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Environment-friendly wood fibre composite with high bonding strength and water resistance

机译:具有高粘合强度和耐水性的环保木纤维复合材料

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With the growing depletion of wood-based materials and concerns over emissions of formaldehyde from traditional wood fibre composites, there is a desire for environment-friendly binders. Herein, we report a green wood fibre composite with specific bonding strength and water resistance that is superior to a commercial system by using wood fibres and chitosan-based adhesives. When the mass ratio of solid content in the adhesive and absolute dry wood fibres was 3%, the bonding strength and water resistance of the wood fibre composite reached the optimal level, which was significantly improved over that of wood fibre composites without adhesive and completely met the requirements of the Chinese national standard GB/T 11718-2009. Fourier transform infrared (FTIR), X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) characterizations revealed that the excellent performance of the binder might partly be due to the amide linkages and hydrogen bonding between wood fibres and the chitosan-based adhesive. We believe that this strategy could open new insights into the design of environment-friendly wood fibre composites with high bonding strength and water resistance for multifunctional applications.
机译:随着木质材料的消耗日益增加以及对传统木纤维复合材料中甲醛排放的担忧,人们迫切需要环保型粘合剂。本文中,我们报告了一种绿色木纤维复合材料,具有特定的粘合强度和耐水性,优于使用木纤维和壳聚糖基粘合剂的商业体系。当粘合剂和绝对干木纤维中固含量的质量比为3%时,木纤维复合材料的粘合强度和耐水性达到最佳水平,这比不使用粘合剂的木纤维复合材料的粘合强度和耐水性显着提高并且完全满足中国国家标准GB / T 11718-2009的要求。傅里叶变换红外(FTIR),X射线光电子能谱(XPS)和X射线衍射(XRD)表征表明,粘合剂的优异性能可能部分归因于木纤维与壳聚糖-之间的酰胺键和氢键。胶。我们相信,这种策略可以为多功能应用中具有高粘合强度和耐水性的环保型木纤维复合材料的设计开辟新的见解。

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