Potential of lignin and cellulose as renewable materials for the synthesis of flame-retardant aerogel composites

被引:2
|
作者
Dungani, Rudi [1 ]
Hua, Lee Seng [2 ]
Chen, Lum Wei [3 ]
Nurani, Wasti [4 ]
Solihat, Nissa Nurfajrin [4 ]
Maulani, Rijanti Rahaju [1 ]
Dewi, Mustika [1 ]
Aditiawati, Pingkan [1 ]
Fitria [5 ]
Antov, Petar [6 ]
Yadav, Krishna Kumar [7 ,8 ]
Mishra, Richa [9 ]
Fatriasari, Widya [4 ]
机构
[1] Inst Teknol Bandung, Sch Life Sci & Technol, Jalan Ganesha 10, Bandung 40132, Indonesia
[2] Univ Teknol MARA UiTM Cawangan Pahang, Fac Appl Sci, Dept Wood Ind, Kampus Jengka, Bandar Tun Razak 26400, Pahang, Malaysia
[3] Univ Malaysia Kelantan, Fac Bioengn & Technol, Dept Bio & Nat Resource Technol, Jeli 17600, Kelantan, Malaysia
[4] Natl Res & Innovat Agcy BRIN, Res Ctr Biomass & Bioprod, JI Raya Bogor KM 46, Cibinong 16911, Indonesia
[5] Washington State Univ, Bioprod Sci & Engn Lab, Richland, WA 99354 USA
[6] Univ Forestry, Fac Forest Ind, Sofia 1797, Bulgaria
[7] Parul Univ, Parul Inst Appl Sci, Dept Environm Sci, Vadodara 391760, Gujarat, India
[8] Al Ayen Univ, Sci Res Ctr, Environm & Atmospher Sci Res Grp, Nasiriyah 64001, Thi Qar, Iraq
[9] Parul Univ, Parul Inst Engn & Technol PIET, Dept Comp Engn, Ta Waghodia, Vadodara 391760, Gujarat, India
来源
关键词
Flame-retardant aerogel composite; Lignin-based aerogel; Cellulose-based aerogel; Lignin-based flame retardant; FRAC; SILICA AEROGEL; THERMAL-CONDUCTIVITY; ORGANIC AEROGELS; CARBON AEROGELS; FABRICATION; FILMS; NANOCELLULOSE; RESORCINOL; FOAMS; WASTE;
D O I
10.1016/j.mtcomm.2024.110501
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Aerogels are ultraporous solid materials characterized by numerous distinctive characteristics, such as an ultrahigh specific surface area, ultralow bulk density, ultralow modulus, extremely low thermal conductivity, extremely low sonic velocity or sound speed, extremely low refractive index, and extremely low dielectric constant. Due to these tunable properties, aerogels are regarded as versatile functional materials that have the potential to be used in various industries as flame retardants, including in oil and gas, building and construction, transportation, and electronics. At present, the dominant component used to synthesize flame-retardant aerogels is silica, the abundance and extraction of which are unsustainable. On the other hand, lignocellulosic biomass is the most plentiful renewable resource on the planet (making it comparable to the abundance of silica), can be obtained at low cost (i.e., derived from agricultural and forestry residue), and can be used to create aerogel frameworks. In addition, lignin can serve as a relatively nontoxic fire-retardant agent. The aim of this research work was to describe the present and anticipated market landscape of flame-retardant aerogel composites (FRACs), summarize the recent progress in the development of lignin- and cellulose-based FRAC systems, and identify the existing challenges to their wider industrial manufacturing and application.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Flame-retardant fibrous materials in an aircraft
    Uddin, Faheem
    JOURNAL OF INDUSTRIAL TEXTILES, 2016, 45 (05) : 1128 - 1169
  • [32] Hydrophobic and Flame-Retardant Foam Based on Cellulose
    Amal H. Abdel Kader
    Sawsan Dacrory
    Tawfik A. Khattab
    Samir Kamel
    Hussein Abou-Yousef
    Journal of Polymers and the Environment, 2022, 30 : 2366 - 2377
  • [33] Flame-retardant treatments of cellulose and their influence on the mechanism of cellulose pyrolysis
    Kandola, BK
    Horrocks, AR
    Price, D
    Coleman, GV
    JOURNAL OF MACROMOLECULAR SCIENCE-REVIEWS IN MACROMOLECULAR CHEMISTRY AND PHYSICS, 1996, C36 (04): : 721 - 794
  • [34] Super-insulating, flame-retardant, and flexible poly(dimethylsiloxane) composites based on silica aerogel
    Lee, Hyeseong
    Lee, Doojin
    Cho, Jaehyun
    Kim, Young-O
    Lim, Soonho
    Youn, SangJun
    Jung, Yong Chae
    Kim, Seong Yun
    Seong, Dong Gi
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2019, 123 : 108 - 113
  • [35] Synthesis, characterization and flame-retardant properties of epoxy resins and AACHH composites
    Linqing Qin
    Lianmeng Zhang
    Zhixiong Huang
    Zhiliang Huang
    Yanbing Wang
    Journal of Wuhan University of Technology-Mater. Sci. Ed., 2009, 24 : 763 - 767
  • [36] Mechanically robust cellulose nanofiber/sepiolite aerogel composites with superior flame retardant properties
    Wu, Xiaoxu
    Liu, Miao
    Xie, Linlin
    Duan, Yumin
    Shen, Kai
    Hu, Min
    Li, Zijun
    Li, Zhi
    CELLULOSE, 2025, 32 (03) : 1685 - 1698
  • [38] Synthesis, Characterization and Flame-retardant Properties of Epoxy Resins and AACHH Composites
    秦麟卿
    Journal of Wuhan University of Technology(Materials Science Edition), 2009, 24 (05) : 763 - 767
  • [39] Synthesis of Zinc Stannate Microcapsules for Preparation of Flame-Retardant PVC Composites
    Zhang, Bin
    Jiang, Yujie
    Han, Jian
    POLYMER-PLASTICS TECHNOLOGY AND ENGINEERING, 2018, 57 (12) : 1242 - 1253
  • [40] Synthesis, Characterization and Flame-retardant Properties of Epoxy Resins and AACHH Composites
    Qin Linqing
    Zhang Lianmeng
    Huang Zhixiong
    Huang Zhiliang
    Wang Yanbing
    JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY-MATERIALS SCIENCE EDITION, 2009, 24 (05): : 763 - 767