Chemical Industry and Engineering Progress ›› 2025, Vol. 44 ›› Issue (11): 6413-6426.DOI: 10.16085/j.issn.1000-6613.2024-1517

• Materials science and technology • Previous Articles    

Research progress of lignin applied to flame retardant plastics

WANG Hui1(), LIU Shuping1,2,3(), LIAO Xilin1,2,3, CHENG Xiaowen1, LIU Rangtong1,2,3()   

  1. 1.Zhongyuan University of Technology, Zhengzhou 451191, Henan, China
    2.Collaborative Innovation Center of Advanced Textile Equipment Jointly Constructed by Henan Province and Ministry of Education, Zhengzhou 451191, Henan, China
    3.Zhengzhou Key Laboratory of Flame Retardant, Heat Insulating and Fire Resistant Functional Clothing and Materials, Zhengzhou 451191, Henan, China
  • Received:2024-09-18 Revised:2025-01-13 Online:2025-12-08 Published:2025-11-25
  • Contact: LIU Shuping, LIU Rangtong

木质素在阻燃塑料应用中的研究进展

王慧1(), 刘淑萍1,2,3(), 廖喜林1,2,3, 程晓雯1, 刘让同1,2,3()   

  1. 1.中原工学院,河南 郑州 451191
    2.先进纺织装备技术省部共建协同创新中心,河南 郑州 451191
    3.郑州市阻燃隔热耐火功能性服装及材料重点实验室,河南 郑州 451191
  • 通讯作者: 刘淑萍,刘让同
  • 作者简介:王慧(1998—),女,硕士研究生,研究方向为功能性服装面料。E-mail:13179581297@163.com
  • 基金资助:
    国家重点研发计划(2017YFB0309000)

Abstract:

As a biomass material with high carbon content, excellent thermal stability, strong carbonization ability and easy modification, lignin is often used as a biomass flame retardant to apply in the plastics, to improve their flammability, reduce the generation of molten droplets and smoke emissions after heat absorption. However, there are many problems such as low flame retardant efficiency, large addition and smoke production, and poor durability. In order to better understand the application of lignin in the flame retardancy of plastics, its structure was firstly briefly described, and the mechanism of lignin improving the flame retardant performance of plastics was analyzed in detail. Then, the research status of unmodified and modified lignin based flame retardants in the application of plastic flame retardancy was systematically reviewed, and the advantages and disadvantages of different flame retardant applications were analyzed. Moreover, it was proposed that the future development focus of lignin in plastic flame retardant application was to construct multi-level nano microphase separation structure in plastic matrix, and to construct dynamic energy sacrificial bonds between lignin nanoparticles and the plastic phase interface to improve interfacial forces and solve the problems of poor compatibility and difficult dispersion between lignin and plastic. In addition, to ensure the original physical and mechanical properties of the plastic, reducing the amount of lignin and ensuring flame retardant effect were also one of the development directions of this type of flame retardants.

Key words: lignin, flame retardant plastics, physical synergy, chemical modification, flame retardant mechanism

摘要:

木质素作为含碳量高、热稳定性好、成炭能力强和易于改性的生物质材料,常被用来作为生物质阻燃剂阻燃塑料,以改善塑料的易燃性、减少塑料受热时熔滴的生成和烟雾的释放,但存在阻燃效率低、添加量和产烟量大以及耐久性差等诸多问题。为更好地了解木质素在阻燃塑料中的应用情况,本文首先简述了木质素的结构,详细分析了木质素提升塑料阻燃性能的机理,然后系统回顾了未改性和改性木质素基阻燃剂在阻燃塑料应用中的研究现状,分析了不同阻燃应用的优缺点。提出未来木质素在阻燃塑料应用中的发展重点是在塑料基体中构建多级纳米微相分离结构,并在木质素纳米粒子与塑料相界面间构建动态能量牺牲键以提高界面作用力,解决木质素与塑料相容性差、不易分散的难题,此外,在保证阻燃效果的同时减少木质素的用量以确保塑料原有的物理力学性能也是该类阻燃剂的发展方向之一。

关键词: 木质素, 阻燃塑料, 物理协同, 化学改性, 阻燃机理

CLC Number: 

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