A Look to the Biogas Generation from Organic Wastes in Colombia

In line with the goals of the Paris Agreement and the guidelines of Conpes 3874 of 2016, Colombia has adopted different strategies to optimize the use of biomass as an energy source and the management of materials in urban centers, establishing short and long term goals that convene actors towards t...

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Autores:
Durán Contreras, Michel
Tipo de recurso:
Fecha de publicación:
2020
Institución:
Universidad del Atlántico
Repositorio:
Repositorio Uniatlantico
Idioma:
eng
OAI Identifier:
oai:repositorio.uniatlantico.edu.co:20.500.12834/818
Acceso en línea:
https://hdl.handle.net/20.500.12834/818
Palabra clave:
Environmental Pollution, Energy Policy, Alternative Fuels, Biogas, Renewable Energy, Anaerobic Digestion JEL Classifications: Q16, Q42, Q47, Q48.
Rights
openAccess
License
http://creativecommons.org/licenses/by-nc/4.0/
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dc.title.spa.fl_str_mv A Look to the Biogas Generation from Organic Wastes in Colombia
title A Look to the Biogas Generation from Organic Wastes in Colombia
spellingShingle A Look to the Biogas Generation from Organic Wastes in Colombia
Environmental Pollution, Energy Policy, Alternative Fuels, Biogas, Renewable Energy, Anaerobic Digestion JEL Classifications: Q16, Q42, Q47, Q48.
title_short A Look to the Biogas Generation from Organic Wastes in Colombia
title_full A Look to the Biogas Generation from Organic Wastes in Colombia
title_fullStr A Look to the Biogas Generation from Organic Wastes in Colombia
title_full_unstemmed A Look to the Biogas Generation from Organic Wastes in Colombia
title_sort A Look to the Biogas Generation from Organic Wastes in Colombia
dc.creator.fl_str_mv Durán Contreras, Michel
dc.contributor.author.none.fl_str_mv Durán Contreras, Michel
dc.contributor.other.none.fl_str_mv Sequeda Barros, Rodrigo
Zapata, Jorlany
Vanegas Chamorro, Marley
Albis Arrieta, Alberto
dc.subject.keywords.spa.fl_str_mv Environmental Pollution, Energy Policy, Alternative Fuels, Biogas, Renewable Energy, Anaerobic Digestion JEL Classifications: Q16, Q42, Q47, Q48.
topic Environmental Pollution, Energy Policy, Alternative Fuels, Biogas, Renewable Energy, Anaerobic Digestion JEL Classifications: Q16, Q42, Q47, Q48.
description In line with the goals of the Paris Agreement and the guidelines of Conpes 3874 of 2016, Colombia has adopted different strategies to optimize the use of biomass as an energy source and the management of materials in urban centers, establishing short and long term goals that convene actors towards the innovation of traditional models to turn them into circulars, proposing promotion mechanisms to be developed as enablers of the circular economy, among which is the production of biogas from different economic sectors. This document shows the current situation of biogas in Colombia, its participation in the national electricity sector, as well as the existing potential for its application and diversification of the existing energy matrix.
publishDate 2020
dc.date.issued.none.fl_str_mv 2020-06-25
dc.date.submitted.none.fl_str_mv 2020-03-26
dc.date.accessioned.none.fl_str_mv 2022-11-15T19:28:24Z
dc.date.available.none.fl_str_mv 2022-11-15T19:28:24Z
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dc.type.spa.spa.fl_str_mv Artículo
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dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12834/818
dc.identifier.doi.none.fl_str_mv 10.32479/ijeep.9639
dc.identifier.instname.spa.fl_str_mv Universidad del Atlántico
dc.identifier.reponame.spa.fl_str_mv Repositorio Universidad del Atlántico
url https://hdl.handle.net/20.500.12834/818
identifier_str_mv 10.32479/ijeep.9639
Universidad del Atlántico
Repositorio Universidad del Atlántico
dc.language.iso.spa.fl_str_mv eng
language eng
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dc.publisher.place.spa.fl_str_mv Barranquilla
dc.publisher.sede.spa.fl_str_mv Sede Norte
dc.source.spa.fl_str_mv Econjournals
institution Universidad del Atlántico
