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1Academic Journal
المصدر: Cuadernos de investigación UNED, Vol 16, Iss 1 (2024)
مصطلحات موضوعية: biogás, lixiviados, reciclaje, relleno sanitario, residuos sólidos urbano, General Works
وصف الملف: electronic resource
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2Academic Journal
المؤلفون: Bruna Marques de Oliveira, Priscilla Monteiro
المصدر: RevistaFT, 27(124), 43, (2023-07-02)
مصطلحات موضوعية: Políticas Públicas de Gestão de Resíduos Sólidos Urbano, Política Nacional de Resíduos Sólidos-PNRS, Plano Municipal de Gestão Integrada de Resíduos Sólidos PMGIRS, Município do Rio de Janeiro, Aterro Sanitário, Gestão do lixo urbano
Relation: https://doi.org/10.5281/zenodo.8106442; https://doi.org/10.5281/zenodo.8106443; oai:zenodo.org:8106443
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3Academic Journal
المؤلفون: da Silva Faria, Marco Túlio, Queiroz, Marina Muniz de, Aristides Victor Rossoni, Hygor, Moreira Hadad, Renato, Aparecida Figueiredo Gomes, Uende
المصدر: Revista Eletrônica de Gestão e Tecnologias Ambientais; V.11, N.2 (2023) ; 2317-563X
مصطلحات موضوعية: Coleta de resíduos sólidos urbano, Modelo hierárquico, Políticas públicas
وصف الملف: application/pdf
Relation: https://periodicos.ufba.br/index.php/gesta/article/view/54151/31093; https://periodicos.ufba.br/index.php/gesta/article/view/54151
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4Academic Journal
المؤلفون: Caicedo Concha, Diana Milena, Sandoval Cobo, John Jairo, Casallas Ojeda, Miguel R., Carabalí Orejuela, Lina, Muñoz Chávez, Anyi, Marmolejo Rebellón, Luis Fernando, Torres Lozada, Patricia
مصطلحات موضوعية: Potencial bioquímico de metano, Residuos sólidos urbano, Biogas, Vertedero tropical, Biochemical methane potential, Municipal solid waste, Tropical landfill, Sustainable development, Desarrollo sostenible
جغرافية الموضوع: 30 (7)
وصف الملف: 11 p.; application/pdf
Relation: https://sustainenvironres.biomedcentral.com/articles/10.1186/s42834-020-00048-6; Sustainable Environment Research; Themelis NJ, Elena MED, Barriga D, Estevez P, Velasco MG. Guidebook for the application of waste to energy technologies in Latin America and the Caribbean. New York: Columbia University; 2013.; Kaza S, Yao LC, Bhada-Tata P, Van Woerden F. What a waste 2.0: a global snapshot of solid waste management to 2050. Washington, DC: World Bank; 2018.; UN-HABITAT. Solid Waste Management in the World’s Cities: Water and Sanitation in the World’s Cities 2010. London: United Nations Human Settlements Programme; 2010.; DNP. CONPES 3874 Pólítica Nacional para la Gestión Integral de Residuos Sólidos. Bogotá, DC: Departamento Nacional de Planeación; 2016 [in Spanish]; Oviedo-Ocana R, Marmolejo-Rebellon L, Torres-Lozada P. Perspective of application of biowaste composting from municipal solid wastes: an approach from global to local. Rev Ing Univ Medellín. 2012;11:67–76 [in Spanish].; GMI. International Best Practices Guide for Landfill Gas Energy Projects. Washington, DC: Global Methane Initiative; 2012.; Zheng W, Lu F, Bolyard SC, Shao LM, Reinhart DR, He PJ. Evaluation of monitoring indicators for the post-closure care of a landfill for MSW characterized with low lignin content. Waste Manag. 2015;36:222–9.; Cossu R, Raga R. Test methods for assessing the biological stability of biodegradable waste. Waste Manag. 2008;28:381–8.; Wagland ST, Tyrrel SF. Test methods to aid in the evaluation of the diversion of biodegradable municipal waste (BMW) from landfill. Waste Manag. 2010;30:934–5.; Raposo F, De la Rubia MA, Fernandez-Cegri V, Borja R. Anaerobic digestion of solid organic substrates in batch mode: an overview relating to methane yields and experimental procedures. Renew Sust Energ Rev. 2012;16:861–77; Pearse LF, Hettiaratchi JP, Kumar S. Towards developing a representative biochemical methane potential (BMP) assay for landfilled municipal solid waste – a review. Bioresour Technol. 