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Ionic Liquids Assisted Processing of Renewable Resources for the Fabrication of Biodegradable Composite Materials

机译:离子液体辅助加工可再生资源以制造可生物降解的复合材料

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摘要

In recent years, the utilization of renewable resources, particularly lignocellulosic biomass based raw materials, to replace synthetic materials/polymers for the manufacture of green materials has gained increased worldwide interest due to growing global environmental awareness, concepts of sustainability and the absence of conflict between food and chemical/materials production. However, structural heterogeneity and the presence of networks of inter- and intra-molecular interactions in biopolymer matrices remain unsolved challenges to clean pretreatment for biocomposite processing. A number of techniques including physical, physico-chemical and chemical methods have been investigated for the pretreatment of renewable resources. Most of these methods require high temperatures and pressures, as well as highly concentrated chemicals for the pretreatment process. Fortunately, ionic liquids (ILs) – potentially attractive “green” recyclable alternatives to environmentally harmful organic solvents – have been increasingly exploited as solvents and/or (co)solvents and/or reagents for biopolymer processing. Compared to conventional approaches, ILs in processing biodegradable composites exhibit many advantages such as being noncorrosive and nonvolatile, having excellent dissolution power under relatively mild conditions and high thermal stability. Presently, a wide range of different approaches have been explored to further improve the performance of ILs processing of biobased polymers for composites manufacturing. The main goal of this review is to present recent technological developments in which the advantages of ILs as processing solvents for biopolymers for the production of a plethora of green composites have been gradually realized. It is hoped that the present article will inspire new ideas and new approaches in ILs-assisted processing of renewable resources for green composite production.
机译:近年来,由于全球环境意识的增强,可持续性的概念以及相互之间没有冲突,利用可再生资源,特别是木质纤维素生物质原料代替合成材料/聚合物来制造绿色材料,已引起全球关注。食品和化学/材料生产。然而,生物聚合物基质中的结构异质性以及分子间和分子间相互作用网络的存在仍然是清洁用于生物复合材料加工的预处理所面临的挑战。已经研究了包括物理,物理化学和化学方法在内的许多技术来预处理可再生资源。这些方法大多数都需要高温和高压以及用于预处理过程的高浓度化学品。幸运的是,离子液体(ILs)是对环境有害的有机溶剂具有潜在吸引力的“绿色”可回收替代品,已被越来越多地用作生物聚合物加工的溶剂和/或(共)溶剂和/或试剂。与常规方法相比,加工生物可降解复合材料的IL具有许多优势,例如无腐蚀性和不挥发性,在相对温和的条件下具有出色的溶解能力和较高的热稳定性。当前,已经探索了各种不同的方法来进一步改善用于复合材料制造的生物基聚合物的IL加工性能。这篇综述的主要目的是介绍最近的技术发展,其中逐渐意识到IL作为生物聚合物生产多种绿色复合材料的加工溶剂的优势。希望本文将在IL辅助加工绿色复合材料的可再生资源中激发新的思想和新方法。

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