorume
Res?duos s?lidos
Solid waste
topic Gases do efeito estufa
Chorume
Res?duos s?lidos
Solid waste
Greenhouse gases
Leachate
Engenharia Agr?cola
dc.subject.eng.fl_str_mv Greenhouse gases
Leachate
dc.subject.cnpq.fl_str_mv Engenharia Agr?cola
description Urban solid waste represents a major challenge in the area of management, as its inadequate disposal can generate several harms. The sanitary landfill is one of the ways of disposing of these residues, being also the most used technique in several countries. One of the by-products of landfills is leachate. Its composition is quite complex, with a high concentration of organic compounds and nitrogenous forms. High concentrations of nitrogen can promote the emission of nitrous oxide (N2O), a greenhouse gas with a high warming potential. Thus, this work aimed to evaluate N2O emission in leachate accumulation ponds and compare these emissions with different sources. Leachate samples were collected in lagoons of a landfill located in the State of Rio de Janeiro. In each sample, the following parameters were evaluated: COD, nitrite, nitrate, NTK, ammonia nitrogen and organic nitrogen. For the analysis of the emission of N2O emission, the static chamber technique was used and the emission rate per area of each lake was calculated. These values were extrapolated to landfill leachate ponds located in the State of Rio de Janeiro. An average emission rate of 861 kg N2O ha-1 year-1 was obtained and when, extrapolated to the other landfills, the emission was 20 t N2O year-1 . Compared to N2O emissions in other sectors, such as agriculture, livestock, energy, industrial processes and land use change and forests, emissions in leachate accumulation ponds were, respectively, 181, 90, 5 and 3 times, minors.
publishDate 2021
dc.date.issued.fl_str_mv 2021-09-30
dc.date.accessioned.fl_str_mv 2023-08-28T14:53:08Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/masterThesis
format masterThesis
status_str publishedVersion
dc.identifier.citation.fl_str_mv ALVES, Tha?s Barbosa Serpa. Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio. 2021. 73 f. Disserta??o (Mestrado em Engenharia Agr?cola e Ambiental) - Instituto de Tecnologia, Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2021.
dc.identifier.uri.fl_str_mv https://tede.ufrrj.br/jspui/handle/jspui/6874
identifier_str_mv ALVES, Tha?s Barbosa Serpa. Emiss?o de ?xido nitroso por lagoas de ac?mulo de lixiviado de aterro sanit?rio. 2021. 73 f. Disserta??o (Mestrado em Engenharia Agr?cola e Ambiental) - Instituto de Tecnologia, Universidade Federal Rural do Rio de Janeiro, Serop?dica, 2021.
url https://tede.ufrrj.br/jspui/handle/jspui/6874
dc.language.iso.fl_str_mv por
language por
