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Humins as promising material for producing sustainable carbohydrate-derived building materials

机译:腐殖质作为生产可持续的碳水化合物衍生建筑材料的有前途的材料

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Nowadays biobased building materials are used in various fields and for a wide range of applications such as polymers, fillers, coatings, adhesives, impregnation materials or high performance composites. This work focuses on humins, a biomacromolecular by-product of a HydroxyMethylFurfural/FuranDiCarbox ylic Acid biorefinery. Humins are obtained by acidic treatment of polysaccharides and show very interesting potential as a reactive, semi-ductile thermoset matrix to impregnate cellulosic fibres. Therefore, humins have the essential characteristics to develop a new class of thermoset materials and composites, offering excellent possibilities to increase the renewable carbon content of the final products and improve its properties. A proper characterization of the neat humins in terms of solubility, flow behaviour and thermal resistance is essential in order to find the optimal parameters of processing humins solutions as well as co-reactive mixtures for impregnations or to prepare composites. In addition the study further indicates that humins enhance the modulus and the tensile strength of pure polyfurfurylalcohol resins. It was also shown that there is a difference in behaviour when sulfuric acid or maleic anhydride is used as initiator. The most optimal initiator will depend on application and preferred processing conditions. These encouraging results assure an important future for humins as economic green matrix for the production of composites and wood impregnation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:如今,生物基建筑材料已用于各种领域,并用于多种应用,例如聚合物,填料,涂料,粘合剂,浸渍材料或高性能复合材料。这项工作的重点是腐殖质,它是羟甲基糠醛/呋喃二羧酸羧酸生物精炼厂的生物大分子副产物。腐殖质通过多糖的酸性处理而获得,并且作为一种反应性,半延性的热固性基体,具有很强的潜力来浸渍纤维素纤维。因此,人类素具有开发新型热固性材料和复合材料的基本特征,为提高最终产品的可再生碳含量并改善其性能提供了极好的可能性。在溶解性,流动性和耐热性方面正确表征纯腐殖质至关重要,以便找到加工腐殖质溶液以及共浸渍的共反应混合物的最佳参数或制备复合材料。此外,研究进一步表明,人胶提高了纯聚糠醇树脂的模量和拉伸强度。还显示了当使用硫酸或马来酸酐作为引发剂时,行为上存在差异。最佳引发剂取决于应用和优选的加工条件。这些令人鼓舞的结果确保了作为生产复合材料和木材浸渍剂的经济绿色基质的人用胶泥具有重要的发展前景。 (C)2016 Elsevier Ltd.保留所有权利。

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