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dc.contributor.authorVictoria Rodríguez, Javieres-ES
dc.contributor.authorMorales Polo, Carloses-ES
dc.contributor.authorCledera Castro, María del Mares-ES
dc.date.accessioned2025-09-15T07:56:17Z-
dc.date.available2025-09-15T07:56:17Z-
dc.date.issued2025-10-01es_ES
dc.identifier.issn2213-1388es_ES
dc.identifier.urihttps:doi.org10.1016j.seta.2025.104496es_ES
dc.identifier.urihttp://hdl.handle.net/11531/104020-
dc.descriptionArtículos en revistases_ES
dc.description.abstractes-ES
dc.description.abstractThe increasing focus on renewable energy has spotlighted bioenergy from waste materials, emphasizing waste-based biorefinery processes for waste management and renewable energy production. Anaerobic co-digestion has emerged as a viable alternative, producing higher energy–density biogas. This study conducts a comparative environmental life cycle analysis of current waste management practices, fertilizer consumption, and domestic heat consumption with the incorporation of a biomethane plant in a small municipality in South-Spain. It evaluates the combination of more than two substrates while conducting a comprehensive analysis of the full range of available waste to optimize biomethane production and minimize the carbon footprint. Additionally, a novel business model is introduced, involving energy communities comprising municipal stakeholders, small businesses, and households engaged in gas self-consumption. This model aims to benefit the municipality economically and environmentally, ensuring local energy supply security and potentially offering affordable renewable fuel prices through European funding subsidies. Currently, while gas-based community energy models exist, the injection of biomethane into the grid for community consumption is yet to be realized. However, the European Union’s goals of promoting a circular economy and empowering rural sectors indicate progress towards this objective. From 2027, a new EU Emissions Trading System 2 scheme will impose emissions payments on buildings and small industries, highlighting the need for cost-effective decarbonization strategies where biomethane could play a crucial role. The environmental impact assessment reveals that implementing a biomethane injection system significantly mitigates all environmental impact categories. A well-balanced co-digestion mixture enhances biomethane production and emission abatement, achieving an 89 reduction in CO2-eq emissions in domestic heating. Establishing a cooperative model with municipal collaboration proves viable, with a 17 internal rate of return and a possibility to decrease the price paid by the energy community below 40€MWh. Potential revenue from biogenic CO2-eq, compost, and gas sales through Guarantees of Origin and Proof of Sustainability further enhances profitability, underscoring the environmental and economic potential of anaerobic co-digestion within energy communities.en-GB
dc.language.isoen-GBes_ES
dc.sourceRevista: Sustainable Energy Technologies and Assessments, Periodo: 1, Volumen: online, Número: , Página inicial: 104496-1, Página final: 104496-13es_ES
dc.subject.otherInstituto de Investigación Tecnológica (IIT)es_ES
dc.titleEnvironmental and techno-economic analysis of a biomethane energy community in southern Spaines_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.description.versioninfo:eu-repo/semantics/publishedVersiones_ES
dc.rights.holderes_ES
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses_ES
dc.keywordses-ES
dc.keywordsAnaerobic co-digestion; Biomethane energy community; Environmental life cycle assessment; Cost-benefit analysis; Rural decarbonizationen-GB
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