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Integrated production of biodiesel in a soybean biorefinery: Modeling, simulation and economical assessment

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  • Granjo, José F.O.
  • Duarte, Belmiro P.M.
  • Oliveira, Nuno M.C.

Abstract

Soybean is currently recognized as a high value crop, allowing the manufacture of a broad range of products. This contribution investigates the synergies resulting from coupling the production of biodiesel with soybean processing facilities, defining the core structure of a soy-based biorefinery. Simulations in Aspen Plus® were performed, employing a detailed modeling framework. A base case scenario was established, allowing a detailed economic assessment of the process, a profitability and risk analysis, as well as the identification of plant integration opportunities.

Suggested Citation

  • Granjo, José F.O. & Duarte, Belmiro P.M. & Oliveira, Nuno M.C., 2017. "Integrated production of biodiesel in a soybean biorefinery: Modeling, simulation and economical assessment," Energy, Elsevier, vol. 129(C), pages 273-291.
  • Handle: RePEc:eee:energy:v:129:y:2017:i:c:p:273-291
    DOI: 10.1016/j.energy.2017.03.167
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    References listed on IDEAS

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    1. Jegannathan, Kenthorai Raman & Eng-Seng, Chan & Ravindra, Pogaku, 2011. "Economic assessment of biodiesel production: Comparison of alkali and biocatalyst processes," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(1), pages 745-751, January.
    2. Pleşu, Valentin & Subirana Puigcasas, Joan & Benet Surroca, Guillem & Bonet, Jordi & Bonet Ruiz, Alexandra E. & Tuluc, Alexandru & Llorens, Joan, 2015. "Process intensification in biodiesel production with energy reduction by pinch analysis," Energy, Elsevier, vol. 79(C), pages 273-287.
    3. Vlysidis, Anestis & Binns, Michael & Webb, Colin & Theodoropoulos, Constantinos, 2011. "A techno-economic analysis of biodiesel biorefineries: Assessment of integrated designs for the co-production of fuels and chemicals," Energy, Elsevier, vol. 36(8), pages 4671-4683.
    4. Yun, Huimin & Wang, Meng & Feng, Wei & Tan, Tianwei, 2013. "Process simulation and energy optimization of the enzyme-catalyzed biodiesel production," Energy, Elsevier, vol. 54(C), pages 84-96.
    5. Milazzo, M.F. & Spina, F. & Primerano, P. & Bart, J.C.J., 2013. "Soy biodiesel pathways: Global prospects," Renewable and Sustainable Energy Reviews, Elsevier, vol. 26(C), pages 579-624.
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