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Revealing potential of waste fibers from timber production and clearings for the development of local bio-based insulation fiberboards in French Guiana

Bossu Julie, Moreau Jérôme, Delisée Christine, Le Moigne Nicolas, Corn Stephane, Sonnier Rodolphe, Viretto Amandine, Beauchêne Jacques, Clair Bruno. 2023. Revealing potential of waste fibers from timber production and clearings for the development of local bio-based insulation fiberboards in French Guiana. Waste and Biomass Valorization, 14 (12) : 4281-4295.

Article de revue ; Article de recherche ; Article de revue à facteur d'impact
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Url - jeu de données - Dataverse Cirad : https://doi.org/10.18167/DVN1/KVNAQ6

Résumé : In French Guiana, the development of bio-circular value chains to convert residual biomass into insulation fiberboard represents a promising opportunity for energy-efficient construction. The objectives of this work are to identify and characterize resources of interest and discuss the relationships between fiber properties, manufacturing parameters, and fiberboard performance. Five wood and bark fibers were fractionated from residual biomass of 4 local species, and their fractions analyzed by: laser granulometry, thermal gravimetric analysis (TGA), and pyrolysis combustion flow calorimetry (PCFC). Fiberboards were produced using a thermomechanical process and their microstructure, thermal, and sorption properties were characterized by X-ray tomography, hot plate technique, and dynamic vapor sorption (DVS). Morphological analysis showed that large and elongated wood fractions form thick and cohesive fibrous networks, while small-sized bark fractions are more difficult to process, requiring more compaction and synthetic fiber additives due to lower natural self-adhesion. Despite processing difficulties, bark fiberboards showed the best insulation performance, comparable to commercial reference products. TGA and PCFC tests revealed that bark fibers have better thermal stability and fire behavior compared to wood, and a stronger water affinity compared to wood fractions, highlighting the need for further investigations of durability performance in tropical conditions in the long term, but also a potential interest for humidity regulation.

Mots-clés Agrovoc : bois, pyrolyse, composition chimique, propriété physicochimique, propriété technologique, déchet de bois, bois de charpente, écorce, panneau de fibres, bois tropical, biomasse, microstructure thermique, distribution géographique

Mots-clés géographiques Agrovoc : Guyane française, France

Mots-clés libres : Tropical biomass valorization, Residual fibers, Bio-circular economy, Insulation fiberboards, Microstructure, Thermal properties

Classification Agris : K50 - Technologie des produits forestiers

Champ stratégique Cirad : CTS 7 (2019-) - Hors champs stratégiques

Agences de financement hors UE : Agence Nationale de la Recherche

Projets sur financement : (FRA) Plateforme d'Innovation "Forêt-Bois-Fibre-Biomasse du Futur"

Auteurs et affiliations

  • Bossu Julie, CNRS (FRA) - auteur correspondant
  • Moreau Jérôme, ESB (FRA)
  • Delisée Christine, I2M (FRA)
  • Le Moigne Nicolas, Ecole des mines de Paris (FRA)
  • Corn Stephane, Ecole des mines d'Alès (FRA)
  • Sonnier Rodolphe, Ecole des mines d'Alès (FRA)
  • Viretto Amandine, CIRAD-PERSYST-UPR BioWooEB (FRA)
  • Beauchêne Jacques, CIRAD-ES-UMR Ecofog (GLP) ORCID: 0000-0003-4578-3670
  • Clair Bruno, Laboratoire de mécanique et de génie civil (FRA)

Source : Cirad-Agritrop (https://agritrop.cirad.fr/607292/)

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