2018;254:312–24.; Angelidaki I, Alves M, Bolzonella D, Borzacconi L, Campos JL, Guwy AJ, et al. Defining the biomethane potential (BMP) of solid organic wastes and energy crops: a proposed protocol for batch assays. Water Sci Technol. 2009;59:927–34.; Parra-Orobio BA, Angulo-Mosquera LS, Loaiza-Gualtero JS, Torres-Lopez WA, Torres-Lozada P. Inoculum mixture optimization as strategy for to improve the anaerobic digestion of food waste for the methane production. J Environ Chem Eng. 2018;6:1529–35.; Holliger C, Alves M, Andrade D, Angelidaki I, Astals S, Baier U, et al. Towards a standardization of biomethane potential tests. Water Sci Technol. 2016;74: 2515–22.; Bilgili MS, Demir A, Varank G. Evaluation and modeling of biochemical methane potential (BMP) of landfilled solid waste: a pilot scale study. Bioresour Technol. 2009;100:4976–80.; Schirmer WN, Juca JFT, Schuler ARP, Holanda S, Jesus LL. Methane production in anaerobic digestion of organic waste from Recife (Brazil) landfill: evaluation in refuse of different ages. Braz J Chem Eng. 2014;31:373–84.; Raposo F, Fernandez-Cegri V, De la Rubia MA, Borja R, Beline F, Cavinato C, et al. Biochemical methane potential (BMP) of solid organic substrates: evaluation of anaerobic biodegradability using data from an international interlaboratory study. J Chem Technol Biot. 2011;86:1088–98.; Boulanger A, Pinet E, Bouix M, Bouchez T, Mansour AA. Effect of inoculum to substrate ratio (I/S) on municipal solid waste anaerobic degradation kinetics and potential. Waste Manag. 2012;32:2258–65.; Swati M, Karthikeyan OP, Joseph K, Visvanathan C, Nagendran R. Pilot-scale simulation of landfill bioreactor and controlled dumping of fresh and partially stabilized municipal solid waste in a tropical developing country. J Hazard Toxic Radioact Waste. 2011;15:321–30.; Machado SL, Carvalho MF, Gourc JP, Vilar OM, JCF DN. Methane generation in tropical landfills: simplified methods and field results. Waste Manage. 2009;29:153–61; Kim H, Townsend TG. Wet landfill decomposition rate determination using methane yield results for excavated waste samples. Waste Manag. 2012;32: 1427–33; SSPD. Informe de Disposición Final de Residuos Sólidos 2017 (Solid Waste Final Disposal Report 2017). Bogotá, DC: Super Intendencia de Servicios Públicos Domiciliario; 2018 [in Spanish].; Orozco OLP, Escobar YC, Angel MQ. Study of monthly rainfall trends in the upper and middle Cauca river basin, Colombia. Dyna-Colombia. 2011;78: 112–20 [in Spanish].; Campuzano R, Gonzalez-Martinez S. Characteristics of the organic fraction of municipal solid waste and methane production: a review. Waste Manag. 2016;54:3–12.; Knox K, Braithwaite P, Caine M, Croft B. Brogborough landfill test cells: the final chapter. In: A study of landfill completion in relation to final storage quality (FSQ) criteria. Cagliari: 10th International Waste Management and Landfill Symposium; 2005. p. 3–7.; Zheng W, Phoungthong K, Lu F, Shao LM, He PJ. Evaluation of a classification method for biodegradable solid wastes using anaerobic degradation parameters. Waste Manag. 2013;33:2632–40.; Caicedo-Concha DM, Sandoval-Cobo JJ, Whiting K. An experimental study on the impact of two dimensional materials in waste disposal sites: what are the implications for engineered landfills? Sustain Environ Res. 2016;26: 255–61; APHA, AWWA, WEF. Standard methods for the examination of water and wastewater. 