dc.relation.references.por.fl_str_mv ABBAS, A.A.; GUO, J.S.; PING, L.Z.; YA, P.Y.; AL-REKABI, W.S. Review on Landfill Leachate Treatments. American Journal of Applied Sciences, v. 6, n. 4, p. 672-684, 2009. ABRELPE - Associa??o Brasileira de Empresas de Limpeza P?blica e Res?duos Especiais. Panorama dos Res?duos S?lidos no Brasil 2020. ABRELPE, 2020. ABNT ? Associa??o Brasileira de Normas T?cnicas. Apresenta??o de projetos de aterros sanit?rios de res?duos s?lidos urbanos ? Procedimento. NBR 8419, 1984. ADVIENTO-BORBE, M.A.; PADILLA, G.N.; PITTELKOW, C.M.; SIMMONDS, M.; KESSEL, C. van; LINQUIST, B. Methane and Nitrous Oxide Emissions from Flooded Rice Systems following the End-of-Season Drain. Journal of Environmental Quality, v. 44, p. 1071-1079, 2015. ALVIM, R.B.; MELLO, W.Z. de; SILVEIRA, C.S.; KLIGERMAN, D.C.; RIBEIRO, R.P. Emiss?es de ?xido nitroso em ?guas fluviais n?o polu?das e polu?das da Bacia do Rio Paquequer (Teres?polis, Rio de Janeiro). Eng Sanit Ambient, v. 19, n. 4, p. 471-478, 2014. APHA, AWWA, WPCF. Standard Methods for Examination of Water and Wastewater. Washington: 23rd ed., 2017. BARNEZE, A.S.; MAZZETTO, A.M.; ZANI, C.F.; MISSELBROOK, T.; CERRI, C.C. Nitrous oxide emissions from soil due to urine deposition by grazing cattle in Brazil. Atmospheric Environment, v. 92, p. 394-397, 2014. BISZEK, M.; PAW?OWSKA, M.; CZERWI?SKI, J. Evaluation of measurement methods and estimation of biogas emission from landfills. Rocznik Ochrona ?rodowiska, v. 8, p. 27- 43, 2006. BORBA, P.F. de S.; MARTINS, E.M.; CORREA, S.M.; RITTER, E. Emiss?o de gases do efeito estufa de um aterro sanit?rio no Rio de Janeiro. Eng Sanit Ambient, v. 23, n. 1, p. 101-111, 2018. BRASIL. Lei 12.305 de 2 de agosto de 2010. Institui a Pol?tica Nacional de Res?duos S?lidos; altera a lei no 9.605, de 12 de fevereiro de 1998; e d? outras provid?ncias. Dispon?vel em: < http://www.planalto.gov.br/ccivil_03/_ato2007-2010/2010/lei/l12305.htm.> Acesso em 30 de agosto de 2021. BROTTO, A.C.; DE MELLO, W.Z.; KLIGERMAN, D.C.; PICCOLI, A.S. Nitrous oxide emissions from activated sludge wastewater treatment plant with prolonged aeration process. Qu?mica Nova, v. 33, p. 618-623, 2010. CABALLERO, A.R; AYMERICH, I.; POCH, M.; PIJUAN, M. Evaluation of process conditions triggering emissions of green-house gases from a biological wastewater treatment system. Science of the Total Environment, v. 493, p. 384-391, 2014. 55 CAMPOS, J.C.; MOURA, D.; COSTA, A.P.; YOKOYAMA, L.; ARAUJO, F.V. da F.; CAMMAROTA, M.C.; CARDILLO. L. Evaluation of pH, alkalinity and temperature during air stripping process for ammonia removal from landfill leachate. Journal of Environmental Science and Health, v. 48, p. 1105-1113, 2013. CARVALHO, G.D.; MADARI, B.E.; CARVALHO, M.T. de M.; SILVA, M.A.S. da; SANTOS, A.B. dos; COSTA, A.R. da; CORR?A, R.S.; OLIVEIRA, J. de M.; LEAL, W.G. de O.; SOUZA, D.M. de; MATSUSHIGE, I.; SANTOS, R.C.G. dos. Impacto do manejo da aduba??o nitrogenada sobre a emiss?o de g?s de efeito estufa ?xido nitroso e a produtividade de arroz irrigado no Cerrado. Boletim de Pesquisa e Desenvolvimento, v. 52, 2018. CASTILHOS JUNIOR, A.B. (Coord.) et al. Res?duos s?lidos urbanos: aterro sustent?vel para munic?pios de pequeno porte. PROSAB. Rio de Janeiro: ABES, 2003 CORR?A, R.S.; MADARI, B.E.; CARVALHO, G. D.; COSTA, A.R. DA; PEREIRA, A.C.C.; MEDEIROS, J. C. Fluxos de ?xido nitroso e suas rela??es com atributos f?sicos e qu?micos do solo. Pesquisa Agropecu?ria Brasileira, v. 51, n. 9, p. 1148-1155, 2016. CUNHA, C.E.S.C.P. da; RITTER, E.; FERREIRA. J.A. O