Wechsler et al., 2013 - Google Patents
Macadamia (Macadamia integrifolia) shell and castor (Rícinos communis) oil based sustainable particleboard: A comparison of its properties with conventional wood …Wechsler et al., 2013
View PDF- Document ID
- 9067532268576403024
- Author
- Wechsler A
- Zaharia M
- Crosky A
- Jones H
- Ramírez M
- Ballerini A
- Nuñez M
- Sahajwalla V
- Publication year
- Publication venue
- Materials & Design
External Links
Snippet
The present study examines the suitability of particleboard made from ground macadamia nut shells bonded with castor oil derived resin as an environmentally sustainable substitute for conventional wood fiber/urea formaldehyde particleboards. The properties of the …
- 241000208467 Macadamia 0 title abstract description 79
Classifications
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L97/00—Compositions of lignin-containing materials
- C08L97/02—Lignocellulosic material, e.g. wood, straw or bagasse
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Wechsler et al. | Macadamia (Macadamia integrifolia) shell and castor (Rícinos communis) oil based sustainable particleboard: A comparison of its properties with conventional wood based particleboard | |
Zhang et al. | Novel lignocellulosic hybrid particleboard composites made from rice straws and coir fibers | |
Pirayesh et al. | Using almond (Prunus amygdalus L.) shell as a bio-waste resource in wood based composite | |
Guler et al. | The experimental particleboard manufacture from sunflower stalks (Helianthus annuus L.) and Calabrian pine (Pinus brutia Ten.) | |
Pirayesh et al. | Effect of using walnut/almond shells on the physical, mechanical properties and formaldehyde emission of particleboard | |
Nasser | Physical and mechanical properties of three-layer particleboard manufactured from the tree pruning of seven wood species | |
Yeniocak et al. | Investigating the use of vine pruning stalks (Vitis Vinifera L. CV. Sultani) as raw material for particleboard manufacturing | |
Khanjanzadeh et al. | Utilization of bio-waste cotton (Gossypium hirsutum L.) stalks and underutilized paulownia (paulownia fortunie) in wood-based composite particleboard | |
Nasser et al. | Use of tree pruning wastes for manufacturing of wood reinforced cement composites | |
CN101716786B (en) | Eucalyptus bark scrap sandwiched overlaid veneer board and manufacture method thereof | |
Rosli et al. | A review: Characteristics of oil palm trunk (OPT) and quality improvement of palm trunk plywood by resin impregnation | |
Pirayesh et al. | Particleboard from wood particles and sycamore leaves Physico-mechanical properties | |
Hegazy et al. | Oriented Strand Board Production from Water-Treated Date Palm Fronds. | |
Wechsler et al. | Some properties of composite panels manufactured from peach (Prunus persica) pits and polypropylene | |
Santos et al. | Particleboard manufactured from Tauari (Couratari oblongifolia) wood waste using castor oil based polyurethane resin | |
Battistelle et al. | Physical and mechanical characterization of sugarcane bagasse particleboards for civil construction | |
Olorunmaiye et al. | Retrofiting composite ceiling boards with jatropha curcas Seedcake material | |
Febrianto et al. | Development of oriented strand board from acacia wood (Acacia mangium Willd): Effect of pretreatment of strand and adhesive content on the physical and mechanical properties of OSB | |
Cheng et al. | Effect of the particle geometry and adhesive mass percentage on the physical and mechanical properties of particleboard made from peanut hull | |
Wechsler et al. | Physical properties of furniture panels from macadamia shells | |
Jahan-Latibari et al. | Potential of utilization of the residues from poplar plantation for particleboard production in Iran | |
Schopper et al. | Production of innovative hemp based three-layered particleboards with reduced raw densities and low formaldehyde emissions | |
Pirayesh et al. | Optimum condition of manufacturing wood-based composite from mixture of wood particles/walnut and almond shells | |
Dahy | Agro-fibres biocomposites' applications and design potentials in contemporary architecture: case study: rice straw biocomposites | |
Wechsler et al. | Sustainable furniture panel composites from forestry and food industry by-products in Australia |