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spelling Durán Contreras, Micheld149a046-1ffc-48e9-9c8c-9c3194039da2Sequeda Barros, RodrigoZapata, JorlanyVanegas Chamorro, MarleyAlbis Arrieta, Alberto2022-11-15T19:28:24Z2022-11-15T19:28:24Z2020-06-252020-03-26https://hdl.handle.net/20.500.12834/81810.32479/ijeep.9639Universidad del AtlánticoRepositorio Universidad del AtlánticoIn line with the goals of the Paris Agreement and the guidelines of Conpes 3874 of 2016, Colombia has adopted different strategies to optimize the use of biomass as an energy source and the management of materials in urban centers, establishing short and long term goals that convene actors towards the innovation of traditional models to turn them into circulars, proposing promotion mechanisms to be developed as enablers of the circular economy, among which is the production of biogas from different economic sectors. This document shows the current situation of biogas in Colombia, its participation in the national electricity sector, as well as the existing potential for its application and diversification of the existing energy matrix.application/pdfenghttp://creativecommons.org/licenses/by-nc/4.0/Attribution-NonCommercial 4.0 Internationalinfo:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2EconjournalsA Look to the Biogas Generation from Organic Wastes in ColombiaPúblico generalEnvironmental Pollution, Energy Policy, Alternative Fuels, Biogas, Renewable Energy, Anaerobic Digestion JEL Classifications: Q16, Q42, Q47, Q48.info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionArtículohttp://purl.org/coar/version/c_970fb48d4fbd8a85http://purl.org/coar/resource_type/c_2df8fbb1BarranquillaSede NorteACOLGEN. (2020), Capacidad Instalada en Colombia. Available from: https://www.acolgen.org.co.Agrositio. (2019), Scania Comenzará a Producir Camiones Impulsados a Biogás en Brasil a Partir de 2020. Available from: https://www. agrositio.com.ar/noticia/206094-scania-comenzara-a-producircamiones- impulsados-a-biogas-en-brasil-a-partir-de-2020.ANEEL. (2020), Matriz de Energía Eléctrica. Available from: http://www.2.aneel.gov.br/aplicacoes/capacidadebrasil/ operacaocapacidadebrasil.cfm.Biogás Doña Juana. (2020), Biogas Doña Juana. Available from: http:// www.biogas.com.co/#top.Biomass Magazine. (2016), European Biomass Association Releases 2016 Bioenergy Outlook. Available from: http://www.biomassmagazine. com/articles/13837/european-biomass-association-releases-2016- bioenergy-outlook.Cabello, J.J., Morejón, M.B., Gutiérrez, A.S., García, A.P., Ulloa, M.C., Martínez, F.J.R., Rueda-Bayona, J.G. (2019), A look to the electricity generation from non-conventional renewable energy sources in Colombia. International Journal of Energy Economics and Policy, 9, 15-25.Cámara de Comercio. (2016), Normatividad Para Las Energías Renovables en Colombia. Cali: Cámara de Comercio.Cámara de Comercio. (2017), Centrales Eléctricas en el Mundo a Partir de Biomasa. Cali: Cámara de Comercio.Castillo, Y., Gutiérrez, M.C., Vanegas-Chamorro, M., Valencia, G., Villicaña, E. (2015), Rol de las fuentes no convencionales de energía en el sector eléctrico colombiano. Prospectiva, 13, 39-51.Congreso de la República de Colombia. (2014), Ley No. 1715. Bogotá, DC: Congreso de la República de Colombia.CREG. (2009a), Documento CREG 056: Regulación Aplicable al Biogás. Bogotá, DC: CREG.CREG. (2009b), Resolución No. 066 de 2009. Bogotá, DC: CREG.CREG. (2012a), Documento 079: Normas Aplicables al Servicio Público Domiciliario de Gas Combustible Con Biogás. Bogotá, DC: CREG.CREG. (2012b), Resolución No. 135 de 2012. Bogotá, DC: CREG.CREG. (2016a), Resolución No. 087 de 2016. Bogotá, DC: CREG.CREG. (2016b), Documento CREG-151. Bogotá, DC: CREG.CREG. (2016c), Resolución No. 240 de 2016. Bogotá, DC: CREG. DAABON. (2016), Plan Manejo Ambiental. Aracataca, Magdalena: DAABON.EBA. (2019), Statistical Report: European Overview. Brussels: EBA.EPM. (2017), Gestión Social y Ambiental. Available from: https:// www.2017.sostenibilidadgrupoepm.com.co/gestion-social-yambiental/ nuestra-gestion/temas-materiales/diversificacion-deenergias- renovables/biogas.Fedebiocombustibles. (2016), Palmicultores Son Capaces de Producir Energía. Available