uso de indicadores de desempenho na avalia??o da qualidade operacional dos aterros sanit?rios do Estado do Rio de Janeiro no tri?nio 2013-2015. Eng Sanit Ambient, v. 25, n. 2, p. 345-360, 2020. FOO, K.Y.; HAMEED, B.H. An overview of landfill leachate treatment via activated carbon adsorption process. Journal of Hazardous Materials, v. 171, p. 54-60, 2009. FRIES, J. GETROST, H. Organic Reagents for Trace Analysis, MERCK - M?todo da Brucina, p. 278, 1977. FUJII, E.H.; GALV?O, R.B.; ROSA, J.L.; FERNANDES, F.; KURODA, E.K. Composi??o granulom?trica do filtro ascendente para p?s-tratamento de lixiviado de aterro sanit?rio. Eng Sanit Ambient, v. 24, n. 3, p. 525-535, 2019. GROHS, M.; MARCHESAN, E.; GIACOMINI, S.J.; FILHO, A.C.; WERLE, I.S.; SILVA, A.L. DA; PAGLIARIN, V.L.; FLECK, A.G. Greenhouse gas emissions during rice crop year affected by management of rice straw and ryegrass. Rev Bras Cienc Solo, v. 44, 2020. HE, P.; YANG, N.; GU, H.; ZHANG, H.; SHAO, L. N2O and NH3 emissions from a bioreactor landfill operated under limited aerobic degradation conditions. Journal of Environmental Sciences, v. 23, n. 6, p.1011-1019, 2011. HO, Y-S. Classic articles on social work field in Social Science Citation Index: a bibliometric analysis, Scientometrics, v. 98, p.137-155, 2014. HU, Z.; ZHANG, J.; LI, S.; XIE, H.; WANG, J.; ZHANG, T.; LI, Y.; ZHANG, H. Effect of aeration rate on the emission of N2O in anoxic?aerobic sequencing batch reactors (A/O SBRs). Journal of Bioscience and Bioengineering, v. 109, n. 5, p. 487-491, 2010. 56 IPCC, 2021: Summary for Policymakers. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press. In Press. KAWAHIGASHI, F.; MENDES, M.B.; J?NIOR, V.G. da A.; GOMES, V.H.; FERNANDES, F.; HIROOKA, E.Y.; KURODA, E.K. P?s-tratamento de lixiviado de aterro sanit?rio com carv?o ativado. Eng Sanit Ambient, v. 19, n. 3, p. 235-244, 2014. KJELDSEN, P.; BARLAZ, M.A.; ROOKER, A.P.; BAUN, A.; LEDIN, A.; CHRISTENSEN, T. Present and long-term composition of MSW landfill leachate: A Review. Environmental Science and Technology, v. 32, n. 4, p. 297-336, 2002. KLEIN, F.B.; GON?ALVES-DIAS, S.L.F.; JAYO, M. Gest?o de res?duos s?lidos urbanos nos munic?pios da Bacia Hidrogr?fica do Alto Tiet?: uma an?lise sobre o uso de TIC no acesso ? informa??o governamental. Revista Brasileira de Gest?o Urbana, v. 10, p. 140-153, 2018. LEITE, V.D.; OLIVEIRA, A.G. de; CAMPOS, A.R.C.; SOUSA, J.T. de; LOPES, W.S.; OLIVEIRA, E.G. de. Tratamento conjugado de lixiviado de aterro sanit?rio e esgoto dom?stico em lagoas de estabiliza??o. Revista DAE, n. 207, 2017. LEY, M.B.R.G.; SILVA, L.D.B. da; NASCENTES, A.L. Estado da arte dos modelos de predi??o de gera??o de lixiviado de aterro sanit?rio. In: SANTANA, R.F. DE; J?NIOR, W.R.A.; EL-DEIR, S.G. (Org.). Res?duos s?lidos: desenvolvimento e sustentabilidade. 1 ed. Recife: EDUFRPE, 2020, v. 1, p. 447-459. LEY, M.B.R.G.; JUNIOR, R.A.F.C.; MENDON?A, H.V. de; NASCENTES, A.L.; SILVA, L.D.B. da. Comparison between prediction models and monitored data on leachate generation from a sanitary landfill in the metropolitan region of Rio de Janeiro, Brazil. Int J Hydro, v. 5, p. 58-64, 2021. LIU, T.; LIU; S.; HE, S.; TIAN, Z.; ZHENG, M. Minimization of N2O emission through intermittent aeration in a Sequencing Batch Reactor (SBR): main behavior and mechanism. Water, v. 13, 2021. LIU, X.