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Título: Torrefaction of wood construction waste and eucalyptus blends for biofuel with enhanced energy density and low ash content
Autor(es): Barbosa, Thais
Chaves, Bruno Santana
Galvão, Luiz Gustavo
Rodrigues, Juliana Sabino
Lamas, Giulia Cruz
Cardoso, Marcela Rodrigues
Rousset, Patrick
Silveira, Edgar Amarral
Afiliação do autor: University of Brasília, Mechanical Sciences Graduate Program, Laboratory of Energy and Environment
Forest Products Laboratory, Brazilian Forest Service
Forest Products Laboratory, Brazilian Forest Service
Forest Products Laboratory, Brazilian Forest Service
University of Brasília, Mechanical Sciences Graduate Program, Laboratory of Energy and Environment
University of Brasília, Mechanical Sciences Graduate Program, Laboratory of Energy and Environment
French Agriculture Research Centre for International Development
University of Brasília, Mechanical Sciences Graduate Program, Laboratory of Energy and Environment
Assunto: Torrefação
Resíduos
Madeira
Biocombustível
Data de publicação: Jun-2023
Editora: ETA-Florence Renewable Energies
Referência: BARBOSA, Thais et al. Torrefaction of wood construction waste and eucalyptus blends for biofuel with enhanced energy density and low ash content. In: EUROPEAN BIOMASS CONFERENCE AND EXHIBITION. 31., 2023, Bologna, Italy. Proceedings [...]. Florence, Italy: ETA-Florence Renewable Energies, 2023. DOI: https://dx.doi.org/10.5071/31stEUBCE2023-1CV.2.10. Disponível em: http://www.etaflorence.it/proceedings/?detail=20375&mode=topic&categories=0&items=%2D%2D&searchstring=Lamas&limit=0. Acesso em: 30 out. 2023.
Abstract: Civil construction is one of the most important economic and social development areas. In this sector, many natural resources are used, generating significant waste. It is estimated that 98% of Brazil’s civil construction waste could be recycled, but only 21% has a correct destination. Wood construction waste (WCW) (15% of all construction waste) is a prominent biomass source with potential energy use. Further, lignocellulosic biomass is considered a carbon-neutral biofuel. However, biomass has some limitations for energy use; it has a high moisture content, low calorific value, and low density, among other barriers. In addition, WCW contains contamination, such as cement traces, which include elements that increase the ash content. Therefore, the formation of blends is a possible solution to take advantage of the residue. In addition, torrefaction treatment provides a solid product with higher energy density and better properties for further valuation on thermochemical routes. In this context, this study aims to perform the thermal upgrade of biomass blends by applying torrefaction pre-treatment. First, blends were established by mixing 50:50 of WCW and Eucalyptus. Then, torrefaction treatment was performed under inert conditions at 200, 250, and 300 °C at 50 min (isotherm). Finally, the torrefied product was assessed by investigating solid yield evolution, ash content, higher heating value, and energy yield.B250 possesses 1.24% of ash content (less than 1.48% of WCW) and an HHV increment of 5%, presenting 20.76 MJ kg–1, being, for instance, the suitable treatment for reducing ash content while upgrading HHV.
Unidade Acadêmica: Faculdade de Tecnologia (FT)
Departamento de Engenharia Mecânica (FT ENM)
Programa de pós-graduação: Programa de Pós-Graduação em Ciências Mecânicas
DOI: https://dx.doi.org/10.5071/31stEUBCE2023-1CV.2.10
Versão da editora: http://www.etaflorence.it/proceedings/?detail=20375&mode=topic&categories=0&items=%2D%2D&searchstring=Lamas&limit=0
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