Dissolution and flame retardancy of microcrystalline cellulose

被引:0
|
作者
Lai, Shuili [1 ]
Zhang, Zhao [1 ,2 ]
Wang, Hua [1 ]
机构
[1] Shaanxi Key Laboratory of Chemical Additives for Industry, Shaanxi University of Science & Technology, Xi'an,710021, China
[2] Xianyang Vocational & Technical College, Xianyang,712000, China
来源
Jingxi Huagong/Fine Chemicals | 2021年 / 38卷 / 02期
关键词
Cellulose - Chlorine compounds - Combustion - Decomposition - Dissolution - Flame retardants - Ionic liquids - Morphology - Silica - Silicon - Thermogravimetric analysis;
D O I
10.13550/j.jxhg.20200605
中图分类号
学科分类号
摘要
Microcrystalline cellulose (MCC) was dissolved by chlorinated 1-carbamoylmethyl-3-vinyl imidazole ionic liquid ([CmVIM]Cl) and tetrabutylammonium chloride (TBAC), and then different flame retardants such as melamine phosphate (MP), ammonium polyphosphate (APP) and nano-silica (SiO2) were added to prepare flame retardant cellulose composites. The dissolution process of MCC was observed by polarizing microscope. The structure, crystallinity, thermal stability and morphology change of regenerated MCC were characterized by FTIR, XRD, TGA and SEM. The flame retardancy of cellulose composites was tested by vertical combustion test, limiting oxygen index (LOI) and thermogravimetric analysis. The results showed that the dissolution temperature was 90℃, TBAC was 8% of [CmVIM]Cl mass, the dissolution rate of MCC was up to 6.3%, and the degree of polymerization was reduced to 505. Compared with those of original MCC, the crystallinity index of regenerated MCC decreased from 74.0% to 46.4%, the initial thermal decomposition temperature decreased from 310℃ to 262℃, and the maximum weight loss rate decreased from 2.6%/min to 1.4%/min. The surface of MCC changed from smooth and flat rod structure to uneven irregular structure. The LOI of the flame retardant cellulose composites containing 5%, 10% and 10% (mass fraction) of MP, APP and SiO2 was up to 33.5%, and the vertical combustion level was Ⅴ-0. © 2021, Editorial Office of FINE CHEMICALS. All right reserved.
引用
收藏
页码:310 / 316
相关论文
共 50 条
  • [31] Recent progress in cellulose-based composites towards flame retardancy applications
    Taib, Mohamad Nurul Azman Mohammad
    Hamidon, Tuan Sherwyn
    Garba, Zaharaddeen N.
    Trache, Djalal
    Uyama, Hiroshi
    Hussin, M. Hazwan
    POLYMER, 2022, 244
  • [32] Influence of alkaline metal ions on flame retardancy and thermal degradation of cellulose fibers
    Dongmei Xu
    Quan Ji
    Liwen Tan
    Guangxiu Tian
    Fengyu Quan
    Yanzhi Xia
    Fibers and Polymers, 2014, 15 : 220 - 225
  • [33] Flame retardancy for cotton cellulose treated with H3PO3
    Lee, Hong Chan
    Lee, Shichoon
    JOURNAL OF APPLIED POLYMER SCIENCE, 2018, 135 (29)
  • [34] Effect of Ethyl Ester Phosphoramidates on Flame Retardancy and Burning Behavior of Cotton Cellulose
    Gaan, Sabyasachi
    Viktoriya, Salimova
    Manfred, Heuberger
    Rabe, Stefan
    PROCEEDINGS OF THE FIBER SOCIETY 2009 SPRING CONFERENCE, VOLS I AND II, 2009, : 1072 - +
  • [35] Robust, sustainable cellulose composite aerogels with outstanding flame retardancy and thermal insulation
    Luo, Xiaolei
    Shen, Junyan
    Ma, Yanan
    Liu, Lin
    Meng, Ranju
    Yao, Juming
    CARBOHYDRATE POLYMERS, 2020, 230
  • [36] Structure of aqueous solutions of microcrystalline cellulose/sodium hydroxide below 0 °C and the limit of cellulose dissolution
    Egal, Magali
    Budtova, Tatiana
    Navard, Patrick
    BIOMACROMOLECULES, 2007, 8 (07) : 2282 - 2287
  • [37] Experimental and theoretical studies on dissolution and regeneration of microcrystalline cellulose with dihydroxyl ionic liquids
    Li, Fahui
    Shen, Yiyue
    Deng, Yupei
    Zhang, Jingchun
    Wang, Qiqi
    Chen, Haoyuan
    Ouyang, Mai
    Jiang, Qianwen
    Wang, Guowei
    Zhuang, Linghua
    JOURNAL OF MOLECULAR LIQUIDS, 2023, 389
  • [38] Preparation, characterization and testing of flame retardant cotton cellulose material: flame retardancy, thermal stability and flame-retardant mechanism
    Ling Sun
    Huixin Wang
    Wennan Li
    Jiaojiao Zhang
    Zheng Zhang
    Zhou Lu
    Ping Zhu
    Chaohong Dong
    Cellulose, 2021, 28 : 3789 - 3805
  • [39] Preparation, characterization and testing of flame retardant cotton cellulose material: flame retardancy, thermal stability and flame-retardant mechanism
    Sun, Ling
    Wang, Huixin
    Li, Wennan
    Zhang, Jiaojiao
    Zhang, Zheng
    Lu, Zhou
    Zhu, Ping
    Dong, Chaohong
    CELLULOSE, 2021, 28 (06) : 3789 - 3805
  • [40] The flame retardancy of textiles
    Hall, ME
    TRENDS IN POLYMER SCIENCE, 1996, 4 (02) : 38 - 39