-L.; BAI, L.; WANG, Z.-L.; LI, J.; YUE, F.-J.; LI, S.-L. Nitrous oxide emissions from river network with variable nitrogen loading in Tianjin, China. Journal of Geochemical Exploration, v. 157, p. 153-161, 2015. LOMBARDI, F.; COSTA, G.; SIRINI, P. Analysis of the role of the sanitary landfill in waste management strategies based upon a review of lab leaching tests and new tools to evaluate leachate production. Ambiente & ?gua, v. 12, n. 4, 2017. LONG, X-E.; HUANG, Y.; CHI, H.; LI, Y.; AHMAD, N.; YAO, H. Nitrous oxide flux, ammonia oxidizer and denitrifier abundance and activity across three different landfill cover soils in Ningbo, China. Journal of Cleaner Production, v. 170, p. 288-297, 2018. LOPES, I.M.; PINHEIRO, E.F.M.; LIMA, E.; CEDDIA, M.B.; CAMPOS, D.V.B., 57 ALVES, B.J.R. Emiss?es de N2O em solos sob cultivo de cana-de-a??car no bioma Mata Atl?ntica: Efeito dos sistemas de colheita e da aduba??o com vinha?a. Revista Virtual de Qu?mica, v. 9, n. 5, p. 1930-1943, 2017. LUO, J.; WYATT, J.; VAN DER WEERDEN, T.J.; THOMAS, S.M.; KLEIN, C.A.M de; LI, Y.; ROLLO, M.; LINDSEY, S.; LEDGARD, S.F.; LI, J.; DING, W.; QINK, S.; ZHANGK, N.; BOLAN, N.; KIRKHAM, M.B.; BAIK, Z.; MAK, L.; ZHANGK, X.; WANG, H.; LIU, H.; RYS, G. Potential hotspot areas of nitrous oxide emissions from grazed pastoral dairy farm systems. Advances in Agronomy, v. 145, p. 205-268, 2017. MASCARENHAS, Y.S.; SILVA, M.A.S da; CORRECHEL, V.; SANTOS, A.B. dos; CARVALHO, M.T. de M.; MADARI, B.E.; COELHO, A.S.; GON?ALVES, G.M. de O.; CAETANO, P.H.P. Emiss?o de ?xido nitroso no cultivo de arroz irrigado no Brasil. Pesquisa Agropecu?ria Brasileira, v. 55, e01497, 2020. MAZZETTO, A.M.; BARNEZE, A.S; FEIGL, B.J.; VAN GROENIGEN, J.W.; OENEMA, O.; CERRI, C.C. Temperature and moisture affect methane and nitrous oxide emission from bovine manure patches in tropical conditions. Soil Biology & Biochemistry, v. 76, p. 242- 248, 2014. MELLO, W.Z. de; RIBEIRO, R.P.; BROTTO, A.C.; KLIGERMAN, D.C.; Piccoli, A. de S.; OLIVEIRA, J.L.M. Nitrous oxide emissions from an intermittent aeration activated sludge system of an urban wastewater treatment plant. Quimica Nova, v. 36, n. 1, p. 16-20, 2013. MOHAMMAD-PAJOOH, E.; WEICHGREBE, D.; CUFF, G. Municipal landfill leachate characteristics and feasibility of retrofitting existing treatment systems with deammonification - A full scale survey. Journal of Environmental Management, v. 187, p. 354-364, 2017. MOODY, C.M.; TOWNSEND, T.G. A comparison of landfill leachates based on waste composition. Waste Management, v. 63, p. 267-274, 2017. MORAVIA, W.G. Estudos de caracteriza??o, tratabilidade e condicionamento de lixiviados visando tratamento por lagoas. Disserta??o de Mestrado em Saneamento, Meio Ambiente e Recursos H?dricos, EE/UFMG, 2007. NAG, M.; SHIMAOKA, T; KOMIYA, T. Nitrous oxide production during nitrification from organic solid waste under temperature and oxygen conditions. Environmental