植酸
纤维素
纤维
纤维素纤维
阻燃剂
羧甲基纤维素
热重分析
材料科学
柠檬酸
化学
降级(电信)
热稳定性
复合材料
化学工程
有机化学
生物化学
钠
工程类
电信
计算机科学
冶金
作者
Eliott Orzan,Aitor Barrio,Veronika Biegler,Jana B. Schaubeder,Alexander Bismarck,Stefan Spirk,Tiina Nypelö
标识
DOI:10.1016/j.carbpol.2024.122617
摘要
Bio-based compounds have become the focus in the development of next-generation materials. The polyphosphated structure and availability of phytic acid has sparked an interest to understand its properties and apply it to making fire-retardant fabrics. However, its degradative effect on natural fibers sets limitations to its potential uses. In this study, we unveiled a new dimension to explore with phytic acid: cellulose fiber foams. Phytic acid enabled synergistic foaming with carboxymethyl cellulose albeit causing issues in long-term wet foam stability. Adding cellulose fibers to this mixture and drying at 160 °C produced solid foams with increased compressive strength and stiffness; comparable to foams cross-linked with the commonly used citric acid. The reduced contact area in low-density fiber networks allowed the cross-linking between phytic acid and the fiber network to mitigate structural weakening due to fiber degradation. Imaging also revealed the formation of a film encompassing fiber bonds; attributed to the strong interaction between phytic acid and carboxymethyl cellulose. Furthermore, phytic acid imparted self-extinguishing fire-retardant properties to the cellulose fiber foams measured using thermogravimetric analysis and cone calorimetry. This work showcases a simple new application for phytic acid without the use of catalysts or solvents. It serves to encourage further development of green practices to continuously challenge the industrial landscape.
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