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    Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/10259/11258

    Título
    Biofuels as a sustainable energy solution: Density measurement and modeling of waste cooking oil and DBE blend
    Autor
    Yatim, Fatima Ezzahra
    Samadi, Khaoula
    Abala, Ilham
    Lifi, Mohamed
    Muñoz Rujas, NataliaAutoridad UBU Orcid
    Aguilar Romero, FernandoAutoridad UBU Orcid
    Alaoui, Fatima E. M.Autoridad UBU Orcid
    Publicado en
    Renewable Energy. 2025, V. 256, p. 124469
    Editorial
    Elsevier
    Fecha de publicación
    2025-09
    ISSN
    0960-1481
    DOI
    10.1016/j.renene.2025.124469
    Resumen
    Bioenergy and biofuels are at a critical stage of development. Their role in decarbonising the transport sector, particularly in reducing emissions from shipping and aviation, is widely recognized. Waste Cooking Oil Biodiesel (WCOB) is a promising biofuel, due to its economic viability and sustainability. Additionally, oxygenated additives, such as Dibutyl Ether (DBE), enhance the properties of biofuel blends by improving combustion efficiency and reducing emissions. In this study, the density of WCOB and DBE, was systematically investigated under controlled temperature and pressure conditions. Four mixtures with mass fractions of 0.3500, 0.4998, 0.6750, and 0.8492 were prepared. Density measurements were performed over a temperature range of 298.15 K–393.15 K and a pressure range of 1–140 MPa. The Tait equation was used to correlate the experimental density data, which were subsequently used to determine the derived thermodynamic properties of isobaric expansion and isothermal compressibility. The blend density was also predicted using the PC-SAFT equation of state and artificial neural networks (ANN). Models accuracy was evaluated and discussed using a statistical metrics. The ANN model provided the best accuracy for the complete dataset, with AAD = 0.1246 %, MD = 2.3046 % and RMSE = 1.84.10−3, demonstrating its effectiveness in predicting blend densities.
    Palabras clave
    Biofuel blends
    Waste cooking oil
    Dibutyl ether
    Density
    PC-Saft model
    Artificial neural network
    Materia
    Ingeniería Química
    Chemical engineering
    Termodinámica
    Thermodynamics
    URI
    https://hdl.handle.net/10259/11258
    Versión del editor
    https://doi.org/10.1016/j.renene.2025.124469
    Aparece en las colecciones
    • Artículos MEMIC
    Attribution-NonCommercial-NoDerivatives 4.0 Internacional
    Documento(s) sujeto(s) a una licencia Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 Internacional
    Ficheros en este ítem
    Nombre:
    Yatim-re_2025.pdfEmbargado hasta: 2027-09-22
    Tamaño:
    978.3Kb
    Formato:
    Adobe PDF
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