Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical...
- Autores
- García, Francisco Daniel; Aigner, Solange Nicole; Raffaeli, Natalia; Barotto, Antonio José; Spavento, Eleana; Escobar, Mariano Martín; Mansilla, Marcela Ángela; Bacigaluoe, Alejandro
- Año de publicación
- 2026
- Idioma
- inglés
- Tipo de recurso
- artículo
- Estado
- versión aceptada
- Descripción
- This study explores the use of black soldier fly larvae protein as a bio-based adhesive to produce particleboards from sugarcane bagasse. A comprehensive evaluation was conducted, including rheological characterization of the adhesive and physical–mechanical testing of the panels according to European standards. The black soldier fly larvae-based adhesive exhibited gel-like viscoelastic behavior, rapid partial structural recovery after shear, and favorable application properties. Particleboards manufactured with this adhesive and sugarcane bagasse achieved promising mechanical performance, with modulus of rupture and modulus of elasticity values of 30.2 and 3500 MPa, respectively. Internal bond strength exceeded 0.4 MPa, complying with European standard 312-3 specifications. For comparative purposes, a panel made with Eucalyptus grandis particles was also produced under the same conditions to demonstrate the versatility of the adhesive system. Compared to other bio-based and synthetic adhesives, this bio-based system showed competitive performance and derives from the bioconversion of organic residues. Protein adhesives were synthesized from Hermetia illucens larvae grown commercially on agricultural waste from potato chip production, emphasizing the renewable origin of both the biomass and the final adhesive. These results highlight the potential of insect proteins as sustainable and circular alternatives for the wood panel industry.
Fil: García, Francisco Daniel. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); Argentina
Fil: García, Francisco Daniel. Universidad Nacional de San Martín. Instituto de Calidad e Innovación Industrial (UNSAM-INCALIN); Argentina
Fil: Aigner, Solange Nicole. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); Argentina
Fil: Aigner, Solange Nicole. Universidad Nacional de San Martín. Instituto de Calidad e Innovación Industrial (UNSAM-INCALIN); Argentina
Fil: Raffaeli, Natalia. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); Argentina
Fil: Barotto, Antonio José. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); Argentina
Fil: Spavento, Eleana. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); Argentina
Fil: Escobar, Mariano Martín. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados (INTI); Argentina
Fil: Escobar, Mariano Martín. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); Argentina
Fil: Mansilla, Marcela Ángela. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados (INTI); Argentina
Fil: Mansilla, Marcela Ángela. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); Argentina
Fil: Bacigaluoe, Alejandro. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); Argentina
Fil: Bacigaluoe, Alejandro. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); Argentina - Fuente
- Journal of Renewable Materials 2026, 14(1), 2
- Materia
-
Bagazo
Tableros
Caña de azúcar
Economía circular
Desarrollo sustentable - Nivel de accesibilidad
- acceso abierto
- Condiciones de uso
- https://creativecommons.org/licenses/by/4.0/
- Repositorio
.jpg)
- Institución
- Instituto Nacional de Tecnología Industrial
- OAI Identificador
- nuevadc:2026GarciaFrancisco_pdf
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Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical PropertiesGarcía, Francisco DanielAigner, Solange NicoleRaffaeli, NataliaBarotto, Antonio JoséSpavento, EleanaEscobar, Mariano MartínMansilla, Marcela ÁngelaBacigaluoe, AlejandroBagazoTablerosCaña de azúcarEconomía circularDesarrollo sustentableThis study explores the use of black soldier fly larvae protein as a bio-based adhesive to produce particleboards from sugarcane bagasse. A comprehensive evaluation was conducted, including rheological characterization of the adhesive and physical–mechanical testing of the panels according to European standards. The black soldier fly larvae-based adhesive exhibited gel-like viscoelastic behavior, rapid partial structural recovery after shear, and favorable application properties. Particleboards manufactured with this adhesive and sugarcane bagasse achieved promising mechanical performance, with modulus of rupture and modulus of elasticity values of 30.2 and 3500 MPa, respectively. Internal bond strength exceeded 0.4 MPa, complying with European standard 312-3 specifications. For comparative purposes, a panel made with Eucalyptus grandis particles was also produced under the same conditions to demonstrate the versatility of the adhesive system. Compared to other bio-based and synthetic adhesives, this bio-based system showed competitive performance and derives from the bioconversion of organic residues. Protein adhesives were synthesized from Hermetia illucens larvae grown commercially on agricultural waste from potato chip production, emphasizing the renewable origin of both the biomass and the final adhesive. These results highlight the potential of insect proteins as sustainable and circular alternatives for the wood panel industry.Fil: García, Francisco Daniel. