PG-EAM - Programa de Pós-Graduação em Engenharia Aeronáutica e Mecânica
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Artigo 2021

Sugarcane Bagasse Torrefaction for fluidized bed gasification

Autores

Pedroso, Daniel Travieso
Machin, Einara Blanco
Cabrera-Barjas, Gustavo
Flores, Mauricio
Urra, Héctor Grandón
De Carvalho, Felipe Solferini
Silva Dos Santos, Maria Isabel
Machín, Adrian Blanco
Canettieri, Eliana Vieira
Pérez, Néstor Proenza
Dos Santos, Leila Ribeiro
De Carvalho, João Andrade

Applied Sciences Switzerland , vol. 11 , no. 13 , Article 6105

11
Citações
13
Autores

Resumo

© 2020 by the authors. Licensee MDPI, Basel, Switzerland.Sugarcane bagasse has a great potential to be used as biofuel; however, its use as feedstock in fluidized bed reactors is hampered due to its fibrous nature, low apparent density, high moisture content, and difficulties with its fluidization. The present study evaluated the torrefaction of sugarcane bagasse to propose suitable process conditions that balance the properties of the fuel obtained in the torrefaction and the process’s energy requirements. Based on the thermogravimetric analysis and previous reports, two final process temperatures (230 °C and 280 °C) and residence times (35 and 45 min) for the same heating rate (5 °C/min) and nitrogen flow (1 L/min) were evaluated. Within the experimental conditions evaluated, it can be concluded that for 30 min of residence time, the average target temperature of 230 °C should be high enough to produce a stable torrefacted bagasse with a 3.41% reduction in the volatile content and obtain 98.85% of energy yield. Higher temperatures increase the feedstock’s carbon content and energy density, but the reduction in energy yield and the fraction of volatiles do not justify higher temperatures or longer residence times for pretreating the sugarcane bagasse.

Palavras-chave

Biomass Entrained flow gasifier Gasification Sugarcane bagasse Torrefaction

Materials Science (all) (MATE) Instrumentation (PHYS) Engineering (all) (ENGI) Process Chemistry and Technology (CENG) Computer Science Applications (COMP) Fluid Flow and Transfer Processes (CENG)
: Scopus
Última atualização: 2026-06-25
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