Technology, v. 37, n. 22, p. 2890-2897, 2016. NOGUEIRA, A.K. da S.; RODRIGUES, R. de A.R.; SILVA, J.J.N. da; BOTIN, A.A.; SILVEIRA, J.G. da; MOMBACH, M.A.; ARMACOLO, N.M.; ROMEIRO, S, de O. Fluxos de ?xido nitroso em sistema de integra??o lavoura-pecu?ria-floresta. Pesquisa Agropecu?ria Brasileira, v. 51, n. 9, p. 1156-1162, 2016. NOGUEIRA, A.K. da S.; RODRIGUES, R. de A.R.; CASTRO, B.S.; NOGUEIRA, T.F.; SILVA J.J.N. da; BEHLING, M.; MOMBACH, M.; ARMACOLO, N.; SILVEIRA, J.G. Emiss?es de ?xido nitroso e metano do solo em ?reas de recupera??o de pastagens na Amaz?nia Matogrossense. Qu?mica Nova, v. 38, n. 7, p. 937-943, 2015. 58 OLIVEIRA, P.P.A.; AZENHA, M.V.; RODRIGUES, P.H.M.; ALVES, T.C.; LEMES, A.P.; PEDROSO, A. de F. Emiss?o de ?xido nitroso em pastagens tropicais de sistemas de produ??o de bovinos de corte. In: SOTTA, E. D.; SAMPAIO, F. G.; COSTA, M. de S. N. (org.). Colet?nea de fatores de emiss?o e remo??o de gases de efeito estufa da pecu?ria brasileira. Bras?lia, DF: MAPA: SENAR, 2020. PAREDES, D. da S; ALVES, B.J.R.; SANTOS, M.A. dos; BOLONHEZI, D.; SANT?ANNA, S.A.C. de; URQUIAGA, S.; Lima, M.A.; BODDEY, R.M. Nitrous oxide and methane fluxes following ammonium sulfate and vinasse application on sugar cane soil. Environ. Sci. Technol., v. 49, p. 11209-11217, 2015. PAREDES, D. da S.; LESSA, A.C da R.; SANT?ANNA, S.A.C. de; BODDEY, R.M.; URQUIAGA, S.; ALVES, B.J.R. Nitrous oxide emission and ammonia volatilization induced by vinasse and N fertilizer application in a sugarcane crop at Rio de Janeiro, Brazil. Nutr Cycl Agroecosyst, v. 98, p. 41-55, 2014. PINHEIRO, E.F.M.; SANTOS, C. de A.; SILVA, S. N. da; ALVES; B.J.R.; DAVID CAMPOS, D.V.B. de; CEDDIA, M.B. Emiss?es de ?xido Nitroso sob Cobertura de Pastagem numa Topossequ?ncia em Serop?dica, RJ. Revista Virtual de Qu?mica, v. 10, n. 6, p. 1809-1827, 2018. PORTELA, M.G.T; LEITE, L.F.C; SIGNOR, D.; ALVES, B.J.R.; SILVA, A.L. Emiss?es de ?xido nitroso em solo com cultivo de cana-de-a??car sobre palhada. Revista Brasileira de Ci?ncias Agr?rias, v. 13, n. 3, e5564, 2018. RENOU, S.; GIVAUDAN, J.G.; POULAIN, S.; DIRASSOUYAN, F.; MOULIN, P. Landfill leachate treatment: Review and opportunity. Journal of Hazardous Materials, v. 150, n.3, p. 468-493, 2008. RIBEIRO, L. da S.; GOMES, N.A.; ALMEIDA, M.V. de A.; PAIVA, W. de. An?lise da rela??o de indicadores f?sico-qu?micos do lixiviado gerado em um aterro sanit?rio no Semi?rido Brasileiro. Agropecu?ria Cient?fica no Semi?rido, v. 17, n. 1, p. 36-42, 2021. RIBEIRO, R.P.; BUENO, R.F.; PIVELI, R.P.; KLIGERMAN, D.C.; MELLO, W.Z. de; OLIVEIRA, J.L.M. The response of nitrous oxide emissions to diferente operating conditions in activated sludge wastewater treatment plants in Southeastern Brazil. Water Science & Technology, v. 76, p. 2337-2349, 2018. RIBEIRO, R.P.; MELLO, W.Z. de; ALVIM, R.B.; ANDRADE, S.A.; BROTTO, A.C.; KLIGERMAN, D.C.; OLIVEIRA, J.L.M.; ALMEIDA, P.A. de. Emiss?es de ?xido nitroso do tanque de aera??o de uma esta??o de tratamento de esgotos com sistema de lodos ativados convencional. Quimica Nova, v. 36, n. 7, p. 998-1003, 2013. SANTOS, M.P.A.; TAVES, R. de F.; NASCENTES, A.L.; JUNIOR, A.B. de C. An?lise bibliom?trica da produ??o cient?fica nacional e internacional sobre tratamento de lixiviado de aterro sanit?rio. Gest?o de Res?duos S?lidos, Atena Editora, v. 2, p. 190-201, 2019. 