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Valorization of an industrial organosolv-sugarcane bagasse lignin: Characterization and use as a matrix in biobased composites reinforced with sisal fibers

机译:工业有机溶剂-蔗糖蔗渣甘蔗渣木质素的价值评估:剑麻纤维增强的生物基复合材料的表征和用作基质

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In the present study, the main focus was the characterization and application of the by-product lignin isolated through an industrial organosolv acid hydrolysis process from sugarcane bagasse, aiming at the production of bioethanol. The sugarcane lignin was characterized and used to prepare phenolic-type resins. The analysis confirmed that the industrial sugarcane lignin is of HGS type, with a high proportion of the less substituted aromatic ring p-hydroxyphenyl units, which favors further reaction with formaldehyde. The lignin-formaldehyde resins were used to produce biobased composites reinforced with different proportions of randomly distributed sisal fibers. The presence of lignin moieties in both the fiber and matrix increases their mutual affinity, as confirmed by SEM images, which showed good adhesion at the biocomposite fiber/matrix interface. This in turn allowed good load transference from the matrix to the fiber, leading to biobased composites with good impact strength (near 500 J m~(-1) for a 40 wt% sisal fiber-reinforced composite). The study demonstrates that sugarcane bagasse lignin obtained from a bioethanol plant can be used without excessive purification in the preparation of lignocellulosic fiber-reinforced biobased composites displaying high mechanical properties. Biotechnol. Bioeng. 2010;107:612-621.
机译:在本研究中,主要重点是通过工业有机溶剂酸水解工艺从甘蔗渣中分离出的副产物木质素的表征和应用,旨在生产生物乙醇。对甘蔗木质素进行表征并用于制备酚醛树脂。分析证实工业甘蔗木质素是HGS型,具有较高比例的较少取代的芳环对羟基苯基单元,这有利于与甲醛进一步反应。木质素-甲醛树脂用于生产由不同比例的剑麻纤维增强的生物基复合材料。木质素部分在纤维和基质中的存在增加了它们的相互亲和力,如通过SEM图像所证实的那样,其在生物复合纤维/基质界面处显示出良好的粘附性。反过来,这允许从基体到纤维的良好负载转移,从而导致具有良好冲击强度的生物基复合材料(对于40 wt%的剑麻纤维增强复合材料,接近500 J m〜(-1))。该研究表明,从生物乙醇工厂获得的甘蔗渣蔗糖木质素可用于制备具有高机械性能的木质纤维素纤维增强生物基复合材料,而无需过度纯化。生物技术。生恩2010; 107:612-621。

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