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); ArgentinaFil: García, Francisco Daniel. Universidad Nacional de San Martín. Instituto de Calidad e Innovación Industrial (UNSAM-INCALIN); ArgentinaFil: Aigner, Solange Nicole. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); ArgentinaFil: Aigner, Solange Nicole. Universidad Nacional de San Martín. Instituto de Calidad e Innovación Industrial (UNSAM-INCALIN); ArgentinaFil: Raffaeli, Natalia. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); ArgentinaFil: Barotto, Antonio José. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); ArgentinaFil: Spavento, Eleana. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); ArgentinaFil: Escobar, Mariano Martín. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados (INTI); ArgentinaFil: Escobar, Mariano Martín. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); ArgentinaFil: Mansilla, Marcela Ángela. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados (INTI); ArgentinaFil: Mansilla, Marcela Ángela. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); ArgentinaFil: Bacigaluoe, Alejandro. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); ArgentinaFil: Bacigaluoe, Alejandro. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); ArgentinaScrivener Publishing LLC2026info:eu-repo/semantics/articleinfo:eu-repo/semantics/acceptedVersionhttp://purl.org/coar/resource_type/c_6501info:ar-repo/semantics/articuloapplication/pdf2026GarciaFrancisco.pdfhttps://app.inti.gob.ar/greenstone3/sites/localsite/collect/nuevadc/index/assoc/2026Garc/iaFranci.dir/doc.pdfJournal of Renewable Materials 2026, 14(1), 2reponame:Repositorio Institucional del Instituto Nacional de Tecnología Industrial (INTI)instname:Instituto Nacional de Tecnología Industrialenginfo:eu-repo/semantics/openAccesshttps://creativecommons.org/licenses/by/4.0/openAccess2026-02-26T15:02:39Znuevadc:2026GarciaFrancisco_pdfinstacron:INTIInstitucionalhttps://app.inti.gob.ar/greenstone3/biblioOrganismo científico-tecnológicohttps://argentina.gob.ar/intihttps://app.inti.gob.ar/greenstone3/oaiserver?verb=Identifypfalcato@inti.gob.arArgentinaopendoar:2026-02-26 15:02:40.456Repositorio Institucional del Instituto Nacional de Tecnología Industrial (INTI) - Instituto Nacional de Tecnología Industrialfalse |
| dc.title.none.fl_str_mv |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties |
| title |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties |
| spellingShingle |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties García, Francisco Daniel Bagazo Tableros Caña de azúcar Economía circular Desarrollo sustentable |
| title_short |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties |
| title_full |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties |
| title_fullStr |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties |
| title_full_unstemmed |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties |
| title_sort |
Sustainable Particleboards Based on Sugarcane Bagasse and Bonded with a Waste-Grown Black Soldier Fly Larvae Commercial Flour-Based Adhesive: Rheological, Physical, and Mechanical Properties |
| dc.creator.none.fl_str_mv |
García, Francisco Daniel Aigner, Solange Nicole Raffaeli, Natalia Barotto, Antonio José Spavento, Eleana Escobar, Mariano Martín Mansilla, Marcela Ángela Bacigaluoe, Alejandro |
| author |
García, Francisco Daniel |
| author_facet |
García, Francisco Daniel Aigner, Solange Nicole Raffaeli, Natalia Barotto, Antonio José Spavento, Eleana Escobar, Mariano Martín Mansilla, Marcela Ángela Bacigaluoe, Alejandro |
| author_role |
author |
| author2 |
Aigner, Solange Nicole Raffaeli, Natalia Barotto, Antonio José Spavento, Eleana Escobar, Mariano Martín Mansilla, Marcela Ángela Bacigaluoe, Alejandro |
| author2_role |
author author author author author author author |
| dc.subject.none.fl_str_mv |
Bagazo Tableros Caña de azúcar Economía circular Desarrollo sustentable |
| topic |
Bagazo Tableros Caña de azúcar Economía circular Desarrollo sustentable |
| dc.description.none.fl_txt_mv |
This study explores the use of black soldier fly larvae protein as a bio-based adhesive to produce particleboards from sugarcane bagasse. A comprehensive evaluation was conducted, including rheological characterization of the adhesive and physical–mechanical testing of the panels according to European standards. The black soldier fly larvae-based adhesive exhibited gel-like viscoelastic behavior, rapid partial structural recovery after shear, and favorable application properties. Particleboards manufactured with this adhesive and sugarcane bagasse achieved promising mechanical performance, with modulus of rupture and modulus of elasticity values of 30.2 and 3500 MPa, respectively. Internal bond strength exceeded 0.4 MPa, complying with European standard 312-3 specifications. For comparative purposes, a panel made with Eucalyptus grandis particles was also produced under the same conditions to demonstrate the versatility of the adhesive system. Compared to other bio-based and synthetic adhesives, this bio-based system showed competitive performance and derives from the bioconversion of organic residues. Protein adhesives were synthesized from Hermetia illucens larvae grown commercially on agricultural waste from potato chip production, emphasizing the renewable origin of both the biomass and the final adhesive. These results highlight the potential of insect proteins as sustainable and circular alternatives for the wood panel industry. Fil: García, Francisco Daniel. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); Argentina Fil: García, Francisco Daniel. Universidad Nacional de San Martín. Instituto de Calidad e Innovación Industrial (UNSAM-INCALIN); Argentina Fil: Aigner, Solange Nicole. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); Argentina Fil: Aigner, Solange Nicole. Universidad Nacional de San Martín. Instituto de Calidad e Innovación Industrial (UNSAM-INCALIN); Argentina Fil: Raffaeli, Natalia. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); Argentina Fil: Barotto, Antonio José. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); Argentina Fil: Spavento, Eleana. Universidad Nacional de La Plata. Facultad de Ciencias Agracias y Forestales. Laboratorio de Investigaciones en Madera (UNLAM-LIMAD); Argentina Fil: Escobar, Mariano Martín. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados (INTI); Argentina Fil: Escobar, Mariano Martín. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); Argentina Fil: Mansilla, Marcela Ángela. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados (INTI); Argentina Fil: Mansilla, Marcela Ángela. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); Argentina Fil: Bacigaluoe, Alejandro. Instituto Nacional de Tecnología Industrial. Gerencia Operativa de Desarrollo Tecnológico e Innovación. Subgerencia Operativa de Áreas de Conocimiento. Dirección Técnica de Materiales Avanzados. Departamento de Planta Piloto de Materiales Metálicos (INTI); Argentina Fil: Bacigaluoe, Alejandro. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET); Argentina |
| description |
This study explores the use of black soldier fly larvae protein as a bio-based adhesive to produce particleboards from sugarcane bagasse. A comprehensive evaluation was conducted, including rheological characterization of the adhesive and physical–mechanical testing of the panels according to European standards. The black soldier fly larvae-based adhesive exhibited gel-like viscoelastic behavior, rapid partial structural recovery after shear, and favorable application properties. Particleboards manufactured with this adhesive and sugarcane bagasse achieved promising mechanical performance, with modulus of rupture and modulus of elasticity values of 30.2 and 3500 MPa, respectively. Internal bond strength exceeded 0.4 MPa, complying with European standard 312-3 specifications. For comparative purposes, a panel made with Eucalyptus grandis particles was also produced under the same conditions to demonstrate the versatility of the adhesive system. Compared to other bio-based and synthetic adhesives, this bio-based system showed competitive performance and derives from the bioconversion of organic residues. Protein adhesives were synthesized from Hermetia illucens larvae grown commercially on agricultural waste from potato chip production, emphasizing the renewable origin of both the biomass and the final adhesive. These results highlight the potential of insect proteins as sustainable and circular alternatives for the wood panel industry. |
| publishDate |
2026 |
| dc.date.none.fl_str_mv |
2026 |
| dc.type.none.fl_str_mv |
info:eu-repo/semantics/article info:eu-repo/semantics/acceptedVersion http://purl.org/coar/resource_type/c_6501 info:ar-repo/semantics/articulo |
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article |
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acceptedVersion |
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2026GarciaFrancisco.pdf https://app.inti.gob.ar/greenstone3/sites/localsite/collect/nuevadc/index/assoc/2026Garc/iaFranci.dir/doc.pdf |
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2026GarciaFrancisco.pdf |
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https://app.inti.gob.ar/greenstone3/sites/localsite/collect/nuevadc/index/assoc/2026Garc/iaFranci.dir/doc.pdf |
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eng |
| language |
eng |
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info:eu-repo/semantics/openAccess https://creativecommons.org/licenses/by/4.0/ openAccess |
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openAccess |
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https://creativecommons.org/licenses/by/4.0/ openAccess |
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application/pdf |
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Scrivener Publishing LLC |
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Scrivener Publishing LLC |
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Journal of Renewable Materials 2026, 14(1), 2 reponame:Repositorio Institucional del Instituto Nacional de Tecnología Industrial (INTI) instname:Instituto Nacional de Tecnología Industrial |
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Repositorio Institucional del Instituto Nacional de Tecnología Industrial (INTI) |
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Instituto Nacional de Tecnología Industrial |
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Repositorio Institucional del Instituto Nacional de Tecnología Industrial (INTI) - Instituto Nacional de Tecnología Industrial |
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pfalcato@inti.gob.ar |
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1858212532902166529 |
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13.176822 |