59 SCHROEDER, P.R.; AZIZ, N. M.; LLOYD, C. M.; ZAPPI, P. A. The Hydrologic Evaluation of Landfill Performance (HELP) Model: User?s guide for version 3. Washington, DC: US Environmental Protection Agency Office of Research and Development, 1994. SEEG - Sistema de Estimativa de Emiss?es de Gases de Efeito Estufa. An?lise das emiss?es brasileiras de gases de efeito estufa e suas implica??es para as metas de clima do Brasil 1970-2019. SEEG, 2021. SEEG - Sistema de Estimativa de Emiss?es de Gases de Efeito Estufa. Emiss?es Totais. Dispon?vel em: < https://plataforma.seeg.eco.br/total_emission#.> Acesso em 07 de setembro de 2021. SHOULIANG, H.; BEIDOU, X.; HAICHAN, Y.; LIANSHENG, H.; SHILEI, F.; HONGLIANG, L. Characteristics of dissolved organic matter (DOM) in leachate with diferent landfill ages. Journal of Environmental Sciences, v. 20, p. 492-498, 2008. SIGNOR, D.; PISSIONI, L.L.M.; CERRI, C.E.P. Emiss?es de gases de efeito estufa pela deposi??o de palha de cana-de-a??car sobre o solo. Bragantia, Campinas, v. 73, n. 2, p. 113- 122, 2014. SILVA, A. F.; CRUZ, T. N. S.; NOBREGA, S. L. D.; SILVA FILHO, P. A.; ANTUNES, A. F. N. R. Landfill leachate production through empirical methodologies: A case study of the lajes Site in Northeastern Brazil. Electronic Journal of Geotechnical Engineering, v. 21, p. 2195-2213, 2016. SILVEIRA, A.D.; FARIAS, M. de O.; SILVA, G.C. da; SILVA, G.T.; SCIVITTARO, W.B.; SOUSA, R.O. de. Emiss?es de metano e ?xido nitroso de planossolo cultivado com arroz irrigado e soja. Anais do Congresso Brasileiro de Arroz Irrigado. Bras?lia, DF: Embrapa; Pelotas: Sosbai, 2015. SORDI, A.; DIECKOWA, J.; BAYER, C.; ALBURQUERQUE, M.A.; PIVA, J.T.; ZANATTA, J.A.; TOMAZI, M.; ROSA, C.M da; MORAES, A. de. Nitrous oxide emission factors for urine and dung patchesin a subtropical Brazilian pastureland. Agriculture, Ecosystems and Environment, v. 190, p. 94?103, 2014. SUN, S.; CHENG, X.; LI, S.; QI, F.; LIU, Y.; SUN, D. N2O emission from full-scale urban wastewater treatment plants: a comparison between A2O and SBR. Water Science & Technology, v. 67.9, 2013. TAN, J., FU, H-Z., HO, Y-S. A bibliometric analysis of research on proteomics in science citation index expanded. Scientometrics, v. 98, p. 1473-1490, 2014. TAVARES, R.L.M.; SPOKAS, K.; HALL, K.; COLOSKY, E.; SOUZA, Z.M. de; SCALA, N. la. Sugarcane residue management impact soil greenhouse gas. Ci?ncia e Agrotecnologia, v. 42, n. 2, p. 195-203, 2018. TEIXEIRA, L.M.S., RIBEIRO, M.S. Estudo bibliom?trico sobre as caracter?sticas da contabilidade ambiental em peri?dicos nacionais e internacionais. Revista de Gest?o Social e Ambiental, S?o Paulo, v.8, n.1, p.20-36, 2014. 