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Lignin-derived bio-based flame retardants toward high-performance sustainable polymeric materials

机译:木质素衍生的生物基阻燃剂朝向高性能可持续聚合物材料

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Bio-based flame retardants represent one of the most promising directions for next-generation flame retardants due to their sustainability, environmental benefits and comparable efficiency to current non-bio-based counterparts. Because of lignin's unique aromatic structure and high charring capability, recent years have witnessed the great flame-retardancy potential of pristine lignin and its derivatives in a wide range of polymeric materials. Unfortunately, to date there has been no critical review on the preparation, modification and application of lignin-derived flame retardants for polymeric materials. This review focuses on the flame-retardancy effects of pristine lignin and lignin chemically modified by introducing the elements phosphorus and/or nitrogen, as well as their synergistic effects with existing flame-retardant additives. This review also comprehensively compares the flame-retardancy performances of different lignin-derived flame retardants in various polymeric matrices, such as polylactic acid, polypropylene and polyamide 11. Following the conclusions, future perspectives are also presented along with new opportunities for the development of more efficient and effective lignin-based flame retardants for polymeric materials.
机译:生物基阻燃剂代表下一代阻燃剂最有希望的方向之一,由于其可持续性,环境效益和对当前基于非生物的对应物的可比性效率而言。由于木质素独特的芳香结构和高炭化能力,近年来目睹了原始木质素的巨大阻燃性潜力及其在各种聚合物材料中的衍生物。迄今为止,迄今为止,对木质素衍生的聚合物材料的制备,修饰和应用并无意义审查。该综述侧重于通过引入元素磷和/或氮气的原始木质素和木质素化学改性的阻燃效应,以及与现有阻燃添加剂的协同作用。本综述还综合地比较了不同木质素衍生的阻燃剂在各种聚合物基质中的阻燃性能,例如聚乳酸,聚丙烯和聚酰胺11.在结论结论后,还介绍了未来的观点以及更多的发展机会高效且有效的基于木质素的聚合物材料阻燃剂。

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