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作 者:Peyman Ahmadi Davood Efhamisisi Marie-France Thévenon Hamid Zarea Hosseinabadi Reza Oladi Jean Gerard
机构地区:[1]Department of Wood and Paper Science and Technology,Faculty of Natural Resources,University College of Agriculture and Natural Resources,University of Tehran,Karaj,3158777871,Iran [2]CIRAD,UPR BioWooEB,Montpellier,F-34398,France [3]BioWooEB,University of Montpellier,CIRAD,Montpellier,F-34398,France
出 处:《Journal of Renewable Materials》2024年第10期1715-1728,共14页可再生材料杂志(英文)
基 金:This work was supported by the office of vice-president for research and technology,University of Tehran,Gundishapur project 1584/45227SG,and Campus France.
摘 要:Sugarcane bagasse is an agro-waste that could replace timber resources for the production of bio-composites.Composite boards such as particleboard offer an issue for the use and recycling of poor quality timber,and these engineered products can overcome some solid wood limitations such as heterogeneity and dimension.Bagasse offers an alternative to wood chips for particleboard production but present some disadvantages as well,such as poor physico-mechanical properties.To address these issues,bagassefibers were treated with an innovative natural resin formulated with tannin and furfural.Impregnated particles with different concentrations of resin(5%,10%,and 15%m/m)were exposed to temperatures of 40℃,60℃,80℃,and 100℃ for resin curing.Various types of tannin-based adhesives,including tannin formaldehyde,tannin/formaldehyde-furfural,and tannin hex-amine,were utilized for bonding the treated bagasse particles.The resultant panels were assessed for their physical and mechanical properties and compared to those produced using Melamine-Urea-Formaldehyde(MUF)adhe-sive.The density of the panels varied from 650 to 730 kg/m^(3) depending on the resin concentration.The values for both modulus of elasticity and modulus of rupture increased as the resin concentration increased.The internal bonding values exhibited an increase with resin concentration up to a critical point,after which a decreasing trend was observed.The water absorption and thickness swelling were significantly reduced with an increase in resin concentration.However,the panels produced using MUF adhesive yielded the most favorable physico-mechanical properties.Additionally,the panels made with tannin-based adhesives met the minimum requirements specified in the standard EN 312(specifications for uncoated resin-bonded particleboards)for application in dry condi-tions.The analysis of formaldehyde emissions indicated that panels produced with tannin-based adhesives exhib-ited significantly lower emissions compared to those made with MUF.The tannin/furfural
关 键 词:Sugarcane bagasse PARTICLEBOARD TANNIN FURFURAL physico-mechanical properties FORMALDEHYDE
分 类 号:TB332[一般工业技术—材料科学与工程]
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