60 TIAN, H.; XU, R.; CANADELL, J.G.; Rona, L.T; WINIWARTER, W.; SUNTHARALINGAM, P.; DAVIDSON, E.A.; CIAIS, P.; JACKSON, R.B.; JANSSENS- MAENHOUT, G.; PRATHER, M.J.; REGNIER, P.; PAN, N.; PAN, S.; PETERS, G.P.; SHI, H.; TUBIELLO, F.N.; ZAEHLE, S.; ZHOU, F.; ARNETH, A.; BATTAGLIA, G.; BERTHET, S.; BOPP, L.; BOUWMAN, A.F.; BUITENHUIS, E.T.; CHANG, J.; CHIPPERFIELD, M.P.; DANGAL, S.R.S.; DLUGOKENCKY, E.; ELKINS, J.W.; EYRE, B.D.; FU, B.; HALL, B.; ITO, A.; JOOS, F.; KRUMMEL, P.B.; LANDOLFI, A.; LARUELLE, G.G.; LAUERWALD, R.; LI, W.; LIENERT, S.; MAAVARA, T.; MACLEOD, M.; MILLET, D.B.; OLIN, S.; PATRA, P.K.; PRINN, R.G.; RAYMOND, P. A.; RUIZ, D.J.; VAN DER WERF, G.R.; VUICHARD, N.; WANG, J.; WEISS, R.F.; WELLS, K.C.; WILSON, C.; YANG, J.; YAO, Y. A comprehensive quantification of global nitrous oxide sources and sinks. Nature, v. 586, 2020. UPSTILL-GODDARD, R.C.; SALTER, M.E.; MANN, P.J.; BARNES, J.; POULSEN, J.; DINGA, B.; FISKE, G.J.; HOLMES, R.M. The riverine source of CH4 and N2O from the Republic of Congo, western Congo Basin. Biogeosciences, v. 14, p. 2267-2281, 2017. VILHENA, A. Lixo municipal: Manual de Gerenciamento Integrado. CEMPRE - Compromisso Empresarial para Reciclagem, 4. ed. S?o Paulo, 2018. WANG, R.; ZHANG, H.; ZHANG, W.; ZHENG, X.; BUTTERBACH-BAHL, K.; LI, S.; HAN, S. An urban polluted river as a significant hotspot for water-atmosphere exchange of CH4 and N2O. Environmental Pollution, v. 264, 2020. WANG, X.; JIA, M.; ZHANG, C.; CHEN, S.; CAI, Z. Leachate treatment in landfills is a significant N2O source. Science of the Total Environment, v. 596-597, p.18-25, 2017. WANG, J.; CHEN, N.; YAN, W.; WANG, B.; YANG, L. Effect of dissolved oxygen and nitrogen on emission of N2O from rivers in China. Atmospheric Environment, v. 103, p. 347- 356, 2015. WANG, X.; JIA, M.; CHEN, X.; XU, Y.; LIN, X.; KAO, C.M.; CHEN, S. Greenhouse gas emissions from landfill leachate treatment plants: A comparison of young and aged landfill. Waste Management, v. 34, p. 1156?1164, 2014. WANG, J.; ZHANG, J.; WANG. J.; QI, P.; REN, Y.; HU, Z. Nitrous oxide emissions from a typical northern Chinese municipal wastewater treatment plant. Desalination and Water Treatment, v. 32, p. 145-152, 2011. WRAGE, N.; VELTHOF, G.L.; VAN BEUSICHEM, M.L.; OENEMA, O. Role of nitrifier denitrification in the production of nitrous oxide. Soil Biology and Biochemistry, v. 33, p. 1723-1732, 2001. YANG, L.; DENG, Y.; WANG, X.; ZHANG, W.; SHI, X.; CHEN, X.; LAKSHMANAN, P.; ZHANG, F. Global direct nitrous oxide emissions fromthe bioenergy crop sugarcane (Saccharum spp. inter-specific hybrids). Science of the Total Environment, v. 752, 2021. YANG, L.; LEI, K. Effects of land use on the concentration and emission of nitrous oxide in nitrogen-enriched rivers. Environmental Pollution, v. 238, p. 379-388, 2018. 61 YANG, N.; DAMGAARD, A.; L?, F.; SHAO, L-M.; BROGAARD, L.K-S.; HE, P-J. Environmental impact assessment on the construction and operation of municipal solid waste sanitary landfills in developing countries: China case study. Waste Management v. 34, p. 929-937, 2014. YANG, Y.; ZHANG, M.; LI, Y.; FAN, X.; GENG, Y. Controlled-release urea commingled with rice seeds reduced emission of ammonia and nitrous oxide in rice paddy soil. Journal of Environmental Quality, v. 42, n. 6, p. 1661-1673, 2013. YU, Z.; DENG, H.; WANG, D.; YE, M.; TAN, Y.; LI, Y.; CHEN, Z.; XU, S. Nitrous oxide