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Mapping of Alternative Oilseeds from the Brazilian Caatinga and Assessment of Catalytic Pathways toward Biofuels Production

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  • Aline Scaramuzza Aquino

    (Northeast Strategic Technologies Center (CETENE), Ministry of Science, Technology and Innovations (MCTI), Av. Prof. Luís Freire, 01, Cidade Universitária, Recife 50740-545, PE, Brazil
    These authors contributed equally to this work.)

  • Milena Fernandes da Silva

    (Northeast Strategic Technologies Center (CETENE), Ministry of Science, Technology and Innovations (MCTI), Av. Prof. Luís Freire, 01, Cidade Universitária, Recife 50740-545, PE, Brazil
    These authors contributed equally to this work.)

  • Thiago Silva de Almeida

    (Northeast Strategic Technologies Center (CETENE), Ministry of Science, Technology and Innovations (MCTI), Av. Prof. Luís Freire, 01, Cidade Universitária, Recife 50740-545, PE, Brazil)

  • Filipe Neimaier Bilheri

    (Northeast Strategic Technologies Center (CETENE), Ministry of Science, Technology and Innovations (MCTI), Av. Prof. Luís Freire, 01, Cidade Universitária, Recife 50740-545, PE, Brazil)

  • Attilio Converti

    (Department of Civil, Chemical and Environmental Engineering, University of Genoa (UNIGE), Via Opera Pia 15, 16145 Genoa, Italy)

  • James Correia de Melo

    (Northeast Strategic Technologies Center (CETENE), Ministry of Science, Technology and Innovations (MCTI), Av. Prof. Luís Freire, 01, Cidade Universitária, Recife 50740-545, PE, Brazil)

Abstract

Biofuels are increasingly important renewable resources in the world’s energy matrix that have challenged the scientific community as well as small and large farmers to develop alternatives to fossil fuels in order to achieve the aims of energy transition. In particular, Brazil’s proven competitiveness in agribusiness together with its rich biodiversity put the country in a key position in the biofuels market. The semiarid Caatinga of northeastern Brazil, an exclusive biome rich in many oilseed species suitable for potential energy purposes, is of particular interest in this field. Nowadays, soybeans are the main feedstock used for the production of biodiesel, but, due to the increasing demand for biofuels, the search for alternative sources of oil from tropical flora with high productivity is crucial. Under this premise, this systematic review focuses on mapping Caatinga’s vegetable oil crops that could be used as alternative raw materials for biofuels’ production in Brazil, in addition to traditional soybeans and sugarcane. To gain more detailed insight into these matrices, their main properties, including oil content, fatty acid profile and physicochemical properties, are discussed. Moreover, an overview is provided of processes to synthesize different types of biofuels, particularly biodiesel and aviation biokerosene, including the routes employing homogeneous, enzymatic and mainly heterogeneous catalysts. Finally, future prospects and challenges for renewable biofuels and the Caatinga biome are addressed.

Suggested Citation

  • Aline Scaramuzza Aquino & Milena Fernandes da Silva & Thiago Silva de Almeida & Filipe Neimaier Bilheri & Attilio Converti & James Correia de Melo, 2022. "Mapping of Alternative Oilseeds from the Brazilian Caatinga and Assessment of Catalytic Pathways toward Biofuels Production," Energies, MDPI, vol. 15(18), pages 1-25, September.
  • Handle: RePEc:gam:jeners:v:15:y:2022:i:18:p:6531-:d:908915
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    1. de Souza, T.A.Z. & Pinto, G.M. & Julio, A.A.V. & Coronado, C.J.R. & Perez-Herrera, R. & Siqueira, B.O.P.S. & da Costa, R.B.R. & Roberts, J.J. & Palacio, J.C.E., 2022. "Biodiesel in South American countries: A review on policies, stages of development and imminent competition with hydrotreated vegetable oil," Renewable and Sustainable Energy Reviews, Elsevier, vol. 153(C).
    2. Alherbawi, Mohammad & McKay, Gordon & Mackey, Hamish R. & Al-Ansari, Tareq, 2021. "Jatropha curcas for jet biofuel production: Current status and future prospects," Renewable and Sustainable Energy Reviews, Elsevier, vol. 135(C).
    3. Oliveira, João Leonardo F. & Batista, Luana M.B. & Alburquerque dos Santos, Nataly & Araújo, Aruzza M.M. & Fernandes, Valter J. & Araujo, Antonio S. & Alves, Ana P.M. & Gondim, Amanda D., 2021. "Clay-supported zinc oxide as catalyst in pyrolysis and deoxygenation of licuri (Syagrus coronata) oil," Renewable Energy, Elsevier, vol. 168(C), pages 1377-1387.
    4. Chia-Chi Chang & Syuan Teng & Min-Hao Yuan & Dar-Ren Ji & Ching-Yuan Chang & Yi-Hung Chen & Je-Lueng Shie & Chungfang Ho & Sz-Ying Tian & Cesar Augusto Andrade-Tacca & Do Van Manh & Min-Yi Tsai & Mei-, 2018. "Esterification of Jatropha Oil with Isopropanol via Ultrasonic Irradiation," Energies, MDPI, vol. 11(6), pages 1-15, June.
    5. Long, Feng & Liu, Weiguo & Jiang, Xia & Zhai, Qiaolong & Cao, Xincheng & Jiang, Jianchun & Xu, Junming, 2021. "State-of-the-art technologies for biofuel production from triglycerides: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 148(C).
    6. Abul Kalam Hossain & Abdul Hussain, 2019. "Impact of Nanoadditives on the Performance and Combustion Characteristics of Neat Jatropha Biodiesel," Energies, MDPI, vol. 12(5), pages 1-16, March.
    7. Shaikh M. S. U. Eskander & Sam Fankhauser, 2020. "Reduction in greenhouse gas emissions from national climate legislation," Nature Climate Change, Nature, vol. 10(8), pages 750-756, August.
    8. Arnaldo Walter & Joaquim Seabra & Jansle Rocha & Marjorie Guarenghi & Nathália Vieira & Desirèe Damame & João Luís Santos, 2021. "Spatially Explicit Assessment of the Feasibility of Sustainable Aviation Fuels Production in Brazil: Results of Three Case Studies," Energies, MDPI, vol. 14(16), pages 1-21, August.
    9. Andreas Meurer & Jürgen Kern, 2021. "Fischer–Tropsch Synthesis as the Key for Decentralized Sustainable Kerosene Production," Energies, MDPI, vol. 14(7), pages 1-21, March.
    10. Pascoal, C.V.P. & Oliveira, A.L.L. & Figueiredo, D.D. & Assunção, J.C.C., 2020. "Optimization and kinetic study of ultrasonic-mediated in situ transesterification for biodiesel production from the almonds of Syagrus cearensis," Renewable Energy, Elsevier, vol. 147(P1), pages 1815-1824.
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