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The current status of liquid biofuels in Chile

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  • García, A.E.
  • Carmona, R.J.
  • Lienqueo, M.E.
  • Salazar, O.

Abstract

Chile depends on foreign sources for energy. A solution for this problem is needed to guarantee stability and economic development. Public policies have been proposed involving diversification of the power matrix with an increasing share for Non-conventional Renewable Energies (NCRE) from unconventional resources in the medium- and long-term. In this framework, new funding strategies are fundamental to encourage applied research in this field. Main research subjects are considered: survey, quantification and characterization of raw materials, introduction of energy crops and studies focused on transportation, management and conversion of lignocellulose for the second-generation biofuel industry. A recent regulatory framework allows the substitution of 2 or 5% of gasoline and diesel by ethanol and biodiesel, respectively; however, this is not mandatory because biofuel supply is still non-secured. On the other hand, the scenario for private initiatives focused on first-generation biofuels is not promising, and this may continue in time depending on the price of imported biofuels and local production costs. In 2015, production of second-generation biodiesel in Chile should be fundamentally based on forestry residues using Fischer–Tropsch processes. Local efforts consider biochemical transformation of lignocelluloses including agricultural wastes. Our group is focused on optimization of local second-generation bioethanol production; preliminary results are presented here.

Suggested Citation

  • 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.
  • Handle: RePEc:eee:energy:v:36:y:2011:i:4:p:2077-2084
    DOI: 10.1016/j.energy.2010.06.005
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    Cited by:

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    2. de Barros, Marisa Maia & Szklo, Alexandre, 2015. "Petroleum refining flexibility and cost to address the risk of ethanol supply disruptions: The case of Brazil," Renewable Energy, Elsevier, vol. 77(C), pages 20-31.
    3. Brexó, Ramon Peres & Sant’Ana, Anderson S., 2017. "Impact and significance of microbial contamination during fermentation for bioethanol production," Renewable and Sustainable Energy Reviews, Elsevier, vol. 73(C), pages 423-434.
    4. Amigun, B. & Musango, J.K. & Brent, A.C., 2011. "Community perspectives on the introduction of biodiesel production in the Eastern Cape Province of South Africa," Energy, Elsevier, vol. 36(5), pages 2502-2508.
    5. Avinash, A. & Subramaniam, D. & Murugesan, A., 2014. "Bio-diesel—A global scenario," Renewable and Sustainable Energy Reviews, Elsevier, vol. 29(C), pages 517-527.
    6. 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).
    7. Bidart, Christian & Fröhling, Magnus & Schultmann, Frank, 2014. "Livestock manure and crop residue for energy generation: Macro-assessment at a national scale," Renewable and Sustainable Energy Reviews, Elsevier, vol. 38(C), pages 537-550.
    8. Markovska, Natasa & Duić, Neven & Mathiesen, Brian Vad & Guzović, Zvonimir & Piacentino, Antonio & Schlör, Holger & Lund, Henrik, 2016. "Addressing the main challenges of energy security in the twenty-first century – Contributions of the conferences on Sustainable Development of Energy, Water and Environment Systems," Energy, Elsevier, vol. 115(P3), pages 1504-1512.
    9. Rodríguez-Monroy, Carlos & Mármol-Acitores, Gloria & Nilsson-Cifuentes, Gabriel, 2018. "Electricity generation in Chile using non-conventional renewable energy sources – A focus on biomass," Renewable and Sustainable Energy Reviews, Elsevier, vol. 81(P1), pages 937-945.

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