22nd ed. Washington, DC: American Public Health Association, American Water Works Association, Water Environment Federation; 2012.; Parra-Orobio BA, Torres P, Torres WA, Marmolejo LF, Vásquez C, Cárdenas LM. Effect of substrate-inoculum ratio on the biochemical methane potential of municipal biowastes. Ing Investig Tecnol. 2015;16:515–26 [in Spanish]; Torres P, Perez A. Actividad Metanogénica Específica: una herramienta de control y optimización de sistemas de tratamiento anaerobio de aguas residuales. Ing Recur Nat Y Del Ambient. 2010;(9):5-14; Parra-Orobio BA, Donoso-Bravo A, Ruiz-Sanchez JC, Valencia-Molina KJ, Torres-Lozada P. Effect of inoculum on the anaerobic digestion of food waste accounting for the concentration of trace elements. Waste Manag. 2018;71:342–9; IGES. 2006 IPCC guidelines for National Greenhouse gas Inventories Volume 5 waste. In: Buendia L, Miwa K, Ngara T, Tanabe K, editors. Eggleston HS. Institute for Global Environmental Strategies: Hayama; 2006.; Lay JJ, Li YY, Noike T. Effect of moisture content and chemical nature on methane fermentation characteristics of municipal solid wastes. J Environ Syst Eng. 1996;1996:101–8.; Stromberg S, Nistor M, Liu J. Towards eliminating systematic errors caused by the experimental conditions in biochemical methane potential (BMP) tests. Waste Manag. 2014;34:1939–48; Yang N, Damgaard A, Scheutz C, Shao LM, He PJ. A comparison of chemical MSW compositional data between China and Denmark. J Environ Sci-China. 2018;74:1–10.; Francois V, Feuillade G, Skhiri N, Lagier T, Matejka G. Indicating the parameters of the state of degradation of municipal solid waste. J Hazard Mater. 2006;137:1008–15; Bolyard SC, Reinhart DR. Application of landfill treatment approaches for stabilization of municipal solid waste. Waste Manag. 2016;55:22–30.; Kelly RJ, Shearer BD, Kim J, Goldsmith CD, Hater GR, Novak JT. Relationships between analytical methods utilized as tools in the evaluation of landfill waste stability. Waste Manag. 2006;26:1349–56.; Cardenas-Cleves LM, Marmolejo-Rebellon LF, Torres-Lozada P. Anaerobic codigestion of sugarcane press mud with food waste: effects on hydrolysis stage, methane yield, and synergistic effects. Int J Chem Eng. 2018;2018: 9351848; Dong J, Zhao YS, Hong M, Zhang WH. Influence of alkalinity on the stabilization of municipal solid waste in anaerobic simulated bioreactor. J Hazard Mater. 2009;163:717–22; Ehrig HJ. Water and element balances of landfills. In: Baccini P, editor. The landfill. Berlin/Heidelberg: Springer; 1989. p. 83–115; Berthe C, Redon E, Feuillade G. Fractionation of the organic matter contained in leachate resulting from two modes of landfilling: an indicator of waste degradation. J Hazard Mater. 2008;154:262–71.; Ritzkowski M, Stegmann R. Landfill aeration within the scope of post-closure care and its completion. Waste Manag. 2013;33:2074–82.; Park JK, Chong YG, Tameda K, Lee NH. Methods for determining the methane generation potential and methane generation rate constant for the FOD model: a review. Waste Manage Res. 2018;36:200–20.; https://doi.org/10.1186/s42834-020-00048-6; https://hdl.handle.net/20.500.12494/17494; Sandoval-Cobo, J. J., Casallas-Ojeda, M. R., Carabalí-Orejuela, L., Muñoz-hávez, A., Caicedo-Concha, D. M., Marmolejo-Rebellón, L. F. and Torres Lozada, P. (2020). Methane potential and degradation kinetics of fresh and excavated municipal solid waste from a tropical landfill in Colombia. Sustain Environ Res 30, (7). https://doi.org/10.1186/s42834-020-00048-6
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5Dissertation/ Thesis
المساهمون: Lozano Sulca, Yimi Tom
المصدر: Repositorio Institucional - UCV ; Universidad César Vallejo
مصطلحات موضوعية: Tecnología, Biotecnología, Residuos sólidos urbano
وصف الملف: application/pdf
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6Academic Journal