from: http://www.fedebiocombustibles.com/ nota-web-id-2221-titulo-palmicultores_son_capaces_de_producir_ energ%c3%ada.htm.Gobierno de Colombia. (2018), Estrategia Nacional de Economía Circular. Bogotá, DC: Gobierno de Colombia.Heraldo. (2013), Autogeneración Energética Por Biogás, Apuesta de Daabon. Available from: https://www.elheraldo.co/noticias/ agropecuaria/autogeneracion-energetica-por-biogas-apuesta-dedaabon- 113053.Huevos Kikes. (2017), Bioenergía Para la Sostenibilidad. Available from: https://www.huevoskikes.com/noticias/bioenergia-para-lasostenibilidad.Japan for Sustainability. (2018), Japanese Railway Begins Biogas Prodution Using Food Waste From Station Buildings. Available from: https://www.japanfs.org/en/news/archives/news_id035992.html.Jardín Botánico de Bogotá. (2017), UASESP y Jardín Botánico Obtienen Segundo Puesto en Innovación Que Deja Huella. Available from: http://www.jbb.gov.co/index.php/noticias-del-jardin/item/161- uaesp-y-jardin-botanico-obtienen-segundo-puesto-en-innovacionque- deja-huella.Köttner, M. (2019), Overview of the Biogas Industry and Introduction to Biogas Technology Content: Outlook On Biomethane. Stuttgart: Universidad del Atlántico.Manuelita. (2016), Manuelita Inicia Venta de Energía Eléctrica a Partir de Fuentes Renovables. Available from: http://www.manuelita.com/ manuelita-noticias/manuelita-inicia-venta-energia-electrica-partirfuentes- renovables/?lang=en.Manuelita. (2018), Informe de Sostenibilidad. Cali: Manuelita.MINENERGÍA, PNUD, FAO, GEF. (2011), Manual de Biogás. Santiago de Chile: MINENERGÍA.MÖBIUS. (2017), Casos de Éxito. Available from: http://www.mobius. net.co/casos-de-exito.ONU. (2017), United Nations Famework Convention on Climate Change. Available from: https://www.unfccc.int/es/news/la-conferencia-dela- onu-sobre-el-cambio-climatico-2017-busca-aumentar-de-manerarapida- y-conjunta.PARATEC XM. (2020), Capacidad Efectiva Por Tipo de Generación. Available from: http://www.paratec.xm.com.co/paratec/sitepages/ generacion.aspx?q=capacidad.Porkcolombia. (2017), Boletín Ambiental. Colombia: Porkcolombia.Portafolio. (2014), Manuelita Busca Su Sostenibilidad Productiva. Available from: https://www.portafolio.co/negocios/empresas/ manuelita-busca-sostenibilidad-productiva-49220.Portafolio. (2015), Palmicultores Son Capaces de Producir Energía. Available from: https://www.portafolio.co/economia/finanzas/ palmicultores-son-capaces-producir-energia-30820.Promoenergía. (2019), Pequeñas Plantas de Biogás. Available from: http:// www.promoenergia.co/biodigestores/index.html.Raboni, M., Urbini, G. (2014), Production and use of biogas in Europe: A survey of current status and perspectives. Ambiente and Água: An Interdisciplinary Journal of Applied Science, 9(2), 191-202.SCS Engineers. (2007), Informe de Evaluación Relleno Sanitario La Pradera. Medellín, Colombia: SCS Engineers.SEAT. (2019), From the Recucling Bin to Your Fuel Tank. Available from: https://www.seat.com/company/news/company/seat-turnsorganic- waste-into-fuel.html.SENA. (2015), Aliados en la Producción de Biogás. Available from: http://www.sena.edu.co/es-co/noticias/paginas/noticia. aspx?idnoticia=1093.UAESP. (2019), Informe Mensual de Supervición y Control. Bogotá, DC: UAESP.UNAL, TECSOL. (2018), Estimación del Potencial de Conversión a Biogás de la Biomasa en Colombia y su Aprovechamiento. Bogotá DC: UNAL.UNAL. (2019), Colombia Afrontaría Escasez de Gas Natural en 2024. Available from: https://www.agenciadenoticias.unal.edu. co/detalle/article/colombia-afrontaria-escasez-de-gas-naturalen- 2024.html.UPME. (2011), Atlas de Potencias Energético de la Biomasa Residual en Colombia. Bucaramanga (Colombia): Universidad Industrial de Santander, 2011. Bogota: UPME.UPME. (2015), Plan Energético Nacional Colombia: Ideario Energético 2050. Bogota: UPME.UPME. (2017), Plan de Expansión de Referencia Generación- Transmisión. Bogotá, DC: UPME.WBA. (2014), Global Bioenergy Statistics. Europe: WBA.WBA. (2019), Global Bioenergy Statistics. Europe: WBA.XM. (2018), Overview Colombia Power System and Renewable Integration. Colombia: XM.XM. (2020), Qué Hace XM? 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