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    Por favor, use este identificador para citar o enlazar este ítem:https://uvadoc.uva.es/handle/10324/73605

    Título
    Membrane materials for biogas purification and upgrading: Fundamentals, recent advances and challenges
    Autor
    Rodero Raya, María del RosarioAutoridad UVA
    Muñoz Torre, RaúlAutoridad UVA Orcid
    González Sánchez, Armando
    Ruiz, Héctor A.
    Quijano Govantes, GuillermoAutoridad UVA Orcid
    Año del Documento
    2024
    Editorial
    Elsevier
    Descripción
    Producción Científica
    Documento Fuente
    Journal of Environmental Chemical Engineering, octubre 2024, vol. 12, n. 5, 114106
    Resumen
    Biogas from the anaerobic digestion of organic waste stands as a renewable energy source with a large potential to reduce the global dependence on fossil fuels. Biogas applications as a vehicle fuel or natural gas substitute requires the separation of the main biogas components, namely methane and carbon dioxide. Such biogas separation is also necessary for valorizing carbon dioxide, which is a valuable molecule in food and beverage industries, chemical synthesis and greenhouses, among other industrial activities. While most biological technologies focused on biogas separation are still in the development phase, the use of membranes for this purpose has increased exponentially in the last decade due to its efficiency, compact design, economic feasibility, and easy scalability. This article provides a comprehensive overview of the current state of membrane technology, focusing on both fundamental principles and the latest advancements in membrane systems for biogas purification and upgrading. 6FDA-based polyimides and polymers of intrinsic microporosity offer promising prospects for advancing membrane technologies used in biogas upgrading. The incorporation of fillers, such as zeolites and metal-organic frameworks, into a polymer matrix to create mixed matrix membranes (MMMs) significantly enhances the overall performance (CO2 permeabilities up to 18,000 Barrer and CO2/CH4 selectivity values up to 85) and functionality of the membrane. However, the key challenges for MMMs remain in fabricating defect-free membranes with high CO2/CH4 selectivity and ensuring long-term stability over several months.
    Materias Unesco
    3303 Ingeniería y Tecnología Químicas
    3322.05 Fuentes no Convencionales de Energía
    Palabras Clave
    Biogas separation
    Carbon dioxide removal
    Biofuels
    Biomethane
    Membrane performance
    ISSN
    2213-3437
    Revisión por pares
    SI
    DOI
    10.1016/j.jece.2024.114106
    Patrocinador
    Unión Europea-NextGenerationEU (Margarita Salas)
    Junta de Castilla y León/FEDER (CL-EI-2021-07, UIC 315)
    Version del Editor
    https://www.sciencedirect.com/science/article/pii/S2213343724022371
    Propietario de los Derechos
    © 2024 The Author(s)
    Idioma
    eng
    URI
    https://uvadoc.uva.es/handle/10324/73605
    Tipo de versión
    info:eu-repo/semantics/publishedVersion
    Derechos
    openAccess
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    • DEP48 - Artículos de revista [265]
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    Attribution-NonCommercial-NoDerivatives 4.0 InternacionalLa licencia del ítem se describe como Attribution-NonCommercial-NoDerivatives 4.0 Internacional

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