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Production of Sustainable Aviation Fuels from Lignocellulosic Residues in Brazil through Hydrothermal Liquefaction: Techno-Economic and Environmental Assessments

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Autor(es):
Deuber, Raquel de Souza ; Bressanin, Jessica Marcon ; Fernandes, Daniel Santos ; Guimaraes, Henrique Real ; Chagas, Mateus Ferreira ; Bonomi, Antonio ; Fregolente, Leonardo Vasconcelos ; Watanabe, Marcos Djun Barbosa
Número total de Autores: 8
Tipo de documento: Artigo Científico
Fonte: ENERGIES; v. 16, n. 6, p. 21-pg., 2023-03-01.
Resumo

Decarbonization of the aviation sector relies on deployment of sustainable aviation fuels (SAF) at commercial scale. Hydrothermal liquefaction (HTL) has been recognized as a promising technology to help supply the increasing projected SAF demand. High availability of agro-industrial residues, combined with a well-established biorefinery system, makes the sugarcane industry in Brazil a good option for HTL technology deployment. Moreover, challenges regarding the economic feasibility of SAF from HTL could be partially addressed by the RenovaBio policy, a market-driven incentive mechanism of carbon credits implemented in Brazil. This study investigated both the techno-economic and life cycle assessment of SAF production from sugarcane lignocellulosic residues, considering HTL integrated to a first-generation ethanol distillery and a HTL stand-alone facility. The evaluated scenarios showed great climate mitigation potential, reaching a reduction of up to 73-82% when compared to fossil jet fuel. The minimum fuel selling price of SAF at 15.4 USD/GJ indicated potential of economic competitiveness with fossil jet fuel in the best integrated scenario. The economic benefits obtained from carbon credits are not enough to enable feasibility of HTL in the stand-alone scenarios, even with carbon prices projected at 125 USD/tonne CO2-eq avoided. (AU)

Processo FAPESP: 16/50403-2 - Valorização da cadeia produtiva descentralizada de biomassa visando a produção de biocombustíveis avançados: desenvolvimento e avaliação de rotas termoquímicas integradas à produção de biomassas e a rotas bioquímicas
Beneficiário:Antonio Maria Francisco Luiz Jose Bonomi
Modalidade de apoio: Auxílio à Pesquisa - Parceria para Inovação Tecnológica - PITE