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Review of design works for the conversion of sugarcane to first and second-generation ethanol and electricity

Author

Listed:
  • Rami Bechara

    (IFPEN - IFP Energies nouvelles)

  • Adrien Gomez

    (IFPEN - IFP Energies nouvelles)

  • Valérie Saint-Antonin

    (IFPEN - IFP Energies nouvelles)

  • Schweitzer Jean-Marc

    (IFPEN - IFP Energies nouvelles)

  • Ensinas Adriano

    (UFPA - Federal University of Para - Universidade Federal do Pará - UFPA [Belém, Brazil])

  • François Maréchal

    (EPFL - Ecole Polytechnique Fédérale de Lausanne)

Abstract

The conversion of sugarcane, the world's largest crop, to energy vectors, namely first and second-generation ethanol and electricity, is an ongoing scientific endeavor. This conversion makes use of complex processes with numerous unit operations and process blocks addressed in literature. Such processes have also been the subject of detailed thermo-economic and techno-economic evaluations as well as the application of systematic methodologies involving simulation, heat integration, optimization and selection. Key works related to this field are discussed in this review along with their hypotheses and results. The main future technologies are also presented. This review is realized to provide the scientific community with accessible references, information and ideas that will ultimately help researchers build consolidated and optimal designs for this process.

Suggested Citation

  • Rami Bechara & Adrien Gomez & Valérie Saint-Antonin & Schweitzer Jean-Marc & Ensinas Adriano & François Maréchal, 2018. "Review of design works for the conversion of sugarcane to first and second-generation ethanol and electricity," Post-Print hal-01989924, HAL.
  • Handle: RePEc:hal:journl:hal-01989924
    DOI: 10.1016/j.rser.2018.02.020
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    Citations

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    Cited by:

    1. Mendiburu, Andrés Z. & Lauermann, Carlos H. & Hayashi, Thamy C. & Mariños, Diego J. & Rodrigues da Costa, Roberto Berlini & Coronado, Christian J.R. & Roberts, Justo J. & de Carvalho, João A., 2022. "Ethanol as a renewable biofuel: Combustion characteristics and application in engines," Energy, Elsevier, vol. 257(C).
    2. Pavão, Leandro V. & Santos, Lucas F. & Oliveira, Cássia M. & Cruz, Antonio J.G. & Ravagnani, Mauro A.S.S. & Costa, Caliane B.B., 2023. "Flexible heat integration system in first-/second-generation ethanol production via screening pinch-based method and multiperiod model," Energy, Elsevier, vol. 271(C).
    3. García, Antonio & Monsalve-Serrano, Javier & Martínez-Boggio, Santiago & Rückert Roso, Vinícius & Duarte Souza Alvarenga Santos, Nathália, 2020. "Potential of bio-ethanol in different advanced combustion modes for hybrid passenger vehicles," Renewable Energy, Elsevier, vol. 150(C), pages 58-77.
    4. Fernanda Zatti Barreto & Thiago Willian Almeida Balsalobre & Roberto Giacomini Chapola & Antonio Augusto Franco Garcia & Anete Pereira Souza & Hermann Paulo Hoffmann & Rodrigo Gazaffi & Monalisa Sampa, 2021. "Genetic Variability, Correlation among Agronomic Traits, and Genetic Progress in a Sugarcane Diversity Panel," Agriculture, MDPI, vol. 11(6), pages 1-15, June.
    5. Vasconcelos, Marcelo Holanda & Mendes, Fernanda Machado & Ramos, Lucas & Dias, Marina Oliveira S. & Bonomi, Antonio & Jesus, Charles Dayan F. & Watanabe, Marcos Djun B. & Junqueira, Tassia Lopes & Mil, 2020. "Techno-economic assessment of bioenergy and biofuel production in integrated sugarcane biorefinery: Identification of technological bottlenecks and economic feasibility of dilute acid pretreatment," Energy, Elsevier, vol. 199(C).
    6. García-Bustamante Carlos Alberto & Zepeda-Pirrón Manuel & Armendáriz-Arnez Cynthia & Aguilar-Rivera Noé, 2018. "Development of indicators for the sustainability of the sugar industry," Environmental & Socio-economic Studies, Sciendo, vol. 6(4), pages 22-38, December.

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