Galay et al., 2009 - Google Patents
PRATICLEBOARD MADE WITH CROP RESIDUES MIXED WITH WOOD FROM PINUS RADIATA.Galay et al., 2009
View PDF- Document ID
- 17887325949929790966
- Author
- Galay R
- MacDonald F
- Acevedo M
- Calderón B
- Araya J
- Publication year
- Publication venue
- BioResources
External Links
Snippet
The incorporation of crop residues was studied in particleboard panels (agrifibers, AG) in mixture with wood from Pinus radiata D. Don. Four crop residue stubble types were used, wheat, corn, rice plants, and rice husk. Their densities were compared. A wide array of …
- 239000002023 wood 0 title abstract description 34
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 |
---|---|---|
Ayrilmis et al. | Utilization of pine (Pinus pinea L.) cone in manufacture of wood based composite | |
Li | Physical, chemical, and mechanical properties of bamboo and its utilization potential for fiberboard manufacturing | |
Pirayesh et al. | Using almond (Prunus amygdalus L.) shell as a bio-waste resource in wood based composite | |
Yeniocak et al. | Investigating the use of vine pruning stalks (Vitis Vinifera L. CV. Sultani) as raw material for particleboard manufacturing | |
Rasat et al. | Properties of composite boards from oil palm frond agricultural waste | |
Cosereanu et al. | Morphology, physical, and mechanical properties of particleboard made from rape straw and wood particles glued with urea-formaldehyde resin | |
Rosli et al. | A review: Characteristics of oil palm trunk (OPT) and quality improvement of palm trunk plywood by resin impregnation | |
Paridah et al. | Nonwood-based composites | |
Galay et al. | PRATICLEBOARD MADE WITH CROP RESIDUES MIXED WITH WOOD FROM PINUS RADIATA. | |
Pirayesh et al. | Particleboard from wood particles and sycamore leaves Physico-mechanical properties | |
Akgül et al. | Manufacture of medium density fiberboard (MDF) panels from agribased lignocellulosic biomass | |
Ely et al. | Cannabis/hemp: Sustainable uses, opportunities, and current limitations | |
Zeleniuc et al. | Influence of adhesive type and content on the properties of particleboard made from sunflower husks | |
Olesen et al. | Perspectives on the performance of natural plant fibres | |
Mitchual et al. | Characterization of particleboard produced from residues of plantain pseudostem, cacao pod and stem and ceiba | |
Hidayat et al. | Effect of wood species and layer structure on physical and mechanical properties of strand board | |
Magzoub et al. | Comparative evaluation of mechanical and physical properties of particleboard made from bagasse fibers and improved by using different methods | |
Cooper et al. | Agricultural waste materials for composites: A Canadian reality | |
da Silva et al. | Use of residues from the cellulose industry and sugarcane bagasse in particleboards | |
SOUZA et al. | Comparative study of particleboards with Hevea Brasiliensis waste from different production and moisture configurations | |
Nikvash et al. | Use of MUF resin for improving the wheat protein binder in particle boards made from agricultural residues | |
Wechsler et al. | Physical properties of furniture panels from macadamia shells | |
Akgül et al. | Opportunities in utilization of agricultural residues in bio-composite production: Corn stalk (Zea mays indurata Sturt) and oak wood (Quercus Robur L.) fiber in medium density fiberboard | |
Jahan-Latibari et al. | Potential of utilization of the residues from poplar plantation for particleboard production in Iran | |
Bourne et al. | Evaluation of cotton gin waste as a lignocellulosic substitute in wood-fiber plastic composites |