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dc.contributor.advisorMuñoz Torre, Raúl es
dc.contributor.advisorGarcía Encina, Pedro Antonio es
dc.contributor.authorCantera Ruiz de Pellón, Sara
dc.contributor.editorUniversidad de Valladolid. Escuela de Ingenierías Industriales es
dc.date.accessioned2018-09-05T10:40:33Z
dc.date.available2018-09-05T10:40:33Z
dc.date.issued2018
dc.identifier.urihttp://uvadoc.uva.es/handle/10324/31396
dc.description.abstractMethane (CH4), which is considered the second most important greenhouse gas (GHG), represents nowadays 18 % of the total EU-28 GHG emissions and possesses a global warming potential 25 times higher than that of CO2 (in a 100 yr horizon). The methane produced during the anaerobic digestion of organic waste (wastewater and organic solid waste) can be collected and combusted for the generation of electricity and/or heat, thus replacing fossil fuels. However, methane can be only used for energy generation when its concentration in the emission is higher than 20 %. Unfortunately, more than 56 % of the anthropogenic CH4 emissions contain CH4 concentrations below 5 %, which significantly limits the implementation of energy recovery-based treatment technologies. Therefore, cost-efficient abatement methods to mitigate the pernicious environmental effects of residual CH4 emissions are required.es
dc.description.sponsorshipDepartamento de Ingeniería Química y Tecnología del Medio Ambientees
dc.format.mimetypeapplication/pdfes
dc.language.isoengeng
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subjectBiorreactoreses
dc.subjectBiogáses
dc.titleInnovative approaches for enhancing the cost-efficiency of biological methane abatementes
dc.typeinfo:eu-repo/semantics/doctoralThesises
dc.description.degreeDoctorado en Ingeniería Química y Ambientales
dc.identifier.opacrecnumb1795597
dc.identifier.doi10.35376/10324/31396
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 International


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