المصدر: Sínteses: Revista Eletrônica do SimTec; n. 2 (2008): Temática: Perspectivas e desafios dos profissionais da UNICAMP; 61-61 ; Sínteses: Revista Eletrônica do SimTec; No. 2 (2008): Temática: Perspectivas e desafios dos profissionais da UNICAMP; 61-61 ; 2525-5398
مصطلحات موضوعية: Resíduos sólidos urbano. Limpeza urbana. Gerenciamento de resíduos
وصف الملف: application/pdf
Relation: https://econtents.bc.unicamp.br/inpec/index.php/simtec/article/view/7957/4444; https://econtents.bc.unicamp.br/inpec/index.php/simtec/article/view/7957
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7Dissertation/ Thesis
المؤلفون: Mejia Carrasco, Elvis Manuel
المساهمون: Cabello Torres, Rita Jaqueline
المصدر: Repositorio Institucional - UCV ; Universidad César Vallejo
مصطلحات موضوعية: Biorrefinería, Tecnología, Procesos, Bioeconomía circular, Residuos sólidos urbano
وصف الملف: application/pdf
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8Academic Journal
المؤلفون: Araújo, Narcísio Cabral de, Queiroz, Abílio José Procópio, Guimarães, Pablo Luiz Fernandes, Gomes, Antônia Araújo
المصدر: Revista Eletrônica em Gestão, Educação e Tecnologia Ambiental; REGET, V. 19, N. 3, SEPT.-DEC., 2015; 67-72 ; Revista Eletrônica em Gestão, Educação e Tecnologia Ambiental; REGET, V. 19, N. 3, SET.-DEZ., 2015; 67-72 ; 2236-1170
مصطلحات موضوعية: Urban solid waste management, Economic value, Environmental impacts, Gestão de resíduos sólidos urbano, Valor econômico, Impactos ambientais, Barra de São Miguel
وصف الملف: application/pdf
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9Dissertation/ Thesis
المساهمون: Martins, Fernando Ramos UNIFESP, Universidade Federal de São Paulo (UNIFESP), http://lattes.cnpq.br/4745787284832483, http://lattes.cnpq.br/6197148380667820, http://lattes.cnpq.br/9012359647335296, Sakurai, Cledson Akio UNIFESP, http://lattes.cnpq.br/1944141304162246
مصطلحات موضوعية: Gestão Resíduos Sólidos Urbano, Aterros Sanitários, Unidade de Recuperação Energética, Baixada Santista, Emissão de CO2, Urban Solid Waste Management, CO2 Emission
جغرافية الموضوع: Santos
Time: Santos
وصف الملف: 63 f.; application/pdf
Relation: TORRES, Bruno Eduardo Baptista Rodrigues; BET, Luis Gustavo. Estudo comparativo do impacto ambiental dos projetos de destinação final de resíduos sólidos urbanos, no contexto da Baixada Santista. 2021. 63 f. Trabalho de conclusão de curso (Graduação em Engenharia Ambiental) - Instituto do Mar, Universidade Federal de São Paulo, Santos, 2021.; https://repositorio.unifesp.br/xmlui/handle/11600/65033
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10Dissertation/ Thesis
المؤلفون: Rocha, Pablo Veronese de Lima
المساهمون: Rezende, Julio Francisco Dantas de, http://lattes.cnpq.br/4934656848427378, http://lattes.cnpq.br/7433758989886841, Viana, Herbert Ricardo Garcia, http://lattes.cnpq.br/4617469809005234, Dias, Nildo da Silva, http://lattes.cnpq.br/1438691490740154
مصطلحات موضوعية: Resíduos sólidos urbano, Política Nacional de Resíduos Sólidos, Saneamento básico
وصف الملف: application/pdf
Relation: ROCHA, Pablo Veronese de Lima. Análise da gestão de resíduos sólidos urbanos no Cariri Ocidental da Paraíba. 2020. 90f. Dissertação (Mestrado em Engenharia de Produção) - Centro de Tecnologia, Universidade Federal do Rio Grande do Norte, Natal, 2020.; https://repositorio.ufrn.br/handle/123456789/32064
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11Dissertation/ Thesis
المؤلفون: Santos, Adriano Braga dos
المساهمون: Machado, Sandro Lemos, Torres, Ednildo Andrade, Góes-Neto, Aristóteles, Andrade, Heloysa Martins Carvalho, Medeiros, Adriana Oliveira, Alves, Carine Tondo
مصطلحات موضوعية: Aterro sanitário, Resíduos sólidos urbano, Digestão anaeróbica, Microorganismos, Metagenômica, Energia e Ambiente
وصف الملف: application/pdf