emissions in the Shanghai river network: implications for the effects of urban sewage and IPCC methodology. Global Change Biology, v. 19, p. 2999-3010, 2013. ZHANG, C.; GUO, Y.; WANG, X.; CHENA, S. Temporal and spatial variation of greenhouse gas emissions from a limited controlled landfill site. Environment International, v. 127, p. 387-394, 2019. ZHANG, C.; LIU, J.; YANGA, X.; CAOB, W.; QIAN, G. Degradation of refractory organics in biotreated landfill leachateusing high voltage pulsed discharge combined with TiO2. Journal of Hazardous Materials, v. 326, p. 221-228, 2017. ZHANG, Z.S.; CHEN, J.; LIU, T.Q.; CAO, C.G.; LI, C.F. Effects of nitrogen fertilizer sources and tillage practices on greenhouse gas emissions in paddy fields of central China. Atmospheric Environment, v. 144, p. 274-281, 2016. ZHANG, T.; HUANG, X.; YANG, Y.; LI, Y.; DAHLGREN, R.A. Spatial and temporal variability in nitrous oxide and methane emissions in urban riparian zones of the Pearl River Delta. Environ Sci Pollut Res, v. 23, p. 1552-1564, 2016. ZHANG, X.; YIN, S.; LI, Y.; ZHUANG, H.; LI, C.; LIU, C. Comparison of greenhouse gas emissions from rice paddy fields under different nitrogen fertilization loads in Chongming Island, Eastern China. Science of the Total Environment, v. 472, p. 381-388, 2014. ZHU, Y.; MERBOLD, L.; LEITNER, S.; WOLF, B.; PELSTER, D.; GOOPY. J.; KLAUS BUTTERBACH-BAHL, K. Interactive effects of dung deposited onto urine patches on greenhouse gas fluxes from tropical pastures in Kenya. Science of The Total Environment, v. 761, 2021.
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidade Federal Rural do Rio de Janeiro
dc.publisher.program.fl_str_mv Programa de P?s-Gradua??o em Engenharia Agr?cola e Ambiental
dc.publisher.initials.fl_str_mv UFRRJ
dc.publisher.country.fl_str_mv Brasil
dc.publisher.department.fl_str_mv Instituto de Tecnologia
publisher.none.fl_str_mv Universidade Federal Rural do Rio de Janeiro
dc.source.none.fl_str_mv reponame:Biblioteca Digital de Teses e Dissertações da UFRRJ
instname:Universidade Federal Rural do Rio de Janeiro (UFRRJ)
instacron:UFRRJ
instname_str Universidade Federal Rural do Rio de Janeiro (UFRRJ)
instacron_str UFRRJ
institution UFRRJ
reponame_str Biblioteca Digital de Teses e Dissertações da UFRRJ
collection Biblioteca Digital de Teses e Dissertações da UFRRJ
bitstream.url.fl_str_mv http://localhost:8080/tede/bitstream/jspui/6874/4/2021+-+Tha%C3%ADs+Barbosa+Serpa+Alves.pdf.jpg
http://localhost:8080/tede/bitstream/jspui/6874/3/2021+-+Tha%C3%ADs+Barbosa+Serpa+Alves.pdf.txt
http://localhost:8080/tede/bitstream/jspui/6874/2/2021+-+Tha%C3%ADs+Barbosa+Serpa+Alves.pdf
http://localhost:8080/tede/bitstream/jspui/6874/1/license.txt
bitstream.checksum.fl_str_mv babdb134f879b94da9fac2f764309a19
41c9e37041ed0ca658d8a10d72f01d5a
e7a143908dccbc75d65a02f2f7ccd550
7b5ba3d2445355f386edab96125d42b7
bitstream.checksumAlgorithm.fl_str_mv MD5
MD5
MD5
MD5
repository.name.fl_str_mv Biblioteca Digital de Teses e Dissertações da UFRRJ - Universidade Federal Rural do Rio de Janeiro (UFRRJ)
repository.mail.fl_str_mv bibliot@ufrrj.br||bibliot@ufrrj.br
_version_ 1800313578588209152