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Valorization of Lignin as a Sustainable Component of Structural Materials and Composites: Advances from 2011 to 2019

机译:木质素作为结构材料和复合材料可持续组件的价值:2011年至2019年推出

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Lignin is the most abundant aromatic biopolymer and is the sustainable feedstock most likely to supplant petroleum-derived aromatics and downstream products. Rich in functional groups, lignin is largely peerless in its potential for chemical modification towards attaining target properties. Lignin’s crosslinked network structure can be exploited in composites to endow them with remarkable strength, as exemplified in timber and other structural elements of plants. Yet lignin may also be depolymerized, modified, or blended with other polymers. This review focuses on substituting petrochemicals with lignin derivatives, with a particular focus on applications more significant in terms of potential commercialization volume, including polyurethane, phenol-formaldehyde resins, lignin-based carbon fibers, and emergent melt-processable waste-derived materials. This review will illuminate advances from the last eight years in the prospective utilization of such lignin-derived products in a range of application such as adhesives, plastics, automotive components, construction materials, and composites. Particular technical issues associated with lignin processing and emerging alternatives for future developments are discussed.
机译:木质素是最丰富的芳族生物聚合物,是最有可能取代石油衍生的芳烃和下游产品的可持续原料。富含官能团,木质素主要在其对达到目标性质的化学改性的可能性中无与伦比。木质素的交联网络结构可以在复合材料中利用以赋予它们以显着的强度,如木材和其他结构元素的木材和其他结构元素所例中的那样。然而,木质素也可以用其他聚合物解聚,改性或混合。本综述侧重于用木质素衍生物替代石化衍生物,特别关注应用在潜在的商业化体积方面更为显着,包括聚氨酯,酚醛醛树脂,木质素基碳纤维和紧急熔融加工废物衍生材料。本综述将在一系列施用中的胶粘剂,塑料,汽车部件,建筑材料和复合材料等施用中,阐明过去八年的前瞻性利用率。讨论了与木质素处理相关的特定技术问题和未来发展的新兴替代品。

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