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Biodiesel in South American countries: A review on policies, stages of development and imminent competition with hydrotreated vegetable oil

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  • 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.

Abstract

Economic and population growth have led to rapidly growing fuel consumption in South America. In order to supply this increasing demand while also using environmentally friendly and locally available feedstock, several countries have implemented the use of biofuels, in which biodiesel deserves special attention. While this alternative source of energy may reduce dependence on refining or importing fossil diesel, it also requires well-established policies and logistics for local industries to compete and succeed in producing a satisfactory quantity of biodiesel. This review compares the effectiveness of implemented policies in South American countries, providing a better understanding on cases of success and failure on the road to making biodiesel a regularly found fuel in the local transportation network. This assessment also clearly identifies different stages of development, pointing out that countries from the same region can have totally different outcomes according to political and market aspects. The main factors associated to cases of success, represented by Brazil, Argentina and Uruguay, were early implemented regulation policies, the solidity of local soybean industry and response to foreign competition. Finally, Hydrotreated Vegetable Oil (HVO) is a new and efficient green fuel used in Diesel engines and will likely present additional challenges for this sector, potentially replacing both diesel and biodiesel in the fuel network, and posing a challenge to even the most stable biodiesel industries, along with the potential vehicle electrification.

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  • 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).
  • Handle: RePEc:eee:rensus:v:153:y:2022:i:c:s1364032121010261
    DOI: 10.1016/j.rser.2021.111755
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    as
    1. Horta Nogueira, Luiz Augusto, 2007. "Biofuels potential in Guyana," Documentos de Proyectos 3547, Naciones Unidas Comisión Económica para América Latina y el Caribe (CEPAL).
    2. Sierra, Jaime Cevallos, 2016. "Estimating road transport fuel consumption in Ecuador," Energy Policy, Elsevier, vol. 92(C), pages 359-368.
    3. Lachman, Daniël A., 2011. "Leapfrog to the future: Energy scenarios and strategies for Suriname to 2050," Energy Policy, Elsevier, vol. 39(9), pages 5035-5044, September.
    4. Iriarte, Alfredo & Rieradevall, Joan & Gabarrell, Xavier, 2012. "Transition towards a more environmentally sustainable biodiesel in South America: The case of Chile," Applied Energy, Elsevier, vol. 91(1), pages 263-273.
    5. Cremonez, Paulo André & Feroldi, Michael & Feiden, Armin & Gustavo Teleken, Joel & José Gris, Diego & Dieter, Jonathan & de Rossi, Eduardo & Antonelli, Jhonatas, 2015. "Current scenario and prospects of use of liquid biofuels in South America," Renewable and Sustainable Energy Reviews, Elsevier, vol. 43(C), pages 352-362.
    6. Parra, Rony & Di Felice, Louisa Jane & Giampietro, Mario & Ramos-Martin, Jesus, 2018. "The metabolism of oil extraction: A bottom-up approach applied to the case of Ecuador," Energy Policy, Elsevier, vol. 122(C), pages 63-74.
    7. Tomei, Julia & Upham, Paul, 2009. "Argentinean soy-based biodiesel: An introduction to production and impacts," Energy Policy, Elsevier, vol. 37(10), pages 3890-3898, October.
    8. Kalghatgi, Gautam, 2018. "Is it really the end of internal combustion engines and petroleum in transport?," Applied Energy, Elsevier, vol. 225(C), pages 965-974.
    9. Duarte Souza Alvarenga Santos, Nathália & Rückert Roso, Vinícius & Teixeira Malaquias, Augusto César & Coelho Baêta, José Guilherme, 2021. "Internal combustion engines and biofuels: Examining why this robust combination should not be ignored for future sustainable transportation," Renewable and Sustainable Energy Reviews, Elsevier, vol. 148(C).
    10. Wilna Lesperance & Jules Sadefo-Kamdem & Laurent Linguet & Tommy Albarelo, 2018. "Renewable Energy in French Guiana: Prospects towards a Sustainable Development Scenario," Post-Print hal-02901631, HAL.
    11. Pietrosemoli, Licia & Rodríguez-Monroy, Carlos, 2019. "The Venezuelan energy crisis: Renewable energies in the transition towards sustainability," Renewable and Sustainable Energy Reviews, Elsevier, vol. 105(C), pages 415-426.
    12. Evangelos G. Giakoumis & Christos K. Sarakatsanis, 2019. "A Comparative Assessment of Biodiesel Cetane Number Predictive Correlations Based on Fatty Acid Composition," Energies, MDPI, vol. 12(3), pages 1-30, January.
    13. Bautista, Santiago, 2012. "A sustainable scenario for Venezuelan power generation sector in 2050 and its costs," Energy Policy, Elsevier, vol. 44(C), pages 331-340.
    14. Silva, Tatiane C. & Pinto, Gabriel M. & de Souza, Túlio A.Z. & Valerio, Victor & Silvério, Naidion M. & Coronado, Christian J.R. & Guardia, Eduardo Crestana, 2020. "Technical and economical evaluation of the photovoltaic system in Brazilian public buildings: A case study for peak and off-peak hours," Energy, Elsevier, vol. 190(C).
    15. Arango-Aramburo, S. & Ríos-Ocampo, J.P. & Larsen, E.R., 2020. "Examining the decreasing share of renewable energy amid growing thermal capacity: The case of South America," Renewable and Sustainable Energy Reviews, Elsevier, vol. 119(C).
    16. Espinoza, Vicente Sebastian & Fontalvo, Javier & Martí-Herrero, Jaime & Ramírez, Paola & Capellán-Pérez, Iñigo, 2019. "Future oil extraction in Ecuador using a Hubbert approach," Energy, Elsevier, vol. 182(C), pages 520-534.
    17. Bortel, Ivan & Vávra, Jiří & Takáts, Michal, 2019. "Effect of HVO fuel mixtures on emissions and performance of a passenger car size diesel engine," Renewable Energy, Elsevier, vol. 140(C), pages 680-691.
    18. García, A.E. & Carmona, R.J. & Lienqueo, M.E. & Salazar, O., 2011. "The current status of liquid biofuels in Chile," Energy, Elsevier, vol. 36(4), pages 2077-2084.
    19. Piastrellini, Roxana & Arena, Alejandro Pablo & Civit, Bárbara, 2017. "Energy life-cycle analysis of soybean biodiesel: Effects of tillage and water management," Energy, Elsevier, vol. 126(C), pages 13-20.
    20. Pelaez-Samaniego, M.R. & Garcia-Perez, M. & Cortez, L.A.B. & Oscullo, J. & Olmedo, G., 2007. "Energy sector in Ecuador: Current status," Energy Policy, Elsevier, vol. 35(8), pages 4177-4189, August.
    21. De Oliveira, Fernando C. & Lopes, Thiago S.A. & Parente, Virginia & Bermann, Celio & Coelho, Suani T., 2019. "The Brazilian social fuel stamp program: Few strikes, many bloopers and stumbles," Renewable and Sustainable Energy Reviews, Elsevier, vol. 102(C), pages 121-128.
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    3. 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.
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    5. Erika Loučanová & Miriam Olšiaková & Jana Štofková, 2022. "Ecological Innovation: Sustainable Development in Slovakia," Sustainability, MDPI, vol. 14(19), pages 1-12, October.

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